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作 者:李亚宏[1] 常剑[1] 孙丽敏[1] 赵军[1] 卜庆奎 Li Yahong;Chang Jian;Sun Limin;Zhao Jun;Bu Qingkui(AVIC Shenyang Aircraft Company Limited,Shenyang 110850,China;不详)
机构地区:[1]沈阳飞机工业(集团)有限公司,沈阳市110850
出 处:《工具技术》2022年第11期133-135,共3页Tool Engineering
摘 要:阐述了某钛合金框在立式机床和卧式机床不同设备上的不同工艺方案,对两种工艺方案采用不同的工装设计理念:立式加工工装采用模块化设计,整个流程用一套工装加工;卧式加工采用柔性可调支撑工装和真空吸附两套工装来完成加工流程。立式机床和卧式机床选择的加工刀具和切削参数也有区别,结果表明,两种加工方案各有优势,数控设备的不同决定了加工流程的不同。由此得出,零件的工艺方案需结合设备特性制定才可以充分发挥机床的性能,实现零件的优质高效加工。This paper describes the process scheme of a titanium alloy frame on different equipment of vertical machine tool and horizontal machine tool.Two process solutions use different tooling design concepts: vertical processing tooling adopts modular design, the whole process with a set of tooling processing.Horizontal machining adopts flexible adjustable support tooling and vacuum adsorption two sets of tooling to complete the processing process.While in the vertical machine tool, and horizontal machine tool, the selection of machining tools and cutting parameters are also different.The two schemes for the two equipment processing schemes have advantages, and the different numerical control equipment determines different processing.In order to give full play to machine performance, the process plan of the parts shall be formulated in combination with the characteristics of the equipment and achieve high-quality and efficient processing of parts.
分 类 号:TG5[金属学及工艺—金属切削加工及机床] TH162[机械工程—机械制造及自动化]
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