The present invention relates to a torque wrench, and more particularly, to a torque wrench with simple structure and low manufacturing cost.
A conventional torque wrench is disclosed in Taiwanese Patent Publication No. M541927, and includes a driving unit which is connected to one end of a tube and has a driving head and a connection end. The connection end is inserted into the passage of the tube. A pushing member is slidably located within the passage and connected to the connection end. A sleeve is located between the tube and pushing member. A torque adjustment unit is connected to the tube so as to adjust the torque output from the wrench. The tube needs to be treated by heat treatment to have better strength, however, t heat treatment increases the manufacturing cost. The sleeve is located between the tube and the pushing member, and more or less reinforces the strength of the wrench. The sleeve is a spring which is slidable within the tube a distance with the pushing member, therefore, the shifted sleeve cannot provide better support to the tube.
Another conventional torque wrench is disclosed in Taiwanese Patent Publication No. M556638, and has a similar structure as the Taiwanese Patent Publication No. M541927, wherein a cylindrical body is inserted into the passage of the tube and is mounted to the pushing member. The cylindrical body includes an outer surface and an inner surface. The outer surface is non-continuously in contact with the inner wall of the tube, and the inner wall of the tube is non-continuously in contact with the pushing member. Because the cylindrical body is located in the tube so that the tube is well supported by the cylindrical body, but the cylindrical body needs to be machined to have a flat cross-section so as to be non-continuously in contact with the pushing member. The extra machining to the cylindrical body causes higher manufacturing cost.
The present invention is intended to provide a torque wrench that eliminates the drawbacks mentioned above.
The present invention relates to a torque wrench and comprises a first part, a second part, a first spring, a block and a second spring. The first part includes a first section and a second. An axial passage is defined through the first part and a second part is received in the passage. The first part and the second part are connected to each other. The first spring is securely located in the second section. A pushing member is located in the first spring and includes a second contact portion. The block is removably in contact between the first and second contact portions. A second spring is mounted to the pushing member. The block is disengaged from the first and second contact portions when the torque wrench rotates clockwise or counter clockwise.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings which show, for purposes of illustration only, a preferred embodiment in accordance with the present invention.
Referring to
A second part 20 includes head portion 200 and a tail portion 201, wherein the tail portion 201 is inserted into the passage 11 from the open end of the first section 13. A second hole 22 is defined transversely through the head portion 200 and a pin 71 extends through the first and second holes 22 to connect the second part 20 to the first part 10. A C-shaped clip 72 is engaged with the pin 71 to restrict the pin 71 from disengaging from the first and second holes 12, 22, so that the first and second parts 10, 20 are not separated from each other. The first section 13 is an elongate cross section and includes a top flat face and a bottom flat face, and two curved latera faces are formed between the top flat face and the bottom flat face. The second section 14 is a circular tube and has a tapered section which is connected to the first section 13.
A driving part 21 is formed to the head portion 200 and located beyond the first part 10. The driving part 21 is a ratchet driving part, box-end wrench head or an open-end wrench head. The tail portion 201 includes a first contact portion 24 which is a recessed area defined in the distal end of the tail portion 201 and located in the second section 14. A ring 30 is mounted to the second part 20 and located between the driving part 21 and the second hole 22 so as to seal the open end of the first section 13 when the tail portion 201 is inserted into the first section 13.
A first spring 40 has an outer surface 41 and an inner surface 42, wherein the outer surface 41 securely engaged with the inner periphery of the second section 14. The first spring 40 is a compression spring ring includes multiple spiral portions which are spaced by a gap. The outer surface 41 of the first spring 40 contacts the inner periphery of the second section 14 by multiple contact points spaced by the gaps. The inner surface 42 contacts the outer periphery of the pushing member 50 by multiple contact points spaced by the gaps as shown in
A pushing member 50 is movably located within the first spring 40. That is to say, there is space between the inner surface 42 of the first spring 40 and the outer periphery of the pushing member 50. The pushing member 50 has a second contact portion 51 defined in the first end thereof, and the second contact portion 51 is located corresponding to the first contact portion 24. A first viscous liquid is filled between the inner periphery of the second section 14 and the outer surface 41 of the first spring 40. A second viscous liquid filled between an outer periphery of the pushing member 50 and the inner surface 42 of the first spring 40. The viscosity of the first viscous liquid and the viscosity of the second viscous liquid are different.
A block 60 is located in the second section 14 and in contact between the first and second contact portions 24, 51. The block 60 is rectangular block. A second spring 70 is located in the second section 14 and contacts the second end of the pushing member 50. The second spring 70 is biased between the grip 80 and the pushing member 50. When the grip 80 is rotated, the compression status of the second spring 70 is adjusted so as to obtain different torque.
The first section 13 and the second section 14 have an identical cross section. The first and second contact portions 24, 51 are symmetrical to each other. The block is disengaged from the first and second contact portions when the torque wrench rotates clockwise or counter clockwise.
The second section 14 includes an oval cross section which presses the outer surface 41 of the first spring 40 so as to securely engage the outer surface 41 of the first spring 40 with the inner periphery of the second section 14.
The second spring 70 includes an outer periphery 701, and two end pieces 73 are connected to two ends of the second spring 70. Each end piece 73 includes a tubular portion 731. The diameter of the outer periphery 701 is larger than that of each tubular portion 731, so that the two tubular portions 731 are inserted into the two ends of the second spring 70.
The torque wrench includes advantages such as that the first spring 40 is secured in the second section 14, and the outer surfaced 41 of the first spring 40 is secured to the inner periphery of the second section 14 so that the first spring 40 is not slidable in the second section 14 so as to support the second section 14.
The first spring 40 is a spring which is not an expensive part, and can be treated by heat treatment to have better strength to support the second section 14.
The first spring 40 is a compression spring ring includes multiple spiral portions which are spaced by a gap, so that the outer surface 41 of the first spring 40 contacts the inner periphery of the second section 14 by multiple contact points which generate less friction. In other words, the first spring 40 can be easily installed into the second section 14.
While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.
Number | Name | Date | Kind |
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2887921 | Livermont | May 1959 | A |
4732062 | Grabovac | Mar 1988 | A |
5859371 | Hsieh | Jan 1999 | A |
Number | Date | Country | |
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20200147770 A1 | May 2020 | US |