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1)  High Energy Filling Mold
高能充型
1.
Influence of High Energy Filling Mold on Die Casting Quality;
高能充型对压铸件品质的影响
2)  Filling ability
充型能力
1.
Influences of microstructure characteristics of semi-solid A356 alloy on filling ability;
半固态A356合金微观组织特征对充型能力的影响
2.
The study indicated effect extent of four main technology parameter on filling ability of thin-walled castings was rising pressure time, crystal pressure, degree of vacuum, filling pressure in turn.
研究结果表明,这些参数对薄壁铸件充型能力影响程度的大小依次为升压时间、结晶压力、真空度、充型压力。
3.
The results show that the traveling magnetic field foundry method by using linear motor can enhance the filling pressure head of liquid metal and effectively improve the filling ability of aluminum alloy;when the voltage is 220-250 V,the completer casting piece can be obtained by taking stainless steel as the bottom plate.
结果表明,采用直线电机移动磁场铸造法可增强液态金属的充型压头,有效改善铝合金充型能力,当电压达到220~250V之间,采用不锈钢作为铸型可以浇注出较完整的铸件。
3)  Mold Filling Capacity
充型能力
1.
Effect of EPC Process on Mold Filling Capacity of Molten Metal;
消失模铸造工艺因素对液态金属充型能力的影响
4)  filling capacity
充型能力
1.
A filling capacity computing model of liquid gray iron in a small diameter mould was established by combining stoppage mechanism of liquid alloy flow with the solidification theory.
结合Flemings提出的液态合金停止流动机理与凝固理论,建立了细直径型腔中灰铸铁铁液充型能力的计算模型。
2.
The vibration direction was the same as the flow direction,and the influence of mechanical vibration at different frequency and amplitude on the filling capacity of A356 and AZ91D under lost foam casting was studied.
在A356铝合金和AZ91D镁合金消失模铸造浇注过程中采用与流动方向一致的水平振动,研究不同频率和振幅的机械振动对A356和AZ91D消失模铸造充型能力的影响。
3.
Research status of adjusted pressure casting technology was reviewed from filling capacity, properties of solidification feeding and mechanical properties respectively.
介绍了调压铸造技术的原理及其工艺特点,从充型能力、凝固补缩特性、力学性能等方面评述了目前调压铸造技术的研究现状;结合实际生产应用情况,展望了我国调压铸造技术的发展前景,并对我国发展调压铸造技术提出了一些建议。
5)  intelligent high-frequency switch charger
智能型高频开关充电装置
6)  high-performance battery charger
高性能充电器
补充资料:充炭黑充油丁苯橡胶
分子式:
分子量:
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性质:同时含有炭黑和油的丁苯橡胶。性能和用途与充炭黑丁苯橡胶和充油丁苯橡胶相似。由冷聚丁苯胶乳与炭黑的水分散液和油乳液经混合、凝聚、洗涤、过滤、干燥等步骤制得。

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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