資料中心管線材料市場-全球及區域分析:按應用、產品與國家分類-分析與預測,2026-2035年
市場調查報告書
商品編碼
2112461

資料中心管線材料市場-全球及區域分析:按應用、產品與國家分類-分析與預測,2026-2035年

Data Center Piping Materials Market - A Global and Regional Analysis: Focus on Application, Product, and Country-Level Analysis - Analysis and Forecast, 2026-2035

出版日期: | 出版商: BIS Research | 英文 171 Pages | 商品交期: 1-5個工作天內

價格

全球資料中心管線材料市場預計將從 2025 年的 4.909 億美元成長到 2035 年的 54.637 億美元,預計在 2026 年至 2035 年的預測期內,複合年成長率將達到 27.28%。

關鍵市場統計數據
預測期 2026-2035
2026 年市場規模 6.234億美元
2035 年預測 54.637億美元
複合年成長率 27.28%

本市場涵蓋用於資料中心冷卻劑和公用流體輸送的管路、配件、接頭、連接件、隔熱系統、軟管、雙層密封系統、快速連接器及相關組件。目標應用範圍廣泛,包括中央冷凍水和冷凝水管網、直接液體冷卻供回水管線、機架和排式歧管、園區管道以及特定公用設施支援管路。所用材料包括銅、碳鋼、鍍鋅鋼和不鏽鋼等金屬,以及高密度聚乙烯 (HDPE)、聚氯乙烯 (PVC)、氯化聚氯乙烯 (CPVC)、聚丙烯橡膠 (PP-R)、聚丙烯橡膠碳化物 (PP-RCT)、丙烯腈-聚丁烯-苯乙烯共聚物 (ABSBS)、聚環氧烷 (ABS) (PFA)、其他含氟聚合物和聚醯胺等聚合物。泵浦、冷卻器、冷卻塔、伺服器冷板、軟體控制、一般土木工程以及與機械或技術冷卻無關的傳統管道不在本研究的範圍內。

市場概覽

隨著人工智慧工作負載的增加,機架密度和發熱量也隨之上升,冷卻架構已成為資料中心設計的關鍵要素。大規模園區仍依賴龐大的冷凍水和散熱基礎設施,而新建的人工智慧機房和高階託管環境則擴大採用冷配單元 (CDU)、輔助冷卻迴路、機架歧管、靈活連接以及直接晶片級電路。這形成了一種混合架構:設施側管道負責在整個機房和園區內輸送熱量,而技術側網路則負責將冷卻劑輸送到靠近伺服器的位置。這種轉變增加了規範的複雜性,因為金屬、聚合物、彈性體、抑制劑、乙二醇混合物、過濾器和快速接頭必須作為一個整合系統協同工作。這也提高了預製、潔淨連接、洩漏檢測、雙重密封和試運行記錄的重要性。這項技術的應用將在新建設的超大規模園區、高效能運算 (HPC) 設施和高密度託管設施中得到最快速的推廣。在現有設施中,實施工作正透過有針對性的維修逐步推進;如果傳統的水質或壓力條件不合適,通常會使用熱交換器或獨立的二次迴路。

對產業的影響

向混合冷卻和液冷過渡將改變整個生態系統的需求。管道製造商需要提供經認證的多材料產品線、冷卻劑相容性數據、BIM模型、預製支援以及穩定的全球供應。機械承包商需要掌握熔焊聚合物、壓接系統、溝槽組件、軟管和快速接頭的新型連接和試運行技能。冷卻設備原始設備製造商 (OEM) 和常冷設備 (CDU) 供應商需要可靠的設施用水和技術冷卻迴路介面。資料中心營運商可以提高每個機架的熱處理能力,但必須對水化學、洩漏影響、過濾、清潔和維護程序進行更嚴格的控制。這種轉變也將改變專案的經濟性。預製管路支架、撬裝設備和歧管可以減少現場人工和進度風險,但高價值材料和密封措施增加了早期規範的複雜性。能夠將設施側基礎設施與伺服器側液體分配系統連接起來的供應商,能夠在從冷卻器到晶片的廣泛網路中獲取價值。

目錄

第1章 市場:產業展望

  • 趨勢:對當前和未來影響的評估
    • 從空冷式設施設計過渡到混合式冷卻迴路
    • 設施用水和技術冷卻系統的標準化
    • 人工智慧最佳化後的設施增加了材料規格的複雜性。
  • 供應鏈概覽
    • 價值鏈分析
  • 監管情勢/生態系統/正在進行的項目
    • 監理情勢
    • 正在進行的專案和行業聯盟
    • 框架
  • 投資環境
  • 研究與發展概述
  • 相關人員分析
    • 應用案例:從乾式冷卻器到晶片的工程聚合物管道
    • 最終用戶和採購標準
  • 市場動態
    • 市場促進因素
    • 市場挑戰
    • 市場機遇
  • 產業吸引力:波特五力分析

第2章 應用

  • 按用途匯總
  • 資料中心管材市場(按應用領域分類)
    • 超大規模
    • 搭配
    • 其他

第3章 產品

  • 產品概述
  • 資料中心管材市場(按產品分類)
    • 設施的空調和冷凍水管道
    • 液冷管道
  • 資料中心管道材料市場(按管道類型分類)
    • 硬式
    • 軟式
    • 其他(絕緣和雙層塗層)

