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On the combined effect of lubrication and compaction temperature on properties of iron-based P/M parts

机译:润滑和压制温度对铁基粉末冶金零件性能的综合影响

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Addition of lubricant in the form of admixed with powder reduces friction between die wall and powder during compaction of P/M parts. However, it has detrimental effect on mechanical properties. On the other hand, warm compaction of powders improves density and hence, the mechanical properties of these parts. Die wall lubrication can be used along with warm compaction to avoid the disadvantages of the admixed lubricant while reducing the friction, and benefiting the advantages of warm compaction. In this study, the combined effect of warm compaction and die wall lubrication with various amounts of admixed lubricant has been examined. Compacts were made of admixed powders containing from 0 to 0.6% lithium stearate with the die wall lubricated by 1.5% emulsion of lithium stearate under two different pressing pressures of 500 and 650 MPa. The temperatures used were: RT, 130, 150 and 165 ℃. It was found out that at both compaction pressures, reduction of admixed lubricant down to 0% increased the green density and mechanical properties of the sintered parts. For samples pressed at 500 and 650 MPa the increase in green density due to elimination of admixed lubricant and using die wall lubrication was 0.33 and 0.35 g/cm~3, respectively. It was also found out that die wall lubrication is more effective in increasing green density at higher compaction pressures. Sinter density and mechanical properties increased by increasing compaction temperature up to 150 ℃. Both parameters were deteriorated above this temperature for admixed powders, while it kept increasing for die wall lubrication.
机译:以粉末形式添加的润滑剂的添加减少了P / M零件压实过程中模具壁与粉末之间的摩擦。但是,它对机械性能有不利影响。另一方面,粉末的热压实可提高密度,从而改善这些零件的机械性能。模具壁润滑可与热压实一起使用,以避免混合润滑剂的缺点,同时减少摩擦,并有利于热压实的优点。在这项研究中,研究了热压实和模具壁润滑与各种混合润滑剂的综合作用。压粉由含0至0.6%硬脂酸锂的混合粉末制成,模具壁在500和650 MPa的两种不同压制压力下由1.5%的硬脂酸锂乳剂润滑。使用的温度为:RT,130、150和165℃。已经发现,在两种压实压力下,混合润滑剂的降低至0%都增加了烧结零件的生坯密度和机械性能。对于在500和650 MPa压力下压制的样品,由于消除了混合润滑剂和使用模具壁润滑,生坯密度的增加分别为0.33和0.35 g / cm〜3。还发现,在较高的压制压力下,模具壁润滑在增加生坯密度方面更有效。通过将压实温度提高到150℃,可以提高烧结矿的密度和机械性能。对于混合粉末,两个参数均在高于该温度的条件下劣化,而对于模具壁润滑则保持不变。

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