1) melt deposition
熔化沉积
2) laser melting deposition
激光熔化沉积
1.
Microstructures and mechanical properties of ultra-high strength steel 300M fabricated by laser melting deposition;
激光熔化沉积300M超高强度钢组织与力学性能
2.
Directional rapidly solidified Ni-base superalloy Rene95 with ultra-fine columnar grain structure was produced by the laser melting deposition (LMD) manufacturing process.
采用激光熔化沉积定向快速凝固工艺,制备出了具有快速定向生长微细柱晶组织的Rene95高温合金板状试样,其一次枝晶间距约为7μm、枝晶间完全无γ/γ′共晶组织析出。
3.
Do experiments of GH163 high temperature alloy powder laser melting deposition.
进行了激光熔化沉积成形GH163高温合金粉末条状试样实验,研究了激光脉宽、激光重复频率、扫描速度、送粉速率四个工艺参数对条状试样熔宽和熔高的影响。
3) laser melting deposition manufacturing
激光熔化沉积
1.
The corrosion resistant ultrahigh strength steel AerMet 100 with thin plate form was fabricated by laser melting deposition manufacturing.
利用激光熔化沉积技术制备了AerMet 100耐蚀超高强度钢薄壁板状试样。
4) fused deposition modeling
熔化沉积造型
5) laser melting deposition manufacturing
激光熔化沉积制造
6) melting process
熔化
1.
A mathematical model was developed to simulate melting processes of ferrosilicon in liquid iron under natural convection.
建立了描述自然对流条件下Si-Fe在铁液中熔化过程的数学模型,固相、液相和糊状区中的动量、热量和溶质传输用统一方程描述,用控制容积差分法耦合求解质量、动量、能量和溶质守恒方程,计算结果与实验结果基本一致。
2.
A mathematical model for melting process of solid particles sub merged in metal bath has been developed,which includes the cases the melting point of solid particles is above, equal to,and below that of the metal.
建立了金属熔池中固体颗粒熔化过程的数学模型。
3.
Experimental and numerical results agree; they indicate that discrete flush mounted heat sources have important influence on the melting process.
利用焓法求解了矩形空腔内有3个分散平齐热源的熔化问题,考虑并分析了加热功率和过冷度对熔化界面形状和热源表面温度的影响,并把计算结果与前人的实验结果进行了比较,它们符合得比较好。
参考词条
补充资料:V_2O_5熔化铸片炉(峨嵋铁合金厂)
V_2O_5熔化铸片炉(峨嵋铁合金厂)
V205熔化铸片炉(峨嵋铁合.~7--)
说明:补充资料仅用于学习参考,请勿用于其它任何用途。