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Phase Constitution and Heat Treatment Behavior ofTi-7mass Mn-Al Alloys

机译:IS-7mass%Mn-Al合金的相体积和热处理行为

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Titanium exhibits many attractive properties. It is considered to be ubiquitous since it has the 9th-highest Clarke number of all the elements. However, the principal beta-stabilizing elements for titanium can be very expensive, making many titanium alloys expensive. Manganese is a beta stabilizer for titanium alloys and it is also considered to be ubiquitous since it has the 1 1 th-highest Clarke number of all the elements. The behavior of Ti-Mn alloys during heat treatment has been investigated and it was found that in some alloys the isothermal omega phase is precipitated. Because this phase can lead to brittleness, it is very important to suppress its precipitation. Since it is well-known that aluminum suppresses isothermal omega precipitation, we investigated the effect of adding aluminum using Ti-7mass% Mn-0, 1.5, 3.0 and 4.5mass% Al alloys by performing electrical resistivity, Vickers hardness, and X-ray diffraction measurements. In solution-treated and water-quenched 0 and 1.5 alloys, only beta phase was identified, while hcp martensite and bate phase were identified in 3.0 and 4.5A1 alloys. The resistivities at room and liquid-nitrogen temperatures were found to increase monotonically with increasing Al content. Isothermal co precipitation was suppressed by aluminum addition, while alpha precipitation was accelerated by Al addition.
机译:钛表现出许多有吸引力的特性。它被认为是普遍的,因为它具有所有元素的第9位最高的克拉克号码。然而,钛的主要β稳定元素可以非常昂贵,使许多钛合金昂贵。锰是钛合金的β稳定剂,并且也被认为是普遍的,因为它具有所有元素的1 1个最高克拉克数量。研究了Ti-Mn合金在热处理期间的行为已经研究过,发现在一些合金中,等温ω相沉淀。因为这种阶段会导致脆性,因此抑制其降水非常重要。由于众所周知,铝抑制等温ω-0,1.5,3.0和4.5mass%Al合金通过执行电阻率,长度硬度和X射线来研究加入铝的效果衍射测量。在溶液处理和水淬料0和1.5合金中,鉴定了β相,而HCP马氏体和Bate相在3.0和4.5A1合金中鉴定。发现室内和液氮温度的电阻率随着Al含量的增加而单调增加。通过铝加入抑制等温CO沉淀,而Al加入α沉淀加速。

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