第4章 區域

  • 區域概況
  • 北美洲
    • 區域概覽
      • 市場成長促進因素
      • 市場挑戰
    • 目的
    • 產品
    • 北美洲(按國家/地區分類)
      • 美國
      • 加拿大
      • 墨西哥
  • 歐洲
    • 區域概覽
      • 市場成長促進因素
      • 市場挑戰
    • 目的
    • 產品
    • 歐洲(按國家/地區分類)
      • 德國
      • 法國
      • 英國
      • 義大利
      • 荷蘭
      • 愛爾蘭
      • 其他歐洲國家
  • 亞太地區
    • 區域概覽
      • 市場成長促進因素
      • 市場挑戰
    • 目的
    • 產品
    • 亞太地區(按國家/地區分類)
      • 中國
      • 日本
      • 韓國
      • 澳洲
      • 印度
      • 亞太其他地區
  • 世界其他地區
    • 區域概覽
      • 市場成長促進因素
      • 市場挑戰
    • 目的
    • 產品

第5章 市場-競爭標竿分析與公司概況

  • 下一個前沿領域
  • 策略舉措
  • 市佔率分析
  • 公司簡介
    • GF Industry and Infrastructure Flow Solutions
    • Victaulic
    • Aquatherm GmbH
    • Viega
    • Aliaxis
    • Parker Hannifin
    • NUPI Industrie Italiane
    • Aalberts Integrated Piping Systems
    • Zekelman Industries
    • Mueller Industries
    • PERMA-PIPE International Holdings
    • REHAU
    • Watts Water Technologies
    • CPC/Colder Products Company
    • BRUGG Pipes
  • List of Other Companies

第6章:調查方法

Product Code: MS03701SA

This report can be delivered within 1 working day.

Introduction of the Data Center Piping Materials Market

The global data center piping materials market is projected to reach $5,463.7 million by 2035 from $490.9 million in 2025, growing at a CAGR of 27.28% during the forecast period 2026-2035.

KEY MARKET STATISTICS
Forecast Period2026 - 2035
2026 Evaluation$623.4 Million
2035 Forecast$5,463.7 Million
CAGR27.28%

This market covers pipes, tubing, fittings, couplings, joints, insulated systems, flexible hoses, double-containment systems, quick connectors, and related assemblies used to transport cooling or utility fluids in data centers. Included applications range from central chilled-water and condenser-water networks to direct liquid cooling supply and return lines, rack and row manifolds, campus distribution, and selected utility support lines. The material set includes metals such as copper, carbon steel, galvanized steel, and stainless steel, together with polymers such as HDPE, PVC, CPVC, PP-R, PP-RCT, ABS, PEXa, PTFE, PFA, other fluoropolymers, and polyamide. Pumps, chillers, cooling towers, server cold plates, software controls, general civil works, and conventional plumbing unrelated to mechanical or technology cooling are outside the defined scope.

Market Introduction

Cooling architecture is becoming a strategic element of data center design as AI workloads raise rack density and heat output. Large campuses still rely on extensive chilled-water and heat-rejection infrastructure, but new AI halls and premium colocation deployments increasingly add CDUs, secondary coolant loops, rack manifolds, flexible connections, and direct-to-chip circuits. This creates a hybrid architecture: facility-side piping moves heat across the plant and campus, while technology-side networks move coolant closer to servers. The transition increases specification complexity because metals, polymers, elastomers, inhibitors, glycol blends, filters, and quick disconnects must perform as one system. It also increases the value of prefabrication, clean joining, leak detection, double containment, and documented commissioning. Adoption will be fastest in greenfield hyperscale campuses, HPC facilities, and high-density colocation halls. Brownfield facilities will proceed through targeted retrofits, often using heat exchangers and independent secondary loops when legacy water quality or pressure conditions are unsuitable.

Industrial Impact

The shift toward hybrid and liquid cooling changes requirements across the ecosystem. Piping manufacturers must provide qualified multi-material portfolios, coolant-compatibility data, BIM objects, prefabrication support, and consistent global supply. Mechanical contractors need new joining and commissioning skills for fusion-welded polymers, press systems, grooved assemblies, flexible hoses, and quick disconnects. Cooling OEMs and CDU providers require reliable interfaces between facility water and technology cooling loops. Data center operators gain more thermal capacity per rack but must manage water chemistry, leak consequences, filtration, flushing, and maintenance procedures more rigorously. The transition also changes project economics. Prefabricated pipe racks, skids, and manifolds can reduce field labor and schedule risk, while higher-value materials and containment increase upfront specification intensity. Suppliers able to connect facility-side infrastructure with server-proximate liquid distribution are positioned to capture value across a broader chiller-to-chip network.

Market Segmentation:

Segmentation 1: By Application

  • Hyperscale
  • Colocation
  • Others

Hyperscale Segment to Dominate the Data Center Piping Materials Market (by Application)

Hyperscale remains the dominant application because large cloud and AI campuses combine high compute density, multi-building construction, global operator standards, and aggressive delivery schedules. Their mechanical scope includes chilled-water mains, condenser-water systems, dry-cooler connections, pre-insulated campus distribution, CDUs, manifolds, and rack-level liquid pathways. Large operators can standardize designs across sites, making prefabricated racks, modular skids, qualified joining systems, and repeatable material specifications commercially important. Rising AI thermal loads add technology cooling circuits to the existing facility backbone rather than replacing it. This creates the largest total piping bill of materials and supports both conventional steel and copper volumes and faster-growing polymer, stainless, flexible, and containment solutions.

