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基于线性拟合的出风口纵向操作力对感知品质影响的机理分析
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作者 胡志巍 卢浩 吴剑 《汽车实用技术》 2024年第4期97-100,共4页
目前对出风口的研究聚焦于结构优化设计、啸叫、气动噪音等,而对出风口操作力的研究较少,且仅限于操作力的定性分析,并未求解出定量的机理公式。目前汽车出风口操作力的机理尚不清楚,出风口生产完之后,根据实测的操作力,通过调节间隙来... 目前对出风口的研究聚焦于结构优化设计、啸叫、气动噪音等,而对出风口操作力的研究较少,且仅限于操作力的定性分析,并未求解出定量的机理公式。目前汽车出风口操作力的机理尚不清楚,出风口生产完之后,根据实测的操作力,通过调节间隙来调节出风口的操作力以达到标准要求,其设计和生产过程不可控。文章通过对出风口的结构进行分析,确定操作力的机理公式和影响因素,并通过仿真和实验相结合的方式,通过线性拟合,确定机理公式中各项参数,提供了出风口操作力机理分析的一般方法。通过求解纵向操作力的机理公式,可根据所需的操作力计算出出风口的尺寸,以指导出风口的设计和制造。 展开更多
关键词 出风口 纵向操作力 机理公式 线性拟合
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Experimental Study of Structure Shock Vibration in Soil Caused by Explosion of Conventional Weapons
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作者 FENG Jinji XIE Qingliang ZHAO Dayong 《Transactions of Tianjin University》 EI CAS 2006年第B09期228-232,共5页
When hitting underground structures directly or exploding in rock-soil media near underground structures, the conventional weapons with large charge weight will make underground structures be subjected to strong shock... When hitting underground structures directly or exploding in rock-soil media near underground structures, the conventional weapons with large charge weight will make underground structures be subjected to strong shock vibration and cause personal casualty and damage of precision electronic equipments. The shock vibration has become one of the cardinal killing means of weapons. However, the existing methods of predicting structure shock vibration are limited evidently. In this paper the coupling coefficient of acceleration in clayey soil is obtained firstly. Subsequently based on repeated experiments of chemical explosion, after dimension analysis and by using method of multivariate stepwise regression, the calculation formulae of shock vibration acceleration for the underground structure are obtained finally. The formulae consider top and side explosion respectively, taking into account the effects of penetration depth, charge weight, distance to explosion center, rock-soil media, size of structure and buried depth. They are easy to use with high practicability and degree of confidence, and can provide credible evidence for prediction of shock vibration and vibration isolating design of underground structure. 展开更多
关键词 explosion mechanics empirical calculating formula shock vibration acceleration coupling coefficient
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