The alternating movement of comber nipper balance shaft causes comber vibration, which is considered as the primary limitation for its velocity. First, optimal angular acceleration coefficients of nipper balance shaft...The alternating movement of comber nipper balance shaft causes comber vibration, which is considered as the primary limitation for its velocity. First, optimal angular acceleration coefficients of nipper balance shaft were set in this study to acquire theoretical limiting angular velocity. Second,the transmission input model of the input shaft was developed by adopting a numerical approximation method and by considering the Bézier curve as the motion curve of the input shaft. Hence, the motion of nipper balance shaft was controlled. The optimum transmission driver curve of the input shaft was obtained by contrasting the analyses of the actual angular acceleration of nipper balance shaft for each optimal coefficient. Experimental tests validated the results. The nipper balance shaft of the comber reduced comber vibration because the shaft adopted the controllable unit of transmission input.Our research sheds light on the application of controlled mechanisms in textile machines and provides a theoretical basis for increasing the velocity and decreasing the vibration or noise of the comber.展开更多
The dropping scales is an important parameter for comber noil and combing quality. Because the rocking of the nipper shaft makes the nippers move backward and forward through a series of links, the original position o...The dropping scales is an important parameter for comber noil and combing quality. Because the rocking of the nipper shaft makes the nippers move backward and forward through a series of links, the original position of nipper frame is altered when changing the dropping scales, the other parameters of combing are changed accordingly. In this paper, the timing of opening-closing on nipper, the timing of cylinder’s combing, the timing of detaching-lapping and variation of nip pressure are calculated and their effects on combing are analyzed in different dropping scales on E7/6 comber.展开更多
基金National Basic Research Program of China(973 Program)(No.2010CB334711)Textile Vision Science&Education Fund,China(No.2012)National Natural Science Foundation of China(No.51205288)
文摘The alternating movement of comber nipper balance shaft causes comber vibration, which is considered as the primary limitation for its velocity. First, optimal angular acceleration coefficients of nipper balance shaft were set in this study to acquire theoretical limiting angular velocity. Second,the transmission input model of the input shaft was developed by adopting a numerical approximation method and by considering the Bézier curve as the motion curve of the input shaft. Hence, the motion of nipper balance shaft was controlled. The optimum transmission driver curve of the input shaft was obtained by contrasting the analyses of the actual angular acceleration of nipper balance shaft for each optimal coefficient. Experimental tests validated the results. The nipper balance shaft of the comber reduced comber vibration because the shaft adopted the controllable unit of transmission input.Our research sheds light on the application of controlled mechanisms in textile machines and provides a theoretical basis for increasing the velocity and decreasing the vibration or noise of the comber.
文摘The dropping scales is an important parameter for comber noil and combing quality. Because the rocking of the nipper shaft makes the nippers move backward and forward through a series of links, the original position of nipper frame is altered when changing the dropping scales, the other parameters of combing are changed accordingly. In this paper, the timing of opening-closing on nipper, the timing of cylinder’s combing, the timing of detaching-lapping and variation of nip pressure are calculated and their effects on combing are analyzed in different dropping scales on E7/6 comber.