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EXPERIMENTAL INVESTIGATION OF LASER METAL DEPOSITION OF FUNCTONALLY GRADED COPPER AND STEEL

机译:用于自变电梯铜和钢的激光金属沉积实验研究

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Laser metal deposition is an emerging technology for producing fully dense metallic parts. This process shows a promising future for the deposition of functionally graded steel - copper alloys. Good thermal conductivity of copper and a high wear resistance of steel can be achieved in dies and cores. However, to accomplish this, there are many issues to be resolved, such as the formation of an undesirable phase, solidification cracking, porosity at the interface and difference in thermal coefficient of expansion between steel and copper. The influences of process variables, such as laser power, laser scan speed, composition, powder flow rate, on the success of the process, should be studied.
机译:激光金属沉积是一种用于生产完全致密的金属部件的新兴技术。该过程显示了有希望的未来,用于沉积功能梯度钢 - 铜合金。在模具和芯中可以实现铜的良好导热性和钢的高耐磨性。然而,为了实现这一点,存在许多问题待解决,例如形成不希望的相,凝固裂化,界面处的孔隙率和钢和铜之间的热量膨胀差异。应研究过程变量的影响,如激光功率,激光扫描速度,组成,粉末流量,在该过程的成功上,应研究。

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