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Mechanism for Determination of G-factors for Solid Freeform Fabrication Techniques Based on Large Heat Input

机译:基于大热量输入的固体自由形状制造技术测定的机制

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A major class of Solid Freeform Fabrication (SFF) methods for metal deposition are based on large heat input. The geometry and microstructural properties of the deposition depend primarily on the heat input and the subsequent distribution at the substrate. On one hand the insufficient heat may lead to the inadequate melting of the metal, on the other hand overheating and heat accumulation leads to the over-melting, resulting in the deformation of the build up geometry. The heat distribution is governed by the available heat sink . For a better control of the process, the estimation of heat sinks and the subsequent control of the energy input allows a better control of the process. A parameter G-factor that estimates the heat sink based on the local geometry of a part has been introduced. The estimation of G-factor is based on the simulation and the experimental results. Also a mechanism to determine the G-factor for various substrate geometries has been introduced.
机译:用于金属沉积的一类固体自由形状制造(SFF)方法基于大热量输入。沉积的几何形状和微观结构性质主要取决于基板的热输入和随后的分布。一方面,不足的热量可能导致金属熔化不足,另一方面,过热和蓄热导致过熔化,导致构建几何形状的变形。热分配由可用的散热器管辖。为了更好地控制该过程,散热器的估计和随后对能量输入的控制允许更好地控制该过程。已经介绍了基于部件的局部几何形状估计散热器的参数G系数。 G型因子的估计基于模拟和实验结果。还引入了确定各种衬底几何形状的G因子的机制。

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