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shock bump的中文,翻译,解释,例句

shock bump

shock bump的基本解释
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冲击突出

相似词
更多 网络例句 与shock bump相关的网络例句 [注:此内容来源于网络,仅供参考]

We then add boundaries delineated forward/backward facing reflected shock, Mechanical equilibrium, M2=1 and reflected shock strong/weak separating conditions on the (M0,q1) map of shih(2004). This is followed by systematically investigating multiply possible three shock theoretical solutions of steady Mach reflections in perfect triatomic gases. Pressure-deflection shock polar solutions are used to help illustrate different solution behaviors of these theoretical three-shock solutions. M0 is flow Mach no. upstream of incident shock, M1 is flow Mach no. downstream of incident shock, M2 is flow Mach no. downstream of reflected shock,q1 is flow deflection downstream of incident shock.

随后本文由石(2004)论文中加入前后分界、机械平衡、M2=1及强弱分界条件,然后有系统地探讨三原子分子理想气体(r=1.2857 )稳态马赫反射参震波理论多重解之交点及其对应之压力-转折角震波极图解,并建构出此三原子分子理想气体稳态马赫反射流场三震波十阶多项式理论解於(Mo,q1)平面上之解域图,其中M0为入射震波上游流场马赫数,M1为入射震波下游流场马赫数,M2为入射震波下游流场马赫数,q1为入射震波下游流场转折角。

Experimental investigation indicates that shock wave velocity and shock wave pressure of beginning which were produced with aluminize RHTL were smaller than that of insensitive RDX in steel plate, however, attenuating velocity of shock wave velocity and shock wave pressure which were produced under contact explosion with aluminize RHTL were quciker than that of insensitive RDX in steel plate, when steel- plate had been separately operated under contact explosion with insensitive RDX and aluminize RHTL, and shock wave press had changed suddenly in the interface between steel and aluminum, In the circumstances, the shock wave velocity had ascended suddenly and shock wave pressure had descended suddenly.

实验研究表明:RHTL炸药爆炸加载钢板下,介质中的冲击波初始速度和初始压力相对RDX较小,衰减相对较快;钝化RDX和含铝炸药RHTL分别作用于钢铝复合板时,在分界面处冲击波速度和压力都发生突越,冲击波速度突跃,冲击波压力突降。

In this paper, the bump patterns for flip-chip packages are discussed first, then an experiment is setup to study the dispensing phenomena for different bump patterns, and the CAE software is used to analyze and identify with experiment mutually. From these thorough comparisons and analytical analysis, the existence of channel could slow down the flow, the high density of bump could speed up the flow, and it could avoid the air trap by modified the bump and channel's arrangement on flip-chip package. Then flows in rectangular microchannels driven by capillary force and gravity are discussed; furthermore, the theoretical model of flow in microchannel driven by capillary force and gravity is formulated from the Navier-Stokes equations.

本文首先针对覆晶底部充填进行相关理论推导、实验与模拟,探讨不同凸块配置模型所造成的波前不平滑现象对底部充填流动的影响;即依据相关参数建立模型进行底部充填实验,同时以CAE(Computer-Aided Engineering)模流分析软体进行模拟,在完成理论探讨、实验与模拟分析之后,交叉比较理论、实验与模拟分析结果,归纳出影响底胶充填流动之因素,由结果显示在凸块密集度较高的区域,凸块可以帮助流动,但是在凸块区后方的沟槽区域则因为凸块区所提供之流量不足,所以会造成波前落后的现象,另外藉由修改凸块与沟槽配置的关系,可以有效的控制波前形状的变化情形,避免产生包风现象。

更多网络解释 与shock bump相关的网络解释 [注:此内容来源于网络,仅供参考]

shock bump:冲击地压,冲击突出

shock bottom furnace ==> 振底炉 | shock bump ==> 冲击地压,冲击突出 | shock chamber ==> 激冷室,骤冷室

shock bump:撞擊

淺化係數 Shoaling coefficient | 撞擊 Shock bump | 負載突增 Shock loading