Segmentation 2: By Product

  • Facility HVAC/Chilled-Water Piping
  • Liquid Cooling Piping

Facility HVAC/Chilled-Water Piping Segment to Dominate the Data Center Piping Materials Market (by Product)

Facility HVAC/chilled-water piping dominates because every major data center requires heat rejection and environmental control infrastructure even when server racks use direct liquid cooling. Chillers, dry coolers, cooling towers, pumps, heat exchangers, CRAH or CRAC equipment, and CDUs remain connected through facility-side networks. Hybrid facilities may increase the total network because conventional air-cooled halls and high-density liquid-cooled clusters operate together. Carbon steel and galvanized steel anchor large-diameter loops, while copper, stainless steel, HDPE, and engineered polymers serve mechanical rooms, buried distribution, corrosion-sensitive circuits, and modular assemblies. Liquid-cooling piping grows faster, but it remains an incremental layer over a larger installed facility system through the forecast.

Segmentation 3: By Pipe Type

  • Rigid
  • Flexible
  • Others (Pre-Insulated and Double-Containment)

Rigid Segment to Dominate the Data Center Piping Materials Market (by Pipe Type)

Rigid piping leads because most installed length and flow capacity sits outside the rack in central plants, mechanical corridors, condenser-water loops, chilled-water mains, dry-cooler connections, and campus utility distribution. These applications require stable routing, large diameters, pressure integrity, and long service life. The category is multi-material: steel remains the volume anchor, copper serves smaller-bore HVAC and service duties, HDPE supports buried and campus distribution, and PP-RCT or other polymers gain share in corrosion-sensitive closed loops. Flexible connections grow more rapidly near CDUs and racks, but they connect back to a rigid facility backbone, preserving rigid piping's leading market value.

Segmentation 4: By Region

  • North America: U.S., Canada, and Mexico
  • Europe: Germany, France, Italy, Netherlands, Ireland, U.K., and Rest-of-Europe
  • Asia-Pacific: China, Japan, South Korea, India, Australia, and Rest-of-Asia-Pacific
  • Rest-of-the-World

North America to Dominate the Data Center Piping Materials Market (by Region)

North America dominates because it combines a mature U.S.-led hyperscale ecosystem, a large colocation base, early high-density cooling adoption, and an extensive installed chilled-water network. Low vacancy and rapid absorption support accelerated construction, while AI and HPC projects add CDU, manifold, quick-disconnect, flexible tubing, and leak-managed requirements. Conventional carbon and galvanized steel remain important for plant and campus mains, but higher-value growth is expected in stainless steel, HDPE, engineered polymers, pre-insulated systems, flexible assemblies, and containment. Power interconnection delays, water scrutiny, skilled labor, and qualification requirements constrain deployment, which increases the value of prefabrication, BIM support, installer training, factory testing, and documented commissioning from suppliers able to serve both facility-side and technology-cooling layers.

Recent Developments in the Data Center Piping Materials Market

  • In 2026, GF Industry and Infrastructure Flow Solutions / Rittal delivered a polymer-based cooling loop for NETMOUNTAINS, covering facility water, technology cooling, HVAC, manifolds, quick-connect valves, and prefabricated components, demonstrating integrated chiller-to-chip polymer execution and project-level prefabrication.
  • In 2026, PERMA-PIPE International Holdings announced a new U.S. Northeast facility investment to serve AI data center, district heating, and district cooling customers, expanding regional capacity for pre-insulated and containment-oriented infrastructure.
  • In 2025, CPC / Colder Products Company launched the Everis UQD06 quick-disconnect solution for AI, HPC, and data center liquid-cooling systems, improving serviceable rack-level connections and supporting scalable direct liquid-cooling architectures.

Demand - Drivers, Challenges, and Opportunities

Market Drivers

AI-led capacity expansion is the primary driver. Higher IT loads require larger chilled-water mains, heat exchangers, dry-cooler and condenser-water loops, CDUs, manifolds, and liquid distribution. Hyperscale and AI-ready colocation facilities need more cooling per unit of floor space, greater redundancy, and faster mechanical completion. As rack density rises, specifications shift from commodity pipe toward qualified systems that can manage pressure, corrosion, water chemistry, cleanliness, and maintainability. Direct liquid cooling further adds small-bore tubing, quick disconnects, stainless or polymer fittings, and secondary circuits. The market therefore benefits from both larger facility backbones and a higher-value technology-cooling layer, while prefabricated assemblies support the compressed schedules associated with new AI capacity.

Market Challenges

Material compatibility and water chemistry are the central challenge. A liquid loop may combine copper cold plates, stainless fittings, polymer hoses, elastomers, inhibitors, glycol blends, filters, and quick disconnects. Poorly matched components can cause galvanic corrosion, leaching, particulate contamination, biological growth, pressure loss, clogging, or leakage. Brownfield projects add uncertainty because legacy systems have different treatment histories, oxygen levels, corrosion products, filtration, temperatures, and pressures. Operators may need heat exchangers or independent secondary loops, increasing cost and complexity. Skilled labor, local code acceptance, supplier qualification, pressure testing, flushing, and commissioning documentation further slow adoption. These barriers favor suppliers that provide compatibility data, installer training, clean-installation practices, testing protocols, and lifecycle support.

