1) inclined ejecting block
斜顶块
1.
By the use of slanted slider to do inner and outer side core pulling and the application of inclined ejecting block structure,the layout of the mould was more reasonable and the problem of difficult demoulding was resolved.
介绍了耳机支架模具的设计过程,采用点浇口形式,提高了产品的表面质量,采用斜滑块内、外侧抽芯及斜顶块结构,不但使模具布局合理,而且解决了出模难的问题。
2) tilt mandril
斜顶
1.
According to the structure of the product, the unique asymmetric tilt mandril of the core side-pulling mechanism and the cool- ing system made up of channel and deep cavity are designed, which increases the ability of cooling and ensures that the product can be successfully taken out from the injection mould.
根据产品的结构,设计了独特的横向斜错位非对称斜顶侧向抽芯机构和深水孔加冷却水道的冷却系统,提高了模具的冷却效果,确保了产品顺利脱模。
2.
According to the structure of the product,the unique tilt mandril and side-slug of the core side-pulling mechanism were designed,which ensured that the product could be taken out from the injection mould.
根据塑料件的结构,重点设计了两凹槽的斜顶侧向抽芯机构和斜导柱滑块抽芯机构,保证了塑料件的顺利脱模。
3.
In order to achieve the four-direction pulling core,the special tilt mandril was designed according to the product structure,which simplized the injection mould structure.
根据产品结构,应用斜顶机构实现了产品四向侧抽芯,简化了模具结构,降低了制造成本。
3) lifter
[英]['liftə] [美]['lɪftɚ]
斜顶
1.
Analyzed the processing characteristics of product,determined the gate location by simulating the molding process of clutch through MoldFlow,designed the lifter structure and two-parting plane mold structure,descripted the mold\'s work process.
模具为三板式点浇口结构,采用成型斜顶杆方式实现了模具抽芯要求,并完成了模具结构设计。
4) angle ejector
斜顶
1.
Introduced a inner ejection pin in angle ejector structure that prevent product pulling pulling injury and displacement.
介绍了一种从斜顶内顶杆顶出,防止产品拉伤、位移的基本结构。
2.
By process analysis of the complex angle ejector,proposed a way for manufacturec omplex angle ejector via adjusting the machine order for mold parts,put forward a manufacturep rocess for angle ejector,solved the manufacture problem concerning a unsymmetrical anglee jector with different slope in each side,and as a result,realized efficient manufacture of anglee jector.
通过对复杂斜顶零件的加工工艺研究,提出了合理安排模具零件的加工顺序及加工复杂斜顶零件的方法,制定了斜顶零件的加工工艺过程,解决了四面具有斜度的不对称斜顶零件的加工问题,实现斜顶零件高效、快速地加工。
5) ejector block
顶块
1.
The application characteristics and scope of the ejector block was introduced through an example.
分析了各种顶出元件的优缺点 ,通过具体实例介绍了顶块顶出的应用特点、适用范围及取得的良好的效果。
补充资料:斜楔滑块装置
斜楔滑块装置(图1)的主要作用是把压力机的垂直向下运动,通过斜楔驱动器使装在模具上的滑块产生水平方向的运动,形成级进模的浮动抽芯部件、横向冲孔部件、弯曲成形部件,或冲件出件部件。
图1 斜楔滑块装置 |
斜楔驱动器的驱动角一般是与垂线成40°~50°。
单动式斜楔驱动滑块,由弹簧使滑块复位。其缺点是弹簧失效,会造成机构失灵。
双动式斜楔一般用于冲件成形后,凸凹模之间具有一定的卡住力及要求滑块往返位置正确的模具。缺点是斜楔较长。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条
