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市场调查报告书
商品编码
1336061
模塑料市场:按模塑类型、按化合物类型、按最终用户、按地区、机会、预测,2016-2030 年Molding Compound Market Assessment by Molding Type By Compound Type, By End-user By Region, Opportunities, and Forecast, 2016-2030F |
2022年模塑料市场规模为121亿美元。 预计到 2030 年,该市场将达到 195.8 亿美元,2023-2030 年预测期间复合年增长率为 6.2%。 模塑料广泛用于薄膜、片材、管材、棒材、管材、型材的生产,并具有众多应用。 模塑料广泛用于薄膜和包装材料的生产,随着人口的增长,各种汽车用品、半导体行业和运输行业的需求不断增加。 随着对酚醛树脂和环氧树脂等有机填料的需求不断增加,最终用途行业的模塑料预计将在预测期内获得显着的增长。
未来十年,包括汽车和航空航天领域在内的各种最终用途行业对模塑料的需求将会增加。 此外,扩大耐热和阻燃的应用范围是预计未来几年推动全球市场收入增长的关键因素。 模塑料的优异物理性能,如耐热性、阻燃性、高介电强度和耐腐蚀性,预计将在预测期内推动市场需求。
各种电气、电子和家用电器产品均使用 SMC/BMC 製造。 这些产品包括保险丝、开关设备、电视、冰箱、咖啡机、烤麵包机、熨斗、空调等。 城市化进程的不断加快和人口的显着增长预计将在预测期内推动市场需求。 此外,中国政府正在投资国内电子行业,预计该行业的 SMC/BMC 需求将在预测期内增加。
中国是全球最大的製造中心,生产全球 36% 的电子产品,包括智能手机、计算机、云服务器和通信基础设施。 此外,中国是半导体电子设备的第二大最终用途市场,仅次于美国。 因此,由于这些因素,模塑料市场预计在未来几年将出现巨大的需求。
这个行业必须处理几个问题,包括原材料运输、劳动力短缺和供应链问题。 此外,由于供应链中断和运营限制,多个国家的生产基地被关闭。 例如,中国暂时停止了全球第三繁忙港口宁波和舟山的码头运营。 供应链中断将严重影响聚酯树脂、玻璃纤维增□□强材料和填料等原材料的进出口。 在 COVID-19 期间,多家片状模塑料製造商遇到了流动性、信贷恢復和利率问题。 此外,流动性问题和缺乏足够的资金,特别是在发展中国家,威胁到了疫情后该行业的生存,导致一些组织破产。 然而,由于需求快速增长和经济增长,对片材成型化合物的需求正在增加。
本报告考察了全球模塑料市场,并提供了市场概述,包括按模塑料类型、化合物类型、最终用户、地区和进入市场的公司概况划分的趋势。Masu。
Molding Compound Market size was valued at USD 12.1 billion in 2022, expected to reach USD 19.58 billion in 2030 with a CAGR of 6.2% for the forecast period between 2023 and 2030. Molding compounds are extensively used in producing films, sheets, pipes, rods, tubes, and profiles for numerous applications. Owing to the widespread use of molding compounds in the production of films and wraps, coupled with the increase in population, has increased the demand for a variety of automotive goods, semiconductor sectors, and the transportation industry. With the rise in demand for organic fillers such as phenolic and epoxy, molding compounds in the end-use industries are expected to gain significant traction during the forecast period.
Over the next ten years, the demand for molding compounds will rise across various end-use industries, including the automotive and aerospace sectors. In addition, expanding the application scope for heat and flame resistance is a crucial element anticipated to boost the global market revenue growth over the coming years. The superior physical properties of molding compounds, such as heat resistance, flame resistance, high dielectric strength, and corrosion resistance, are anticipated to spur the demand for the market over the forecast period.
Various electrical, electronic, and home appliance goods are produced using SMC/BMC. These goods include fuses, switchgear, televisions, refrigerators, coffee makers, toasters, irons, and air conditioners. Over the projection period, increasing urbanization and strong population growth will likely fuel market demand. Additionally, the Chinese government has invested in the nation's electronics industry, which is anticipated to increase the demand for SMC/BMC from the sector throughout the projection period.
