Search

CN-224232416-U - Wiring insulator assembly for intelligent monitoring of mining motor

CN224232416UCN 224232416 UCN224232416 UCN 224232416UCN-224232416-U

Abstract

The utility model provides a wiring insulator component for intelligent monitoring of a mining motor, which relates to the field of intelligent monitoring of the mining motor, and comprises a first gasket, a second gasket, a fork-shaped pre-insulation end head, a cross groove screw, a temperature measuring wiring seat, a first conducting rod and a second conducting rod, the first conducting rod and the second conducting rod are respectively assembled with the temperature measuring wire holder, the first conducting rod is assembled with a first gasket, a second gasket, a forked pre-insulation end and a cross groove screw, the first gasket, the second gasket and the forked pre-insulation end are fixed by the cross groove screw, and the first conducting rod and the temperature measuring wire holder are integrally formed and are in clearance-free fit. The utility model effectively solves the problems of data acquisition safety, centralized management of data acquisition, centralized acquisition and extraction modes of multiple data and the like, can meet the data acquisition and extraction requirements of the current intelligent working face, and can prevent the conducting rod from rotating when fastening screws by one-time compression molding of the first conducting rod and the temperature measuring wire holder.

Inventors

  • MA PING
  • WANG FENGQIN
  • CAI XUEXIANG
  • Zhu Gengchao
  • ZHANG FANFAN

Assignees

  • 宁夏西北骏马电机制造股份有限公司

Dates

Publication Date
20260512
Application Date
20250610

Claims (5)

  1. 1. A wiring insulator assembly for intelligent monitoring of a mining motor is characterized by comprising a first gasket, a second gasket, a forked pre-insulation end, a cross groove screw, a temperature measuring wire holder, a first conductive rod and a second conductive rod, wherein the first conductive rod and the second conductive rod are respectively assembled with the temperature measuring wire holder, the first gasket, the second gasket, the forked pre-insulation end and the cross groove screw are assembled on the first conductive rod, the first gasket, the second gasket and the forked pre-insulation end are fixed by the cross groove screw, and the first conductive rod and the temperature measuring wire holder are integrally formed and are in clearance-free fit.
  2. 2. The intelligent monitoring wiring insulator assembly for the mining motor according to claim 1, wherein threads are arranged at two ends of the first conducting rod.
  3. 3. The intelligent monitoring wiring insulator assembly for the mining motor according to claim 2, wherein the second conducting rod and the temperature measuring wiring seat are assembled in a clearance fit manner.
  4. 4. The intelligent monitoring wiring insulator assembly for the mining motor according to claim 3, wherein the first gasket is a spring gasket.
  5. 5. The intelligent monitoring wiring insulator assembly for the mining motor of claim 4, wherein the number of the first conducting rods is 18, and the number of the second conducting rods is 2.

Description

Wiring insulator assembly for intelligent monitoring of mining motor Technical Field The utility model relates to the field of intelligent monitoring of mining motors, in particular to a wiring insulator assembly for intelligent monitoring of mining motors, and belongs to monitoring transmission of real-time data of modern intelligent working faces. Background The coal mine equipment mainly carries out coal mining in a basically airtight underground environment, and the special environment causes that the traditional motor is arranged only by inputting rated voltage and rated current into the motor for normal use. Along with the requirements of national advocating coal mine safety and intellectualization, the coal mine is imperative to be paved on an intelligent working face. The intelligent and digital process mainly monitors and feeds back the field device in real time, and makes correct indication to the field device through effective real-time data so as to achieve a safe and stable running state. For example, during coal mining, harder rocks are encountered, the current of the motor is increased, the temperature of the motor is increased, the vibration of the motor is increased and the like, the coal mining speed can be reduced through the data, the impact on equipment is relieved, the working environment is safer, the data can be timely fed back to an intelligent control system, the data acquisition and processing are needed, in the process, the position of data acquisition of the temperature of a motor winding, the vibration of the motor, the temperature of a motor bearing and the like is the most critical inside the motor, and the data are accurately and timely acquired to be further developed. The coal mine equipment needs an explosion-proof wiring mode to collect and connect out, so that the collection and centralized management of multiple data are convenient. Disclosure of Invention The utility model aims to provide a wiring insulator assembly for intelligent monitoring of a mining motor. The utility model provides a mining motor intelligent monitoring is with wiring insulator assembly, including first packing ring, the second packing ring, forked pre-insulation end, cross groove screw, temperature measurement connection terminal, first conducting rod and second conducting rod are respectively with temperature measurement connection terminal equipment, first packing ring of equipment on the first conducting rod, the second packing ring, forked pre-insulation end and cross groove screw, first packing ring, second packing ring and forked pre-insulation end adopt cross groove screw fixation, first conducting rod and temperature measurement connection terminal integrated into one piece, clearance-free fit. Preferably, threads are arranged at two ends of the first conducting rod. Preferably, the second conducting rod and the temperature measuring wire holder are assembled in a clearance fit mode. Preferably, the first washer is a spring washer. Preferably, the number of the first conductive rods is 18, and the number of the second conductive rods is 2. The utility model effectively solves the problem of data acquisition safety, effectively solves the centralized management of data acquisition, effectively solves the centralized acquisition and extraction mode of multiple data, can meet the requirement of data acquisition and extraction required by the current intelligent working face, performs one-time compression molding on the first conducting rod and the temperature-measuring wire holder to prevent the rotation phenomenon of the conducting rod when the screw is fastened, uses the material of the temperature-measuring wire holder as the peripheral insulating material of the conducting rod, effectively solves the insulating electrical property between the conducting rods, can be manufactured into an explosion-proof component for direct use, and the extraction wires of components such as a PT100 temperature sensor, a vibration sensor, a bearing temperature measurement and the like in the motor are intensively arranged on the wiring insulator component for intelligent monitoring of the mining motor to realize centralized management. Drawings Fig. 1 is a schematic structural diagram of a wiring insulator assembly for intelligent monitoring of a mining motor; FIG. 2 is a schematic view of the cross-sectional view of B-B in FIG. 1; FIG. 3 is a schematic view of the cross-sectional view angle structure of A-A in FIG. 1; In the figure, a first gasket 1, a second gasket 2, a forked pre-insulation end head 3, a cross groove screw 4, a temperature measuring wire holder 5, a second conducting rod 6 and a first conducting rod 7 are arranged. Detailed Description In order to make the technical scheme of the utility model easier to understand, the technical scheme of the utility model is clearly and completely described by adopting a mode of a specific embodiment with reference to the accompanying drawings. Refer