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高旧料掺量下平衡设计法与马歇尔设计法对比
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作者 王珊珊 苏刚 +3 位作者 张文武 周海防 肖庆一 龚芳媛 《科学技术与工程》 北大核心 2023年第33期14379-14387,共9页
平衡设计法秉持混合料性能平衡的理念,为增强就地热再生混合料性能提供了配合比设计领域的新方向。为探究平衡设计法在就地热再生领域所发挥的效能,采用就地热再生平衡设计流程对3种高旧料掺量(reclaimed asphalt pavement,RAP)的热再... 平衡设计法秉持混合料性能平衡的理念,为增强就地热再生混合料性能提供了配合比设计领域的新方向。为探究平衡设计法在就地热再生领域所发挥的效能,采用就地热再生平衡设计流程对3种高旧料掺量(reclaimed asphalt pavement,RAP)的热再生沥青混合料进行配合比设计,并与马歇尔设计法进行对比,完成路用性能分析。以流变学性能指标确定了最佳再生剂掺量,以沥青混合料高低温性能试验确定了最佳沥青含量,以多类型路用性能试验研究了两种设计法在就地热再生技术中的适用性。结果表明:平衡设计法的最佳沥青含量在各RAP掺量下均高于马歇尔设计法;平衡混合料的路用性能均可满足规范要求;马歇尔混合料在70%~80%RAP掺量的低温性能不满足规范要求。虽然平衡设计法对混合料高温性能造成削弱,但RAP掺量越高,该影响越低;且比马歇尔设计法更能保证混合料的低温、疲劳与水稳定性能,显著增强了就地热再生混合料的综合性能。因此平衡设计法比马歇尔设计法更适用于就地热再生技术。 展开更多
关键词 就地热再生 平衡设计法 马歇尔设计 性能试验对比
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Stability of boundary pillars in transition from open pit to underground mining 被引量:11
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作者 赵兴东 李连崇 +1 位作者 唐春安 张洪训 《Journal of Central South University》 SCIE EI CAS 2012年第11期3256-3265,共10页
Based on the height of back-filled materials, thickness of ore body, height of boundary pillar and dipping angle of ore body and water pressure, the safety factors of all the pillars are calculated with the limit equi... Based on the height of back-filled materials, thickness of ore body, height of boundary pillar and dipping angle of ore body and water pressure, the safety factors of all the pillars are calculated with the limit equilibrium method. The calculation results present that the safety factors of pillars in Sections 19, 20, 24, 28 are less than 1.3, and those of unstable sections are identified preliminarily. Further, a numerical investigation in Sections 18, 20, 22, 24, 25 and 28 implemented with numerical code RFPA20 is employed to further validate the pillar performance and the stability of stopes. The numerical results show the pillars in Sections 18, 22 and 24 are stable and the designed pillar size is suitable. The width of the ore body near Section 28 averages 20 m, failure occurs in the left stope, but the boundary pillars near Section 28 maintain good performance. The pillars in Sections 20 and 25 are unstable which are mainly affected by the Faults F8 and F18. The existence of faults alters the stress distribution, failure mode and water inrush pathway. This work provides a meaningful standard for boundary pillar and stope design in a mine as it transitions from an open pit to underground. 展开更多
关键词 boundary pillar STABILITY underground mining numerical simulation case study
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