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市场调查报告书
商品编码
1498565
欧洲热成型塑胶板材市场规模和预测、区域份额、趋势和成长机会分析报告范围:按类型、热成型类型、应用和国家/地区Europe Plastic Sheets for Thermoforming Market Size and Forecast, Regional Share, Trend, and Growth Opportunity Analysis Report Coverage: By Type, Thermoforming Type, Application, and Country |
欧洲热成型塑胶片材市场预计将从2023年的27.1亿美元成长到2031年的41.1亿美元。
用于热成型的塑胶片材是广泛用于各行业的多功能材料,透过热工艺成型为所需的形状。聚烯烃,包括聚乙烯和聚丙烯,具有出色的柔韧性、抗衝击性和透明度,使其成为食品容器、泡罩包装和一次性杯子等包装应用的理想选择。 ABS 塑胶板材以其卓越的强度、刚性和耐热性而闻名,适用于汽车零件、电子产品外壳和消费品。
热成型製程具有多种优势,包括成本效益、设计灵活性和快速生产能力,使其适合各行业的广泛应用。推动热成型塑胶片材需求的主要行业之一是医疗保健。医疗保健产业将热成型塑胶零件用于医疗包装、一次性医疗设备、设备外壳和医疗设备组件。由聚烯烃和 ABS 製成的塑胶片材具有生物相容性、可灭菌性和耐化学性,使其成为卫生和安全至关重要的医疗应用的理想选择。热成型製程可以生产具有严格公差和法规遵循的医疗级组件,从而推动了塑胶板材在医疗保健行业的采用。
依热成型类型,欧洲热成型市场塑胶片材分为真空成型、压力成型、双片成型等。到 2023 年,真空成型细分市场将占据重要的市场份额,预计将成为预测期内成长最快的细分市场。在真空成型过程中,利用热和压力将塑胶片材拉製成最终产品结构。加热后的塑胶片被放置在模具上,并使用真空将加热的塑胶设计成所需的形状。真空成型是所有热成型製程中广泛使用的工艺,因为它简单且价格低廉。真空成型在包装材料、托盘、展示柜和汽车内装零件等多种产品的生产中已被广泛应用。例如,真空成型用于製药业泡罩包装的製造,提供保护性且视觉上吸引人的外壳。
压力成型是一种热成型工艺,它施加额外的压力以形成真空。加热后,塑胶片被强制塑造成模具的形状,形成纹理表面、底切和尖角,这是真空成型过程难以实现的。在压力成型过程中,施加的压力是真空成型的两到四倍,从而获得耐用且均匀的热成型产品。压力成型最适合需要复杂风格和美感品质的产品。压力成型的主要应用包括购买点展示架、高品质零售展示柜和消费性电子产品等产品的製造。
欧洲一直处于永续发展倡议的前沿,欧盟实施了减少塑胶废物和促进循环经济的雄心勃勃的目标。因此,人们越来越重视将回收材料纳入製造流程(包括热成型),以解决环境问题并满足监管要求。再生塑胶片材具有多种优势,符合欧洲的永续发展目标。透过利用再生塑料,製造商可以减少有限资源的消耗,降低碳排放,并减少对化石燃料的依赖。回收塑胶废弃物有助于将材料从垃圾掩埋场转移并减少污染,有助于打造更清洁、更永续的环境。
消费者越来越多地寻求可持续的替代品,并愿意支持优先考虑环境责任的品牌。由回收塑胶片材製成的热成型产品可以作为环保产品进行销售,吸引具有生态意识的消费者并提高品牌声誉。随着永续性成为市场的关键差异化因素,製造商面临将回收材料融入其产品以保持竞争力的压力。因此,消费者意识的增强和对环保产品的需求正在推动再生塑胶板材在欧洲的采用。
BEN Kunststoffe Vertriebs GmbH、Senoplast Klepsch & Co GmbH、Ondaplast Spa、Sky-light AS、PAR Group Ltd、MITRAS Materials GmbH、Nizza Plastic Co Ltd、NUDEC SA、Bay Plastics Ltd 和 LADA-LIST LLC 是领先的参与者在欧洲热成型塑胶片材市场。这些公司正在透过併购和产品发布来扩大其地理影响力和消费者基础。
欧洲热成型塑胶板材的整体市场规模是透过主要和次要来源得出的。为了开始研究过程,我们利用内部和外部来源进行了详尽的次要研究,以获得与市场相关的定性和定量资讯。此外,我们还与业界参与者进行了多次初步访谈,以验证资料并获得更多分析见解。该流程的参与者包括副总裁、业务开发经理、市场情报经理和国家销售经理等行业专家,以及专门研究欧洲热成型塑胶板材市场的外部顾问,包括估值专家、研究分析师和关键意见领袖。
Europe plastic sheets for thermoforming market is expected to grow from US$ 2.71 billion in 2023 to US$ 4.11 billion by 2031. It is expected to grow at a CAGR of 5.3% from 2023 to 2031.
