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    • 2. 发明专利
    • Method for stabilizing material physical property of recovered bumper and device therefor
    • 用于稳定恢复过的储存器材料物理性质的方法及其装置
    • JP2003071838A
    • 2003-03-12
    • JP2001265655
    • 2001-09-03
    • Honda Motor Co LtdKyowa Sangyo Kk協和産業株式会社本田技研工業株式会社
    • SAITO AKIHISAKOIKE TSUNEOSUZUKI HIDEAKIANDO KAZUO
    • B60R19/03B01F5/24B29B9/16B29B13/00B29B17/00B29B17/02B29B17/04B29C31/00B29K23/00B29K105/26
    • B29B17/04B29B9/16B29B17/0036B29B17/0042B29K2105/26B29L2031/3044Y02W30/62Y02W30/625Y10S156/919Y10S156/935Y10S264/911Y10T156/11Y10T156/19
    • PROBLEM TO BE SOLVED: To provide a method for stabilizing the material physical property of a recovered bumper by which a material reclaimed from a recovered bumper is made applicable to a large-size resin part such as a coated bumper which requires severe appearance characteristics as goods and the quality of the 100% fully reclaimed material based on the recovered material can be made the same as the quality of a virgin material and a device for stabilizing the material physical stability of a recovered bumper. SOLUTION: The recovered bumper is subjected to a cleaning/crushing/drying process to obtain a crushed raw material, then a coating film is released from the crushed raw material and thus a reclaimed body material is manufactured. Further, this reclaimed body material is mixed with an additive and the mixture is melted and extruded by an extruder 6 and further, the extrusions are cut into a pellet. Following these procedures, the pellet is loaded into a tank 10 of a specified capacity and the pellet loaded in the tank 10 is again conveyed to a loading aperture 11 of the tank 10. Finally, the pellet in the tank 10 is mixed with the newly loaded pellet for a specified time, while both pellets are loaded side by side.
    • 要解决的问题:提供一种稳定回收的保险杠的材料物理性能的方法,通过该方法使从回收的保险杠回收的材料适用于需要作为商品的严格外观特性的涂层保险杠等大型树脂部件 并且基于回收材料的100%完全回收材料的质量可以与原始材料的质量和用于稳定回收的保险杠的材料物理稳定性的装置相同。 解决方案:将回收的保险杠进行清洁/粉碎/干燥处理以获得破碎的原料,然后从破碎的原料中剥离涂膜,从而制造回收体材料。 此外,将该回收体材料与添加剂混合,并通过挤出机6将混合物熔融挤出,此外,将挤出物切成颗粒。 按照这些步骤,将颗粒装载到规定容量的罐10中,并且将装载在罐10中的颗粒再次输送到罐10的装载孔11.最后,罐10中的颗粒与新的 装载的颗粒达指定的时间,而两个颗粒并排装载。