Detection device for rotor shaft of recovery motor
A detection device and rotor shaft technology, which is applied in mechanical measurement devices, measurement devices, and mechanical devices, etc., can solve the problems of expensive equipment, difficult erection, and inability to detect motors.
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specific Embodiment approach 1
[0029] Such as Figure 1 to Figure 9 As shown, the rotor shaft detection device of the recovery motor includes a detection seat 1, an angle detection regulator 2, a roundness diameter detection regulator 3, four taper angle regulators 4 and four taper detectors 5, and the angle detection The regulator 2 is slidingly connected in the detection seat 1, the roundness diameter detection regulator 3 is longitudinally slidably connected in the detection seat 1, the four taper angle regulators 4 are evenly and fixedly connected to the angle detection regulator 2, and the four taper detectors 5 are respectively rotatably connected in the four taper angle regulators 4. Put the transmission shaft of the motor to be tested on the fixed chuck and rotate it horizontally, insert it into the upper test seat 1, adjust and fix the taper angles of the four taper angle regulators 4 according to the angle to be tested, and adjust them through fine adjustment Angle detection regulator 2, so that ...
specific Embodiment approach 2
[0031] Such as Figure 1 to Figure 9As shown, this embodiment will further explain Embodiment 1. The detection seat 1 includes a detection observation tube 1-1, a longitudinal slot 1-2, two fixed slide plates 1-3, two T-shaped chute 1- 4. Side slots 1-5, upper fixed operating table 1-6, two connecting chute 1-7, gear slot 1-8, gear slot end cover 1-9 and longitudinal rotation round hole 1-10, detection The upper end of the observation tube 1-1 is provided with a connected longitudinal slot 1-2, two fixed slide plates 1-3 are respectively fixedly connected to the two ends of the detection observation tube 1-1, and two T-shaped chute 1-4 are set respectively On the two fixed slide plates 1-3, the four side slots 1-5 are evenly arranged on the detection observation tube 1-1, and the upper fixed operating table 1-6 is fixedly connected to the upper end of the detection observation tube 1-1 through a connecting rod , the two connecting chutes 1-7 are all left and right through the...
specific Embodiment approach 3
[0033] Such as Figure 1 to Figure 9 As shown, this embodiment will further illustrate Embodiment 2. The angle detection regulator 2 includes a precision adjustment rod 2-1, an adjustment gear 2-2, a front rack 2-3, a rear rack 2-4, Two connecting plates 2-5, two sliding plates 2-6, two lower T-shaped sliders 2-7 and four limit slots 2-8, the precision adjusting rod 2-1 is fixedly connected to the adjusting gear 2- 2 is connected and rotated in the gear slot end cover 1-9, the adjusting gear 2-2 is set in the gear slot 1-8, and the front rack 2-3 and the rear rack 2-4 are respectively slidably connected in two connected gears. In the chute 1-7, the two ends of the adjustment gear 2-2 mesh with the front rack 2-3 and the rear rack 2-4 respectively, and the front rack 2-3 and the rear rack 2-4 are fixedly connected to the On the two connecting plates 2-5, the two connecting plates 2-5 are respectively fixedly connected to the two sliding plates 2-6, and the sliding plate 2-6 is...
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