Plastic sheets for thermoforming are versatile materials extensively used across various industries for shaping into desired forms through heat-based processes. Polyolefins, including polyethylene and polypropylene, offer excellent flexibility, impact resistance, and transparency, making them ideal for packaging applications such as food containers, blister packs, and disposable cups. ABS plastic sheets are renowned for their exceptional strength, rigidity, and heat resistance, making them suitable for automotive parts, electronics housings, and consumer goods.
The thermoforming process offers several advantages, including cost-effectiveness, design flexibility, and rapid production capabilities, making it suitable for a wide range of applications across various industries. One of the primary industries driving the demand for plastic sheets for thermoforming is healthcare. The healthcare sector utilizes thermoformed plastic parts for medical packaging, disposable medical devices, equipment housings, and components for medical devices. Plastic sheets made from polyolefins and ABS offer biocompatibility, sterilizability, and chemical resistance, making them ideal for medical applications where hygiene and safety are paramount. Thermoforming processes allow for the production of medical-grade components with tight tolerances and regulatory compliance, driving the adoption of plastic sheets in the healthcare industry.
Based on thermoforming type, the Europe plastic sheets for thermoforming market is segmented into vacuum forming, pressure forming, twin-sheet forming, and others. In 2023, vacuum forming segment held a significant market share and is expected to be the fastest-growing segment during the forecast period. In the vacuum-forming process, heat and pressure are used to draw plastic sheets into their final product configuration. Plastic sheets, after heating, are placed over a mold, and a vacuum is used to design the heated plastic into the desired shape. Vacuum forming is a widely used process among all the thermoforming processes as it is easy and affordable. Vacuum forming is highly employed in the production of a wide range of products, such as packaging materials, trays, display cases, and vehicle interior components. For example, vacuum forming is used in the manufacturing of blister packaging in the pharmaceutical industry, providing protective and visually appealing enclosures.
Pressure forming is a type of thermoforming process that applies additional pressure for the formation of a vacuum. The plastic sheet, after heating, is forced into the shape of the mold, creating a textured surface, undercuts, and sharp corners that are challenging to achieve with the vacuum forming process. In the pressure-forming process, the pressure applied is two to four times that of vacuum forming, which results in achieving durable and uniform thermoformed products. Pressure forming is most suitable for products that require intricate style and aesthetic qualities. The major application of pressure forming includes the manufacturing of products such as point-of-purchase displays, high-quality retail display cases, and consumer electronics products.
Europe has been at the forefront of sustainability initiatives, with the EU implementing ambitious targets to reduce plastic waste and promote a circular economy. As a result, there is a growing emphasis on incorporating recycled materials into manufacturing processes, including thermoforming, to address environmental concerns and meet regulatory requirements. Recycled plastic sheets offer several advantages that align with Europe's sustainability goals. By utilizing recycled plastics, manufacturers can reduce the consumption of finite resources, lower carbon emissions, and decrease dependence on fossil fuels. Recycling plastic waste helps divert materials from landfills and reduces pollution, contributing to a cleaner and more sustainable environment.
Consumers are increasingly seeking sustainable alternatives and are willing to support brands that prioritize environmental responsibility. Thermoformed products made from recycled plastic sheets can be marketed as environmentally friendly options, appealing to eco-conscious consumers and enhancing brand reputation. As sustainability becomes a key differentiator in the market, manufacturers are under pressure to integrate recycled materials into their products to remain competitive. Thus, the growing consumer awareness and demand for eco-friendly products are driving the adoption of recycled plastic sheets in Europe.
BEN Kunststoffe Vertriebs GmbH, Senoplast Klepsch & Co GmbH, Ondaplast Spa, Sky-light AS, PAR Group Ltd, MITRAS Materials GmbH, Nizza Plastic Co Ltd, NUDEC SA, Bay Plastics Ltd, and LADA-LIST LLC, are among the leading players in the Europe plastic sheets for thermoforming market. These companies are adopting mergers & acquisitions and product launches to expand their geographic presence and consumer bases.
The overall Europe plastic sheets for thermoforming market size has been derived using both primary and secondary sources. To begin the research process, exhaustive secondary research has been conducted using internal and external sources to obtain qualitative and quantitative information related to the market. Also, multiple primary interviews have been conducted with industry participants to validate the data and gain more analytical insights. Participants of this process include industry experts such as VPs, business development managers, market intelligence managers, and national sales managers-along with external consultants, including valuation experts, research analysts, and key opinion leaders-specializing in the Europe plastic sheets for thermoforming market.