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1)  thermal differential forging
差温锻造
2)  thermal differential dieless forging
差温无模锻造
1.
FEM simulation and study on forming shaft-disc type components by the thermal differential dieless forging;
轴盘类零件的差温无模锻造模拟分析
2.
The thermal differential dieless forging process for forming the shaft_disc type components has been simulated.
模拟了轴盘类零件的差温无模锻造成形过程,通过分析坯料变形过程中的温度场、位移场、应变场以及应变速率场的分布情况,研究了加热高度和坯料高径比在轴盘类零件差温无模锻造成形中的影响,同时总结出了一些成形规律。
3.
To search the application of thermal differential dieless forging for gear shape forgings,the 3D FEM model of thermal differential was established.
为探索差温无模锻造技术在成形齿形类锻件中的应用,首先建立了差温加热的三维温度场有限元分析模型,并通过正交实验法确定了在两种不同加热方式下最佳温度场的工艺匹配,在此基础上进行了两种不同热加载方式的变形模拟。
3)  isothermal forging
等温锻造
1.
Design of heating device for magnesium alloy isothermal forging and temperature curve of die;
镁合金等温锻造加热装置的设计及模具温度曲线
2.
Numerical simulation of grain size during isothermal forging of TC6 alloy;
TC6合金等温锻造过程中晶粒尺寸的数值模拟
3.
Simulation of Isothermal Forging for Superalloy and Analysis of Thermal Load on Die;
粉末高温合金盘件等温锻造模拟及模具热负荷分析
4)  forging temperature
锻造温度
1.
Using TA5 ingot with α/α+β transformation temperature of 990-1 000 ℃ by two times melting,the tests for forging temperature and reduction were performed.
采用二次真空熔炼熔铸的α/α+β转变温度为990 ̄1000℃的TA5钛合金,在β相区开坯,经多火次中间锻造后,对其最后一火次的锻造,改变锻造温度和变形量共8种工艺方案进行实验,考察锻造温度和变形率对组织和性能的影响。
2.
According to the forging blank requirements of a magnesium alloy shell,the parameters such as forging temperature,furnace holding time,clamping board temperature of the forging machine,forging time and so on of MB2 magnesium alloy forged on the general forging machine are determined by experiments.
根据某壳体零件锻造毛坯的要求,通过试验确定了MB2镁合金在普通锻床上锻造时的锻造温度、炉膛保温时间、锻床夹板温度、锻打时间等工艺参数,为制订该合金的锻造工艺提供了依据。
5)  low-temperature forging
低温锻造
1.
Analysis of familiar defects of low-temperature forging on operating instruments;
手术器械低温锻造常见缺陷原因分析
6)  isothermal forging
恒温锻造
补充资料:差差
1.犹参差。不齐貌。
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