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1)  melt flow forging
熔体流动锻塑
2)  melt flow rate of plastics
塑料熔体流动速率
3)  melt flow
熔体流动
1.
Miniaturization of the channel size makes the flow behaviours of polymeric melt different from the macroscopic fluid at some aspects,and the neglected factors in macroscale for melt flowing may become the main influencing factors in microscale.
基于宏观熔体流动的基本理论及其流动过程中壁面滑移机理的分析,针对微注塑成型模具中熔体充模流动时的壁面滑移行为,建立了微小通道中高聚物熔体流动的壁面滑移理论模型。
2.
e model of the melt flow in the metering zone of the single screw extruder under the vibration force field was set up and the approximate analytical solution of the velocity of the Newtonian fluid was obtained.
建立了振动力场作用下单螺杆挤出机计量段中熔体流动的物理模型,在Stokes假设基础上,得到了螺槽内牛顿流体速度分布的解析解。
3.
Semi-solid ZL101 alloy with granular microstructures has been successfully produced by controlled crystallization, and the effect of melt flow at initial solidification on granular primary phase formation is analyzed.
采用控制熔体结晶法制得颗粒状组织半固态 ZL101合金,研究了结晶初期熔体流动对粒状初晶形成的作用。
4)  melt flow field
熔体流动场
1.
GF/PET composites were prepared by extrusion in which the shear rate of melt flow field could be controlled.
采用不同的成膜剂处理玻纤(GF),改变制备试样过程中熔体流动场剪切速率来挤出制备了GF/聚对苯二甲酸乙二醇酯(PET)复合材料。
2.
By using different glass fiber treatment technology and altering the shear rate of melt flow flield in preparation of PET/GF composites,the influences of glass fiber treatment technology and melt flow field on microstructure of PET/GF composites were studied through IR,DSC,SEM analyses.
采用不同玻纤(GF)处理工艺,改变制备聚对苯二甲酸乙二酯(PET)/GF复合材料试样过程中熔体流动场剪切速率,通过红外光谱(IR)仪、差示扫描量热(DSC)仪分析和扫描电镜(SEM)观察,研究GF处理工艺和熔体流动场对PET/GF复合材料微观结构的影响。
5)  Melt Flowability
熔体流动性
1.
The processing aid WAC-1010 improves the melt flowability of PVC-U scrap and products quality obviously.
以PVC-U边角料为原料的回收利用产品检测结果表明:利用PVC-U边角料生产其他产品是可行的,添加加工助剂WAC-1010后,熔体流动性改进效果明显,产品质量符合国家标准。
6)  plastic melt
塑料熔体
1.
Through the analysis on liquidity of plastic melt in cavity and comparison between control modes for mould temperature,the optimal method of control of mould temperature in the injection process for mini parts was determined.
通过对塑料熔体在型腔中的流动性分析和模具温度控制方式的比较,确定了微结构塑件在注射过程中模具温度控制的优化方案。
2.
According to the structure of plastic parts and mold characteristics,the flow model of the plastic melt in the gating system based on the ANSYS was built and simulated.
根据塑件结构及其模具特点,基于ANSYS软件,建立并模拟了塑料熔体在浇注系统中的流动模型。
补充资料:熔体流动速率
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性质:在规定的试验条件下,从规定直径和长度的模孔中,在10min内挤出的热塑性物料的量。过去,有人把它称之为熔体指数或熔融指数,现在不推荐这样的称谓。这是表示热塑性树脂熔融时流动性的好坏,是一个相通地比较量。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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