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The Effect of Tellurium on the Formation of MnTe-MnS Composite Inclusions in Non-Quenched and Tempered Steel

机译:碲对非调质钢中MnTe-MnS复合夹杂物形成的影响

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Te is a seldom-used alloying element, which is mainly used in free-machining steel. The Te content in this kind of steel is relatively low, and only a small amount of MnTe is generated. In previous studies, the effect of Te on the formation of inclusions was not fully studied. In order to clarify the mechanism, different amounts of tellurium were added into 38MnVS6 steel to form a certain amount of MnTe. The MnTe wrapped the MnS, forming a composite inclusion. With the increase of Te content in the steel, the diameter of inclusion increased, while the aspect ratio of inclusion varied little. The aspect ratio of most inclusions was in the range of 1~3. Besides, the MnS in the MnTe-MnS composite inclusions gradually changed from one big particle to several small particles. The solidification of the steel, as well as the precipitation of MnS and MnTe, was the main factor that affecting the formation of the composite inclusion. The mechanism of the process was systematically expressed in the current study.
机译:Te是一种很少使用的合金元素,主要用于易切削钢。这种钢中的Te含量相对较低,仅生成少量的MnTe。在以前的研究中,Te对夹杂物形成的影响尚未得到充分研究。为了阐明机理,将不同量的碲添加到38MnVS6钢中以形成一定量的MnTe。 MnTe包裹MnS,形成复合夹杂物。随着钢中Te含量的增加,夹杂物的直径增加,而夹杂物的长径比变化很小。大多数夹杂物的长径比在1〜3的范围内。此外,MnTe-MnS复合夹杂物中的MnS从一个大颗粒逐渐变为几个小颗粒。钢的凝固以及MnS和MnTe的沉淀是影响复合夹杂物形成的主要因素。在当前的研究中系统地表达了该过程的机制。

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