首页> 外文会议>Meeting of the Rubber Division, American Chemical Society Oct 8-11, 2002 Pittsburgh, PA >SIMULATION AND EXPERIMENTAL STUDIES OF INTERFACE DEVELOPMENT AND PENETRATION IN MULTI-COMPONENT TRANSFER MOLDING OF RUBBER COMPOUNDS
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SIMULATION AND EXPERIMENTAL STUDIES OF INTERFACE DEVELOPMENT AND PENETRATION IN MULTI-COMPONENT TRANSFER MOLDING OF RUBBER COMPOUNDS

机译:橡胶复合材料多组分转移成型界面发展与渗透的模拟与实验研究

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Simulation and experimental studies of pressure-controlled sequential transfer molding of two SBR rubber compounds under isothermal condition have been carried out to obtain a two-layered sandwich structure. One SBR compound, intended for the skin, is first laid up in the cavity, and another SBR compound, intended for the core, is used for transfer. The latter material is subjected to pressure in order to penetrate into the skin and push the layup to fully fill the cavity. The obtained moldings have an encapsulated skin/core sandwich structure. Two material combinations with different viscosity ratios have been studied. The rheological interaction of skin/core components and its effect on the penetration behavior and interface shape have been investigated. The influence of processing conditions, such as the volume fraction transferred and pressure, is elucidated. From the experiment and simulation it is found that the penetration and the interface development are significantly affected by the rheological properties of the compounds and the volume fraction transferred. At the same time the pressure imposed during transfer molding is found to have little effect on the interface development at a constant volume fraction transferred.
机译:已经进行了等温条件下两种SBR橡胶混合物的压力控制顺序传递模塑的模拟和实验研究,以获得两层夹心结构。首先将一种用于皮肤的SBR化合物铺在空腔中,然后将另一种用于核的SBR化合物用于转移。后一种材料受到压力,以便渗入皮肤并推动铺层以完全填充空腔。所获得的模制品具有包封的皮/芯夹心结构。已经研究了具有不同粘度比的两种材料组合。研究了皮肤/核心成分的流变相互作用及其对渗透行为和界面形状的影响。阐明了加工条件的影响,例如转移的体积分数和压力。从实验和模拟中发现,渗透性和界面发展受化合物的流变性质和转移的体积分数的影响很大。同时发现,在恒定体积分数下,传递模塑过程中施加的压力对界面发展几乎没有影响。

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