Market Opportunities

The strongest opportunity is the hybrid chiller-to-chip network. Operators are adding liquid cooling while retaining facility chilled-water systems, creating demand for combinations of steel, copper, stainless steel, HDPE, PP-RCT, flexible hoses, quick disconnects, pre-insulated systems, and containment. Brownfield retrofits expand the opportunity because existing colocation and enterprise sites need CDUs, manifolds, rear-door heat exchangers, and targeted AI zones without rebuilding the full plant. Prefabricated skids, manifold panels, valve assemblies, and pipe modules reduce field labor and improve repeatability. Double-containment and leak detection gain value where fluid moves near sensitive IT equipment. Suppliers that combine engineered materials with BIM support, prefabrication, coolant compatibility, testing, and commissioning are positioned to capture value beyond raw material volume.

How Can This Report Add Value to an Organization?

The report helps organizations align product portfolios, target applications, and regional priorities with the cooling transition. It quantifies demand by application, product, pipe type, and region; explains the factors supporting facility-side and liquid-cooling growth; benchmarks key suppliers; and identifies qualification, water chemistry, labor, and sustainability risks. Decision-makers can use the findings to prioritize product development, channel partnerships, prefabrication capability, and market-entry sequencing without assuming that every data center adopts the same cooling architecture at the same pace.

Product/Innovation Strategy: Product strategy should connect facility and technology cooling rather than treat them as separate markets. Suppliers can develop qualified material combinations for chilled-water mains, secondary loops, CDU connections, manifolds, and flexible rack service. Priority capabilities include corrosion-resistant polymers and stainless systems, pre-insulated distribution, double containment, leak detection, non-spill connectors, compatible seals, and documented coolant performance. Modular skids and factory-tested manifold assemblies can improve quality and reduce field labor. Engineering tools, BIM objects, hydraulic guidance, and clear flushing and commissioning procedures should accompany the physical portfolio.

Growth/Marketing Strategy: Growth strategy should focus on hyperscale operators, AI-ready colocation providers, cooling OEMs, MEP contractors, liquid-cooling integrators, and prefabrication partners. North America offers the largest near-term value, while Asia-Pacific provides the fastest regional CAGR. Commercial messaging should link materials to uptime, construction speed, water stewardship, lifecycle cost, and serviceability rather than price alone. Demonstration projects, contractor certification, regional stock, design assistance, and partnerships with CDU or rack-cooling vendors can reduce qualification barriers. Brownfield retrofit packages offer an additional route into existing facilities that need targeted high-density cooling.

Competitive Strategy: Competitive strategy should differentiate through system assurance and execution support. Large suppliers can leverage breadth across valves, fittings, joining, pre-insulation, and engineered materials; specialists can lead in quick disconnects, flexible tubing, containment, or coolant-compatible polymers. Market share gains are likely where vendors provide mission-critical references, global availability, local code support, factory testing, prefabrication, installer training, and detailed pressure, temperature, and chemistry documentation. Monitoring partnerships, acquisitions, and product launches is important because the competitive boundary is expanding from raw pipe toward integrated cooling loops and serviceable connection systems.

Methodology

Primary Data Sources

The primary sources involve industry experts from the data center piping materials market and various stakeholders in the ecosystem. Respondents, including CEOs, vice presidents, marketing directors, and technology and innovation directors, have been interviewed to gather and verify both qualitative and quantitative aspects of this research study.

The key data points taken from primary sources include:

  • validation and triangulation of all the numbers and graphs
  • validation of report segmentations and key qualitative findings
  • understanding the competitive landscape
  • validation of the numbers of various markets for the market type
  • percentage split of individual markets for geographical analysis

Secondary Data Sources

This research study involves the use of extensive secondary research, directories, company websites, and annual reports. It also utilizes databases, such as Hoover's, Bloomberg, Businessweek, and Factiva, to collect useful and effective information for an extensive, technical, market-oriented, and commercial study of the global market. In addition to the aforementioned data sources, the study has been undertaken using other data sources and websites, such as the ASHRAE, OCP, ISO, IEA, DOE/LBNL, CBRE, JLL, Cushman & Wakefield, LME, World Steel Association, Copper.org, PlasticsEurope, ICIS, and Argus.

Secondary research has been done in order to obtain crucial information about the industry's value chain, revenue models, the market's monetary chain, the total pool of key players, and the current and potential use cases and applications.

