Rotationally elastic coupling with wear sensor
US-2024133432-A1 · Apr 25, 2024 · US
US2019086310A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2019086310-A1 |
| Application number | US-201715767559-A |
| Country | US |
| Kind code | A1 |
| Filing date | Mar 15, 2017 |
| Priority date | Jan 11, 2017 |
| Publication date | Mar 21, 2019 |
| Grant date | — |
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The present invention discloses an experiment device and a method for detecting abrasion of a conveyer. The device comprises a rack, a reciprocation sliding mechanism, a speed adjusting mechanism and a crankshaft, wherein the reciprocation sliding mechanism comprises scrapers and scraper chains; the scraper chains are arranged between an upper-layer scraper and a lower-layer scraper; the speed adjusting mechanism comprises a motor, a friction driving wheel and a friction driven wheel; the motor is connected with the friction driving wheel through a motor shaft; the friction driving wheel slides on a shaft in an axial direction; speed adjustment can be achieved by changing the distance between the centers of the friction driving wheel and the friction driven wheel. Due to the adoption of the speed adjusting motor, the speed can be precisely controlled; as the crankshaft is arranged on the shaft of the friction driven wheel and connected with the reciprocation sliding mechanism through two connecting rods respectively, the scraper chains and chain devices are driven in a reciprocation manner at the adjusted speed, so as to realize reciprocation motion of a material inside a groove. The present invention can simulate friction between friction pairs of the actual conveyer well when the material is conveyed, and avoid experiment on a complex conveyer structure.
Opening claim text (preview).
1 . An experiment device for detecting abrasion of a conveyer, characterized in that, it comprises a rack, a reciprocation sliding mechanism, a speed adjusting mechanism and a crankshaft; the rack is a main body for bearing various components; the reciprocation sliding mechanism and the crankshaft are fixed on one side of the rack, and the speed adjusting mechanism is fixed on the other side of the rack; the reciprocation sliding mechanism includes scrapers and scraper chains; the scraper chains are arranged between an upper-layer scraper and a lower-layer scraper; the upper-layer scraper and the lower-layer scraper forms a group; several groups of scrapers are arranged in parallel; a material groove is fixed inside the rack; the scrapers are placed on the material groove and move in a reciprocating manner; the end of the rack is provided with a connecting block; and the scrapers at ends of the scraper chains are connected with the connecting block; the lower part of the connecting block is fixedly connected with two connecting rods through a pin shaft, and the upper part of the connecting block is connected with the scrapers; the speed adjusting mechanism includes a motor, a friction driving wheel and a friction driven wheel; the motor is connected with the friction driving wheel through a motor shaft; the friction driving wheel slides on the motor shaft in an axial direction; speed adjustment is realized by changing a distance between the centers of the friction driving wheel and the friction driven wheel; the motor is a speed adjusting motor that realizes a motor output speed by adjusting a frequency; the shaft of the friction driven wheel is connected with the crankshaft; the driven wheel is in interference fit with the crankshaft; the crankshaft is fixed with the connecting block through two connecting rods to drive the scraper chains and the scrapers in a reciprocating manner, so as to realize reciprocation motion of the material in the material groove. 2 . The experiment device for detecting abrasion of a conveyer according to claim 1 , characterized in that: the material groove is provided with a circular or a square test piece hole; a pressure sensor is directly placed on the bottom of a test piece; and the test piece is placed in the test piece hole. 3 . The experiment device for detecting abrasion of a conveyer according to claim 1 , characterized in that: the crankshaft consists of 2 cranks. 4 . The experiment device for detecting abrasion of a conveyer according to claim 1 , characterized in that, the sliding speed of the reciprocation sliding mechanism is 1 m/min to 5 m/min. 5 . The experiment device for detecting abrasion of a conveyer according to claim 1 , characterized in that: the contact surface of the friction driving wheel and the friction driven wheel has a hatching knurling structure. 6 . The experiment device for detecting abrasion of a conveyer according to claim 1 , characterized in that, the upper-layer and lower-layer scrapers are connected through a fixed pin; a flat-link chain of the scraper chain is clamped by the scraper fixed pin; the connecting block and the connecting rods are connected with a pin shaft; and rotational motion of the crankshaft is transformed into reciprocation motion of the material driven by the scrapers. 7 . An experiment method for detecting abrasion of a conveyer using the experiment device for detecting abrasion of a conveyer of claim 1 , characterized in that, it comprises the following steps: (1) machining an object to be measured into a sheet test piece, weighing the mass m 1 of the sheet with a balance before experiment, then placing the sheet test piece in a test piece hole formed on a material groove; placing a material to be simulated in the material groove; measuring a material pressure on the test object by a pressure sensor arranged on the bottom of the test piece, and recording data; (2) setting an output rotational speed of the motor according to the sliding speed required in the experiment; (3) washing the measured object after the experiment is finished, then weighing by the balance to obtain the mass m 2 after experiment; (4) finally calculating to obtain the mass difference m 2 -m 1 , which is the abrasion loss of the test piece during experiment. 8 . The experiment method for detecting abrasion of a conveyer according to claim 7 , characterized in that: the sheet test piece is has a rectangular cuboid or cylindrical structure with a size of 100×60×10 mm, or Φ60×10 mm, or Φ80×10 mm.
Repeated or cyclic · CPC title
Investigating resistance to wear or abrasion · CPC title
by applying a load, e.g. for resistance or wear testing (G01M99/001 takes precedence; testing the elasticity of structures G01M5/00) · CPC title
involving a rotating movement, e.g. gearing, cam, eccentric, or centrifuge effects · CPC title
by removing a component, e.g. by evaporation, and weighing the remainder · CPC title
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