China is the world's largest manufacturing hub, producing 36% of the world's electronics, including smartphones, computers, cloud servers, and telecom infrastructure. In addition, China is the second-largest final consumption market, after the United States, for electronic devices embedded with semiconductors. Thus, these factors are expected to project a significant demand for the molding compound market in the coming years.
Sheet molding compounds are used by Original Equipment Manufacturers (OEM) of automobiles to cut weight and fuel consumption. Compared to aluminum sheets, sheet molding materials are lightweight and robustly resistant. Automobile manufacturers utilize SMC compounds to protect against dents, impact dings, and corrosion compared to conventional steel decks. The number of motor cars manufactured globally in 2021 was USD 79.1 million, up 1.3% from 2020, according to the European Automobile Manufacturers' Association (ACEA). Compounds for sheet molding are being purchased to make battery casings for electric vehicles (EV). These elements have a substantial impact on the market for sheet molding compound growth. In addition, several top automakers emphasize using eco-friendly materials and bio-based sheet composition to create prototype cars.
During the projected period, the market is expected to rise due to rising demand in the construction sector. A wide range of activities are included in the construction sector, including building and infrastructure construction, product manufacturing and supply, as well as repair, maintenance, and disposal. Plastics, paints, varnishes, floors, primers and sealants, adhesives, and other building materials and components are all made with specialty resin. Owing to their exceptional resistance towards blistering, stains, cracks, chemicals, and harsh temperatures these specialty resins are often used across the commercial and residential buildings, marine industry, automotive, and wastewater treatment facilities among other places. They provide outstanding adhesion, high anti-corrosion, and low volatile organic compound performance.
The sector has had to deal with several issues, including the transportation of raw materials, a labor shortage, and supply chain issues. Additionally, production locations throughout several nations have closed due to supply chain disruptions and operational constraints. For instance, China briefly suspended terminal operations at the third busiest port in the world, Ningbo-Zhoushan. Supply chain interruptions significantly influence the import and export of raw materials such as polyester resin, glass fiber reinforcement, and filler. During COVID-19, several sheet molding compound producers experienced problems with liquidity, credit recovery, and interest rates. Additionally, liquidity problems and a lack of adequate finance, particularly in developing nations, threatened the industry's viability after post-covid, and several organizations were forced into bankruptcy. The demand for sheet molding compounds is increasing, though, as demand and economic growth are accelerating swiftly.
Impacts on semiconductor output in the short term are anticipated to be moderate. However, chipmakers and consumers will be impacted by the war's implications on raw material pricing, supply-chain restrictions, and general uncertainty. The war constantly impacted the semiconductor business, which is expected to impact the expanding chip utilization sector. The chip demand and supply moved at vastly divergent rates due to root problems that are challenging to solve. Demand changes quickly and frequently, whether it is in terms of volume or chip designs.
However, as it takes time to adapt in the manufacturing lines or increase capacity, efforts to adjust supply almost invariably lag changes in demand. For instance, the number of chips used in cars scaled by 40% on average between 2019 and 2021, and this trend is expected to continue with the growth of electric vehicles. Thus, the war between Russia and Ukraine majorly impacted the electronics and automotive industry and its application of molding compounds.
The molding compound market is highly competitive, with a few major players dominating the market. These players are Toray Advanced Composites, Huntsman International LLC, Showa Denko Materials Co. Ltd, KYOCERA Corporation, and BASF SE. These companies have a strong brand presence, a vast distribution network, and a focus on innovation. They are constantly investing in research and development to develop new technologies and products that meet the needs of their customers. The global molding compound market is expected to grow, driven by the increasing demand for passenger cars, light commercial vehicles, and heavy-duty vehicles.
For instance, in August 2022, Ford Motors and John Deer collaborated to develop the gator UTV concept-the bio-based sheet molding compound used to make sustainable roofing components. Over the projection period, several product improvements are anticipated to fuel the market expansion.
All segments will be provided for all regions and countries covered
Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work