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1)  Bridgman equation
Bridgman公式
1.
To the smallest cross-section,the results show that the smaller notch root radius leads to the larger difference between the circumferential strain and the radial strain,the less uniform of the strain,and the difference of the stress triaxiality from the one predicted by Bridgman equation.
结果表明:缺口根半径越小,最小横截面上周向和径向应变相差越大且越不均匀,并导致最小横截面上的应力三维度与Bridgman公式预测结果不一样。
2)  Bridgman method
Bridgman法
1.
The crystal growth process with Bridgman method was simulated via NH4Cl-H2O solution eutectic solidification.
利用NH4Cl-H2O溶液的共晶凝固模拟Bridgman法晶体生长过程,通过粒子图像测速系统测量了矩形腔和圆柱腔内NH4Cl-H2O溶液共晶凝固过程中的流场,结合温度变化得到了凝固过程中流动和温度的耦合规律。
2.
The growth process by Bridgman method was computed under different growth conditions, and the effects of conditions on the growth process were investigated.
本文对不同环境条件时Bridgman法晶体生长过程进行计算,并对不同条件对生长过程的影响加以讨论。
3.
Bridgman method for tetragonal system was investigated by numerical simulation.
本文对四方晶系晶体的Bridgman法生长进行了稳态数值模拟。
3)  bridgman-stockbarger method
Bridgman-Stockbarger法
1.
By using a multi-hole-crucible and a furnace designed by ourselves,the CaF2 crystals were grown by Bridgman-Stockbarger method under the vacuum condition.
采用独特设计的多孔体坩埚和自行设计的晶体生长炉,在真空条件下,用Bridgman-Stockbarger法生长出了CaF2光学晶体。
4)  vertical Bridgman method
垂直Bridgman法
1.
With the polycrystal,PbI_2 single crystal with size of 15mm×30mm has been grown by vertical Bridgman method.
以此为原料,用垂直Bridgman法生长出尺寸为15mm×30mm的PbI2 单晶锭。
2.
Single crystal of Cr~(3+): LiCaAlF_6 was grown by vertical Bridgman method from stoichiometric composition melt.
用垂直Bridgman法从化学计量比组份的熔体中长出Cr~(3+):LiCaAlF_6单晶。
3.
The MIT crystal with dimensions of 15 mm×175 mm was successfully grown by using vertical Bridgman method with the synthesized polycrystalline material in a pre-designed crucible.
以高纯Hg、In、Te单质为原料,通过元素直接化合反应合成了碲铟汞(MIT)多晶料,并利用合成的高纯多晶料,在特殊设计的坩埚中,采用垂直Bridgman法通过自发成核方式成功地生长了尺寸为Φ15mm×175mm的MIT单晶体。
5)  pressured bridgman method
加压Bridgman法
6)  Bridgman method
Bridgman方法
1.
KMgF 3 single crystals were grown by Bridgman method.
本文采用Bridgman方法生长了KMgF3 单晶。
补充资料:BR
    顺丁橡胶是1,3-丁二烯采用定向溶液聚合方法得到的高顺式1,4结构含量的聚丁二烯,称为聚丁二烯橡胶,是有规立构橡胶,简称 BR, 高分子量的顺丁橡胶分子量为(80-120)×104;中高分子量的顺丁橡胶分子量为(25-40)×104。分子量分布较窄。玻璃化温度TG=-110 ℃。具有弹性高、低温性能好、耐磨性优异、耐曲挠性良好等特点。顺丁橡胶的缺点是拉伸强度、撕裂强度较低,抗湿滑性差,冷流性大,加工性能稍差。溶解度参数δ=8.3-8.6。溶于环己烷、正庚烷、正己烷、苯、甲苯等。
拉伸强度约13~14Mpa,扯断伸长率约为450%。
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