Beam-pumping unit brake locking device and using method
A beam pumping unit and lock-stop technology, which is applied in earthwork drilling, mechanical equipment, wellbore/well components, etc., can solve problems such as unstable use, operator safety hazards, and brake failure, and achieve the overall structure Closely connected, good braking effect, good braking and locking effect
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Embodiment 1
[0025] A beam-type pumping unit brake and locking device, which is composed of: a reducer, the reducer has an outer casing 1, the outer casing is provided with an oblique inlay groove 2, one of the oblique inlay grooves One side is connected to the upper chute 3, and the other side is connected to the lower groove 4. The bottom connecting groove 5 of the front half of the oblique inlay groove is lower than the oblique inlay groove, and the groove is bonded to the flat magnetic Plate 6, the back half of the inclined insert slot is equipped with a sliding magnetic plate 7. The flat magnetic plate does not affect the sliding of the sliding magnetic plate and can play a role of attracting and fixing. The sliding magnetic plate is connected to the upper insert Board 8, the upper inserting board is inserted into the upper sliding groove and sliding, the upper inserting plate ensures that the sliding magnetic plate will not leave the oblique inserting groove when it is installed and sl...
Embodiment 2
[0027] In the brake and locking device of a beam pumping unit described in Embodiment 1, the output shaft is connected to the crank 15 of the beam pumping unit, and the crank rotates around the output shaft. The inner and lower part of the crank is provided with a flat inlaid groove 16, and the flat inlaid groove is welded to the brake iron plate 17, the brake iron plate does not protrude from the surface of the crank, and the brake iron plate does not protrude from the surface of the crank. Affect the normal use of the crank. When braking is needed, the brake iron plate can play the role of fixing (brake) the crank, ensuring that the crank does not continue to rotate. When braking is required, the sliding magnetic plate is pushed forward and inserted into the outer casing. Between the crank and the brake iron plate is attracted and fixed, and the sliding magnetic plate attracts the brake iron plate to play a role of a heavy brake.
Embodiment 3
[0029] In a beam pumping unit brake locking device described in embodiment 1, the bottom of the brake groove is connected with an inverted T-shaped sliding groove 18, and the bottom of the inverted T-shaped sliding groove is bonded with a bottom magnetic plate 19 , The inverted T-shaped chute is equipped with an inverted T-shaped iron slider 20, the top of the inverted T-shaped iron slider is connected to the brake sled 21, and the inverted T-shaped iron slider can be in the inverted T-shaped chute. Sliding, when braking is not needed, the brake sled is located in the rear half of the inverted T-shaped chute, and does not interfere with the normal operation of the crank. When braking is required, the brake sled is pushed to the front half of the inverted T-shaped chute, and the triangle forklift plug-in can be inserted into the triangle. The brake socket further acts as a brake to ensure that the crank can be braked out of work (action). The tail end of the brake sled is fixedly...
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