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THE EVOLUTION OF THE POSITIVE LOCKING MECHANISM IN END RELEASE BUCKLES

机译:端释扣中正锁定机制的演变

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Crash tests conducted by Ford, General Motors, and other automakers have shown that localized accelerations on various objects, including seatbelt buckles, can experience many multiples of the center of gravity acceleration (sometimes exceeding 500 g's) due to contact with other objects within the vehicle or from elastic and plastic deflections of the vehicle structure. In March of 1959, the Cummings [18] pivoting cover buckle patent recognized that the moving parts should be so balanced that "the buckle will not open under the influence of inertia." This paper follows the development of the modern lock for the latch buckle design concept through its evolution. After a discussion of the realization of the inertial potential for unlatching of the buckle from numerous patents and testing, seatbelt locking mechanisms will be discussed by category, followed by a short summary of the inertial blocking mechanisms. These designs will be described, patents for each listed, examples given of vehicles where they have been installed, and the inertial capability of each buckle type catalogued. From this discussion, the reader should have a clear understanding of the capabilities of the modern lock for the latch seatbelt buckle and the roots from whence it has been developed.
机译:由FORD,通用电机和其他汽车制造商进行的碰撞试验表明,由于与车辆内的其他物体接触,可以体验到包括安全带扣的各种物体上的局部加速度,包括携带安全带扣,可以体验重心加速度(有时超过500g)的多个倍数或来自车辆结构的弹性和塑料偏转。 1959年3月,Cummings [18]枢纽盖扣专利认识到,运动部件应该如此平衡,“扣环在惯性的影响下不会打开。”本文通过其演化,遵循闩锁扣设计概念的现代锁的发展。在讨论从许多专利和测试中解锁扣的惯性电位之后,可以通过类别讨论安全带锁定机构,然后讨论惯性阻挡机构的短程。将描述这些设计,每个列出的专利,给出了它们已经安装的车辆的示例以及每个扣发类型的惯性能力。根据本讨论,读者应该清楚地了解闩锁安全带扣的现代锁的能力,并且从其开发的根源。

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