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Development of new protocols to evaluate the transverse loading of mine Ventilation stoppings

机译:开发新协议,以评估矿井通风止挡横向负荷

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The Code of Federal Regulations (CFR) requires that the transverse load capacity of stoppings be equal to or greater than traditionally accepted in mine controls, which for block stoppings is generally accepted as 39 psf as referenced in the preamble to the CFR standard. This measure is based on physical testing of a freestanding wall in accordance with ASTM E 72 specifications, where our past research has shown that the dominant parameter is the tensile strength of the sealant. A new protocol based on rigid arch loading of the structure is proposed to determine the true transverse load capacity of block stoppings. Arching is achieved by the restraint of the stopping against the mine roof and floor, whereby compressive forces are developed within the wall. A laboratory procedure using the NIOSH Mine Roof Simulator (MRS) to simulate rigid arching of block stoppings was developed and results verified through full-scale in-mine tests. The rigid arch tests have demonstrated transverse load capacities more than an order of magnitude higher than the ASTM E 72 evaluation method from which the 39-psf requirement is derived. More importantly, the rigid arch tests have shown that the load capability is dependent on the physical properties of the block and geometric properties of the wall and not the sealant.
机译:联邦法规(CFR)的守则要求停止的横向负荷能力等于或大于传统上的矿井控制中接受,其对于块停止通常被接受为39 psf,如前导码到CFR标准中所引用的。该措施基于根据ASTM E 72规范的独立墙的物理测试,我们过去的研究表明,主导参数是密封剂的拉伸强度。提出了一种基于结构的刚性拱形加载的新协议,以确定块停止的真正横向负载能力。通过抵靠矿山屋顶和地板的阻挡来实现拱形,从而在墙壁内产生压缩力。使用Niosh矿山屋顶模拟器(MRS)模拟块停止僵化拱形的实验室程序,并通过全级矿井测试进行了验证。刚性拱形测试已经证明横向负载能力超过比ASTM E 72评估方法高出一个数量级,从中获得39-PSF要求。更重要的是,刚性拱形测试表明,负载能力取决于墙壁的块和几何特性而不是密封剂的物理性质。

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