在道次开始时,确定将铲刀表面和推土铲底部暴露在地面上所需的能量

V. Nikolayev
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Therefore, a detailed analysis of the interaction with the soil of the elements of various technical means, in particular, bulldozer equipment, is necessary. Before considering the primary pseudo-shift of the soil, it is necessary to calculate the effective forces and energy costs necessary for the impact of the surface of the knife and the lower part of the bulldozer blade on the ground.The method of research. If the depth of the knife is small, the surface of the knife transports the soil upwards, carrying out: secondary displacement of the soil after the primary pseudo-shift; raising the soil to a height; overcoming the force of inertia of the developed soil; acceleration of the soil; overcoming the force of friction of the soil on the surface. A method for determining the energy costs required for the impact of the surface of the knife and the lower part of the bulldozer blade to the ground at the beginning of the passage, taking into account these components, has been developed.Results. On the basis of the developed methodology, energy costs have been determined: for the displacement of the soil after the primary shift, raising the soil to a height, overcoming the inertial force of the developed soil, accelerating the soil, overcoming the friction force of the soil on the surface. The total energy costs, power, traction force are revealed, based on the initial conditions. The results of calculations of the energy costs required to move the surface of the knife and the lower part of the blade, during the cutting of the soil with different depths of the knife, are obtained. The parameter dependencies on the depth of the knife of the bulldozer equipment are constructed.Conclusion. Analysing the drawings, it can be seen that the P-point of application of the concentrated normal reaction of the knife and the lower part of the blade, passing through O mass center of the displaced soil, with an increase in the depth of the bulldozer knife, shifts down, passing to the knife blade. So, when the knife is buried by more than 200 mm, P point of application of the concentrated normal reaction of the knife and the lower part of the blade is located outside the blade of the knife. During the operation of the bulldozer, this may not happen if the knife is deepened gradually. 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引用次数: 4

摘要

介绍在道路建设中使用连续单元综合体将提高劳动生产率,提高道路建设质量。因此,设计的目的是创建一个复杂的单元,用于道路的连续施工,主要是在自动模式下。在第一阶段,将连续技术工具参数的理论计算与设计开发相结合是实现这一目标的正确方法。为了清除未来道路通行权上的石头、灌木和树木,建议使用配有推土机设备的设备。虽然对土壤开发的理论基础进行了详细的考虑,但基于它们很难识别和比较部分能源成本对土壤影响的技术手段要素。因此,有必要详细分析与土壤相互作用的各种技术手段,特别是推土机设备。在考虑土壤的主要伪位移之前,有必要计算刀具表面和推土机铲刀下部撞击地面所需的有效力和能量成本。研究方法。如果刀具的深度较小,刀具的表面将土壤向上输送,进行:一次伪位移后土壤的二次位移;将土壤抬高到一定高度;克服发达土壤的惯性力;土壤加速度;克服土壤在表面上的摩擦力。考虑到这些部件,已经开发了一种确定在通道开始时刀的表面和推土机铲刀的下部撞击地面所需的能量成本的方法。后果根据所开发的方法,已经确定了能量成本:对于初次移动后的土壤位移,将土壤升高到一定高度,克服已开发土壤的惯性力,加速土壤,克服土壤在表面上的摩擦力。基于初始条件,揭示了总能量成本、功率和牵引力。获得了在用刀的不同深度切割土壤期间移动刀的表面和刀片的下部所需的能量成本的计算结果。构造了与推土机设备的刀具深度相关的参数。结论通过对图纸的分析,可以看出,随着推土铲深度的增加,推土铲和推土铲下部的集中法向反作用力的P点通过位移土的O质心,向下移动,传递到推土铲上。因此,当刀具埋深超过200mm时,刀具和刀片下部的集中正态反应的P作用点位于刀具刀片的外侧。在推土机操作过程中,如果刀具逐渐加深,则可能不会发生这种情况。随着推土铲的加深,在通道开始时移动铲表面和铲刀下部所需的总体积能量在地面中增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of the energy required to expose the surface of the knife and the bottom of the bulldozer blade to the ground at the beginning of the pass
Introduction. The use of a complex of continuous units in the construction of roads will increase labour productivity, improve the quality of road construction. Therefore, the purpose of the design is to create a complex of units for the continuous construction of roads, mainly in automatic mode. In the first stage, a combination of theoretical calculations of the parameters of the continuous technology tools and design developments is the right way to achieve this goal. To remove stones, bushes, trees from the right-of-way of the future road, it is advisable to use units with bulldozer equipment. Although the theoretical foundations of soil development are considered in great detail, but based on them it is difficult to identify and compare the partial energy costs of the impact on the soil of the elements of technical means. Therefore, a detailed analysis of the interaction with the soil of the elements of various technical means, in particular, bulldozer equipment, is necessary. Before considering the primary pseudo-shift of the soil, it is necessary to calculate the effective forces and energy costs necessary for the impact of the surface of the knife and the lower part of the bulldozer blade on the ground.The method of research. If the depth of the knife is small, the surface of the knife transports the soil upwards, carrying out: secondary displacement of the soil after the primary pseudo-shift; raising the soil to a height; overcoming the force of inertia of the developed soil; acceleration of the soil; overcoming the force of friction of the soil on the surface. A method for determining the energy costs required for the impact of the surface of the knife and the lower part of the bulldozer blade to the ground at the beginning of the passage, taking into account these components, has been developed.Results. On the basis of the developed methodology, energy costs have been determined: for the displacement of the soil after the primary shift, raising the soil to a height, overcoming the inertial force of the developed soil, accelerating the soil, overcoming the friction force of the soil on the surface. The total energy costs, power, traction force are revealed, based on the initial conditions. The results of calculations of the energy costs required to move the surface of the knife and the lower part of the blade, during the cutting of the soil with different depths of the knife, are obtained. The parameter dependencies on the depth of the knife of the bulldozer equipment are constructed.Conclusion. Analysing the drawings, it can be seen that the P-point of application of the concentrated normal reaction of the knife and the lower part of the blade, passing through O mass center of the displaced soil, with an increase in the depth of the bulldozer knife, shifts down, passing to the knife blade. So, when the knife is buried by more than 200 mm, P point of application of the concentrated normal reaction of the knife and the lower part of the blade is located outside the blade of the knife. During the operation of the bulldozer, this may not happen if the knife is deepened gradually. As the bulldozer knife is deepened, the total volumetric energy required to move the surface of the knife and the lower part of the blade at the beginning of the passage increases in the ground.
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