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1)  isothermal holding
等温保温
1.
Evolution on morphology of primary phase in semi-solid ZL101 Al alloy during isothermal holding in solid-liquid area;
半固态ZL101合金初生相在固液区间等温保温时形貌演变
2.
The semi-solid slurry of A356 alloy is prepared by lowsuperheat pouring, and the transform of morphology of primary phase in semi-solid A356 alloy during isothermal holding in solidliquid phase region is studied The effects of holding temperature and holding time on the morphology of primary phase in semisolid A356 alloy are investigated.
利用低过热度浇注工艺制备了A356-Sc铝合金半固态浆料,研究了A356-Sc铝合金半固态初生相形貌在固液相区等温保温中的转变,讨论了等温温度和保温时间对A356-Sc铝合金半固态初生相形貌演变的影响。
2)  long-time isotherm
等温保持
3)  isothermal temperature
等温温度
1.
Effect of isothermal temperature on microstructure of semi-solid 2024 alloy during partial remelting;
等温温度对半固态2024合金部分重熔组织的影响
2.
Based on this principle,we have analized the isothermal temperature range in which thecracks are apt to arise.
ZGMn13钢水韧处理加热过程中不同等温温度将产生不同的显微组织,根据这个原理,分析了容易产生裂纹的等温温区,并推荐了最佳等温温度。
3.
The results compared with those obtained by conventional quenching and tem-pering,show that 300M steel transformed with isothermal temperature below Ms has a mix structure ofmartenite,lower bainite and retained astenite.
研究了四种含碳量、三种等温温度与力学行为的关系,并与淬火回火300M钢进行比较得出,300M钢在Ms点以下温度等温获得M+B_下+A_R混合组织、超高强度和优良的韧性。
4)  CT (constant temperature)
恒温,等温
5)  isothermal [英]['aisəu'θə:məl]  [美][,aɪsə'θɝmḷ]
等温
1.
Analysis of isothermal viscoelastic mechanical behavior in transversely isotropic soft packing for valve;
阀用软填料横向同性等温粘弹力学行为的分析
2.
Study on the isothermal pretreatment of poly[(methylsilylene)ethynylene];
聚甲基硅次乙炔基硅烷等温预处理过程的研究
3.
Simulation on local loading partition during titanium bulkhead isothermal forming process
钛合金整体隔框等温成形局部加载分区研究
6)  Holding Temperature
保温温度
1.
Microstructure Evolution of Hypereutectic Al-Si Alloy Semi-slurry in Holding Temperature;
研究了保温时间和保温温度对电磁搅拌ZL117合金半固态浆料稳定性的影响。
补充资料:EPS夹芯保温板用于体育馆屋面


EPS夹芯保温板用于体育馆屋面


  EPs夹芯保温板用于体育馆屋面
  
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