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1.
Study on the Shear Wave Velocity Measurement from Bender Elements and Dynamic Properties of Saturated Soft Marine Clay;
压电陶瓷弯曲元剪切波速测试及饱和海洋软土动力特性研究
2.
Testing method for static flexural strength of piezoelectric ceramics
GB/T11387-1989压电陶瓷材料静态弯曲强度试验方法
3.
Computer Simulation Analysis of Static Bending Strength for Piezoelectric Ceramics
压电陶瓷材料静态弯曲强度的计算机仿真
4.
Research on Metal-piezoceramics Bimorph Flexural Piezoelectric Ceramic Transducer Resonance Frequency;
压电陶瓷—金属双迭片弯曲型压电传感器谐振频率研究
5.
Study on the Properties of PSN-PZN-PZT Quaternary Piezoelectric Ceramics;
PSN-PZN-PZT四元系压电陶瓷的性能研究
6.
Study on the Properties of PMS-PZN-PZT Quaternary Piezoelectric Ceramics;
PMS-PZN-PZT四元系压电陶瓷的性能研究
7.
fine ceramics(advanced ceramics, advanced technical ceramics)-test method for flexural strength of monolithic ceramics at elevated temperature
细陶瓷-单块陶瓷高温弯曲强度试验方法
8.
The ceramic componets are made of high stability piezoelectric ceramics that functions as a mechanical resonator.
陶瓷元件由高稳定性压电陶瓷制成,其功能表现和机械谐振器一致。
9.
"After cleaning, the gap should be adjusted by bending the outside electrode. The center electrode should never be bent, since this will Break the porcelain shell."
清洁后,再对火花塞间隙处的侧电极弯曲度进行调校。中心电极绝不能弯曲,否则会破坏陶瓷外壳。
10.
testing method for bending creep of high performance ceramics
工程陶瓷制品弯曲蠕变试验方法
11.
Test method for cross-bending strength of porous ceramic
GB/T1965-1996多孔陶瓷弯曲强度试验方法
12.
Testing method for flexural strength of high performance ceramics
GB/T6569-1986工程陶瓷弯曲强度试验方法
13.
Test method for flexural strength of ceramic tiles
GB/T8917-1988陶瓷砖弯曲强度试验方法
14.
testing method for flexural strength (modulus of rupture) of high performance ceramics
工程陶瓷弯曲强度试验方法
15.
Weibull Statistical Analysis of Bending Strength of Quartz Ceramic
石英陶瓷弯曲强度的Weibull统计分析
16.
Experiment on bending of Al_2O_3 ceramic slice with CO_2 CW-laser
Al_2O_3陶瓷薄片CO_2连续激光弯曲试验
17.
Research on the Structure and Properties of the High-power PZT Piezoelectric Ceramics;
二元系大功率压电陶瓷结构和性能的研究
18.
Research on the Properties of PZT-PMS Piezoelectric Ceramics Ternary System;
三元系压电陶瓷锑锰—锆钛酸铅的改性研究