顶煤掘进液压支架在煤和矸石冲击下的承载特性分析

IF 3.5 3区 工程技术 Q3 ENERGY & FUELS
Lianmin Cao, Yongxin Xu, Can He, Enming Zhang, Yingfa Miao
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引用次数: 0

摘要

为研究顶煤掘进放顶煤液压支架上不同大小和速度的煤矸石下落对液压支架承载特性的影响,建立了ADAMS液压支架刚柔耦合分析模型。采用 HyperMesh 对液压支架进行柔性处理,将支柱和千斤顶等效为弹簧阻尼系统。通过施加不同大小和速度的阶跃载荷,模拟煤矸石落在盖梁不同位置时产生的冲击力,得到立柱、平衡千斤顶和其他铰接点的动态响应特性。分析表明:当冲击载荷更靠近顶梁时,顶梁-盖梁的铰接点和平衡千斤顶容易损坏。当相同的冲击荷载作用在盖梁上时,荷载作用速度越快,液压支撑柱和平衡千斤顶可能无法及时有效地吸收和分散压力,导致铰接点受到较大的冲击力,容易造成损坏或破坏。当盖梁受到不同大小和速度的冲击载荷时,后者对前后连杆铰接点和盖梁-顶梁铰接点的动态响应影响比前者大,液压支架更容易产生振动、变形和应力集中,从而影响支架的稳定性和安全性。文章对设计和优化液压支架的结构和参数,提高综放工作面液压支架的支护性能和稳定性具有指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Analysis of the load-bearing characteristics of hydraulic supports for top-coal caving under the impact of coal and gangue

Analysis of the load-bearing characteristics of hydraulic supports for top-coal caving under the impact of coal and gangue

To study the effect of different sizes and speeds of coal gangue falling on hydraulic supports for top-coal caving discharge hydraulic support on the bearing characteristics of the hydraulic support, the ADAMS hydraulic support rigid-flexible coupling analysis model was established. HyperMesh is used to flexibly process the hydraulic support, and the column and jack are equivalently replaced by spring damping system. By applying step loads of different sizes and speeds to simulate the impact force generated when the coal gangue falls on different positions of the cover beam, the dynamic response characteristics of the column, balance jack and other articulation points are obtained. Analyses show that: when the impact load is closer to the roof beam, the articulation point of the roof beam-cover beam and the balancing jack are easy to be damaged. When the same impact load is applied to the cover beam, the faster the load is applied, the hydraulic support column and balancing jack may not be able to absorb and disperse the pressure effectively in time, resulting in the articulation points being subjected to a larger impact force, which is easy to cause damage or destruction. When different sizes and speeds of impact loads are applied to the cover beam, the latter has a greater impact on the dynamic response of the front and rear connecting rod articulation points and the cover beam-roof beam articulation point than the former, and the hydraulic bracket will be more prone to vibration, deformation, and stress concentration, thus affecting the stability and safety of the bracket. The article is of guiding significance for designing and optimizing the structure and parameters of the hydraulic support, and improving the support performance and stability of the hydraulic support in the comprehensive release working face.

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来源期刊
Energy Science & Engineering
Energy Science & Engineering Engineering-Safety, Risk, Reliability and Quality
CiteScore
6.80
自引率
7.90%
发文量
298
审稿时长
11 weeks
期刊介绍: Energy Science & Engineering is a peer reviewed, open access journal dedicated to fundamental and applied research on energy and supply and use. Published as a co-operative venture of Wiley and SCI (Society of Chemical Industry), the journal offers authors a fast route to publication and the ability to share their research with the widest possible audience of scientists, professionals and other interested people across the globe. Securing an affordable and low carbon energy supply is a critical challenge of the 21st century and the solutions will require collaboration between scientists and engineers worldwide. This new journal aims to facilitate collaboration and spark innovation in energy research and development. Due to the importance of this topic to society and economic development the journal will give priority to quality research papers that are accessible to a broad readership and discuss sustainable, state-of-the art approaches to shaping the future of energy. This multidisciplinary journal will appeal to all researchers and professionals working in any area of energy in academia, industry or government, including scientists, engineers, consultants, policy-makers, government officials, economists and corporate organisations.
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