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The present invention relates generally to a special tool for vehicle repair, and more particularly to a screw thread bidirectionally driven disc brake piston resetting tool.
A disc brake comprises a brake disc and a caliper, wherein the piston of the caliper pushes the brake pad to shift toward the brake disc, so as to reduce the speed of the brake disc. To change the brake pad, the piston must be pressed to return the piston into the caliper.
For different brake discs, the space width of the caliper for the brake disc to pass through is different. The known tool for pushing the piston back into the caliper is difficult to use for resetting the piston for calipers of different sizes.
The primary object of the present invention is to provide a screw thread bidirectionally driven disc brake piston resetting tool. The technical problem to be solved is to break through how to develop a new type of disc brake piston resetting tool performing piston resetting for calipers of different sizes.
Based on said object, the technical characteristic of problem solving of the present invention is that the screw thread bidirectionally driven disc brake piston resetting tool comprises a main body, a first clamping plate and a second clamping plate, wherein both sides of the main body are adjacent to the first clamping plate and the second clamping plate respectively, a driving piece and a tubular revolving part are pivoted in the main body, the driving piece is coupled with the revolving part, the driving piece drives the revolving part to revolve.
A first screw thread section and a second screw thread section are formed inside the revolving part. The turning direction of the first screw thread section is opposite to that of the second screw thread section. The revolving part is screwed on a first connecting piece through the first screw thread section. The revolving part is screwed on a second connecting piece through the second screw thread section. One end of the first connecting piece extends out of the main body and contacts the first clamping plate. One end of the second connecting piece extends out of the main body and contacts the second clamping plate. A first trough is formed axially outside the first connecting piece. A second trough is formed axially outside the second connecting piece. The main body is provided with a first bulge and a second bulge. The first bulge is embedded in the first trough. The second bulge is embedded in the second trough. The first connecting piece and the second connecting piece are linked with the first clamping plate and the second clamping plate respectively, shifting oppositely.
In terms of the main effect and advantages of the present invention, the distance between the first clamping plate and the second clamping plate can be increased without increasing the thickness of the main body, and it is applicable to piston resetting operation for disc brakes of different sizes.
The figures show several embodiments of the screw thread bidirectionally driven disc brake piston resetting tool of the present invention, but the embodiments are for illustration only, the patent application is not limited to this structure.
As shown in
The operating rod 40 is an optional component. The operating rod 40 and the driving piece 42 can be two components separate from each other. To turn the driving piece 42, the operating rod 40 shown in this case can be used, or other forms of tools can be put in the main body 10 to link the driving piece 42, so that the driving piece 42 can be turned.
A first screw thread section 112 and a second screw thread section 114 are formed in the revolving part 11. The turning direction of the first screw thread section 112 is opposite to that of the second screw thread section 114. The revolving part 11 is screwed on a first connecting piece 50 through the first screw thread section 112. The revolving part 11 is screwed on a second connecting piece 60 through the second screw thread section 114. Hereby, when the revolving part 11 revolves against the first connecting piece 50 and the second connecting piece 60, the first connecting piece 50 and the second connecting piece 60 shift oppositely.
One end of the first connecting piece 50 extends out of the main body 10 and contacts the first clamping plate 20. One end of the second connecting piece 60 extends out of the main body 10 and contacts the second clamping plate 30. A first trough 52 is formed axially outside the first connecting piece 50. A second trough 62 is formed axially outside the second connecting piece 60. The main body 10 is provided with a first bulge 12 and a second bulge 13. The first bulge 12 is embedded in the first trough 52. The second bulge 13 is embedded in the second trough 62. The first connecting piece 50 and the second connecting piece 60 are linked with the first clamping plate 20 and the second clamping plate 30 respectively, shifting oppositely.
Based on said structural composition type and technical characteristics, when the present invention performs piston push-back reset operation of disc brake cylinder, the operating rod 40 is operated, the driving piece 42 drives the revolving part 11 to revolve. As the first bulge 12 restricts the first connecting piece 50, the first connecting piece 50 will not revolve. The second bulge 13 restricts the second connecting piece 60, the second connecting piece 60 will not revolve, so that the first clamping plate 20 and the second clamping plate 30 will not revolve, and the first clamping plate 20 or the second clamping plate 30 is prevented from shifting randomly to lose the initial alignment. When the revolving part 11 revolves, the revolving part 11 drives the first connecting piece 50 and the second connecting piece 60 to shift against each other, so that the first clamping plate 20 and the second clamping plate 30 shift oppositely in the direction far from or close to the main body 10, the distance between the first clamping plate 20 and the second clamping plate 30 can be increased without increasing the thickness of the main body 10. The present invention can be applied to the piston resetting push-back operation for disc brakes of different sizes. In addition, when the revolving part 11 revolves, the first bulge 12 and the second bulge 13 prevent the first connecting piece 50 and the second connecting piece 60 from revolving with the revolving part 11 respectively, it is unnecessary to apply an external force to suppress the first clamping plate 20 and the second clamping plate 30. The first clamping plate 20 and the second clamping plate 30 can reciprocate linearly, the handiness of piston push-back reset operation is enhanced.
A holding chamber 54 is formed axially in the first connecting piece 50. The holding chamber 54 is open to the second connecting piece 60. When the first connecting piece 50 and the second connecting piece 60 go near to each other toward the main body 10, the second connecting piece 60 can enter the holding chamber 54, so that the first connecting piece 50 telescopes the second connecting piece 60, the length of the space of the main body 10 for holding the first connecting piece 50 and the second connecting piece 60 is reduced, so that the thickness of the main body 10 is further reduced.
The main body 10 comprises a base 14 with a first side plate 15 and a second side plate 16 on both sides. The first side plate 15 is adjacent to the first clamping plate 20. The second side plate 16 is adjacent to the second clamping plate 30. The first side plate 15 penetrates through a first punch hole 17, the second side plate 16 penetrates through a second punch hole 18. The first connecting piece 50 passes through the first punch hole 17, the second connecting piece 60 passes through the second punch hole 18. The first bulge 12 is formed on the inner edge of the first punch hole 17, the second bulge 13 is formed on the inner edge of the second punch hole 18. Hereby, the first side plate 15 and the second side plate 16 can restrict the revolving part 11 respectively, so that the revolving part 11 is located in the base 14, and the revolving part 11, the first connecting piece 50 and the second connecting piece 60 are easy to be fixed to the main body 10.
As shown in
As the first connecting piece 50 and the second connecting piece 60 are screwed in the revolving part 11 respectively, when the second connecting piece 60 cannot move far from the main body 10 anymore, the second connecting piece 60 restricts the revolving part 11 relatively, the revolving part 11 cannot revolve continuously in the direction making the first connecting piece 50 and the second connecting piece 60 shift far from each other oppositely, the stroke when the first connecting piece 50 and the first clamping plate 20 shift far from the main body 10 is restricted, preventing the first connecting piece 50 and the second connecting piece 60 from excessively shifting far from the main body 10, so that the screwing of the first connecting piece 50 and the second connecting piece 60 in the revolving part 11 is guaranteed.
As shown in
The relative composition of the first limiting portion 56 and the first bulge 12 and that of the second limiting portion 66 and the second bulge 13 can restrict the stroke when the first clamping plate 20 and the second clamping plate 30 shift far from the main body 10, and the screwing of the first connecting piece 50 and the second connecting piece 60 in the revolving part 11 is guaranteed, and one of the first limiting portion 56 and the second limiting portion 66 can be selected as required.
As shown in