不锈钢加工

  • 网络Stainless steel processing;Stainless Steel Manufacture
不锈钢加工不锈钢加工
  1. 针对不锈钢加工过程中产生的锯齿形切屑,应用锯齿化程度(Gs)来表征其变形程度,并作为切屑变形的评价指标。

    Serrated degree ( Gs ) was introduced to characterize chip deformation of the saw tooth chip generated in machining stainless steel .

  2. FSS-01不锈钢加工工艺探讨

    Discuss of the Fss-01 stainless steel working process

  3. 在不锈钢加工工艺中,焊接是最主要的必不可少的加工技术。

    In stainless steel processing , welding is the most important essential technology .

  4. 浅谈合理的刀具角度在不锈钢加工中的作用

    The Effect of the Rational Angle of the Tools on the Stainless Processing

  5. 冷风切削加工对不锈钢加工表面的效果

    Effect of cutting technique with cooled air to finishing surface of stainless steel

  6. 两种方法分析高锰钢和18-8不锈钢加工硬化行为的对比

    Comparison of Work Hardening Behaviors of 18-8 Stainless Steel and Hadfield Steel by Two Methods

  7. 产品主要面向轻工、电器、门业、汽车、不锈钢加工、建筑装饰、电梯制造等行业。

    Primarily for light industry products , electrical appliances , doors , automotive , stainless steel processing , architectural features , elevator manufacturing and other industries .

  8. 为解决不锈钢加工困难的问题,从选择刀具材料、刀具角度、切削用量和切削液等方面对不锈钢的切削加工进行了分析和研究。

    In order to solve these problems , the process parameters for cutting stainless steel is analyzed , including material and angle of the cutter , cutting dosage and slice liquid .

  9. 硬质合金刀具在不锈钢加工中,其刀具耐用度主要是取决于后刀面边界磨损而不是主切削刃后刀面的平均磨损量。

    In many cases of stainless steel cutting operations with carbide tools , a tool life strongly depends on flank notch wear of depth of cut rather than average flank wear of main cutting edge .

  10. 有害元素Sn、Pb含量对不锈钢热加工性能的影响

    Effect of Deleterious Element Sn and Pb Content on Hot Workability of Stainless Steel

  11. 本文介绍用国产BTA深孔钻头在进口奥氏体不锈钢上加工深孔的情况。

    This article will show you how domestic BTA deep hole drills machine ira - ported austenitic stainless steel .

  12. 结合LIGA技术和微细电火花加工的优点,用LIGA技术制备出具有复杂形状的铜微细工具电极,再用该工具电极进行微细电火花加工,在不锈钢上加工出异形微细孔。

    It has been studied that the fabrication of copper microelectrode with complicated shape by LIGA process and the machining of stainless steel workpiece by EDM process with this microelectrode , which combines the excellences of LIGA and EDM .

  13. 奥氏体不锈钢冷加工与形变马氏体及耐应力腐蚀的关系

    The Influence of Cold Work of Austenitic Stainless on Martensite and SSCC

  14. 不锈钢冷加工形变诱发马氏体相变及其腐蚀行为

    Deformation Induced Martensite of Cold Worked Stainless Steel and Its Corrosion Behaviors

  15. 分析了奥氏体不锈钢的加工硬化机理及其对刀具磨损的影响;

    Work hardening of austenitic stainless steel was analyzed .

  16. 高钼不锈钢热加工特性与综合流变应力模型

    Hot deformability and flow stress model for austenitic stainless steel containing high molybdenum

  17. 奥氏体不锈钢温加工新技术的研究

    Warm - - Working Study on Austenite Stainless Steel

  18. 本机直接接触物料的零部件全部采用进口不锈钢材料加工制造,清洗方便。

    All components and contacting parts are made of imported stainless steel for easy cleaning .

  19. 奥氏体不锈钢冷加工部件广泛用于腐蚀介质的石油化工装置中。

    Cold worked austenitic steels are widely used in chemical and petro - chemical plants .

  20. GB/T4226-1984不锈钢冷加工钢棒

    Cold finished stainless steel bars

  21. 定子筛网由不锈钢板加工而成,不易损坏。

    The sieve of stator is made of stainless steel plate . It is not easy to damage .

  22. 奥氏体不锈钢热轧加工性能的数学模型研究

    Review on Mathematical Modeling of Evolutions of Microstructure and Flow Stress in Austenite Stainless Steels during the Hot Rolling Process

  23. 未经加热,不会发生材质劣化,特别适合不锈钢封头加工。

    Without heating , so the material deterioration would not happen , especial suitable to the processing for the stainless steel heads .

  24. 研究材料化学成分及其显微组织对重金属迁移量的影响,以及不锈钢拉伸加工过程对迁移量的影响。

    It indicated that Austenitic can transfer to Martensite partly because of stretching deformation , which increases migration quantity of heavy metal in return .

  25. 奥氏体不锈钢在加工、运输和装配过程中如果与碳钢直接接触,就会被碳钢污染,而导致奥氏体不锈钢耐蚀性能的变化。

    Austenitic stainless steel could be contaminated by carbon steel if they contact with each other directly during the process of machining , transportation or assembly .

  26. 实际应用表明,研制配方具有良好的润滑性,完全满足不锈钢切削加工冷却和润滑的要求。

    The practical application exhibits that the developed formula possesses good lubricity , and can completely satisfy the cooling and lubricating requirements of stainless steel removal working .

  27. 展品类别:不锈钢原料加工设备;不锈钢生产技术及设备;不锈钢技术期刊、出版物及其它媒体。

    Exhibits range : Plant and equipment for processing prime and raw materials ; Technology and equipment ror stainless steel production ; Professional magazine , publication and other medias .

  28. 本文研究了马氏体不锈钢磨削加工产生的剩余磁场对其短时干摩擦过程中摩擦系数的影响。

    In this paper , influence of remnant field intensity resulted from grinding process on friction coefficient of martensite stainless steel in the condition of short-time dry friction was investigated .

  29. 阐述了影响奥氏体不锈钢可加工性的主要因素,分析了热轧不锈带钢时产生边裂的原因,提出了防止边裂的工艺措施。

    The paper describes the main factors influencing the workability of austenitic stainless steels , analyzes the cause of edge cracks of stainless steel hot strips . and points out technological measures for preventing edge cracks .

  30. 利用LIGA技术制备线宽70μm、厚度达730μm的铜工具电极,采用微细电火花技术在不锈钢片上加工出线宽90μm、具有复杂形状的微结构。

    The copper tool electrode with line width of 70 μ m and thickness of 730 μ m has been made by the LIGA technique and then the microstructure with line width 90 μ m and complex shapes on the stainless steel film has been machined by the micro-EDM technique .