Investigation and Integration of Mine Lifting Equipment

Investigation and Integration of Mine Lifting Equipment Steps for fault diagnosis of coal mine electromechanical equipment Whether simple or precise diagnosis is performed, the vibration characteristics of the equipment must be analyzed. Correctly select the measurement method, determine the parameters, arrange the measurement points properly, select the appropriate measurement period, and adopt appropriate data analysis methods. The analysis of the vibration characteristics of the equipment The analysis of the vibration characteristics of the equipment is the basis for analyzing whether the equipment is operating properly. By analyzing the vibration characteristics of the equipment, the relationship between the vibration characteristics of the equipment and the characteristics of the fault can be grasped, and thus the imbalance, misalignment, and bearing of the rotor can be diagnosed. Wear and other typical failures. Correct selection of measurement methods and measurement parameters (1) Pickup of vibration signals There are two methods of measurement: one is off-line measurement, and pick-up signal and analysis data are performed separately. First, read the data on the simple vibrometer on site, or store the data by the tape recorder, and then perform the playback in the laboratory for manual analysis; the other is on-line measurement, that is, signal acquisition and data processing, analysis is on the spot. Synchronized. On-line testing is the development trend of the monitoring and diagnosis of large-scale electromechanical equipment in coal mines.

(2) The vibration parameters mainly include displacement x, velocity ν and acceleration a, as well as statistics composed of these three parameters such as peak-to-peak (xp-p), RMS (vrms, xrms), etc. (x, v, a). The selection of the parameters is mainly related to the frequency band of the measurement signal. The selection of practical parameters is based on the frequency range: low frequency range (10-100 Hz) displacement parameters (xp-p, etc.), intermediate frequency range (10-1000 Hz), velocity and vibration intensity (vrms); high frequency range (>1000Hz), acceleration parameters (arms, ap-p, a).

For the electromechanical equipment vibration test of coal mines, when the simple diagnosis is made, the root mean square value vrms of the vibration speed is selected, that is, the vibration intensity is the highest. For precision diagnosis, vibration acceleration sensors are generally used to pick up signals, and subsequent devices are charge amplifiers, which can selectively achieve displacement, velocity, and acceleration outputs. Reasonably arranged measuring points should be arranged on the non-rotating parts of the machine. This is directly related to the accuracy of equipment monitoring and diagnosis. Attention should be paid to the following matters when arranging measuring points:

(1) The measuring points to be arranged shall be fixed and marked with particularly marked symbols.

(2) The measuring points shall be arranged at the locations that reflect the most sensitive vibration characteristics of the equipment, and the measuring points shall be arranged at the same time in the vertical, horizontal and axial directions for comparison.

(3) The measuring point should be chosen in a place where the rigidity of the bearing housing is relatively high or on the housing, and the mounting surface should be smooth.

(4) The selection of measuring points should minimize the intermediate interface.

(5) Try to keep the working conditions, measurement parameters, measuring instruments and measurement methods of the running equipment at each measurement.

Choosing the right analytical method The statistical analysis method is generally used for simple diagnosis, and the trend of vibration displacement or vibration intensity is drawn. Frequently, amplitude spectrum or power spectrum analysis is used for precise diagnosis, and it is concluded through spectrum analysis that in order to improve the resolution of spectrum analysis, refinement analysis is usually used. Mine Hoist Monitoring and Diagnosis Example Analysis Mine hoist is an important large-scale equipment for coal mines. It is a key equipment for coal mining, transportation of materials, and up-and-down personnel. It plays a decisive role in ensuring the normal production of coal mines. Coal mines often fail due to elevator failures. The phenomenon of "cock-neck" appears, therefore, condition monitoring and fault diagnosis of the hoist are particularly important. Using the technology of Henan Polytechnic University to complete the monitoring and diagnosis of the elevators in the No. 1 Mine of the No. 1 Mine of Pingmei Coal Group, the monitoring and diagnosis analysis was carried out as an example.

CNC Milling Machining

CNC milling machining is a CNC machine tool trajectory by means of computer controlled machine, using high speed rotating cutting tool if you want to shape the material. With the size of products have become increasingly demanding, machining from the original two gradually changed to 3 axis machining, 4 axis machining, 5 axis machining center, precision can reach 0.001mm. us the maximum machine processing size: 500mm * 1000mm *600mm, 800kg machine under the maximum weight of workpiece, Machine tool spindle speed 20000RPM to ensure that the surface of the workpiece is smooth and clean.we often processed material of aluminum,steel, copper, stainless steel, titanium, POM, Teflon and so on. At the completion of high quality, high dimensional accuracy of CNC milling machining parts process, we will divided into rough machining and processing method fine to get the best effect, the margin size coarse and finish machining is 0.5 * 1mm. after processing some of the products after surface treatment such as plating polishing surface passivation.Sand (powder), anodic treatment (aluminum common CNC anodized black red blue anode, anode, anode). CNC milling machining is widely used in aviation, automotive, communications, medical equipment, electrical appliances, drone.


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