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1)  The Pouring system CAD
浇注系统CAD
2)  pouring system
浇注系统
1.
Study of the calculating formulas in the minimum section of the gray casting iron pouring system
灰铸铁件浇注系统最小截面积计算公式研究
2.
The injection molding flow of six different pouring system for air-condition panel was analyzed respectively by using Molding Plastics Advisers (MPA)software.
利用模流分析软件Moldflow Plastics Advisers(MPA)对空调机面板注塑模6种构型不同的浇注系统分别进行注射成型流动分析。
3.
The structural characteristics of the aluminum alloy tap part were analyzed, and the design of pouring system and die-casting die structure were introduced.
分析了铝合金水龙头零件的结构工艺性特点,介绍了压铸模的浇注系统及模具结构设计。
3)  gating system
浇注系统
1.
Simulation and optimization of gating system of die-casting die for magnesium alloy AM60B part;
AM60B镁合金压铸模浇注系统的模拟与优化
2.
Principle of Designing Gating System for Die Cast Aluminum Alloy Mould;
设计铝合金压铸模具浇注系统类型的原则
3.
Optimization of Gating System for Gear Box of the Car Based on CAE System;
基于CAE分析的汽车齿轮室浇注系统的优化
4)  runner system
浇注系统
1.
Design of runner system of injection mould for cellphone glass block;
手机镜片注射模浇注系统设计
2.
Manmade balanced design and numerical simulation for unbalanced runner system;
非平衡浇注系统的人工平衡设计与数值仿真
3.
Optimization of front bumper runner system and its implementation
汽车前保险杠浇注系统优化及实施
5)  feed system
浇注系统
1.
Research and development on knowledge-based feed system for injection mould;
基于知识的注塑模浇注系统的研究与开发
2.
Research on the Intelligent Design Technology of Injection Mould Feed System Based on Knowledge;
基于知识的注塑模具浇注系统智能化设计技术研究
3.
Optimization of feed system and design of injection mould for automotive engine cover
汽车发动机罩盖浇注系统优化与注射模设计
6)  injection system
浇注系统
1.
The design of injection system for big-size bending thinning plastic;
大规格弯曲薄壁塑件注射成型浇注系统设计
2.
Factors influencing the injection system were investigated as well as the control and adjustment on its balance.
分析了多模腔注塑模具分流道的平衡性,探讨了浇注系统的影响因素以及浇注系统平衡的控制与调节,结果表明:同模多腔模具流道非平衡排布时,可通过调节浇口的长度及截面尺寸来补充流道长度的差异而引起的不平衡;而对于异模多腔模具,应将模腔容积作为调整系数,依此来设计流道的长度和浇口的长度及截面尺寸。
3.
The structure characteristics and technology requirement of the washer sliding were analyzed, designed the injection mold with an ordinary injection system and three layers, solved the problem of automatic demould, the die structure and working process were introduced, practical production showed the die is safe and reliable, and it improved manufacturing efficiency.
分析了塑件的形状特点和技术要求,设计了一副普通浇注系统3层注射模,并解决了该注射模的自动脱模问题。
补充资料:取代手工设计 服装CAD造就CAD肤装
客户能够针对自己的需求去购买称心如意的产品已是事实。而实现CIMS的第一步是普及CAD。  

  CIMS是计算机集成制造系统的英文缩写,电脑裁床智能吊挂系统,电脑拉布机等在生产中起着举足轻重的作用,人为的技术因素对产品质量的影响将会越来越小,人工减少面料的节约效率的提高成为可能,在整体上降低生产成本。实施集成制造计划,首先要从CAD入手。技术人员结合自己的实际经验,利用CAD系统完成款式的设计和纸样的制作,进行放码,排料,最终进入CIMS。  

  在中国,用服装CAD设计最终将取代手工设计。因为在未来发展的趋势是,软件开发企业的稳定性问题得到解决。优秀的开发人员受到应有的重视,开发出更先进的服装CAD软件。硬件价格将下降。服装CAD的外围硬件在整套系统的价格中占有相当大的比重,大的趋势是电脑硬件产品正逐年降价。  

  对于专业设备,例如数化板和绘图仪不会像电脑一样有大幅度降价的可能。有实力的服装CAD开发商正着手开发自己产品的配套硬件,国外产品进入中国市场,硬件价格也会相应调整。同时针对人体特色和人体数据的日益丰富,自动化的程度越来越高,肤装的可穿着性以及服装的客户资料越法完善的今天.皮肤的需求和消费者心理需求都将在软件的完善过程中实现兼容。
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