Cross-section deformation is one of important factors affecting the quality of tube formation, and the tube's capability of transporting liquid and gas will be reduced because of the cross-section ellipse deformation...Cross-section deformation is one of important factors affecting the quality of tube formation, and the tube's capability of transporting liquid and gas will be reduced because of the cross-section ellipse deformation due to the effect of shear load in plastic bending process. When the tube is bent, the extrados-wall bears the tension stress and the intrados-wall bears the compression stress, synchronously the cross-section is affected by the circumferential stress. According to the above, the distribution function and curve of tangential stress can be obtained according to force balance differential equations on circumferential direction and Trasca rule. Subsequently the real state and virtual state moment equations were established, a new method was presented adopting the virtual principle of deformation system to calculate the x-axis and y-axis displacement of arbitrary point on cross-section. So the major and minor axes of deformed cross-section can be calculated according to the displacements of each point, and the variety value of major and minor axes will be obtained further. Finally the theoretical calculating result is compared with NC tube rotary-bending experiment results to verify the rationality of theoretical analysis, and the cross-section deformation rule of thin-walled tube can be received.展开更多
腾格里沙漠南缘地处中国西北沙漠与黄土交错带,也是东亚冬季风与夏季风交替控制的过渡地带,其对全球气候变化十分敏感,是研究古气候与古生态的理想地点。选择该区域一典型剖面即"土门剖面"(TMS)为代表,通过野外考察、采样和室内采...腾格里沙漠南缘地处中国西北沙漠与黄土交错带,也是东亚冬季风与夏季风交替控制的过渡地带,其对全球气候变化十分敏感,是研究古气候与古生态的理想地点。选择该区域一典型剖面即"土门剖面"(TMS)为代表,通过野外考察、采样和室内采用X-射线荧光光谱仪进行主量元素测试,探讨了以该剖面主元素氧化物为气候代用指标指示的腾格里沙漠沙漠南缘末次间冰期5e(MIS5e)的古气候变化。年代相当于MIS5e的土门剖面末次间冰期5e层段(TMS5e)由16层风成砂、11层湖积黄土和5层湖相构成,记录了14.5个风成砂与湖相或和湖积黄土构成的沉积旋回与元素旋回。分析结果显示,该层段8种主量元素的含量高低依次为:SiO2〉Al2O3〉CaO〉TOFE(Fe O+Fe2O3)〉K2O〉MgO〉Na2O〉TiO2,平均值依次为64.11%、11.31%、5.15%、4.08%、2.37%、2.26%、2.01%、0.41%。这些主量元素在TMS5e层段的垂直方向上呈两组镜像对称变化:一组为SiO2,其含量在风成砂层位显峰态,而在湖相和湖积黄土层位显谷态;另一组为Al2O3、TOFE、CaO、Mg O、Na2O、K2O、TiO2,它们在风成砂层位呈谷态,在湖相和湖积黄土层位显谷态。土门剖面TMS5e层段的主元素氧化物指示的MIS5e腾格里沙漠南缘的气候是不稳定的,经历了14.5次暖湿与冷干交替的气候波动,且可划分为TMS5e5(139~129.30 ka BP)、TMS5e4(129.30~124 ka BP)、TMS5e3(124~119.50 ka BP)、TMS5e2(119.5~116.5 ka BP)和TMS5e1(116.5~113.70 ka BP)等5个亚段,其在时代上与末次间冰期5e GRIP冰芯δ18O记录的5个阶段具有遥相关关系。该研究深化了对我国西北季风边缘区MIS5e古气候状况的了解,也为国际上仍有争议的"MIS5e气候是不稳定"的理论观点提供了有力的地质证据。展开更多
基金supported by "Eleven Five Years Plan" Basic Research Item of National Defense of China (Grant No. B2220060048)
文摘Cross-section deformation is one of important factors affecting the quality of tube formation, and the tube's capability of transporting liquid and gas will be reduced because of the cross-section ellipse deformation due to the effect of shear load in plastic bending process. When the tube is bent, the extrados-wall bears the tension stress and the intrados-wall bears the compression stress, synchronously the cross-section is affected by the circumferential stress. According to the above, the distribution function and curve of tangential stress can be obtained according to force balance differential equations on circumferential direction and Trasca rule. Subsequently the real state and virtual state moment equations were established, a new method was presented adopting the virtual principle of deformation system to calculate the x-axis and y-axis displacement of arbitrary point on cross-section. So the major and minor axes of deformed cross-section can be calculated according to the displacements of each point, and the variety value of major and minor axes will be obtained further. Finally the theoretical calculating result is compared with NC tube rotary-bending experiment results to verify the rationality of theoretical analysis, and the cross-section deformation rule of thin-walled tube can be received.
文摘腾格里沙漠南缘地处中国西北沙漠与黄土交错带,也是东亚冬季风与夏季风交替控制的过渡地带,其对全球气候变化十分敏感,是研究古气候与古生态的理想地点。选择该区域一典型剖面即"土门剖面"(TMS)为代表,通过野外考察、采样和室内采用X-射线荧光光谱仪进行主量元素测试,探讨了以该剖面主元素氧化物为气候代用指标指示的腾格里沙漠沙漠南缘末次间冰期5e(MIS5e)的古气候变化。年代相当于MIS5e的土门剖面末次间冰期5e层段(TMS5e)由16层风成砂、11层湖积黄土和5层湖相构成,记录了14.5个风成砂与湖相或和湖积黄土构成的沉积旋回与元素旋回。分析结果显示,该层段8种主量元素的含量高低依次为:SiO2〉Al2O3〉CaO〉TOFE(Fe O+Fe2O3)〉K2O〉MgO〉Na2O〉TiO2,平均值依次为64.11%、11.31%、5.15%、4.08%、2.37%、2.26%、2.01%、0.41%。这些主量元素在TMS5e层段的垂直方向上呈两组镜像对称变化:一组为SiO2,其含量在风成砂层位显峰态,而在湖相和湖积黄土层位显谷态;另一组为Al2O3、TOFE、CaO、Mg O、Na2O、K2O、TiO2,它们在风成砂层位呈谷态,在湖相和湖积黄土层位显谷态。土门剖面TMS5e层段的主元素氧化物指示的MIS5e腾格里沙漠南缘的气候是不稳定的,经历了14.5次暖湿与冷干交替的气候波动,且可划分为TMS5e5(139~129.30 ka BP)、TMS5e4(129.30~124 ka BP)、TMS5e3(124~119.50 ka BP)、TMS5e2(119.5~116.5 ka BP)和TMS5e1(116.5~113.70 ka BP)等5个亚段,其在时代上与末次间冰期5e GRIP冰芯δ18O记录的5个阶段具有遥相关关系。该研究深化了对我国西北季风边缘区MIS5e古气候状况的了解,也为国际上仍有争议的"MIS5e气候是不稳定"的理论观点提供了有力的地质证据。