The key data points taken from secondary research include:

  • segmentations and percentage shares
  • data for market value
  • key industry trends of the top players in the market
  • qualitative insights into various aspects of the market, key trends, and emerging areas of innovation
  • quantitative data for mathematical and statistical calculations

Key Market Players and Competition Synopsis

Competition spans large facility-side piping suppliers, engineered polymer specialists, mechanical joining companies, and rack-level fluid-connection vendors. GF Industry and Infrastructure Flow Solutions is positioned across condenser water, facility water, technology cooling, and direct-to-chip infrastructure through polymer piping, valves, fittings, prefabrication, and LiquidCore. Victaulic competes through grooved joining, equipment modules, fire protection, and schedule-oriented mission-critical construction. Aquatherm's PP-RCT systems address corrosion resistance and lower installed weight in chilled-water and secondary cooling loops, while Viega's press and valve technologies support closed-loop cooling with reduced hot work. The wider field includes Aliaxis/IPEX, Parker Hannifin, NUPI, Aalberts, Zekelman Industries, Mueller Industries, PERMA-PIPE, REHAU, Watts, CPC, and BRUGG Pipes. Competitive advantage increasingly depends on design support, qualified material compatibility, global execution, prefabrication, installer training, and leak-risk management rather than pipe price alone.

List of key companies profiled in the market report:

  • GF Industry and Infrastructure Flow Solutions
  • Victaulic
  • Aquatherm GmbH
  • Viega
  • Aliaxis
  • Parker Hannifin
  • NUPI Industrie Italiane
  • Aalberts Integrated Piping Systems
  • Zekelman Industries
  • Mueller Industries
  • PERMA-PIPE International Holdings
  • REHAU
  • Watts Water Technologies
  • CPC/Colder Products Company
  • BRUGG Pipes

Table of Contents

Executive Summary

Scope and Definition

1 Market: Industry Outlook

  • 1.1 Trends: Current and Future Impact Assessment
    • 1.1.1 Shift from Air-Cooled Facility Design to Hybrid Cooling Loops
    • 1.1.2 Standardization of Facility Water and Technology Cooling Systems
    • 1.1.3 AI-Optimized Facilities Increasing Material Specification Complexity
  • 1.2 Supply Chain Overview
    • 1.2.1 Value Chain Analysis
  • 1.3 Regulatory Landscape/Ecosystem/Ongoing Programs
    • 1.3.1 Regulatory Landscape
    • 1.3.2 Ongoing Programs and Industry Consortia
    • 1.3.3 Framework
  • 1.4 Investment Landscape
  • 1.5 Research and Development Review
  • 1.6 Stakeholder Analysis
    • 1.6.1 Use Case: Engineered Polymer Piping from Dry Cooler to Chip
    • 1.6.2 End User and Buying Criteria
  • 1.7 Market Dynamics
    • 1.7.1 Market Drivers
      • 1.7.1.1 AI-Led Data Center Capacity Expansion
      • 1.7.1.2 Direct Liquid Cooling and High-Density Racks
      • 1.7.1.3 Need for Resilient and Faster-to-Install Mission-Critical Piping
    • 1.7.2 Market Challenges
      • 1.7.2.1 Material Compatibility and Water Chemistry Risk
      • 1.7.2.2 Skilled Labor, Codes, and Supplier Qualification
      • 1.7.2.3 Water Constraints and Sustainability Scrutiny
    • 1.7.3 Market Opportunities
      • 1.7.3.1 Chiller-to-Chip Polymer and Hybrid Networks
      • 1.7.3.2 Brownfield Liquid Cooling Retrofits
      • 1.7.3.3 Prefabricated Skids, Manifolds, and Double-Containment Systems
  • 1.8 Industry Attractiveness: Porter's Five Forces Analysis

2 Application

  • 2.1 Application Summary
  • 2.2 Data Center Piping Materials Market (by Application)
    • 2.2.1 Hyperscale
    • 2.2.2 Colocation
    • 2.2.3 Others

3 Products

  • 3.1 Product Summary
  • 3.2 Data Center Piping Materials Market (by Product)
    • 3.2.1 Facility HVAC/Chilled-Water Piping
      • 3.2.1.1 Copper
      • 3.2.1.2 Carbon Steel/Galvanized Steel
      • 3.2.1.3 HDPE
      • 3.2.1.4 Others
    • 3.2.2 Liquid Cooling Piping
      • 3.2.2.1 PVC/CPVC
      • 3.2.2.2 HDPE
      • 3.2.2.3 PTFE/Fluoropolymers
      • 3.2.2.4 Polyamide
      • 3.2.2.5 PE-Based Flexible Tubing
      • 3.2.2.6 Others
  • 3.3 Data Center Piping Materials Market (by Pipe Type)
    • 3.3.1 Rigid
    • 3.3.2 Flexible
    • 3.3.3 Others (Pre-Insulated and Double-Containment)

