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MIM方法制备高硬度不锈钢剪刀的工艺研究
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作者 于学勇 华征潇 程凤军 《常熟理工学院学报》 2007年第2期63-66,共4页
用金属粉末注射成型的方法制备高硬度合金剪刀,其喂料使用440型不锈钢粉末和PEG/PMMA复合粘结剂制成。前人对该问题的研究主要集中在440型不锈钢粉末的PIM成型方法上,而本文结果表明:通过精确控制粉末的烧结条件和热处理工艺,就可以获... 用金属粉末注射成型的方法制备高硬度合金剪刀,其喂料使用440型不锈钢粉末和PEG/PMMA复合粘结剂制成。前人对该问题的研究主要集中在440型不锈钢粉末的PIM成型方法上,而本文结果表明:通过精确控制粉末的烧结条件和热处理工艺,就可以获得硬度高、粉末分布均匀、碳化物球化良好的制品。 展开更多
关键词 金属注射成型方法 硬质合金不锈钢 粘结剂 烧结
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Brazing behavior of ultrafine cemented carbide with stainless steel
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作者 杨天恩 杨力 +3 位作者 熊计 孙兰 郭智兴 郑晓鸣 《Journal of Central South University》 SCIE EI CAS 2014年第8期2991-2999,共9页
In order to investigate the effects of brazing temperature, heating rate and cooling methods on shear strength, hardness, magnetic saturation and coercivity of the ultrafine cemented carbide, the ultrafine cemented ca... In order to investigate the effects of brazing temperature, heating rate and cooling methods on shear strength, hardness, magnetic saturation and coercivity of the ultrafine cemented carbide, the ultrafine cemented carbide was fabricated according to conventional powder metallurgical procedures, and then brazed to the stainless steel with silver-based filler alloy by supersonic frequency induction brazing. The microstructure was observed using scanning electron microscope (SEM), energy dispersive spectroscopy (EDS) and the magnetic properties were tested utilizing coercimeter and cobalt magnetism instrument. The results show that no micro-crack is found in the cemented carbide after brazing because of silver-based sandwich compound used as filler alloy. In the melted silver layer, there is more carbon in the region adjacent to the cemented carbide. Varied shear strengths, hardnesses, magnetic saturations and coercivities are present under different brazing temperatures, heating rates and coolings. This phenomenon is correlated with some factors such as wettability and fluidity of filler alloy, brazing stress, oxidation of cemented carbide, and allotrope transition of cobalt. Shear strength reaches the maximum of 340 MPa and hardness of ultrafine cemented carbide remains 1879 HV at the brazing temperature of 730℃. The carbon increases with the of increase of the heating rate. What's more, and there is no r/phase found under this condition. content decreases with the increase of brazing temperature, and it the lowest magnetic saturation reaches 81.8% of the theoretic value, 展开更多
关键词 ultrafine cemented carbide BRAZING HARDNESS magnetic properties carbon content
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