首页> 外文期刊>粉体および粉末冶金 >Pulse electric current sintering behavior of atomized cast-iron powder of Fe-C system containing hypo-eutectic carbon (III) --Mechanical properties of atomized cast-iron porous sintered body
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Pulse electric current sintering behavior of atomized cast-iron powder of Fe-C system containing hypo-eutectic carbon (III) --Mechanical properties of atomized cast-iron porous sintered body

机译:含有低共聚碳(III)雾化铸铁多孔烧结体的Fe-C系统雾化铸铁粉末雾化铸铁粉的脉冲电流烧结行为

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摘要

The relationships between the bending strength and the relative density in the atomized cast-ironporous sintered bodies, which were made by the vacuum sintering method and the pulse electriccurrent sintering method, were studied. The results were as follows:(1) In the vacuum sintered body, the bending strength depended on the carbon content of powder.The bending strength of both the relative density over 65% of Fe-2.46mass%C compact and therelative density over 90% of Fe-3.96mass%C compact were dependent on the particle size, and thebending strength of the sintered body made from small size powder was larger than that of made fromlarge size powder.(2) In the pulse electric current sintered body, the bending strength did not depend on the particlesize, the carbon content and the sintering condition.(3) In the relative density range from 60% to 90%, the bending strength of the vacuum sinteredbody was larger than that of the pulse electric current sintered body. Over the relative density 90%,the bending strength of the pulse electric current sintered body was larger than that of the vacuumsintered body. In the low relative density range (60~90%), the bending strength was affected by thepore shape. However, in the high relative density range (90%~), the bending strength was influencedby the size of Fe{sub}3C.
机译:研究了通过真空烧结方法和脉冲电流烧结方法制造的抗污水炉烧结体中抗末强度和相对密度之间的关系。结果如下:(1)在真空烧结体中,弯曲强度依赖于粉末的碳含量。相对密度的弯曲强度超过Fe-2.46mass%C的65%,其紧凑且相关密度超过90 Fe-3.96mass%C compact的%取决于粒度,由小尺寸粉末制成的烧结体的结合强度大于制造的粉末大小粉末。(2)在脉冲电流烧结体中,弯曲强度不依赖于微粒化,碳含量和烧结条件。(3)在60%至90%的相对密度范围内,真空烧结体的弯曲强度大于脉冲电流烧结体的弯曲强度。在相对密度90%上,脉冲电流烧结体的弯曲强度大于真空搅拌体的弯曲强度。在低相对浓度范围内(60〜90%),弯曲强度受到行人的影响。然而,在高相对浓度范围内(90%〜),弯曲强度受到Fe {Sub} 3C的尺寸。

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