4 Region

  • 4.1 Regional Summary
  • 4.2 North America
    • 4.2.1 Regional Overview
      • 4.2.1.1 Driving Factors for Market Growth
      • 4.2.1.2 Factors Challenging the Market
    • 4.2.2 Application
    • 4.2.3 Product
    • 4.2.4 North America (by Country)
      • 4.2.4.1 U.S.
        • 4.2.4.1.1 Application
        • 4.2.4.1.2 Product
      • 4.2.4.2 Canada
        • 4.2.4.2.1 Application
        • 4.2.4.2.2 Product
      • 4.2.4.3 Mexico
        • 4.2.4.3.1 Application
        • 4.2.4.3.2 Product
  • 4.3 Europe
    • 4.3.1 Regional Overview
      • 4.3.1.1 Driving Factors for Market Growth
      • 4.3.1.2 Factors Challenging the Market
    • 4.3.2 Application
    • 4.3.3 Product
    • 4.3.4 Europe (by Country)
      • 4.3.4.1 Germany
        • 4.3.4.1.1 Application
        • 4.3.4.1.2 Product
      • 4.3.4.2 France
        • 4.3.4.2.1 Application
        • 4.3.4.2.2 Product
      • 4.3.4.3 U.K.
        • 4.3.4.3.1 Application
        • 4.3.4.3.2 Product
      • 4.3.4.4 Italy
        • 4.3.4.4.1 Application
        • 4.3.4.4.2 Product
      • 4.3.4.5 Netherlands
        • 4.3.4.5.1 Application
        • 4.3.4.5.2 Product
      • 4.3.4.6 Ireland
        • 4.3.4.6.1 Application
        • 4.3.4.6.2 Product
      • 4.3.4.7 Rest-of-Europe
        • 4.3.4.7.1 Application
        • 4.3.4.7.2 Product
  • 4.4 Asia-Pacific
    • 4.4.1 Regional Overview
      • 4.4.1.1 Driving Factors for Market Growth
      • 4.4.1.2 Factors Challenging the Market
    • 4.4.2 Application
    • 4.4.3 Product
    • 4.4.4 Asia-Pacific (by Country)
      • 4.4.4.1 China
        • 4.4.4.1.1 Application
        • 4.4.4.1.2 Product
      • 4.4.4.2 Japan
        • 4.4.4.2.1 Application
        • 4.4.4.2.2 Product
      • 4.4.4.3 South Korea
        • 4.4.4.3.1 Application
        • 4.4.4.3.2 Product
      • 4.4.4.4 Australia
        • 4.4.4.4.1 Application
        • 4.4.4.4.2 Product
      • 4.4.4.5 India
        • 4.4.4.5.1 Application
        • 4.4.4.5.2 Product
      • 4.4.4.6 Rest-of-Asia-Pacific
        • 4.4.4.6.1 Application
        • 4.4.4.6.2 Product
  • 4.5 Rest-of-the-World
    • 4.5.1 Regional Overview
      • 4.5.1.1 Driving Factors for Market Growth
      • 4.5.1.2 Factors Challenging the Market
    • 4.5.2 Application
    • 4.5.3 Product

5 Markets - Competitive Benchmarking & Company Profiles

  • 5.1 Next Frontiers
  • 5.2 Strategic Initiatives
  • 5.3 Market Share Analysis
  • 5.4 Company Profiles
    • 5.4.1 GF Industry and Infrastructure Flow Solutions
      • 5.4.1.1 Overview
      • 5.4.1.2 Top Products/Product Portfolio
      • 5.4.1.3 Top Competitors
      • 5.4.1.4 Target Customers
      • 5.4.1.5 Key Personnel
      • 5.4.1.6 Analyst View
      • 5.4.1.7 Market Share, 2025
    • 5.4.2 Victaulic
      • 5.4.2.1 Overview
      • 5.4.2.2 Top Products/Product Portfolio
      • 5.4.2.3 Top Competitors
      • 5.4.2.4 Target Customers
      • 5.4.2.5 Key Personnel
      • 5.4.2.6 Analyst View
      • 5.4.2.7 Market Share, 2025
    • 5.4.3 Aquatherm GmbH
      • 5.4.3.1 Overview
      • 5.4.3.2 Top Products/Product Portfolio
      • 5.4.3.3 Top Competitors
      • 5.4.3.4 Target Customers
      • 5.4.3.5 Key Personnel
      • 5.4.3.6 Analyst View
      • 5.4.3.7 Market Share, 2025
