不锈钢粉末

  • 网络stainless steel powder
不锈钢粉末不锈钢粉末
  1. 316L不锈钢粉末和Ti粉末的注射成型工艺研究

    Research on the Injection Molding Process of 316L Stainless Steel Powder and Titanium Powder

  2. 用粉末注射成型的方法制备了不同成分配比的ZrO2陶瓷粉末与不锈钢粉末注射成型制品,对这种金属陶瓷材料进行了成分分析、残余应力分析及断口分析,同时进行了TEM分析。

    The injection moulding products with different component ratios of ZrO 2 ceramic powder to stainless steel powder have been prepared . The component , residual stress , fractured surface and TEM of this metal / ceramic material have been analysed .

  3. Al2O3弥散强化316L不锈钢粉末的高速火焰喷涂

    High velocity oxy-fuel spraying of Al_2O_3 dispersion strengthened 316L stainless steel powders

  4. 不锈钢粉末烧结滤芯脱除FCC油浆中催化剂粉末中试研究

    Pilot plant test of removing catalyst fines from FCC slurry with sintered stainless steel filter core

  5. 选区激光熔化316L不锈钢粉末形貌分析

    Analysis of the morphology of 316L stainless part formed by selective laser melting

  6. 研究了温压工艺对316L不锈钢粉末的生坯性能和烧结性能的影响。

    Effects of warm compaction on the green and sintered properties of 316L stainless powder are studied .

  7. 316L不锈钢粉末温压与模壁润滑的高密度成形

    High density compaction of sta in less steel 316L powders through warm compaction and die wall lubrication

  8. 本工作研究了316L不锈钢粉末的温压、模壁润滑和同时使用温压与模壁润滑的压制过程。

    In the present paper , high density compaction of stainless steel 316L powders through warm compaction and die wall lubrication has been investigated .

  9. 试验结果表明:温压工艺能够较大幅度地提高316L不锈钢粉末的生坯密度和生坯强度,也能提高其烧结后的密度和抗拉强度。

    Results show that warm compaction can improve the green density and strength of 316L powder greatly and improve its sintered density and tensile strength as well .

  10. 系统计算了不同颗粒大小316L不锈钢粉末与不同功率激光束相互作用后的温度。

    Under different laser power condition , after interaction with laser beam , the temperature of the316L stainless steel ( SS ) powder of different size is calculated .

  11. 采用微观测试分析方法,针对316L不锈钢粉末,深入研究了激光快速成形过程中熔覆层的开裂行为及其形成机理。

    The forming mechanism for the crack produced in the process of laser forming 316L stainless steel powder alloy has been studied in the paper by micro measurements .

  12. 本研究采用毛细管脉动流变仪对石蜡-油-聚丙烯粘结剂体系的316L不锈钢粉末喂料动态流变行为进行测量和表征,并分析了振动频率和振幅对喂料的平均动态表观黏度的影响。

    The rheological property of injection molding feedstock made of 316L stainless steel powders and wax-oil-Polypropylene binder was evaluated using self-made capillary dynamic rheometer , and the effects of vibration frequency and amplitude on the average dynamic apparent viscosity of feedstock were described and analyzed .

  13. 利用XNR-400熔体流速仪,研究了催化脱脂型粘结剂体系和17-4PH不锈钢粉末混合制备的喂料的流变性能。

    By using XNR-400 melt flow index tester , the rheological characteristics of PIM feedstock of newly catalytic debinding binder and17-4PH stainless steel powder were studied .

  14. 以316L覆膜不锈钢粉末为烧结材料,进行烧结试验,通过对其工艺方案的总结,介绍了SLS选择性激光烧结技术条件下的金属零件的快速制造技术。

    The paper introduced the agglomeration experiment using 316L cover velum stainless dust . with summarizing the technics project , introduced the technology of quick manufacture of metal mold by selective laser sintering , The paper introduced the technology of quick manufacture of metal mold by selective laser sintering .

  15. 采用410L不锈钢粉末与增塑剂的混合物,用增塑挤压烧结法制备了不锈钢金属蜂窝,研究了挤压成形过程、烧结温度和时间对蜂窝组织结构的影响及蜂窝的压缩性能。

    410L stainless steel honeycomb has been made by powder extrusion molding and sintering by using a mixture of stainless steel powder and additives . The extrusion molding , the effects of sintering temperature and time on the macro-structure and micro-structure , and the compressive behavior have been studied .

  16. 奥氏体不锈钢粉末压坯的液相烧结

    Liquid phase sintering of the compact of austenitic stainless steel powder

  17. 铸铁表面的不锈钢粉末喷涂技术

    Technology of stainless steel powder spray painting on casting iron surfaces

  18. 水雾化奥氏体不锈钢粉末烧结时的表面反应

    Surface reaction of water atomized austenitic stainless steel powder during sintering

  19. 316不锈钢粉末激光烧结球化的研究

    The Study of Balling during Laser Sintering of 316 Stainless Steel Powders

  20. 机械合金化制备超细晶高氮奥氏体不锈钢粉末的探讨

    Preparation of ultrafine high-nitrogen stainless steel powder by mechanical alloying

  21. 烧结奥氏体不锈钢粉末表面化学分析研究

    On Surface Chemical Analysis of Sintering Austenite Stainless Steel Powder

  22. 不锈钢粉末的选择性激光熔化快速成形工艺研究

    Study on the Technique During Selective Laser Melting of Stainless Steel Powder

  23. 含氮不锈钢粉末注射成形工艺

    Powder injection molding technology for nitrogen-contained stainless steel

  24. 工艺参数对316不锈钢粉末激光烧结球化的影响

    Effect of Process Parameters on Balling During Direct Laser Sintering of 316 Stainless Steel Powders

  25. 高能球磨法制备超细不锈钢粉末的研究及应用前景

    Research and Application Prospects of Ultrafine Stainless Steel Powder Prepared by High Energy Milling Method

  26. 系统总结了高氮不锈钢粉末的制备工艺和固化成形工艺。

    The preparation and solidification shaping technique of high nitrogen stainless steels powder are summarized .

  27. 固化条件对AISI304不锈钢粉末固化材的显微组织和力学性能的影响

    The Effect of Consolidation Condition on the Structure and Mechanical Properties of AISI 304 Powder Material

  28. 碳、硅和铝对奥氏体不锈钢粉末烧结时表面反应的影响

    Influences of carbon , silicon and aluminium on reaction on surface of austenite stainless steel powder during sintering

  29. 利用该曲线计算出了纳米不锈钢粉末烧结试样的平均晶粒度。

    The mean grain size of stainless steel sintered from nano-sized powder was measured using these calibration curves .

  30. 研究表明,适当提高扫描速度或减小激光功率可以在一定程度上减小316不锈钢粉末选择性激光烧结的球化效应。

    The results show that increasing scan rate and decreasing laser power can minish balling effect to a certain extent .