1. Field of the Invention
The present invention relates to a wheel cylinder spreader.
2. Description of the Prior Art
A conventional spreader for adjustment of wheel cylinder is disclosed in U.S. Pat. No. 7,155,792 or U.S. Pat. No. 3,705,581. One can press the elongated toothed element by swing the handgrip to drive the rod to move toward a specific direction. However, when the rod is to be drived back to the original position, one should rotate the rod to separate the elongated toothed element and the handgrip apart. During operation, the rod is to be rotate to enable the elongated toothed element and the handgrip to contact to each other, and the handgrip can press the elongated toothed element to drive the rod to move then. Therefore, during operation of the spreader, the rod has to be rotated repeatedly and to be drawn back manually. The operation is time-consuming, laborious, and inefficient.
To improve the problem of moving speed of the rod, a wheel cylinder spreader is disclosed in TW M407133. The main idea is that the pushing element pushes the rod to move toward a specific direction via swinging the handgrip. Also, due to the cramp to the rod by the slip-preventing element, the rod can only move toward a specific direction. When a user changes the incline angle with the button, the rod moves back to the original position automatically due to the elastic element. However, this kind of design brings about many problems:
1. The slip-preventing element inclines to clamp the rod, so the surface of the rod is abraded after using for long time. Thus, the effect of limitation to the rod by the slip-preventing element is reduced.
2. The pressing effect to the rod by the elastic pusher is limited by the elastic force of the elastic pusher, so the elastic pusher has enough friction force to drive the rod to move only in a specific range of swing angle. In the other words, the moving distance of the rod drived by every swing of the handgrip is limited. Thereby, the handgrip should be squeezed many times to push the rod a predeterminate distance, so the rod moves slowly.
Thus, the conventional spreader is not durable enough and has low efficiency. How to improve the problems mentioned above is the goal of the present invention.
The main object of the present invention is to provide a wheel cylinder spreader which is more durable and is more efficient.
To achieve the above and other objects, a wheel cylinder spreader of the present invention includes a main body, a rod, a holding portion, and a control portion.
The main body has a channel and a blocker, wherein the blocker is on an end of the channel. The rod is disposed slidably on the main body and is able to move between a first position and a second position. The rod has a reposition elastic element, and the rod tends to move toward the first position due to the reposition elastic element. The rod has an elongated toothed element and a pressing element, wherein the pressing element is located on the end near the blocker of the rod. The holding portion is disposed pivotably on the main body. A leaning element and a leaning elastic element are disposed slidably on the holding portion. The holding portion leans against the elongated toothed element via the leaning element. The holding portion swings to press against the elongated toothed element to drive the rod to move toward the second position. The control portion is disposed on the main body and includes a switch, a positioning element, and a positioning elastic element. The positioning element tends to lean against the elongated toothed element due to the positioning elastic element. The switch can drive the positioning element to move away from the elongated toothed element. The rod is able to move toward the first position only when the positioning element is away from the elongated toothed element.
Thereby, the operation of the elongated toothed element prevents the slipping and abrasion on the surface of each element, so the wheel cylinder spreader of the present invention is more durable. Besides, without the angle limitation of friction, the effect that the holding portion drives the rod move is promoted. The frequency of the squeezing holding portion is decreased, and the efficiency is promoted.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment(s) in accordance with the present invention.
Please refer to
Referring to
The rod 2 is disposed slidably on the main body 1 and is able to move between a first position and a second position. The rod 2 inserts into the aperture of the limitation element 13, and the shape of the aperture corresponds to the shape of the rod 2 to unenable the rod 2 to rotate relatively to the main body 1. The rod 2 has a reposition elastic element 21 which leans against the main body 1 and the rod 2. The rod 2 tends to move toward the first position due to the reposition elastic element 21. The rod 2 has an elongated toothed element 22 and a pressing element 23, wherein the pressing element 23 is located on an end near the blocker 11 of the rod 2. When the rod 2 moves between the first and the second positions, the distance between the blocker 11 and the pressing element 23 changes, as shown in
The holding portion 3 is disposed pivotably on the main body 1. The range of swing of the holding portion 3 is restricted by a limitation portion 14. A leaning element 31 and a leaning elastic element 32 are disposed slidably on the holding portion 3, wherein the leaning elastic element 32 leans against the holding portion 3 and the leaning element 31. Due to the elastic force of the leaning elastic element 32, the leaning element 31 tends to move toward the elongated toothed element 22, as shown in
Please refer to
When the rod 2 is to be moved, a user can squeeze the holding portion 3 to swing toward a specific direction. During swinging, as shown in
Thereby, the characteristic of the present invention is that the holding portion drives the rod to move via the contact between the leaning element and the elongated toothed element. The contact area of the elongated toothed element and the leaning element is larger, and the transmission of force is more direct. In addition to the promoted operation efficiency, slipping and abrasion of the contact surface of the elongated toothed element and the leaning element are prevented. The most important is that the swing angle is not limited because the operation is not relative to friction. When the leaning element contacts to the elongated toothed element, the rod is drived to move because of lever principle. Thus, the distance which the rod is pushed is larger when the holding portion swings. The speed of the rod is promoted, and the frequency that the holding portion is squeezed is reduced. Then, the efficiency is promoted. Besides, the size and the shape of the elongated toothed element, the leaning element, or the positioning element are adjustable. For example, the elongated toothed element with denser teeth can provide more precise adjustment. Moreover, a user can just turn the switch to draw the rod back toward the first position.
In conclusion, the wheel cylinder spreader of the present invention has a simplified structure, and the operation is not concerned with friction. The abrasion and slipping are prevented because the elongated toothed element and the leaning element are used. The most important is that the efficiency is promoted due to the larger range of swing.
Number | Date | Country | Kind |
---|---|---|---|
100201600 | Jan 2011 | TW | national |