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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Mechanical behaviour of pressed and sintered titanium alloys obtained from prealloyed and blended elemental powders
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Mechanical behaviour of pressed and sintered titanium alloys obtained from prealloyed and blended elemental powders

机译:由预合金和混合元素粉末制得的压制和烧结钛合金的机械性能

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摘要

The applicability of irregular prealloyed Ti-6Al-4V powder for the fabrication of titanium products by pressing and sintering and its employment as a master alloy to obtain the Ti-3Al-2.5V alloy was studied. To this end, the starting powders were characterised by dilatometry, differential thermal analysis and XRD. Green samples were obtained by cold uniaxial pressing, and the evolution of the microstructure over the sintering temperature range 900-1400. °C was studied. The variation of the final density and mechanical properties with the sintering temperature was considered. Based on the study carried out, it can be stated that more reliable powders are needed to open the titanium market to new applications. A relative density of 95% and diverse microstructural features and mechanical properties equivalent to those of biomedical devices can be obtained by the pressing and sintering route.
机译:研究了不规则预合金化的Ti-6Al-4V粉末在压制和烧结法制备钛产品中的适用性及其作为母合金获得Ti-3Al-2.5V合金的用途。为此,通过膨胀计,差热分析和XRD对起始粉末进行了表征。通过冷单轴压制获得生坯样品,并且在900-1400的烧结温度范围内显微组织的演变。研究了℃。考虑了最终密度和机械性能随烧结温度的变化。根据进行的研究,可以说需要更可靠的粉末才能将钛市场开放到新的应用领域。可以通过压制和烧结途径获得95%的相对密度以及与生物医学设备相当的各种微结构特征和机械性能。

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