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为改善绳索取心钻杆受力工况,延长钻杆使用寿命,满足深孔及特深孔钻探施工要求,开展了对绳索取心钻杆体进行分区热处理工艺的试验研究。试验选用高钢级薄壁管材,通过对钻杆两端300 mm左右的区间内进行盐浴淬火及高温回火处理,保证了调质区域的机械性能,硬度和金相组织均匀性良好,同时热处理过渡带影响区域小。试制加工的特深孔绳索取心钻杆具有两端部螺纹连接段刚性强、杆体中部韧性好的特点。该钻杆在山东莱州西岭村矿区完成了2845.55 m深孔的钻进施工,使用情况良好。 相似文献
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地质特深孔绳索取心钻杆结构区别于API石油钻杆,其机械性能计算不可直接引用API石油钻杆的相关理论公式。针对这一理论依据与计算方法缺失,本文对地质特深孔双台肩钻杆接头进行了受力分析,开展了钻杆接头拉伸载荷与扭转载荷计算理论研究,构建了绳索取心钻杆机械性能计算的理论方法。同时,通过有限元分析和台架试验,确定了H-5000规格双台肩绳索取心钻杆的机械性能,验证了计算方法的准确性,并提出了钻杆结构改进建议与下一步研究方向,为高性能薄壁绳索取心钻杆“服役”于5000 m地质岩心钻探工程提供了技术支撑。 相似文献
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采用瞬间液相扩散连接方法焊接绳索取心钻杆。试验表明,瞬间液相扩散连接接头拉伸时断在45MnMoB杆体侧,面弯和背弯180°未开裂,且焊缝内外表面无余高,成形美观,满足绳索取心钻杆焊接接头的技术要求。扭转试验中,管体首先开裂,焊缝未开裂,扭转强度远远高于螺纹连接扭转强度。表明瞬间液相扩散连接技术是满足绳索取心钻杆焊接要求的一种先进方法。 相似文献
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与传统的钢制钻杆相比,铝合金钻杆具有密度小、比强度高、无磁等优点,因此在深井与超深井钻井作业中具有较大优势。在实际使用中,铝合金钻杆两端需要通过钢接头之间的螺纹来实现拧卸钻杆,而铝合金杆体与钢接头还需要过盈装配以实现紧固连接 。以液氮为冷源,对50 mm的7075铝合金钻杆管体与钢接头进行了“冷组装”过盈装配,铝合金管体与钢接头之间的过盈量分别为0.10、0.15、0.20 mm。对组装后两端带钢接头的铝合金钻杆分别进行了拉伸和扭转试验,评价了铝合金管体与钢接头连接的可靠性,对断裂试样的断口进行了宏观与微观分析,阐述了其断裂机理。结果表明,采用“冷组装”方式可以实现铝合金管体与钢接头的过盈装配,其中过盈量为0.15 mm时,带钢接头的铝合金钻杆综合性能较优,可以承受较大的抗拉强度极限和抗扭极限,其断裂方式为脆性断裂。 相似文献
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对绳索取心钻探施工的工况进行了分析,利用ANSYS软件对绳索取心钻杆以及连接接头的应力状态进行了三维模拟,提出了不同工况条件下,钻杆柱最大应力出现的位置。所得的结论对预防钻杆折断事故、优化接头螺纹设计、确定合理钻进参数有一定的参考意义。 相似文献
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Gilles Serge Odin 《Comptes Rendus Geoscience》2002,334(6):409-414
Lithostratigraphy, physicochemical stratigraphy, biostratigraphy, and geochronology of the 77–70 Ma old series bracketing the Campanian–Maastrichtian boundary have been investigated by 70 experts. For the first time, direct relationships between macro- and microfossils have been established, as well as direct and indirect relationships between chemo-physical and biostratigraphical tools. A combination of criteria for selecting the boundary level, duration estimates, uncertainties on durations and on the location of biohorizons have been considered; new chronostratigraphic units are proposed. The geological site at Tercis is accepted by the Commission on Stratigraphy as the international reference for the stratigraphy of the studied interval. To cite this article: G.S. Odin, C. R. Geoscience 334 (2002) 409–414. 相似文献
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正1 Introduction Geological studies established on several sections in Lanping-Simao basin have shown that the salt-bearing strata of Mengyejing formation(Yunlong Fm.in Lanping basin)are constituted by an alternation of salt layers and interbedded facies.The latter consists mainly of mudstones,and mudstone-rich conglomerate.The mineralogy and geochemistry of salt-bearing beds and 相似文献
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正On 22nd April 2014,with the approach of the 45th World Earth Day,China’s Ministry of Land and resources issued the status of China’s mineral resources in 2013.The first task of the prospecting breakthrough strategy action implemented in the last five years has been completed,and China’s security capacity for mineral resources has been significantly improved.In the 相似文献
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正There are more than 700 salt lakes with area of more than 1km2 on the Qinghai-Tibet Plateau of China.In recent years,an oilfield brine was also found in the Nanyishan Section of Qaidam Basin in the Qinghai-Tibet 相似文献
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正1 Introduction Physical and numerical models are constructed to investigate the evolution and mechanism of salt migration driven by tectonic processes.In recent years,we have designed and ran series of models to simulate salt 相似文献
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YUAN Qin LI Jianguo QIN Zhanjie WEI Haicheng SHENG Shurong SHAN Fashou 《《地质学报》英文版》2014,88(Z1):276-276
正The study of Cretaceous-Palaeogene salt-bearing strata of the Khorat Basin Laos and the Lanping-Simao Basin in Yunnan,China has an great significance not only in explaining the basin evolution and the genesis of potash 相似文献
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正Potash is one of the long-term scare deposits in China,and potash prospecting has long been listed as a key brainstorm project for our nation and geological prospecting units.There have been considerable studies in search for potash deposits in the Kuqa depression of the Tarim basin(Jackson et al.,1991;Gemmer et al.,2004;Vendeville,2005;Vendeville and Jackson,1992a,1992b), 相似文献
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正1 Introduction Qaidam Basin in Qinghai,including 43 salt lakes with multiple dominant mineral such as potassium,magnesium,lithium etc.,is the most intensive distribution of Saline 相似文献