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市場調查報告書
商品編碼
1403429
到 2030 年黏結磁體市場預測:按產品、製程、應用、最終用戶和地區進行的全球分析Bonded Magnet Market Forecasts to 2030 - Global Analysis By Product (Ferrite, Rare Earth Magnets, Hybrid and Other Products), Process, Application, End User and By Geography |
根據Stratistics MRC預測,2023年全球黏結磁體市場規模將達24億美元,預計2030年將達到36億美元,預測期內複合年成長率為6.1%。
黏結磁鐵是一種將含有釹或鐵氧體粉末的磁性顆粒與聚合物黏合劑結合而製成的磁鐵。將此混合物模製或壓縮成所需的形狀,然後加熱以形成固體磁性材料。透過將磁性顆粒黏合在一起的粘合劑,可以實現傳統磁鐵製造技術不可能實現的複雜形狀和尺寸。這些磁鐵具有高度耐腐蝕和適應性,可滿足汽車、電子和醫療保健行業的特定需求。
根據全球風力發電理事會的數據,全球擁有 743GW 的風電容量,這可能會在全球整體減少約 11 億噸二氧化碳排放。
汽車領域需求不斷成長
黏結磁鐵廣泛應用於汽車行業的各種應用,例如馬達、感測器和致動器。在電動車(EV) 馬達和感測器中,它們的多功能性提高了效率並促進組件合理化和小型化。此外,其經濟性和設計彈性為製造商提供了創造性的選擇,以滿足汽車行業電動驅動不斷變化的需求。因此,這些方面正在推動市場擴張。
有限的溫度穩定性
黏結磁體在高溫下磁性能會變差,因此不建議在高溫下使用。這些磁鐵在高溫下會失去一些磁性,從而降低其功能,並可能永久失去磁化強度。這些磁鐵的結構完整性可能會因將它們粘合在一起的聚合物和樹脂的劣化而受到損害。這些點都阻礙了市場的擴張。
環境法規
日益嚴格的環境法規正在增加對黏結磁體的需求。黏結磁鐵的高磁性和稀土元素使用量的減少使得黏結磁鐵成為永續的替代品。生產中使用可回收材料,因此對環境的影響最小。支持節能技術的法規以及對環境永續性的擔憂鼓勵在各種節能應用中使用黏結磁體。
易於腐蝕
有些黏結磁鐵容易受到腐蝕。由於黏結磁鐵由聚合物和磁性顆粒組成,因此它們在潮濕或磨蝕區域容易劣化和氧化。這一弱點會降低使用壽命和磁性性能,使其在需要高耐用性的環境中不太有用。這些問題阻礙了市場擴張。
這場流行病擾亂了全球供應鏈,影響了生產黏結磁體所需的原料和零件的供應。運輸和物流限制導致延誤和短缺。社交距離要求和封鎖措施影響了製造設施,導致產能減少和暫時關閉。這種中斷影響了黏結磁體的整體生產。
預計射出成型產業在預測期內將是最大的
預計射出成型產業在預測期內將是最大的產業。黏結磁鐵的射出成型可以精確成型複雜的形狀,從而實現複雜的設計和嚴格的公差。可以進行大規模生產,從而減少製造時間和成本。此工藝可提供一致的磁性和可靠的性能。此外,結合多種材料的能力使得磁鐵的特性可以針對特定應用進行客製化。
預計感測器產業在預測期內複合年成長率最高。
預計感測器產業在預測期內複合年成長率最高。磁鐵具有高磁強度和穩定性,可實現精確可靠的感測能力。它非常耐用,即使在惡劣的環境下也能長時間使用。它可以適應不同的形狀和尺寸,使其適用於各種感測器應用。整體而言,黏結磁體感測器具有強大的性能、成本效益和多功能的感測技術。
由於汽車、電子和醫療保健等行業對各種應用的需求不斷增加,預計北美在預測期內將佔據最大的市場佔有率。技術進步、對節能產品的需求以及再生能源來源的推廣等因素正在促進該地區的市場成長。此外,它們還受到促進使用永續和環保材料的環境法規和舉措的影響。
由於工業化程度提高、技術進步以及汽車、電子和能源等行業需求增加等多種因素,亞太地區預計在預測期內將維持最高複合年成長率。隨著對風能等再生能源來源的日益重視以及電動車的日益普及,這些產業對黏結磁體的需求預計將進一步推動該地區的市場。
According to Stratistics MRC, the Global Bonded Magnet Market is accounted for $2.4 billion in 2023 and is expected to reach $3.6 billion by 2030 growing at a CAGR of 6.1% during the forecast period. A bonded magnet is a kind of magnet created by combining a polymer binder with magnetic granules, including neodymium or ferrite powders. After shaping or compressing this mixture into the required shape, it is heated to produce a solid, magnetic substance. Complex forms and sizes that would not be possible with conventional magnet production techniques are made possible by the binding agent, which aids in holding the magnetic particles together. These magnets are corrosion resistant, adaptable, and may be made to fit specific needs in the automotive, electronics, and healthcare sectors.
