模具设计外文翻译
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1、编号: 毕业设计 (论文 )外文翻译 ( 译 文) 学 院: 机电工程学院 专 业: 机械设计制造及其自动化 学生姓名: 学 号: 指导教师单位: 艺术与设计 学院 姓 名: 梁惠萍 职 称: 讲师 2012 年 5 月 15 日 The Effects of Mold Designon the Pore Morphology ofPolymers Produced withMuCell_ Technology ABSTRACT: In this study two molds were designed and used in MuCell_technology to generate im
2、plants with a porous structure. To arrive the desiredpore structure many process parameters were investigated for indicating theeffects of process parameters on the pore morphology. This process parameterinvestigation was performed on each mold respectively, so that the influencesof the mold design
3、on the pore morphology have been researched by the sameprocess parameter setting. It was found that the mold design also had effectson the pore structure in MuCell_ technology. A proper mold design couldimprove the generated pore structure, such as porosity, pore diameter, andinterconnectivity. KEY
4、WORDS: mold design, cell morphology, MuCell_, injection molding,medical implant, porous polymer, polyurethane. INTRODUCTION MuCell technology, as an effective microcellular injection moldingprocess, is widely used in automobile and furniture industries.In most cases, MuCell_ technology is used to sa
5、ve raw materials, but itis also used to produce implants with closed porous structure 1. It usesCO2 as blowing agent, which is injected in the plasticization section ofthe injection molding machine (Figure 1). The blowing agent is injectedinto the polymer melt through the gas supply line and injecto
6、r, in itssuper critical state, by the plasticization phase of the injection moldingmachine. After the plasticization the mixture of polymer melt and gas isinjected through the nozzle into the mold, where the foam structure canbe generated due to the quick pressure drop in the mold. The mainproducts
7、which are produced today with MuCell_ technology have closedcellular foam 24. The MuCell Microcellular Foam injection molding technology is a complete process and equipment technology which facilitates extremely high quality and greatly reduces production costs. The MuCell Process involves the contr
8、olled use of gas in its supercritical state to create a foamed part. The MuCell Technology is targeted at precision and engineered plastic components with maximum wall thicknesses of less than 3mm.The MuCell Process generally offers a 50-75% improvement in key quality measures, such as flatness, rou
9、ndness, and warpage, also eliminating all sink marks. These improvements result from the fact that relatively uniform stress patterns are created in the molded part rather than non uniform stress characteristic of solid molding.As a direct result of the uniform stress and shrinkage associated with t
10、he MuCell Process (which occurs because the pack and hold phase of the molding cycle is eliminated), the parts that are produced tend to comply far more closely with the mold shape and, presumably, the dimensional specifications of the part itself. This means that when using the MuCell Process, fewe
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