    • 5.4.4 Viega
      • 5.4.4.1 Overview
      • 5.4.4.2 Top Products/Product Portfolio
      • 5.4.4.3 Top Competitors
      • 5.4.4.4 Target Customers
      • 5.4.4.5 Key Personnel
      • 5.4.4.6 Analyst View
      • 5.4.4.7 Market Share, 2025
    • 5.4.5 Aliaxis
      • 5.4.5.1 Overview
      • 5.4.5.2 Top Products/Product Portfolio
      • 5.4.5.3 Top Competitors
      • 5.4.5.4 Target Customers
      • 5.4.5.5 Key Personnel
      • 5.4.5.6 Analyst View
      • 5.4.5.7 Market Share, 2025
    • 5.4.6 Parker Hannifin
      • 5.4.6.1 Overview
      • 5.4.6.2 Top Products/Product Portfolio
      • 5.4.6.3 Top Competitors
      • 5.4.6.4 Target Customers
      • 5.4.6.5 Key Personnel
      • 5.4.6.6 Analyst View
      • 5.4.6.7 Market Share, 2025
    • 5.4.7 NUPI Industrie Italiane
      • 5.4.7.1 Overview
      • 5.4.7.2 Top Products/Product Portfolio
      • 5.4.7.3 Top Competitors
      • 5.4.7.4 Target Customers
      • 5.4.7.5 Key Personnel
      • 5.4.7.6 Analyst View
      • 5.4.7.7 Market Share, 2025
    • 5.4.8 Aalberts Integrated Piping Systems
      • 5.4.8.1 Overview
      • 5.4.8.2 Top Products/Product Portfolio
      • 5.4.8.3 Top Competitors
      • 5.4.8.4 Target Customers
      • 5.4.8.5 Key Personnel
      • 5.4.8.6 Analyst View
      • 5.4.8.7 Market Share, 2025
    • 5.4.9 Zekelman Industries
      • 5.4.9.1 Overview
      • 5.4.9.2 Top Products/Product Portfolio
      • 5.4.9.3 Top Competitors
      • 5.4.9.4 Target Customers
      • 5.4.9.5 Key Personnel
      • 5.4.9.6 Analyst View
      • 5.4.9.7 Market Share, 2025
    • 5.4.10 Mueller Industries
      • 5.4.10.1 Overview
      • 5.4.10.2 Top Products/Product Portfolio
      • 5.4.10.3 Top Competitors
      • 5.4.10.4 Target Customers
      • 5.4.10.5 Key Personnel
      • 5.4.10.6 Analyst View
      • 5.4.10.7 Market Share, 2025
    • 5.4.11 PERMA-PIPE International Holdings
      • 5.4.11.1 Overview
      • 5.4.11.2 Top Products/Product Portfolio
      • 5.4.11.3 Top Competitors
      • 5.4.11.4 Target Customers
      • 5.4.11.5 Key Personnel
      • 5.4.11.6 Analyst View
      • 5.4.11.7 Market Share, 2025
    • 5.4.12 REHAU
      • 5.4.12.1 Overview
      • 5.4.12.2 Top Products/Product Portfolio
      • 5.4.12.3 Top Competitors
      • 5.4.12.4 Target Customers
      • 5.4.12.5 Key Personnel
      • 5.4.12.6 Analyst View
      • 5.4.12.7 Market Share, 2025
    • 5.4.13 Watts Water Technologies
      • 5.4.13.1 Overview
      • 5.4.13.2 Top Products/Product Portfolio
      • 5.4.13.3 Top Competitors
      • 5.4.13.4 Target Customers
      • 5.4.13.5 Key Personnel
      • 5.4.13.6 Analyst View
      • 5.4.13.7 Market Share, 2025
    • 5.4.14 CPC/Colder Products Company
      • 5.4.14.1 Overview
      • 5.4.14.2 Top Products/Product Portfolio
      • 5.4.14.3 Top Competitors
      • 5.4.14.4 Target Customers
      • 5.4.14.5 Key Personnel
      • 5.4.14.6 Analyst View
      • 5.4.14.7 Market Share, 2025
    • 5.4.15 BRUGG Pipes
      • 5.4.15.1 Overview
      • 5.4.15.2 Top Products/Product Portfolio
      • 5.4.15.3 Top Competitors
      • 5.4.15.4 Target Customers
      • 5.4.15.5 Key Personnel
      • 5.4.15.6 Analyst View
      • 5.4.15.7 Market Share, 2025
  • 5.5 List of Other Companies