According to the Global Wind Energy Council, there is 743 GW of wind power capacity around the world, which is likely to result in the prevention of close to 1.1 Bn tons of CO2 emissions globally.
Bonded magnets are widely used in the automobile industry for a variety of purposes, including motors, sensors, and actuators. Their versatility in electric vehicle (EV) motors and sensors provides increased efficiency, facilitating component rationalization and downsizing. Furthermore, their affordability and design flexibility provide manufacturers creative options that meet the changing demands of the automobile industry's electrification push. Thus, these aspects are driving the market's expansion.
High temperatures can cause bonded magnets to lose their magnetic characteristics, hence they are not recommended for use in high-temperature situations. These magnets lose some of their magnetic characteristics at high temperatures, which might cause them to function worse and perhaps lose their magnetization permanently. These magnets' structural integrity may be compromised by degradation of the polymer or resin that binds them. These aspects are preventing the market from expanding.
Increased environmental laws are driving more demand for bonded magnets. With their high magnetic qualities and reduced requirement for rare earth elements, these magnets provide a sustainable substitute. Because recyclable materials are used in their manufacture, the environmental effect is minimized. The usage of bonded magnets in different energy-saving applications is encouraged by rules supporting energy-efficient technology and an increased focus on environmental sustainability.
Some bonded magnets are more prone to corrosion, especially in high-moisture or chemically exposed situations. Because they are composed of a polymer and magnetic granules, they are easily degraded and oxidized in humid or abrasive settings. Due to this weakness, they are less useful in environments where great endurance is required because of their reduced lifetime and magnetic performance. The market's expansion is being hampered by these issues.
The pandemic disrupted global supply chains, affecting the availability of raw materials and components necessary for bonded magnet production. Restrictions on transportation and logistics created delays and shortages. Social distancing requirements and lockdown measures affected manufacturing facilities, leading to reduced production capacity or temporary closures. This disruption impacted the overall output of bonded magnets.
The injection molding segment is expected to be the largest during the forecast period. Bonded magnet injection molding offers precise shaping of complex geometries, allowing intricate designs and tight tolerances. It enables high-volume production, reducing manufacturing time and cost. The process facilitates consistent magnetic properties, enhancing performance reliability. Additionally, it permits the incorporation of various materials, leading to customized magnet properties for specific applications.
The sensors segment is expected to have the highest CAGR during the forecast period. They possess high magnetic strength and stability, enabling precise and reliable sensing capabilities. Their durability allows for extended use in harsh environments. Their adaptability to various shapes and sizes makes them versatile for different sensor applications. Overall, bonded magnet sensors provide robust performance, cost efficiency, and versatility in sensing technology.
North America is projected to hold the largest market share during the forecast period due to the increased demand for various applications across industries like automotive, electronics, and healthcare. In this region, factors like technological advancements, the need for energy-efficient products, and the push for renewable energy sources have contributed to the growth of the market. Moreover, the market is influenced by environmental regulations and initiatives promoting the use of sustainable and eco-friendly materials.
Asia Pacific is projected to hold the highest CAGR over the forecast period due to various factors such as increasing industrialization, technological advancements, and rising demand in sectors like automotive, electronics, and energy. With the growing emphasis on renewable energy sources like wind power and the increasing adoption of electric vehicles, the demand for bonded magnets in these sectors is expected to further boost the market in the region.
Some of the key players in Bonded Magnet market include Dura Magnetics, Inc., Super Magnet Co., Ltd., Adams Magnetic Products, SDM Magnetics Co., Ltd., Ningbo Yunsheng Co. Ltd., Advanced Technology Materials Co. Ltd., MP Material, MMC Magnetics Corp, Arnold Magnetic Technologies, Alliance LLC, Dexter Magnetic Holdings, LLC , TDK Corporation, Stanford Magnets and Allstar Magnetics.
In April 2023, Arnold Magnetic Technologies Corporation and leading global manufacturer of high-performance magnets and more for mission critical applications, announced its partnership with Cyclic Materials, a pioneer in developing more sustainable domestic supply chains for rare earth elements.
In March 2022, Dexter Magnetic Holdings, LLC has announced the acquisition of Torrance, California-based Magnetic Component Engineering, LLC ("MCE"). The transaction brings together two of the leading designers and manufacturers of permanent magnets and magnetic assemblies in North America.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.