首页> 外文会议>International Conference on Processing amp; Manufacturing of Advanced Materials; 20060704-08; Vancouver(CA) >Glass Forming and Thermal Properties of the Mg_(65)Cu_(25)Gd_(10-x)Nd_x(x=0 ~ 10) Amorphous Alloys
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Glass Forming and Thermal Properties of the Mg_(65)Cu_(25)Gd_(10-x)Nd_x(x=0 ~ 10) Amorphous Alloys

机译:Mg_(65)Cu_(25)Gd_(10-x)Nd_x(x = 0〜10)非晶态合金的玻璃形成和热性能

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The Mg_(65)Cu_(25)Gd_(10-x)Nd_x(x=0 ~ 10) amorphous alloy rods with 3~6 mm in diameter were prepared by Cu-mold injection method. The thermal properties and mechanical properties of these amorphous alloys have been investigated by DSC, SEM with EDS capability, X-ray diffractometry (XRD) and Vickers hardness test. The XRD revealed that these entire as-quenched Mg_(65)Cu_(25)Gd_(10-x)Nd_x alloy rods exhibit a broaden diffraction pattern of amorphous phase. A clear T_g (glass transition temperature) and supercooled region (about 30~60 K) were revealed for all of those Mg_(65)Cu_(25)Gd_(10-x)Nd_x alloys. In addition, the single stage crystallization of the Mg_(65)Cu_(25)Gd_(10) alloy was found to change into two stages crystallization when the Nd element was added into this alloy. In parallel, the crystallization temperature (T_x) and supercooled region (ΔT_x) presents a decreasing trend with increasing Nd content. The lowest liquidus temperature (T_1, about 721 K) occurs at the Mg_(65)Cu_(25)Gd_8Nd_2 alloy. In addition, The Mg_(65)Cu_(25)Gd_8Nd_2 alloy exhibits the high y value (0.416, defined as γ= T_x/T_g+T_l), a relatively high T_(rg) (0.59, defined as T_(rg) = T_g/T_l) and the highest hardness in these alloys.
机译:采用铜模注射法制备了直径为3〜6mm的Mg_(65)Cu_(25)Gd_(10-x)Nd_x(x = 0〜10)非晶态合金棒。通过DSC,具有EDS功能的SEM,X射线衍射法(XRD)和维氏硬度测试,研究了这些非晶态合金的热性能和机械性能。 X射线衍射表明,这些全部淬火后的Mg_(65)Cu_(25)Gd_(10-x)Nd_x合金棒显示出非晶相的加宽衍射图样。所有这些Mg_(65)Cu_(25)Gd_(10-x)Nd_x合金均显示出清晰的T_g(玻璃化转变温度)和过冷区域(约30〜60 K)。另外,发现当将Nd元素添加到该合金中时,Mg_(65)Cu_(25)Gd_(10)合金的单阶段结晶变成两阶段结晶。同时,随着Nd含量的增加,结晶温度(T_x)和过冷区域(ΔT_x)呈下降趋势。 Mg_(65)Cu_(25)Gd_8Nd_2合金出现最低液相线温度(T_1,约721 K)。此外,Mg_(65)Cu_(25)Gd_8Nd_2合金的y值较高(0.416,定义为γ= T_x / T_g + T_1),相对较高的T_(rg)(0.59,定义为T_(rg)= T_g / T_1)和这些合金中最高的硬度。

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