首页> 外文会议>SAE International Off-Highway and Powerplant Congress and Exposition >Wire braid angle response characteristics in hydraulic hose
【24h】

Wire braid angle response characteristics in hydraulic hose

机译:液压软管中的线辫状角度响应特性

获取原文

摘要

This report is concerned with the effects of braid angle on the behavior of hydraulic hose. For equilibrium conditions to exist, and if the braid layers are assumed to bear tension forces only, the angle of the reinforcement layers must be along that of the total force exerted by the internal pressure. This is the neutral angle θ{sub}N, which has a theoretical value of 54.74° (54° 44'). It is possible to hypothesize a fretting wear model in which wires move on top of one another inside a braid layer if the braid angle is different from this theoretical neutral angle. Even though theoretical claims are made by some technical professions, the hydraulic hose industry has been successfully making hoses with non-neutral braid angles for years. Testing and application have shown that fretting wear is not a principal cause of hose failure and fatigue. In fact, experimental case studies demonstrate that hoses made with non-neutral braid angles perform as well as hoses made with the neutral braid angle. It is common industrial experience for hose to fail at peak pressures that are less than the expected value. One important cause of this premature failure is lack of uniform load distribution between the inner and outer braid layers. In this case, the inner braid carries more than its equal share of the load and it reaches the fatigue limit while the outer braid is only slightly stressed. There is, however, a method for accommodating the unequal loads between two layers of a braided hose. This is achieved by laying the inner and outer braids of a two-wire braid hose at angles that lie symmetrically on either side of the equilibrium helix angle of 54.74 °. Other considerations to make with respect to early hose failure are fitting retention, securement and minimum bend radius of the hose, among others.
机译:本报告涉及辫子角度对液压软管行为的影响。对于存在的平衡条件,并且假设辫子层仅承受张力力,加强层的角度必须沿着内部压力施加的总力的角度。这是中性角度θ{sub} n,其理论值为54.74°(54°44')。可以假设一种微动磨损模型,其中如果编织角度与这种理论中性角度不同,导线在编织层内部彼此移动。尽管某些技术专业制造了理论声称,但多年来,液压软管行业已成功地用非中性编织角度制造软管。测试和应用表明,微动磨损不是软管衰竭和疲劳的主要原因。实际上,实验案例研究表明,用非中性编织角制成的软管和用中性编织角度制成的软管。它是软管的常见工业经验,以低于预期值的峰值压力。这种过早故障的一个重要原因是内部和外编织层之间的均匀负载分布。在这种情况下,内部编织物具有比其负载的大于其相等的份额,而外辫子仅略微强调,它达到疲劳极限。然而,存在一种用于容纳两层编织软管之间的不等载荷的方法。这是通过在54.74°的平衡螺旋角的两侧对称地铺平双线编织软管的内部和外辫子来实现的。对早期软管失效进行的其他考虑因素是适合水管的保持,固定和最小弯曲半径,等等。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号