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11.
12.
介绍了研制出其性能达国际先进公司同类产品水平的塑封双列直插式光耦合器的工作原理和提高绝缘耐压的技术难点,从引线框架设计、加工精度控制、内包封材料选型、理想内包封形状控制、塑封气密性的实现、环境条件的完善等方面讨论了提高绝缘耐压的设计和工艺要点。 相似文献
13.
介绍了采用一次模压成形工艺批量生产高性能烧结钕铁硼磁环的新工艺 ,指出了目前该工艺仍存在的一些问题 ,同时概述了该工艺的应用前景 相似文献
14.
In this study, distribution and history of residual stresses in plaque-like geometries are simulated based on linear thermoviscoelastic
model, which helps to understand the mechanics and evolution of the residual stresses in the injection molding process. The
numerical calculation of direction, combined with the specified boundary conditions. Results show that the stress variation
across the thickness exhibits a high surface tensile value changing to a compressive peak value close to the surface, with
the core region experiencing a parabolic tensile peak. Residual stress distribution throughout the thickness is almost same
along the flowpath and the final residual stresses value near the gate is lower than the value near the end of flowpath. 相似文献
15.
Resin cure following mold filling is an essential element in resin transfer molding. To fabricate a composite part with high dimensional stability and minimize residual stress, uniform resin cure should be achieved. This study considers a three-part resin system composed of epoxy, hardener and accelerator. The cure kinetics can be controlled by the accelerator concentration at the injection gate. A numerical method that can predict degree of cure distribution based on accelerator concentration at the gate was proposed. The degree of cure distribution is obtained by solving the resin flow, heat transfer, accelerator concentration and cure problems sequentially. Utilizing this numerical method, an optimal variation of accelerator concentration during mold filling was sought by solving a constrained optimization problem. The effect of accelerator control on degree of cure distribution was investigated and its validity was examined for two different geometries. 相似文献
16.
W-Ni-Cu高比重合金注射成形烧结收缩及性能的研究 总被引:2,自引:1,他引:1
研究了W-Ni-Cu高比重合金注射成形工艺过程收缩率和性能。比较了模具尺寸、注射坯尺寸、烧结坯尺寸,及烧结阶段各方向收缩率的关系,发现实际收缩与理论预测收缩率较为一致,但在厚度方向存在与其他方向收缩不一致的情形,这与由重力作用产生的塑料流动有关;还探讨了烧结坯密度与烧结条件的关系,测定了烧结坯的力学性能及断口形貌、金相组织,烧结坯在1400℃,90min烧结达到了99%的相对密度,断裂强度600MPa以上。 相似文献
17.
Geng Tie Li Dequn Zhou Huamin State Key Lab.of Mould & Die Technology HuaZhong University of Science Technology Wuhan China 《计算机辅助绘图.设计与制造(英文版)》2003,(Z1)
1 Introduction During injection moulding, the rheological response of polymer melts is generally non-Newtonian and nonisothermal with the position of the moving flow front. Because of these inherent factors, it is difficult to analyze the filling process. Therefore, simplifications usually are used. For example, in middle-plane technique and dual domain technique [1], because the most injection molded parts have the characteristic of being thin but generally of complex shape, the Hele-Shaw … 相似文献
18.
Abstract— We have developed a process to fabricate optical components, such as a lens, prism, or diffuser, directly on to a glass substrate. Processes include precision mastering by diamond cutting and multi‐layer photopolymer (2P) molding to realize flat surfaces and the integration of multiple components with an alignment within a few micrometers. 相似文献
19.
耐高温绝缘GFRP管的真空辅助树脂传递成型工艺研究 总被引:3,自引:0,他引:3
阐述了耐高温绝缘GFRP管的成型工艺及原材料选择,并对影响成型工艺的主要因素作了理论分析及试验验证。研究表明,以TDE-85/DDS体系为为基体,以无碱无捻玻璃纤维方格布为增强材料,用VARTM工艺成型的石油勘探高性能平衡管完全满足技术要求。 相似文献
20.
Two series of polypropylenes with different molecular weight distribution and tacticity characteristics were injection molded into flexural test specimens by varying cylinder temperature and the effects of the molecular weight distribution and tacticity on the structure and properties of the moldings were studied. Measured propertied were flexural modulus, flexural strength, heat distortion temperature, Izod impact strength, and mold shrinkage and structures studied were crystallinity, the thickness of skin layer, a*‐axis‐oriented component fraction and crystalline orientation functions. The relations between the structures and properties were also studied. It was found that the molecular weight distribution and tacticity characteristics affect the properties mainly through the molecular orientation and crystallinity, respectively. © 2002 Wiley Periodicals, Inc. J Appl Polym Sci 84: 2142–2156, 2002 相似文献