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深立井摩擦提升井底安全稳罐技术 被引量:2
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作者 贾福音 董孟娟 《煤炭学报》 EI CAS CSCD 北大核心 2011年第S1期177-180,共4页
为解决在深立井中,由于提升绳弹性伸长较大,提升重物时罐笼反弹较大,经常造成罐笼掉道事故的问题,首先建立容器在井底的力学模型,借助Matlab的数学功能对提升绳弹性力进行分析;通过对井底稳罐技术进行分析,提出采用限力补偿方式可以消... 为解决在深立井中,由于提升绳弹性伸长较大,提升重物时罐笼反弹较大,经常造成罐笼掉道事故的问题,首先建立容器在井底的力学模型,借助Matlab的数学功能对提升绳弹性力进行分析;通过对井底稳罐技术进行分析,提出采用限力补偿方式可以消除或控制住反弹力,利用容器定位锁定的方法,可实现容器的定位问题。并研制出相应的装备,经试验验证可以达到设计要求。 展开更多
关键词 深立井 摩擦提升 稳罐 限力补偿 锁定
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Approach for electrodynamic force for compensation in low voltage circuit breaker WP 630-1.2 type 被引量:2
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作者 LU Na XU L.J Miedzifiski B 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2007年第3期393-396,共4页
Undesirable repulsive force between contact members due to both a current path shrink near a real contact area and/or so-called pinch effect is particularly onerous for power switch applications, and results in either... Undesirable repulsive force between contact members due to both a current path shrink near a real contact area and/or so-called pinch effect is particularly onerous for power switch applications, and results in either contact floating or bouncing which are associated with an electric arc following contact welding. This problem is of great importance for any circuit breaker especially for compact low voltage vacuum circuit breakers. To avoid contact floating at closure and during any inrush current under short circuit conditions, the electrodynamic repulsive force can be employed successfully if we use a special compensation system flexibly combined with the contact itself. However to select and design the compensation system properly, its efficiency has to be known. This paper presents an approach to obtain the electrodynamic force value depending on different shaped (rectangular, square, circle and arch) copper plates used in the compensator by using ANSYS for current values 40 kA RMS. Curve-fitting was done according to the calculating results, the optimization designing of compensation unit is based on them. 展开更多
关键词 Compensation. Electrodynamic force. FEM (Finite Element Method)
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