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Deformation mechanism and roof pre-splitting control technology of gob-side entry in thick hard main roof full-mechanized longwall caving panel
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作者 WANG Hao-sen HE Man-chao +6 位作者 WANG Jiong YANG Gang MAZi-min MING Can WANG Rui FENG Zeng-chao ZHANG Wen-jie 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第9期3206-3224,共19页
This paper explores the deformation mechanism and control technology of roof pre-splitting for gob-side entries in hard roof full-mechanized longwall caving panel(LTCC).The investigation utilizes a comprehensive appro... This paper explores the deformation mechanism and control technology of roof pre-splitting for gob-side entries in hard roof full-mechanized longwall caving panel(LTCC).The investigation utilizes a comprehensive approach that integrates field monitoring,theoretical analysis,and numerical simulation.Theoretical analysis has illuminated the influence of the length of the lateral cantilever beam of the main roof(LCBM)above the roadway on the stability of the gob-side entry behind the panel.Numerical simulations have further revealed that the longer LCBM results in heightened vertical stress within the coal pillar,developed cracks around the roadway,and more pronounced damage to the roadway.Moreover,numerical simulations also demonstrate the potential of roof pre-splitting technology in optimizing the fracture position of the hard roof.This technology significantly reduces the length of the LCBM,thereby alleviating stress concentration in the coal pillars and integrated coal rib while minimizing the destruction of the gob-side entry.Therefore,this manuscript first proposes the use of roof pre-splitting technology to control roadway deformation,and automatically retain the entry within a hard roof LTCC panel.Field implementation has demonstrated that the proposed automatically retained entry by roof pre-splitting technology effectively reduces gob-side entry deformation and achieves automatically retained entry. 展开更多
关键词 deformation mechanism hard roof gob-side entry cantilever beam roof pre-spliting
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装载机中梁架新结构研究及应用
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作者 区思榜 黎华敏 张斐朗 《装备制造技术》 2018年第12期122-125,共4页
装载机中梁架呈矩形结构,主要受力部位在中梁架分中线上,且受力数值变化很大,力方向频繁变化。随着该机型细分市场的应用多样化,作业工况越来越恶劣,不稳定的矩形结构中梁架,在较长时间使用后,中间部位开始出现裂纹,随后裂纹快速扩大,... 装载机中梁架呈矩形结构,主要受力部位在中梁架分中线上,且受力数值变化很大,力方向频繁变化。随着该机型细分市场的应用多样化,作业工况越来越恶劣,不稳定的矩形结构中梁架,在较长时间使用后,中间部位开始出现裂纹,随后裂纹快速扩大,直至结构失效,对整机的使用造成直接影响。本文主要研究装载机中梁架,提出一种外八字结构,进一步提高中梁架承载能力。试验验证结果表明,外八字中梁架结构稳定,可批量推广应用。 展开更多
关键词 装载机 中梁架 外八字 悬梁板
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