拉削工具 的英文怎麼說

中文拼音 [xiāogōng]
拉削工具 英文
rumwerkzeug broaching tool broach
  • : 拉構詞成分。
  • : 削動詞1. (用刀斜著去掉物體的表層) pare [peel] with a knife 2. (乒乓球的一種打法) cut; chop
  • : Ⅰ名詞1 (工人和工人階級) worker; workman; the working class 2 (工作; 生產勞動) work; labour 3 ...
  1. Deforming tools for larger dimensions such as drawing and pressing dies, deep drawing tools, hot wire rolling, cutting rings, cutting die plates, drawing rings, circular knives, calibrating rolls, inserts for cutting and punching techniques, paper knives

    大尺寸的變形,比如沖壓模、深、熱軋軋輥、環刀、切硬模盤、環、圓刀盤、校準軋輥、沖壓和切技術的襯墊、裁紙刀。
  2. Broaching tools ; rectangular shanks e and end pieces f not vor internal splines

    拉削工具.長方柄e和端件f
  3. Tile cutting disks, deep drawing tools, plain bearings, sealing and sliding sealing rings, guide gibs, liners and bushings, shaft protective sleeves, rolls for cold rolling mills, tools for diecasting pulverized materials, cutting disks

    飾面花磚切盤、深、滑動軸承、密封圈和滑動密封圈、導向槽、襯墊和軸套、曲柄軸套、冷壓磨碎機軋輥、硬模鑄造研磨材料的、刀盤。
  4. Lachuang, cutting tool manufacture, sewing machines metal casting, and marketing

    床,切製造,縫紉機鑄件鑄造,銷售。
  5. Machining deformation of aircraft monolithic component is simulated by finite element method ( fem ) and validated by experiment. the initial residual stress in pre - stretched plate is generated by simulating quenching and stretching processes. with a single tool - tooth milling process fem, the machining loads in monolithic component material removing is obtained. restart - calculation is put forward to complete the whole simulation of machining process. to verify the fem result, an experiment is carried out. the deformation distribution of the monolithic component resulting from fem shows a good agreement with the experiment result, which indicates that the key technologies presented in the paper are practicable and can be used to simulate the milling process of monolithic component to predict its deformation. lengthy and expensive trial and error experiment process can be avoided

    在模擬淬火、伸過程獲得含有初始殘余應力的預伸板材以及模擬單齒切過程獲得切載荷的基礎上,提出並採用接力演算法,對一航空整體結構件的材料銑過程進行有限元模擬,同時進行了試驗研究.結果表明,有限元模擬的整體結構件的變形與試驗有一致性,從而證明提出的整體結構件加模擬關鍵技術的可行性,避免了為研究加變形而進行的繁瑣的試錯法
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