A new structure design method of elastic composite cylindrical roller bearing is proposed, in which PTFE is embedded into a hollow cylindrical rolling element, according to the principle of creative combinations and t...A new structure design method of elastic composite cylindrical roller bearing is proposed, in which PTFE is embedded into a hollow cylindrical rolling element, according to the principle of creative combinations and through innovation research on cylindrical roller bearing structure. In order to systematically investigate the inner wall bending stress of the rolling element in elastic composite cylindrical roller bearing, finite element analysis on different elastic composite cylindrical rolling elements was conducted. The results show that, the bending stress of the elastic composite cylindrical rolling increases along with the increase of hollowness with the same filling material. The bending stress of the elastic composite cylindrical rolling element decreases along with the increase of the elasticity modulus of the material under the same physical dimension. Under the same load, on hollow cylindrical rolling element, the maximum bending tensile stress values of the elastic composite cylindrical rolling element after material filling at 0° and 180° are 8.2% and 9.5%, respectively, lower than those of the deep cavity hollow cylindrical rolling element. In addition, the maximum bending-compressive stress value at 90° is decreased by 6.1%.展开更多
The palm trunk fiber bundles were treated with glacial acetic acid solution and H2 02 to get the palm sheath fibril hardly with any lignin or hemi-cdlulose. The morphological, aggregation structure and moisture regain...The palm trunk fiber bundles were treated with glacial acetic acid solution and H2 02 to get the palm sheath fibril hardly with any lignin or hemi-cdlulose. The morphological, aggregation structure and moisture regain, water absorption; anti-bacterlal properties of palm sheath fibril were tested and analyzed. The results showed that the average length of palm sheath fibril was (643.6 ± 192.4 ) pro, while average diameter was ( 10.3 ± 1.9 ) pma. A lumen existed in the cross section of each natural fibril, and the average hollowness of fibril reached (47.1 ± 11.1 ) %. Fibril was mainly constituted by cellulose I which gibed palm fibril a good hygroscopieity and the degree of crystalfization was 62.3 %. The moisture regain of palm sheath fibril was about 12.1% while water absorption was 10. 68 g/g suitable for medical packing. Fibril antibacterial against staphylococcus aurous was 84.3 %, and against escherichia coli was 73.3 %. Palm sheath fibril can be used as a natural fiber material for nonwoven medical use.展开更多
基金Project(51175168)supported by the National Natural Science Foundation of ChinaProjects(2011GK3148,2012GK3092)supported by Science and Technology Program of Hunan Province,China
文摘A new structure design method of elastic composite cylindrical roller bearing is proposed, in which PTFE is embedded into a hollow cylindrical rolling element, according to the principle of creative combinations and through innovation research on cylindrical roller bearing structure. In order to systematically investigate the inner wall bending stress of the rolling element in elastic composite cylindrical roller bearing, finite element analysis on different elastic composite cylindrical rolling elements was conducted. The results show that, the bending stress of the elastic composite cylindrical rolling increases along with the increase of hollowness with the same filling material. The bending stress of the elastic composite cylindrical rolling element decreases along with the increase of the elasticity modulus of the material under the same physical dimension. Under the same load, on hollow cylindrical rolling element, the maximum bending tensile stress values of the elastic composite cylindrical rolling element after material filling at 0° and 180° are 8.2% and 9.5%, respectively, lower than those of the deep cavity hollow cylindrical rolling element. In addition, the maximum bending-compressive stress value at 90° is decreased by 6.1%.
基金Priority Academic Program Development of Jiangsu Higher Education Institutions,China,Nantong Technological Innovation Project,China,Jiangsu Province Special Project,China
文摘The palm trunk fiber bundles were treated with glacial acetic acid solution and H2 02 to get the palm sheath fibril hardly with any lignin or hemi-cdlulose. The morphological, aggregation structure and moisture regain, water absorption; anti-bacterlal properties of palm sheath fibril were tested and analyzed. The results showed that the average length of palm sheath fibril was (643.6 ± 192.4 ) pro, while average diameter was ( 10.3 ± 1.9 ) pma. A lumen existed in the cross section of each natural fibril, and the average hollowness of fibril reached (47.1 ± 11.1 ) %. Fibril was mainly constituted by cellulose I which gibed palm fibril a good hygroscopieity and the degree of crystalfization was 62.3 %. The moisture regain of palm sheath fibril was about 12.1% while water absorption was 10. 68 g/g suitable for medical packing. Fibril antibacterial against staphylococcus aurous was 84.3 %, and against escherichia coli was 73.3 %. Palm sheath fibril can be used as a natural fiber material for nonwoven medical use.