应用“火花等离子烧结”技术提高Astaloy CRL烧结钢的接触疲劳抗力

Q4 Materials Science
D. Rodziňák, J. Čerňan, V. Puchý
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引用次数: 0

摘要

本文研究了孔隙率对含0.3和0.4% c的Astaloy cr型烧结材料接触疲劳的影响。M−3到7859kg的值。M−3几乎为零孔隙率(致密材料)。结果表明,随着温度的升高,压实压力的增加,孔隙率从9.10%降低到0.0005%,硬度从145 HV10提高到193 HV10,这取决于含碳量。逻辑也有增加疲劳寿命的接触疲劳测试的价值50×106周期的值从900 MPa 1150 MPa样本0.3%的C和900 MPa为样本有0.4% C . 1300 MPa进行这些调查也过去,但为了达到减少孔隙度,在每个层次使用不同technonologies如双压、热压、饱和度、热锻等。在这种情况下,利用高温压实的“火花等离子烧结”技术能够连续地将孔隙率降至零。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applying “Spark Plasma Sintering” Technology to Enhance the Resistance to Contact Fatigue of Sintered Steel Based on Astaloy CRL
Abstract The article deals with the effect of porosity on the contact fatigue of sintered material type Astaloy CrL with 0.3 and 0.4% C. Sets of samples were used with densities beginning from the value of 7000 kg.m−3 to the value of almost 7859 kg.m−3 which represents almost zero porosity (compact material). It has been found out that the increase of compacting pressure applied simultaneously with temperature results in the reduction of porosity from the value of 9.10% to 0.0005% and increase in hardness from 145 to 193 HV10, depending on the carbon content. Logically there is also an increase in the fatigue life by the contact fatigue tests for the value of 50×106 cycles from the value of 900 MPa to 1150 MPa for samples with 0.3% of C and from 900 MPa to 1300 MPa for samples with 0.4% C. These investigations were also carried out in the past, but to achieve the reduction of porosity, different technonologies were used at each level such as double pressing, hot pressing, saturation, hot forging, etc. In this case, the single technology of “spark plasma sintering” making use of compacting at high temperatures is capable to continuously reduce porosity to zero.
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来源期刊
Powder Metallurgy Progress
Powder Metallurgy Progress Materials Science-Metals and Alloys
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