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缺口对TC21钛合金全片层组织拉伸性能的影响 被引量:4
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作者 曾玉金 万明攀 +3 位作者 温鑫 黄朝文 雷旻 赵飞 《材料热处理学报》 EI CAS CSCD 北大核心 2019年第8期56-60,共5页
研究了缺口对具有全片层组织的TC21钛合金的拉伸性能的影响,采用扫描电镜(SEM)观察分析了其显微组织和断口形貌特征,计算出了不同退火状态下TC21合金的缺口敏感性系数,并建立TC21钛合金显微组织-缺口拉伸性能的定量关系。结果表明:缺口... 研究了缺口对具有全片层组织的TC21钛合金的拉伸性能的影响,采用扫描电镜(SEM)观察分析了其显微组织和断口形貌特征,计算出了不同退火状态下TC21合金的缺口敏感性系数,并建立TC21钛合金显微组织-缺口拉伸性能的定量关系。结果表明:缺口半径对全片层组织的TC21钛合金的拉伸强度和塑性有显著的影响;随缺口半径的增大,合金拉伸强度逐渐下降,塑性也降低,没有出现'缺口强化'效应;随退火温度增加,全片层组织的TC21钛合金的缺口敏感性减小;缺口对TC21合金的微观断裂机制影响不大,主要为准解理和延性断裂两种混合断裂机制,但随着缺口半径增加,合金断口的宏观特征脆性倾向越明显。 展开更多
关键词 TC21钛合金 显微组织 缺口半径 缺口敏感性
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Coupled modeling of land hydrology-regional climate including human carbon emission and water exploitation 被引量:4
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作者 XIE Zheng-Hui zeng yu-jin +4 位作者 XIA Jun QIN Pei-Hua JIA Bing-Hao ZOU Jing LIU Shuang 《Advances in Climate Change Research》 SCIE CSCD 2017年第2期68-79,共12页
Carbon emissions and water use are two major kinds of human activities. To reveal whether these two activities can modify the hydrological cycle and climate system in China, we conducted two sets of numerical experime... Carbon emissions and water use are two major kinds of human activities. To reveal whether these two activities can modify the hydrological cycle and climate system in China, we conducted two sets of numerical experiments using regional climate model RegCM4. In the first experiment used to study the climatic responses to human carbon emissions, the model were configured over entire China because the impacts of carbon emissions can be detected across the whole country. Results from the first experiment revealed that near-surface air temperature may significantly increase from 2007 to 2059 at a rate exceeding 0.1 ~C per decade in most areas across the country; southwestern and southeastern China also showed increasing trends in summer precipitation, with rates exceeding 10 mm per decade over the same period. In summer, only northern China showed an increasing trend of evapotranspiration, with increase rates ranging from 1 to 5 mm per decade; in winter, increase rates ranging from 1 to 5 mm per decade were observed in most regions. These effects are believed to be caused by global warming from human carbon emissions. In the second experiment used to study the effects of human water use, the model were configured over a limited region-- Haihe River Basin in the northern China, because compared with the human carbon emissions, the effects of human water use are much more local and regional, and the Haihe River Basin is the most typical region in China that suffers from both intensive human groundwater exploitation and surface water diversion. We incorporated a scheme of human water regulation into RegCM4 and conducted the second experiment. Model outputs showed that the groundwater table severely declined by -10 m in 1971-2000 through human groundwater over- exploitation in the basin; in fact, current conditions are so extreme that even reducing the pumping rate by half cannot eliminate the ground- water depletion cones observed in the area. Other hydrological and climatic elements, such as soil moisture, runoff generation, air humidity, precipitation, wind field, and soil and air temperature, were also significantly affected by anthropogenic water withdrawal and consumption, although these effects could be mitigated by reducing the amount of water drawn for extraction and application. 展开更多
关键词 China Hydrological cycle Climate change Anthropogenic activities Land--atmosphere coupling modeling
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