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1.
采用室温拉伸力学性能测试、X射线织构检测、EBSD分析等方法,对比研究了10 mm与2 mm厚度2A55超高强铝锂合金板材的平面各向异性,阐释热处理制度与晶粒组织对板材各向异性的影响。结果表明,热处理后板材屈服强度最高的取向为轧向(0°)与横向(90°);Taylor因子能较好地预测固溶态与T6态时效板材屈服强度的各向异性,织构是平面各向异性的重要原因;厚板更高含量的织构与长条状的晶粒形貌导致其各向异性强于薄板;时效热处理使10 mm厚度板材各向异性减弱,使2 mm厚度薄板各向异性增强;T3态、T8态板材的各向异性分别强于T4态、T6态,时效前的预变形增强了板材的平面各向异性。  相似文献   
2.
通过分析喷水室内水和空气之间的热质交换过程,指出目前采用的热工计算公式的不足,并在此基础上推导出喷水室热平衡方程新公式,对理论教学起到一定的指导作用。  相似文献   
3.
刚性隔热瓦重复使用性评价研究   总被引:2,自引:1,他引:2       下载免费PDF全文
为满足未来新型飞行器对隔热材料的需求,将刚性隔热瓦在1 200℃热处理30 min,对其质量稳定性、尺寸稳定性、力学性能、隔热性能以及微观结构等进行了评价.结果表明,热处理20次的质量损失率、xy向线性收缩率、隔热性能以及微观结构变化都很小,仅z向线性收缩率稍大(3.19%).综合来看,1 200℃/30min的使用条件下,隔热瓦能够满足20次的重复使用要求.  相似文献   
4.
分析了所研制的1:1热流计分度装置与常规的敞开式大平板热流计分度装置由于分度方法不同而导致的分度差异,并用差分方法对这种差异进行了计算。理论计算和实际测试结果都表明:对同一热流计,1:1分度装置的分度值比敞开式大平板分度装置的分度值高出20%左右。  相似文献   
5.
以异氰酸酯为固化剂固化环氧树脂,通过比较不同固化条件下固化物结构的差异,研究了异氰酸酯与环氧树脂的反应历程;改变异氰酸酯/环氧树脂体系的化学计量比(I/E),采用FTIR/ATR、DSC、DMTA等研究了固化产物的结构与性能。结果表明,异氰酸酯与环氧树脂的固化历程随着温度的升高可分为三个阶段,第一阶段为异氰酸酯的三聚反应;第二阶段是一个复杂的过程,首先环氧树脂和异氰酸酯可反应生成嗯唑烷酮结构,通过嗯唑烷酮环扩链得到端畀氰酸酯基低聚物,可继续发生三聚反应;第三阶段为异氰脲酸酯与残余的环氧基团反应生成嗯唑烷酮结构,异氰脲酸酯六元环向噁唑烷酮五元环的转化是一个可逆的过程。不同的I/E比例可得到结构不同的固化物,不同的结构导致固化物性能的差异:当(I/E)=1.8时,综合力学性能良好,异氰酸酯/环氧树脂/玻璃纤维复合材料的弯曲强度、弯曲模量、层剪强度分别为652.53、33270.63和31.66MPa,优于甲基四氢苯酐/环氧树脂/玻璃纤维复合材料力学性能;当I/E=2.0时,固化物T_g达到了305℃,明显优于传统的环氧树脂固化体系。  相似文献   
6.
Numerical simulations of flow and heat transfer to supercritical RP-3 through the inclined tubes have been performed using LS k–e model embedded in Fluent. The physical properties of RP-3 were obtained using the generalized corresponding state laws based on the fourcomponent surrogate model. Mass flow rate is 0.3 g/s, system pressure is 3 MPa, inlet temperature is 373 K. Inclination of the inclined pipe varied from -90° to 90°, with heat flux varied from 300 k W/m~2 to 400 kW/m~2. Comparison between the calculated result and the experimental data indicates the range of error reasonable. The results of ±45° show that temperature inhomogeneity in inclined pipe produce the secondary flow in its cross section due to the buoyancy force. Depending on the strength of the temperature inhomogeneity, there will be two different forms of secondary flow and both contribute to the convective heat transfer in the pipe. The secondary flow intensity decreases when the inhomogeneity alleviates and thermal acceleration will play a leading role. It will have a greater impact on the turbulent flow to affect the convective heat transfer in the pipe. When changing the inclination, it affects the magnitude of the buoyant component in flow direction. The angle increases, the buoyancy component decreases. And the peak temperature of wall dominated by the secondary flow will move forward and increase in height.  相似文献   
7.
