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DFZY型钻探用超硬材料抗动载性能测试仪的研制
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作者 李国民 张平占 +1 位作者 孙友宏 张祖培 《探矿工程》 1997年第6期10-13,共4页
介绍了DFZY型钻探用超硬材料抗动载性能测试仪的总体结构、金刚石单晶及复合片抗动载测试原理、自动冲击装置、承冲杆调距装置和信号转换及软件设计。该仪器经过试验可靠性好,可直接用作钻头及冲击器冲击功的设计依据。
关键词 钻探 超硬材料 抗动载性能 测试仪 金刚石
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超硬材料抗动载性能测试方法与DFZY型动载仪的研制
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作者 李国民 张祖培 《超硬材料与工程》 1997年第3期27-30,共4页
通过对国内外钻探用超硬材料抗动载性能测试方法的研究,从众多方法中优选出落锤法作为DFZY型动载仪的测试原理,并创造性解决了落锤法测试时冲击功的不连续性问题,研制了DFZY型动载测试仪。
关键词 超硬材料 抗动载性能 金刚石 落锤法
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钻探用复合片抗动载性能的测试方法 被引量:1
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作者 陈昌富 《探矿工程》 1992年第6期13-15,共3页
对国内外现有的钻探用复合片抗动载性能的4种检测方法进行了分析、评价。分析了钻探用复合片的受力情况,提出了其较为合理的抗动载性能的测试方法——冲击疲劳强度法。并为复合片抗动载性能测定仪的研制提出了可参考的依据。
关键词 钻探 复合片 抗动载性能 测量
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钻探用超硬材料抗动载性能测定仪
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《工业金刚石》 2003年第2期36-36,共1页
关键词 钻头 超硬材料 抗动载性能 测定仪 钻探
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Moisture effect on compressive behavior of concrete under dynamic loading 被引量:3
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作者 周继凯 丁宁 《Journal of Central South University》 SCIE EI CAS 2014年第12期4714-4722,共9页
The effect of moisture content upon compressive mechanical behavior of concrete under impact loading was studied. The axial rapid compressive loading tests of over 50 specimens with five different saturations were exe... The effect of moisture content upon compressive mechanical behavior of concrete under impact loading was studied. The axial rapid compressive loading tests of over 50 specimens with five different saturations were executed. The technique "split Hopkinson pressure bar"(SHPB) was used. The impact velocity was 10 m/s with corresponding strain rate of 50 s-1. The compressive behavior of materials was measured in terms of stress-strain curves, dynamic compressive strength, dynamic increase factor(DIF) and critical strain at a maximum stress. The data obtained from test indicate that both ascending and descending portions of stress-stain curves are affected by moisture content. However, the effect is noted to be more significant in ascending portion of the stress-strain curves. Dynamic compressive strength is higher at lower moisture content and weaker at higher moisture content.Furthermore, under nearly saturated condition, an increase in compressive strength can be found. The effect of moisture content on the average DIF of concrete is not significant. The critical compressive strain of concrete does not change with moisture content. 展开更多
关键词 concrete split Hopkinson pressure bar high strain rate compressive behavior moisture content
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