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Work-Energy Relationships for the Collinear Single Degree of Freedom Impact Model under the Case of Net Unbalanced Externally Applied Forces

机译:在净不平衡外部应用力的情况下,在净不平衡外部施工的情况下为共线单一自由度的工作能力关系

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Externally applied unbalanced forces and their corresponding impulses are generally excluded from consideration in regards to the evaluation of the collision phase events for a system comprised of two motor vehicles undergoing collinear impact. This exclusion is generally warranted secondary to the fact that the collision force and its corresponding impulse are dominant during the collision phase. Conceptually, two exclusions exist to this approach. The first is the situation in which significant physical restraints are present to the displacement of one or both collision partners and are of sufficient magnitude as to require inclusion. Generally, this represents the exceptional case and includes, but is not limited to, situations in which one vehicle is snagged, in a non-eccentric manner, by a rigid narrow-width object such as a pole or other similar restraint, prior to the occurrence of the subsequent vehicle-to-vehicle collision under evaluation. The second is the situation of collisions that are of exceedingly low collision severity. In such collisions, the effects of externally applied forces and their impulses are non-negligible when compared with the collision force and its impulse. The inclusion of externally applied forces and their collision phase impulses in the evaluation of such collisions is normative. The focus of the subject study, therefore, is the development of the applicable work-energy relationships for modeling collinear collisions in cases in which the effects of unbalanced forces, relative to the center of mass of the two-vehicle system undergoing impact, are non-negligible. The theoretical development presented is based upon the direct application of Newton's Second Law of motion. The dynamic center of mass reference frame is employed to develop the analytic closed-form solutions for the change in velocity experienced by each collision partner as a function of both the closing velocity and the impulses generated by the external impedances. The work-energy relationships are first derived in general form. The dynamic center of mass reference frame is utilized to solve for the common velocity reached by the collision partners at the terminus of closure. The resultant closed-form relationships derived for the terminus of closure and the terminus of separation, relating the closing velocity and separation velocity, respectively, to both the internal and external work, are applicable irrespective of the form used for the force-deflection response of either collision partner. The linear load-linear unload force-deflection model is implemented, secondarily, as a specific application of this modeling methodology.
机译:外部施加的不平衡力及其相应的脉冲通常被排除在考虑到由经历共线撞击的两个机动车辆的系统组成的系统的碰撞相位事件的考虑之外。这种排除通常是次要的,即碰撞阶段在碰撞阶段占主导地位的事实。概念上,这种方法存在两个排除。首先是在一个或两个碰撞伴侣的位移中存在显着物理约束的情况,并且对于需要包含的程度是足够的。通常,这代表了特殊情况,并且包括但不限于其中一个车辆以非偏心方式被诸如极或其他类似的束缚的刚性窄宽度物体(如磁极或其他类似的限制)围绕的情况在评估下发生随后的车辆到车辆碰撞。第二个是碰撞严重程度非常低的碰撞的情况。在这种碰撞中,与碰撞力及其脉冲相比,外部应用力及其冲动的影响是不可忽略的。在评估这种碰撞时,包括外部施加的力及其碰撞相冲动是规范性的。因此,主题研究的重点是在不平衡力的影响,相对于经历冲击的两辆载体系统的质量的效果,是非-微不足道。提出的理论发展是基于牛顿第二次议案的直接应用。使用动态的质谱中心用于开发分析闭合溶液,用于每个碰撞伙伴所经历的速度变化,作为闭合速度和由外部阻抗产生的脉冲的函数。工作能量关系是一般形式的。使用动态的质谱框架中心用于解决闭合末端碰撞伙伴达到的共同速度。对于封闭末端和分离末端的所得闭合关系,分别与内部和外部工作分别相对于内部和外部工作,无论用于用于力偏转响应的形式碰撞伙伴。线性负载线性卸载力偏转模型是其特定应用该建模方法的特定应用。

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