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CHOPPED-FIBER COMPOSITE PISTON ARCHITECTURES

机译:短纤维复合活塞体系结构

摘要

A three-dimensional piston molding is fabricated from a mixture of chopped, carbon tow filaments of variable length, which are prepregged with carbonaceous organic resins and/or pitches and molded by conventional molding processes into near net shape, to form a carbon-fiber reinforced organic-matrix composite part. Continuous reinforcement in the form of carbon-carbon composite tapes or pieces of fabric can be also laid in the mold before or during the charging of the mold with the chopped-fiber mixture, to enhance the strength in the crown (21) and wrist-pin areas (23). The modled chopped-fiber reinforced organic-matrix composite parts are then pyrolyzed in an inert atmosphere, to convert the organic matrix materials to carbon. These pyrolyzed parts are then densified by reimpregnation with resins or pitches, which are subsequently carbonized. Densification is also accomplished by direct infiltration with carbon by vapor deposition processes. Once the desired density has been achieved, the piston molds are machined to final piston dimensions, and piston ring grooves are added. To prevent oxidation and/or to seal the piston surface or near surface, the chopped-fiber piston (20) is coated with ceramic and/or metallic sealants; and/or coated with a catalyst.
机译:由各种长度的短切碳纤维丝束的混合物制成三维活塞模制件,将碳纤维有机树脂和/或沥青预浸,然后通过常规模制工艺将其模制成接近最终形状,以形成碳纤维增强材料有机基复合材料零件。还可在将短切纤维混合物装入模具之前或之中,以碳-碳复合带或织物片的形式进行连续加固,以增强胎冠(21)和手腕的强度。销钉区域(23)。然后将改性的短纤维增强有机基复合材料部件在惰性气氛中热解,以将有机基体材料转化为碳。然后通过用树脂或沥青重新浸渍使这些热解部分致密,然后将其碳化。致密化还可以通过气相沉积工艺直接渗透碳来实现。一旦达到所需的密度,就将活塞模具加工至最终的活塞尺寸,并添加活塞环槽。为了防止氧化和/或密封活塞表面或近表面,切碎的纤维活塞(20)涂有陶瓷和/或金属密封剂。和/或涂覆有催化剂。

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