Beam body operation and maintenance monitoring method and system
A beam body, operation and maintenance technology, applied in the direction of signal transmission system, measuring device, force/torque/work measuring instrument, etc., can solve the problems of lack of beam body force monitoring and deformation monitoring, etc., to facilitate intuitive monitoring and simplify operation The effect of maintenance monitoring and efficiency improvement
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Embodiment 1
[0037] Although a tensile test is required before the beam body goes out of the field, it is necessary to monitor the force and deformation of the beam body regularly or irregularly during the appearance and actual use of the beam body. The method for force monitoring and deformation monitoring, therefore, this embodiment proposes a beam operation and maintenance monitoring method to detect the force and deformation of the beam, such as Figure 1-4 As shown, the details are as follows:
[0038] A beam body operation and maintenance monitoring method includes the following steps:
[0039] Step 1: Scan the passive radio frequency chip in a lattice layout on the beam at a constant speed to obtain the stress data at each point of the beam;
[0040] Step 2: Draw a monitoring chart based on the received stress data, and at the same time determine whether the stress data exceeds the threshold, if it exceeds, then mark and sound and light remind in the monitoring chart; if it does not exceed...
Embodiment 2
[0049] Based on the method of embodiment 1, this embodiment provides a beam body operation and maintenance monitoring system. The system includes a processor, a memory, and a computer program that is stored in the memory and can run on the processor, such as "Step 1: Uniform Speed Scan the passive radio frequency chip in a lattice layout to obtain the stress data of each point of the beam; Step 2: Draw a monitoring map based on the received stress data, and at the same time determine whether the stress data exceeds the threshold, if it exceeds, it will be displayed in the monitoring map Make an annotation and sound and light reminder; if it is not exceeded, it will be displayed normally in the monitoring chart. Step 1.1: A passive radio frequency chip in a lattice layout is arranged in the beam body, and the passive radio frequency chip includes a passive radio frequency module and a stress sensor Step 1.2: Use a trolley equipped with a scanner to move parallel to the beam body ...
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