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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Tensile Strengths for Laser-Fabricated Parts and Similarity Parameters for Rapid Manufacturing
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Tensile Strengths for Laser-Fabricated Parts and Similarity Parameters for Rapid Manufacturing

机译:激光加工零件的拉伸强度和快速制造的相似参数

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This paper presents a set of process parameter selection rules to deposit a good metal part. A CO_2 laser is used to melt metal powder to achieve layer by layer deposition for fabricating three-dimensional parts. Dimensionless numbers characterizing this powder deposition process are identified using Buckingham's II-Theorem. These dimensionless numbers are used to identify a range of values for the process parameters, such as the laser power, spot diameter, speed of the xyz stage and powder flow rate, to achieve good quality layers for different materials. The yield and ultimate strengths are examined for parts fabricated with stainless steel 304 (SS 304) powder under three different processing conditions. These stresses are correlated to the operating conditions and physical dimensions of the deposit through the dimensionless similarity' parameters. Experimental data indicate that the yield strength of the part is close to the value of standard sample (250 MPa, same as wrought stainless steel SS304). It is also observed that the direction of maximum yield strength is oriented very close to the dominant direction of material solidification. The ultimate strength is found to be considerably less than the ultimate strength of wrought SS 304 (540 MPa) which may be due to the residual stresses generated in the part.
机译:本文提出了一套用于沉积优质金属零件的工艺参数选择规则。使用CO_2激光熔化金属粉末以实现逐层沉积以制造三维零件。使用白金汉II-定理确定表征该粉末沉积过程的无量纲数字。这些无量纲的数字用于标识工艺参数的一系列值,例如激光功率,光斑直径,xyz载物台的速度和粉末流速,以实现针对不同材料的高质量涂层。在三种不同的加工条件下,检查了用不锈钢304(SS 304)粉末制造的零件的屈服强度和极限强度。这些应力通过无量纲相似性参数与沉积物的操作条件和物理尺寸相关。实验数据表明,零件的屈服强度接近标准样品的值(250 MPa,与锻造不锈钢SS304相同)。还观察到最大屈服强度的方向非常接近材料凝固的主要方向。发现极限强度明显小于锻制SS 304的极限强度(540 MPa),这可能是由于零件中产生的残余应力所致。

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