喷射
- 与 喷射 相关的网络例句 [注:此内容来源于网络,仅供参考]
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One company's "stone ejector" feature is another's rejector platform.
"一间公司的"石喷射器"的功能,是另一种的" rejector平台。
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A simple but effective hybrid ejector model was developed.
建立了一个简单且有效的喷射器混合模型。
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In general, the greater the number of ejector pins.
一般来说,越伟大喷射器别针的数量。
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The problems of locating ejector pins have many factors to be considered, especially when the part geometry is complex.
特别是当部分几何是复杂的时,设置喷射器别针的问题有将被考虑的许多因素。
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However, as the number of ejector pins increases, the effective area available for cooling channel placement decreases.
然而,因为喷射器的数字别住增量,有效面积可利用为冷却渠道安置减少。
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Designing an ejector system is a multi-million-pound project in its own right that could be fraught with problems itself.
" "设计一个喷射系统是一个多亿,本身英镑的项目,可与本身充满问题。
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In the paper the theory of gas ionization and particle electrization is used to discuss the phenomenon.
另外,还为高压喷射系统设计制作了控制电路和开发了时序控制软件,为进行液体代用燃料的研究提供了实验准备。
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Using successfully numerical control jet electroforming to make Nano copper which has very good mechanics character..
成功地利用数控喷射电铸制备了具有良好力学性能的纳米铜,为纳米金属地制备提供了一个新的方法。
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Discusses the main reason that causing the defaults of electroforming and the principle and methods that can improve the qualities of electroforming products.
本文从电铸电化学机理的角度探讨了导致电铸缺陷的主要原因和提高电铸品质的方法和原理,并以此为基础提出了数控喷射电铸。
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The PDC bit can encase from wear caused by high temperature.
对水射流辅助切割岩石时刀具温度的计算发现,由于射流一直围绕刀具喷射,高速冲走刀具周围的热量,使刀具工作在100℃以下,避免了PDC易高温磨损的可能。
- 推荐网络例句
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Finally, according to market conditions and market products this article paper analyzes the trends in the development of camera technology, and designs a color night vision camera.
最后根据市场情况和市面上产品的情况分析了摄像机技术的发展趋势,并设计了一款彩色夜视摄像机。
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Only person height weeds and the fierce looks stone idles were there.
只有半人深的荒草和龇牙咧嘴的神像。
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This dramatic range, steeper than the Himalayas, is the upturned rim of the eastern edge of Tibet, a plateau that has risen to 5 km in response to the slow but un stoppable collision of India with Asia that began about 55 million years ago and which continues unabated today.
这一引人注目的地域范围,比喜马拉雅山更加陡峭,是处于西藏东部边缘的朝上翻的边框地带。响应启始于约5500万年前的、缓慢的但却不可阻挡的印度与亚洲地壳板块碰撞,高原已上升至五千米,这种碰撞持续至今,毫无衰退。