6 Research Methodology

  • 6.1 Data Sources
    • 6.1.1 Primary Data Sources
    • 6.1.2 Secondary Data Sources
    • 6.1.3 Data Triangulation
  • 6.2 Market Estimation and Forecast

List of Figures

  • Figure 1: Global Data Center Piping Materials Market (by Scenario), $Million, 2026, 2030, and 2035
  • Figure 2: Global Data Center Piping Materials Market, 2025 and 2035
  • Figure 3: Top 9 Countries, Global Data Center Piping Materials Market, $Million, 2025
  • Figure 4: Global Market Snapshot, 2025
  • Figure 5: Global Data Center Piping Materials Market, $Million, 2025 and 2035
  • Figure 6: Global Data Center Piping Materials Market (by Application), $Million, 2025, 2030, and 2035
  • Figure 7: Global Data Center Piping Materials Market (by Product), $Million, 2025, 2030, and 2035
  • Figure 8: Global Data Center Piping Materials Market (by Pipe Type), $Million, 2025, 2030, and 2035
  • Figure 9: Data Center Piping Materials Market Segmentation
  • Figure 10: Value Chain Analysis
  • Figure 11: Patent Filing Trend, 2022-2025, by Country
  • Figure 12: Global Data Center Piping Materials Market (by Application), Value, $Million, 2025, 2030, and 2035
  • Figure 13: Global Data Center Piping Materials Market (Hyperscale), Value, $Million, 2025-2035
  • Figure 14: Global Data Center Piping Materials Market (Colocation), Value, $Million, 2025-2035
  • Figure 15: Global Data Center Piping Materials Market (Others), Value, $Million, 2025-2035
  • Figure 16: Global Data Center Piping Materials Market (by Product), Value, $Million, 2025, 2030, and 2035
  • Figure 17: Global Data Center Piping Materials Market (by Pipe Type), Value, $Million, 2025, 2030, and 2035
  • Figure 18: Global Data Center Piping Materials Market (Facility HVAC/Chilled-Water Piping), Value, $Million, 2025-2035
  • Figure 19: Global Data Center Piping Materials Market (Copper), Value, $Million, 2025-2035
  • Figure 20: Global Data Center Piping Materials Market (Carbon Steel/Galvanized Steel), Value, $Million, 2025-2035
  • Figure 21: Global Data Center Piping Materials Market (HDPE), Value, $Million, 2025-2035
  • Figure 22: Global Data Center Piping Materials Market (Others), Value, $Million, 2025-2035
  • Figure 23: Global Data Center Piping Materials Market (Liquid Cooling Piping), Value, $Million, 2025-2035
  • Figure 24: Global Data Center Piping Materials Market (PVC/CPVC), Value, $Million, 2025-2035
  • Figure 25: Global Data Center Piping Materials Market (HDPE), Value, $Million, 2025-2035
  • Figure 26: Global Data Center Piping Materials Market (PTFE/Fluoropolymers), Value, $Million, 2025-2035
  • Figure 27: Global Data Center Piping Materials Market (Polyamide), Value, $Million, 2025-2035
  • Figure 28: Global Data Center Piping Materials Market (PE-Based Flexible Tubing), Value, $Million, 2025-2035
  • Figure 29: Global Data Center Piping Materials Market (Others), Value, $Million, 2025-2035
  • Figure 30: Global Data Center Piping Materials Market (Rigid), Value, $Million, 2025-2035
  • Figure 31: Global Data Center Piping Materials Market (Flexible), Value, $Million, 2025-2035
  • Figure 32: Global Data Center Piping Materials Market (Others (Pre-Insulated and Double-Containment)), Value, $Million, 2025-2035
  • Figure 33: U.S. Data Center Piping Materials Market, $Million, 2025-2035
  • Figure 34: Canada Data Center Piping Materials Market, $Million, 2025-2035
  • Figure 35: Mexico Data Center Piping Materials Market, $Million, 2025-2035
  • Figure 36: Germany Data Center Piping Materials Market, $Million, 2025-2035
  • Figure 37: France Data Center Piping Materials Market, $Million, 2025-2035
  • Figure 38: U.K. Data Center Piping Materials Market, $Million, 2025-2035
  • Figure 39: Italy Data Center Piping Materials Market, $Million, 2025-2035
  • Figure 40: Netherlands Data Center Piping Materials Market, $Million, 2025-2035
  • Figure 41: Ireland Data Center Piping Materials Market, $Million, 2025-2035
  • Figure 42: Rest-of-Europe Data Center Piping Materials Market, $Million, 2025-2035
  • Figure 43: China Data Center Piping Materials Market, $Million, 2025-2035
  • Figure 44: Japan Data Center Piping Materials Market, $Million, 2025-2035
  • Figure 45: South Korea Data Center Piping Materials Market, $Million, 2025-2035
  • Figure 46: Australia Data Center Piping Materials Market, $Million, 2025-2035
  • Figure 47: India Data Center Piping Materials Market, $Million, 2025-2035
  • Figure 48: Rest-of-Asia-Pacific Data Center Piping Materials Market, $Million, 2025-2035
  • Figure 49: Strategic Initiatives (Partnerships, Acquisitions, and Product Launches), 2022-2026
  • Figure 50: Data Triangulation
  • Figure 51: Top-Down and Bottom-Up Approach
  • Figure 52: Assumptions and Limitations

List of Tables

  • Table 1: Market Snapshot
  • Table 2: Competitive Landscape Snapshot
  • Table 3: Trends: Current and Future Impact Assessment
  • Table 4: Supply Chain Overview
  • Table 5: Standards and Ecosystem Landscape
  • Table 6: Framework
  • Table 7: Investment and Project Signals Relevant to Data Center Piping Materials
  • Table 8: R&D Area and its Importance
  • Table 9: Research and Development Review
  • Table 10: Research and Development by Companies
  • Table 11: End User and Buying Criteria
  • Table 12: Drivers, Challenges, and Opportunities, 2025-2035
  • Table 13: Porter's Five Forces Analysis
  • Table 14: Global Data Center Piping Materials Market (by Region), $Million, 2025-2035
  • Table 15: Global Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 16: Global Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 17: Global Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 18: North America Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 19: North America Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 20: North America Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 21: U.S. Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 22: U.S. Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 23: U.S. Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 24: Canada Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 25: Canada Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 26: Canada Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 27: Mexico Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 28: Mexico Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 29: Mexico Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 30: Europe Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 31: Europe Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 32: Europe Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 33: Germany Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 34: Germany Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 35: Germany Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 36: France Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 37: France Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 38: France Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 39: U.K. Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 40: U.K. Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 41: U.K. Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 42: Italy Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 43: Italy Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 44: Italy Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 45: Netherlands Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 46: Netherlands Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 47: Netherlands Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 48: Ireland Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 49: Ireland Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 50: Ireland Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 51: Rest-of-Europe Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 52: Rest-of-Europe Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 53: Rest-of-Europe Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 54: Asia-Pacific Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 55: Asia-Pacific Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 56: Asia-Pacific Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 57: China Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 58: China Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 59: China Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 60: Japan Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 61: Japan Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 62: Japan Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 63: South Korea Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 64: South Korea Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 65: South Korea Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 66: Australia Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 67: Australia Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 68: Australia Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 69: India Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 70: India Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 71: India Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 72: Rest-of-Asia-Pacific Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 73: Rest-of-Asia-Pacific Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 74: Rest-of-Asia-Pacific Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 75: Rest-of-the-World Data Center Piping Materials Market (by Application), $Million, 2025-2035
  • Table 76: Rest-of-the-World Data Center Piping Materials Market (by Product), $Million, 2025-2035
  • Table 77: Rest-of-the-World Data Center Piping Materials Market (by Pipe Type), $Million, 2025-2035
  • Table 78: Companies and their Key Developments
  • Table 79: Market Share Analysis of Key Players
  • Table 80: List of Other Companies and their Headquarters