竹基禾塑复合材料
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双枪科技:竹基禾塑复合材料是以竹材加工余料与塑料基材复合而成的新型高性能生物基环保材料
Zheng Quan Ri Bao Wang· 2026-02-06 10:18
Core Viewpoint - The company, Shuangqiang Technology, is focusing on the development of bamboo-based composite materials, which are a new type of high-performance bio-based environmentally friendly material, utilizing bamboo processing waste and plastic substrates [1] Group 1: Material Characteristics - Bamboo-based composite materials have a 20% reduction in weight while offering advantages in rigidity, toughness, temperature resistance, corrosion resistance, and lightweight properties [1] - The bending modulus of bamboo-based composite materials has increased from 1800 MPa in traditional plastics to 4000 MPa, significantly enhancing load-bearing and impact resistance [1] - The impact strength of the toughened bamboo-plastic material exceeds 6 kJ/m, compared to around 4 kJ/m for conventional plastics [1] Group 2: Performance in Extreme Conditions - The bamboo-plastic materials exhibit strong mechanical performance in extreme temperatures, maintaining stability at high temperatures (up to 80°C) and showing improved bending strength and modulus at low temperatures [1] - After exposure to -20°C for 2 hours, the bamboo-plastic material retains over 90% of its impact strength [1] Group 3: Environmental Benefits - The materials are resistant to corrosion, insect damage, and aging, making them durable and sustainable [1] - The raw materials used are renewable, green, and non-hazardous [1] Group 4: Collaboration and Research - The company is collaborating with Ningbo Materials Institute to utilize bamboo processing waste for high-quality material applications, focusing on deep industry-academia-research cooperation [1]
上市公司携手宁波材料所,聚焦竹基禾塑新材料,实现竹材加工余料的“高值材料化”!
synbio新材料· 2026-01-26 08:30
双方将依托宁波材料所原创的竹基禾塑新材料技术,围绕高性能材料及制品的产业应用方向,开展深层 次产学研协同合作。 在竹材制品制造中,超过50%的竹材原料最终形成不规则外形的加工余料,这些余料多数仅能被低收率 转化为燃料颗粒、竹炭等产品。 而竹基禾塑材料技术的诞生,致力于从根本上解决这一问题,通过 实 现竹材加工余料的"高值材料化" ,将其转化为高性能材料制品 ,为推动全行业更加合理地进行竹材资 源的综合利用、提升全竹产业链附加值,打造关键技术。 近日, 双枪科技股份有限公司 (以下简称"双枪科技")发布消息称,已与 中国科学院宁波材料技术与 工程研究所 (以下简称"宁波材料所")正式签订《竹基禾塑复合材料技术转让(专利实施许可)合 同》。 据项目团队专家介绍, 在性能层面 ,竹基禾塑托盘较之塑料托盘更加 耐摔、抗变形、耐腐蚀性强、低 温性能更优 (-20℃仍保持90%以上韧性) 和 可离火自熄 ; 应用场景可覆盖汽车、工业、建材等多个 领域 ,如用于电动汽车的非结构型装饰零部件、室外装饰件等建材,用于替代传统塑料、木塑和木 材;竹基禾塑托盘可服务于光伏产业太阳能光伏板运输、新能源锂电池产业的运输、大型物流企业、 ...