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首页> 外文期刊>Journal of Materials Processing Technology >Structural phase evolution with temperature of non-conventional particles in PIM
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Structural phase evolution with temperature of non-conventional particles in PIM

机译:PIM中非常规粒子的结构相随温度的演化

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摘要

Some inorganic natural powders may be interesting to manufacture complex shapes by powder injection moulding (PIM). However, these powders may evolve chemical and physically with temperature during the manufacturing processes, inducing blusters and geometrical irregularities, particularly loss of circularity. These imperfections were associated to gas liberation and dimensional variations during the debinding and sintering treatments and not to feedstocks' fluidity. Natural powders for manufacturing products by PIM must be previously calcined before conformation, in order to eliminate possible chemical reactions and phase transformation during debinding and sintering. To highlight the effect of the calcination process in the final quality of the sinter, a complex geometrical testing-probe was developed. After sintering, calcined and non-calcined powders have similar mechanical properties (σ{sub}0{sup}(calcined) = 111MPa, σ{sub}0{sup}(non-calcined) = 93MPa, Weibull modulus = 10). The use of a feedstock of the natural calcined powders leads to PIM products with high geometrical reproducibility and good surface finishing.
机译:一些无机天然粉末可能通过粉末注射成型(PIM)来制造复杂形状,这可能是令人感兴趣的。但是,这些粉末在制造过程中可能会随着温度的变化而发生化学和物理变化,从而引起起泡现象和几何形状的不规则性,特别是圆度的损失。这些缺陷与脱脂和烧结处理中的气体释放和尺寸变化有关,与原料的流动性无关。为了消除在脱脂和烧结过程中可能发生的化学反应和相变,必须先在PIM之前对用于PIM生产产品的天然粉末进行煅烧。为了突出煅烧过程对烧结矿最终质量的影响,开发了一种复杂的几何测试探针。烧结后,煅烧和未煅烧的粉末具有相似的机械性能(σ{sub} 0 {sup}(煅烧)= 111MPa,σ{sub} 0 {sup}(未煅烧)= 93MPa,威布尔模量= 10)。天然煅烧粉末的原料的使用导致PIM产品具有高几何可再现性和良好的表面光洁度。

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