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1.
针对铸件特点,采用国内外的先进技术,实现了消失模铸造大批量流水线生产。  相似文献   
2.
采用正交试验对ZL101合金进行了成分优化设计,并分析了合金元素对铝硅合金力学性能的影响.对改良后的合金进行了热处理工艺研究,其最佳热处理工艺条件为:500 ℃×5.5 h+180 ℃×5 h.研究结果表明,改良合金在铸态下的力学性能为:抗拉强度为244.57 MPa,伸长率为5.95%,硬度为75.1 HB;在T6态下的力学性能为:抗拉强度为397.92 MPa,伸长率为4.68%,硬度为141.2 HB.  相似文献   
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Based on the research on the solidifiation of twin-roll casting strip,the analytical model and emulational model of nucleation,the growth of dendrity tip and colunar dendrity transformation to equiaxis dendrity (CET)of twin-roll casting strip solidification are established by means of the principle of metal solidification and modern computer emulational technology.The foundation for the emulational simulation of twin-roll casting strip solidification structure is laid.  相似文献   
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When analysing the performance of casting powders in a specific casting machine, the thickness of liquid slag is a very important parameter. If the liquid slag thickness is not kept above a certain minimum value during the continuous casting operation,the surface and internal quality of the cast products will be jeopardised because lubrication between the strand and the mould is impaired . It is necessary, therefore , to choose the appropriate type of mould powder .In the industrial experiments, it is very difficult and expensive to study this sensitivity by introducing controlled variation in one parameter while keeping all the other constant. Numerical and computer simulation methods are used in the study .They can predict the liquid slag thickness developed above the liquid steel and distribution of the temperature. The sensitivity of the liquid slag thickness to variations can be determined in the material properties of the mould powders.  相似文献   
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对两个材料力学问题的探讨   总被引:1,自引:0,他引:1  
在材料力学中,对铸铁试件的轴向压缩破坏一般都认为破坏断面与杆件横截面成45°角;在材料的应力分析上,只对平面应力状态进行研究,对三角形单元的应力研究轻少。为此分别采用实验方法和分析法,对上述两个问题进行探讨。其实验结果是:铸铁试件的压缩破坏一般在55°左右,考虑内摩擦力的影响后,得到了很好的理论解释;而对三角形单元的应力分析,用应力圆法求解简单方便。对这两个问题的研究,将有助于材料力学的应用与发展。  相似文献   
9.
Effects of earthworm casts on soil nutrient dynamics and their responses to changing moisture availability in subtropical ecosystems remain poorly understood. This study aimed to examine short-term carbon(C) and nitrogen(N) dynamics and their interactions with wetting-drying cycles in three different structural forms(i.e., granular, globular, and heap-like) of Amynthas earthworm casts. The rates of C and N mineralization in the earthworm casts were examined under two different wetting-drying cycles(i.e., 2-d and 4-d wetting intervals) using a rainfall simulation experiment. After three simulated rainfall events, subsamples of the earthworm casts were further incubated for 4 d for the determination of CO_2 and N_2O fluxes. The results of this study indicated that the impacts of wetting-drying cycles on the short-term C and N dynamics were highly variable among the three cast forms, but wetting-drying cycles significantly reduced the cumulative CO_2 and N_2O fluxes by 62%–83% and 57%–85%, respectively, when compared to the control without being subjected to any rainfall events. The C mineralization rates in different cast forms were affected by the amount of organic substrates and N content in casts, which were associated with the food preference and selection of earthworms. Meanwhile, the cumulative N_2O fluxes did not differ among the three cast forms. Repeated wetting and drying of casts not only enhanced aggregate stability by promoting bonds between the cast particles, but also inhibited microbial survival and growth during the prolonged drying period, which together hindered decomposition and denitrification. Our findings demonstrated that the interactions between the structural forms, aggregate dynamics, and C and N cycling in the earthworm casts were highly complex.  相似文献   
10.
非洲鸵鸟冠状动脉的解剖观察   总被引:5,自引:0,他引:5  
采用血管铸型和组织透明方法对6羽非洲鸵鸟心脏冠状动脉的分支分布情况进行了研究,试验结果表明,非洲鸵鸟心脏左、右冠状动脉均开口于同侧主动脉窦内;左冠状动脉分为浅支(旋支)和深支(前降支),浅支先分出左心房支布于左心房,主干分支分布左心室的左缘壁和隔壁及右心室隔壁的部分;深支又依次分出动脉圆锥支、左缘支和前室间隔支,动脉圆锥支分布动脉圆锥及肺动脉干,左缘支分支分布于左室侧壁,前室间隔支分布于室间隔前1/3部,前降支主干分支分布于左心室前壁,右冠状动脉也分为浅支(旋支)和深支,浅支分出窦房结支和右心房支,主干延续为右室后支,窦房结支分布于窦房结和升主动脉,右心房支分布于右心房,右室后支分布于右心室的隔壁;深支分出后室间隔支,主干延续为右室前支,后室间隔支分布于室间隔后2/3部,右室前支分布于右心室前壁及心右缘壁。  相似文献   
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