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Tower pole self-standing method with self-standing safety detection function
The invention provides a tower pole self-standing method with a self-standing safety detection function, and belongs to the technical field of detection devices.The tower pole self-standing device with the self-standing safety detection function comprises a first ultrasonic generator, a second ultrasonic generator, a first ultrasonic receiver, a second ultrasonic receiver and a control chip, an ultrasonic generator control module and a construction stress analysis module are integrated on the control chip, the construction stress analysis module is used for analyzing a first receiving signal and a second receiving signal collected by the first ultrasonic receiver and the second ultrasonic receiver to obtain tower pole stress in construction, and when the tower pole stress exceeds a stress threshold value, an alarm is given to constructors; the self-standing device can improve the reliability and stability of the tower pole structure.
本发明提供了一种具有自立安全检测功能的塔杆自立方法,属于检测装置技术领域,该具有自立安全检测功能的塔杆自立装置包括:第一超声波发生器、第二超声波发生器、以及第一超声波接收器和第二超声波接收器和控制芯片,控制芯片上集成有超声波发生器控制模块以及施工应力分析模块,施工应力分析模块用于对第一、第二超声波接收器采集的第一接收信号和第二接收信号进行分析,得到施工中的塔杆应力,塔杆应力超过应力阈值,则发出警报给施工人员;自立装置能够提高塔杆结构的可靠性和稳定性。
Tower pole self-standing method with self-standing safety detection function
The invention provides a tower pole self-standing method with a self-standing safety detection function, and belongs to the technical field of detection devices.The tower pole self-standing device with the self-standing safety detection function comprises a first ultrasonic generator, a second ultrasonic generator, a first ultrasonic receiver, a second ultrasonic receiver and a control chip, an ultrasonic generator control module and a construction stress analysis module are integrated on the control chip, the construction stress analysis module is used for analyzing a first receiving signal and a second receiving signal collected by the first ultrasonic receiver and the second ultrasonic receiver to obtain tower pole stress in construction, and when the tower pole stress exceeds a stress threshold value, an alarm is given to constructors; the self-standing device can improve the reliability and stability of the tower pole structure.
本发明提供了一种具有自立安全检测功能的塔杆自立方法,属于检测装置技术领域,该具有自立安全检测功能的塔杆自立装置包括:第一超声波发生器、第二超声波发生器、以及第一超声波接收器和第二超声波接收器和控制芯片,控制芯片上集成有超声波发生器控制模块以及施工应力分析模块,施工应力分析模块用于对第一、第二超声波接收器采集的第一接收信号和第二接收信号进行分析,得到施工中的塔杆应力,塔杆应力超过应力阈值,则发出警报给施工人员;自立装置能够提高塔杆结构的可靠性和稳定性。
Tower pole self-standing method with self-standing safety detection function
一种具有自立安全检测功能的塔杆自立方法
CHEN SIYANG (Autor:in) / LIU ZHIYUAN (Autor:in) / WANG HAO (Autor:in) / JIN YANJUN (Autor:in) / LU YANHU (Autor:in) / JIANG CHAOWEI (Autor:in) / ZOU HONGSEN (Autor:in) / SHAO YONGHAO (Autor:in) / PENG JIN (Autor:in) / YANG JIARUI (Autor:in)
06.02.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E04H
Gebäude oder ähnliche Bauwerke für besondere Zwecke
,
BUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES
/
G01L
Messen von Kraft, mechanischer Spannung, Drehmoment, Arbeit, mechanischer Leistung, mechanischem Wirkungsgrad oder des Drucks von Fluiden
,
MEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
/
G06N
COMPUTER SYSTEMS BASED ON SPECIFIC COMPUTATIONAL MODELS
,
Rechnersysteme, basierend auf spezifischen Rechenmodellen
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