Studying the load of the working equipment of the knife pipe deepener for trenchless laying of engineering communications by the pulling method

Vitaliy Ragulin, Suponyev Vladimir, S. Kovalevskyi
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Abstract

Problem. This article is devoted to the study of the load of the working equipment of the knife pipe boring machine for trenchless laying of linear underground engineering communications by pulling them through the soil. The implementation of this method requires significant traction efforts, which causes big stress in its working equipment. Understanding their meaning is important when designing these machines. Goal. The purpose of the research is to create calculation schemes and mathematical models that will allow you to get an idea of the load on the work equipment and provide it with a qualitative assessment of its stress state. Methodology. In order to achieve the set goal, an idea of the dynamics of work processes of earthmoving and transport machines was put forward. Results. The obtained results made it possible to carry out an analysis of the loads on the working equipment of the pipe dredger, taking into account the processes that occur during the meeting of the knife working body with an obstacle in the process of movement. Namely, it was established that when the back knife of the working equipment meets with obstacles, the stiffness of which increases, from 10.000 to 20,000kN/m, it does not lead to a significant increase in the operating loads, which can be explained by a significant difference in the stiffness of the obstacle and the working equipment. It is possible to reduce the maximum operating loads from 270 to 210kN, or by 27% by reducing the stiffness of the working equipment from 2000 to 500kN/m due to the use of additional elastic nodes or elements that absorb dynamic loads in the metal structure of the knife equipment of the machine. The most significant reduction in operating forces can be achieved by reducing the speed of movement in areas where obstacles are likely to be encountered. The conducted studies showed that changing the movement speed from 1.5 to 0.5 m/s allows to reduce the resulting forces from 330 to 190 kN, or by 43%. Scientific novelty. For the first time, calculation models were obtained for determining the dynamic load of the working equipment of knife pipe boring machines during its collision with obstacles.. Practical value. The results of the research can be recommended for practical use in the design of knife-type pipe deepeners, which are intended for trenchless laying of underground communications.
对工程交通非开挖敷设刀管深埋机工作设备的拉拔载荷进行了研究
问题。本文研究了非开挖线状地下工程交通刀管掘进机工作设备在土中拉拔时的载荷。该方法的实施需要较大的牵引力,对其工作设备产生较大的应力。在设计这些机器时,理解它们的含义非常重要。的目标。研究的目的是创建计算方案和数学模型,使您能够了解工作设备上的负载,并提供其应力状态的定性评估。方法。为了实现既定目标,提出了土方运输机械工作过程动力学的思想。结果。所获得的结果使得对挖泥船工作设备的载荷进行分析成为可能,考虑到刀工作体在运动过程中与障碍物相遇时发生的过程。即当工作设备背刀遇到障碍物时,当障碍物的刚度从10000 kn /m增加到20000 kn /m时,并不会导致工作载荷的显著增加,这可以解释为障碍物与工作设备的刚度存在显著差异。由于在机器的刀设备的金属结构中使用额外的弹性节点或吸收动载荷的元件,可以通过将工作设备的刚度从2000降低到500kN/m,或将最大工作载荷从270降低到210kN,或降低27%。在可能遇到障碍物的地区,通过降低移动速度可以最大限度地减少作战力量。所进行的研究表明,将移动速度从1.5米/秒改变为0.5米/秒,可以将产生的力从330千牛减少到190千牛,或减少43%。科学的新奇。首次建立了刀管镗床工作装置与障碍物碰撞时动载荷的计算模型。实用价值。研究结果对用于地下通信非开挖敷设的刀式深管器的设计具有一定的参考价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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