熔体温度是什么?它又不是什么?。
希望把熔体温度升高一些。
随着熔体温度的增加,挥发趋势也增大。
With the increase of the melt temperature, the evaporation trend increases.
另外,熔体温度对该合金的氧化也有影响。
The temperature has great effects on the oxidation of molten AZ91 alloy.
流道中熔体温度均匀。
较高的口模和熔体温度是减少口模出口应力的一种方法。
Higher die and melt temperatures are one way to reduce die-exit stress.
投入运行后,熔体温度稳定,调节阀动作平稳,效果良好。
After put into running, the melt temperature is steady, the running of the regulating valve is smooth, the effect is good.
着重讨论了渗碳炉、铜、铝等液态金属熔体温度检测技术。
The discussion on the temperature measuring techniques for liquid metal melts of copper, aluminum and the melt in a cementite furnace etc. is put stress on.
标准的熔体温度常常是错误的,所以要用手工检查熔体温度。
Standard melt thermocouples are often wrong, so check the melt temperatures by hand.
模具温度对成型过程的影响较大,熔体温度的影响相对较小。
The mold temperature obviously influences the molding process, while the melt temperature influences comparatively less.
从确定真正的熔体温度开始,然后按照这个温度设定口模体的温度。
Start by determining the true melt temperature and set the die body to that temperature.
实验结果表明,熔体温度和模具温度对试样的力学性能有重要影响。
Our results show that mechanical properties of PP samples strongly depend on the melt temperature and mold temperature.
实验结果表明,熔体温度和模具温度对试样的力学性能有重要影响。
Our results show that mechanical properties of PP samples strongly depend on the melt temperature and mold te...
稳定的体积流量和降低熔体温度对于改善最终产品的质量有重要意义。
The constant volumetric delivery and melt temperature reduction bring a significant improvement in the quality of the end product.
炉料质量与熔体温度呈线性关系,随着炉料质量的增大熔体温度降低。
The melt temperature decreases linearly with the increase of the charge mass.
加工窗口分析、它零件的模流分析,检查熔体温度、具温度、塑压力和充填时间。
Process window analysis, another part of mold flow analysis, examines melt temperature, mold temperature, injection pressure, and fill times.
而剪切速度、熔体温度及2,7 -萘二酚链节含量对此两种粘度有重大的影响。
The two kinds of viscosities were significantly affected by the rate of shear, melt temperature and 2, 7-naphthalenediol unit content.
探讨了聚酯切片含水率、熔体温度、熔体压力、切变速率对熔体切变粘度的影响。
The effects of the moisture content in polyester chip, the melt temperature and pressure, and the shear rate on the shear viscosity are discussed.
结果表明,适当降低熔体温度和提高侧吹风速度,可以提高丝条异形度的保持率。
The results show that by lowering the fusant temperature and raising the cross air blasting speed properly, we can keep the degree of profile at a reasonable scope.
结果表明:共混物的熔体流动指数随PEEK含量的降低和熔体温度的升高而增加;
The melt flow index of the blends was increased when the content of PEEK was decreased and melt temperature was increased.
结果表明,熔体温度下降、所受拉伸比增加或冷却风速度升高均可使表观密度增加。
The results show that the apparent density of hard elastic polypropylene increases with a lower melt temperature, or a higher draft ratio, or a higher air blasting speed.
这就意味着没有什么测量反馈来改变熔体温度,熔体温度也不用于控制别的什么东西。
That means there is no feedback from any other measurement that would alter the melt temperature, nor is melt temperature used to control anything else.
金属陶瓷具有良好的耐热态金属及熔渣侵蚀性能,可实现对高温熔体温度的连续测量。
The cermet had merits of high resistance to corrosion of hot metal and slag, it can be used for continuous temperature measurement.
本文叙述了注射成型中加工参数、物料性能及螺杆结构对存料区熔体温度分布的影响。
The influences of processing parameters, material properties and screw design on melt temperature distribution in reservior during injection moulding are described in this paper.
用小角光散射、电子显微镜等方法研究了熔体温度对熔融结晶的PTFE结晶形态的影响。
The influence of the melt temperature on the crystalline morphology of polytetrafluoroethylene was studied by Small Angle Light Scattering and Electron Microscope techniques.
本文研究了在不同的熔体温度和模具温度下,注射成型的聚丙烯塑料试样的静态和动态力学性能;
The static and dynamic mechanical properties have been studied for PP that have been injected at different melt temperature and mold temperature.
气体经喷嘴进入聚合物熔体时所形成的气熔界面的运动情况随着进气压力、熔体温度等不同参数的改变而发生变化。
The interface motion situation of gas-melt is changed when injecting gas into melt in various conditions-gas-entering pressure, melt temperature and so on.
气体经喷嘴进入聚合物熔体时所形成的气熔界面的运动情况随着进气压力、熔体温度等不同参数的改变而发生变化。
The interface motion situation of gas-melt is changed when injecting gas into melt in various conditions-gas-entering pressure, melt temperature and so on.
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