To simulate the different lunar phases and ensure continuous adjustability of the radiant brightness, a new broad spectrum light and frosted glass were applied and designed in the optical system for lunar simulator with the shapes and radiance being able to be adjusted. According to the engineering demand and index requirements of the optical system, three major design aspects are addressed, including the high reliability and maintainability for broad-spectrum light, heat dissipation in lunar simulator for long working hours, and bearing of the main frame under different working conditions. By designing a reasonable machine structure, and through the structure itself with the matrix arrangement of 48 axial flow fans, an effectively cooling air duct is established. Deformation and temperature were calculated by the finite element software ANSYS. The results showed that the displacement deformation reached 0.33mm and stress deformation reached 0.02MPa at the temperature of 20℃; when the main frame was in the temperature field between 20℃ and 65℃, the maximum displacement deformation reached 13.30mm and maximum stress deformation is 97.90MPa, and the amount of this deformation is very small in considering of the mechanical structure dimensions and weight of the lunar simulator.  相似文献   
8.
Urban heat island (UHI) is emerged as a ubiquitous phenomenon that affects the outdoor thermal comfort. Hence urban microclimatic studies using numeric simulation software to find out adaption strategies are attracting the great attention of researchers and policymaker. Number of scientists carried out their research on this topic using different tools and technique whereas ENVI-met model is the most widely used simulation tools. The present study intended to examine the implication of green infrastructure of the town on enhanced microclimatic condition and to evaluate the best suitable mitigation strategy modelling cool city with ENVI-met software (V4). Five greening condition such as existing UHI condition (C1), 100% greening of roof (C2), 100% greening of roof and walls (C3), 50% greening of roof and walls (C4) and: Plantation at suitable area with 50% greening of roof and walls (C5) have been taken into consideration for the microclimate simulation for all three selected sites. Among these five conditions, C3 for the open mid-rise and compact low-rise, C5 for the open low-rise are identified as one of the most suitable strategies which can reduce the air temperature of peak hours by 2.6 °C, 1.33 °C and 1.87 °C respectively. These models are validated by simple linear regression between simulated and existing air temperature in case of existing UHI condition (C1) and in all the cases coefficient of determination value is high such as for open mid-rise, compact low-rise and open low-rise, it is 0.92, 0.92 and 0.75 respectively. Therefore it can be concluded that the application of those strategies can improve the urban thermal environment as well as the outdoor thermal comfort of English bazaar Town and its surroundings.  相似文献   
9.
为充分利用机柜内有限空间并改善仪器设备的散热环境,建立了空间实验室机柜的模型,运用数值计算方法,对不同仪器设备间距下机柜内流场和温度场进行求解,研究了不同布局仪器层平均风速和仪器表面平均对流换热系数的变化规律。结果表明,合理地选择仪器设备间距可以有效地改善其表面的散热状况,为空间实验室机柜的热设计提供了依据。  相似文献   
10.
We consider some novel concepts for thermal properties experiments aboard lunar landers or rovers, that may lead to an improved understanding of both the structure of the lunar near surface layers and the lunar thermal history. The new instruments could be developed using the experience and heritage from recently developed systems, like the Rosetta Lander thermal conductivity experiment MUPUS and existing designs used for terrestrial measurements of thermal conductivity. We describe shortly the working principle of such sensors and the main challenges faced when using them in the airless regolith layers of the Moon or other airless bodies. In addition new concepts to create appropriate drill holes for thermal and other measurements in the lunar regolith are discussed.  相似文献   
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