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半钢子午线轮胎径向力八次谐波的改进
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作者 李虎 李浩 +2 位作者 姜浩军 王建中 孟凡波 《轮胎工业》 CAS 2021年第4期263-265,共3页
以235/50R19半钢子午线轮胎为例,研究轮胎径向力八次谐波(RF8H)的工艺改进措施。结果表明,在胎体膨胀率安全系数范围内尽量减小胎坯周长,并使夹持块与活络模块中心重叠,有效减小了轮胎径向力八次谐波数值,降低了轮胎噪声,提高了车辆乘... 以235/50R19半钢子午线轮胎为例,研究轮胎径向力八次谐波(RF8H)的工艺改进措施。结果表明,在胎体膨胀率安全系数范围内尽量减小胎坯周长,并使夹持块与活络模块中心重叠,有效减小了轮胎径向力八次谐波数值,降低了轮胎噪声,提高了车辆乘坐舒适性。 展开更多
关键词 半钢子午线轮胎 径向力八次谐波 噪声 胎坯周长 夹持环 硫化定位
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Locating method of fire source for spontaneous combustion of sulfide ores 被引量:8
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作者 刘辉 吴超 石英 《Journal of Central South University》 SCIE EI CAS 2011年第4期1034-1040,共7页
in order to achieve a more efficient way to accurately detect the position of the fire source of spontaneous combustion underground mine, a simple fire source locating method, based on infrared scanning system which c... in order to achieve a more efficient way to accurately detect the position of the fire source of spontaneous combustion underground mine, a simple fire source locating method, based on infrared scanning system which can determine the point where the highest temperature on the surface of igniting ores occurs, was proposed. First, the differential equations that describe heat flow in ore body were presented and the relationship between the surface temperature distribution and the depth and intensity of inner fire source was established with a relatively simple heat transfer model. With the solution of equation, the expression of the relationship between the surface temperature distribution and the inner fire source was deduced and the mathematical-physical model of heat transfer process was set up. Then, with the model, visualization of fire source on the basis of MATLAB simulation platform was realized. The results show that: 1) within 10 m, when the detecting depth is less than 2 m, the temperature perturbation on ores surface can change rapidly, and then slowly; after 4 m, in contrast, it changes very little, and is even close to zero at 10 m; 2) When it is close to self-ignition duration and the detective depths are 2, 5 and 10 m, respectively, the maximum temperature differences are correspondingly 0.5, 0.04 and 0.005 ℃ in the scope of 1 m×1 m; under the same condition, the maximum temperature differences are 1.391, 0.136 and 0.018 ℃, respectively, in the scope of 2 m×2 m. Therefore, this system can be used to measure the temperature differences on the surface of ore body and determine the highest temperature point directly. Also, it is possible to determine the depth of fire source and its intensity by locating method of fire source indirectly. 展开更多
关键词 sulfide ores spontaneous combustion location of fire source DETECTION
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