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Force measuring and height adjusting system based on multipoint stress balance and intelligent adjusting method
The invention discloses a force measuring and height adjusting system based on multipoint stress balance and an intelligent adjusting method. The method comprises the following steps that a height adjusting device with a sensor device is installed; a data processing platform is arranged and used for receiving stress data, fed back by the sensor device, of the height adjusting device; the data processing platform automatically calculates the received stress data of each height adjusting device to obtain a theoretical balanced stress value of each height adjusting device, the theoretical balanced stress value is compared with a monitoring value of each height adjusting device, and meanwhile, an internal system automatically calculates and displays a force value which should be adjusted by the overload or disengagement height adjusting device; and the obtained adjusted force value of the height adjusting device is converted into a height adjustment power application value, and the value is used as a control index to apply power to the height adjusting device with uneven stress for height adjustment until each height adjusting device reaches a balanced stress range. Balanced stress ofthe full-bridge height adjusting device serves as a control index, a bridge does not need to be jacked, and compared with a traditional height control mode, the method is more reliable and better meets the design requirement.
本发明公开了一种基于多点受力均衡的测力调高系统及智能调节方法,包括以下步骤:安装具有传感器装置的调高装置;设置数据处理平台用于接收传感器装置反馈的调高装置受力数据;数据处理平台将接收到的各调高装置受力数据自动进行计算得出各调高装置的理论均衡受力值,与各调高装置的监测值作比较,同时内部系统自动计算显示出超载或脱空调高装置应调整力值;将获得的调高装置的应调整力值转换为调高动力施加值,并以该值为控制指标对受力不均的调高装置施加动力进行调高,直到各调高装置达到均衡受力范围内。本发明以全桥调高装置均衡受力为控制指标,无需顶升桥梁,相比传统以高度控制的方式更加可靠,更符合设计要求。
Force measuring and height adjusting system based on multipoint stress balance and intelligent adjusting method
The invention discloses a force measuring and height adjusting system based on multipoint stress balance and an intelligent adjusting method. The method comprises the following steps that a height adjusting device with a sensor device is installed; a data processing platform is arranged and used for receiving stress data, fed back by the sensor device, of the height adjusting device; the data processing platform automatically calculates the received stress data of each height adjusting device to obtain a theoretical balanced stress value of each height adjusting device, the theoretical balanced stress value is compared with a monitoring value of each height adjusting device, and meanwhile, an internal system automatically calculates and displays a force value which should be adjusted by the overload or disengagement height adjusting device; and the obtained adjusted force value of the height adjusting device is converted into a height adjustment power application value, and the value is used as a control index to apply power to the height adjusting device with uneven stress for height adjustment until each height adjusting device reaches a balanced stress range. Balanced stress ofthe full-bridge height adjusting device serves as a control index, a bridge does not need to be jacked, and compared with a traditional height control mode, the method is more reliable and better meets the design requirement.
本发明公开了一种基于多点受力均衡的测力调高系统及智能调节方法,包括以下步骤:安装具有传感器装置的调高装置;设置数据处理平台用于接收传感器装置反馈的调高装置受力数据;数据处理平台将接收到的各调高装置受力数据自动进行计算得出各调高装置的理论均衡受力值,与各调高装置的监测值作比较,同时内部系统自动计算显示出超载或脱空调高装置应调整力值;将获得的调高装置的应调整力值转换为调高动力施加值,并以该值为控制指标对受力不均的调高装置施加动力进行调高,直到各调高装置达到均衡受力范围内。本发明以全桥调高装置均衡受力为控制指标,无需顶升桥梁,相比传统以高度控制的方式更加可靠,更符合设计要求。
Force measuring and height adjusting system based on multipoint stress balance and intelligent adjusting method
一种基于多点受力均衡的测力调高系统及智能调节方法
WU DACHENG (author) / WANG JIANMING (author) / ZOU YIJUN (author) / HU MENG (author)
2020-08-28
Patent
Electronic Resource
Chinese
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