This invention relates to a wrench, particularly to one adjustable head angle.
A conventional moving head type ratchet wench 200, as shown in
This invention is devised to offer a wrench adjustable in head angle, simple in structure, convenient in operation and able to lower production cost.
The wrench adjustable in head angle in the present invention includes a pull lever having one end formed with an end face provided thereon with two lugs, which have a first opening formed therebetween. The pull lever has the end face axially provided with an accommodating groove, and the two lugs respectively and symmetrically disposed with a first pivot joint portion and further, the pull lever has another end formed with a holding portion. A spring and a resisting pin are orderly received in the accommodating groove, and the resisting pin has one end resisting against the spring and another end provided with an engaging portion and further, the resisting pin is formed with a first push portion. A push member consists of a positioning plate located at the first opening and bored with a positioning hole corresponding to the resisting pin for the resisting pin to be inserted therethrough and further, the positioning plate is provided with a second push portion corresponding with the first push portion of the resisting pin, the first push portion being elastically pushed by the spring to resist against the second push portion. The positioning plate has at least one side edge protruding out of the first opening and extending axially along the pull lever to form a push plate, which is tightly stuck to the pull lever. Further, a space is formed between the positioning plate and the end face of the pull lever for allowing the push member to move toward the end face. A driving head is formed with a pivot turning portion, which is provided with a second pivot joint portion corresponding to the first pivot joint portions for the driving head and the pull lever to be pivotally connected with each other. Furthermore, the pivot turning portion of the driving head is formed with a ratchet surface corresponding with the engaging portion of the resisting pin to enable the ratchet surface to be engaged with the engaging portion.
The wrench adjustable in head angle of this invention is by having the push plate pushed toward the holding portion to have the second push portion of the push member pushing against the first pus portion of the resisting pin, letting the push member actuate the resisting pin to press the spring. At this time, the positioning plate will be moved toward the space and the resisting pin will be disengaged from the driving head, thus, able to adjust the angle of the driving head. After the angle of the driving head is adjusted, the push member is released to have the spring elastically pushing against the resisting pin to actuate the first push portion of the resisting pin to resist against the second push portion of the push member and force the engaging portion of the resisting pin to be engaged with the ratchet surface of the driving head for fixing the driving head in position. By so designing, the wrench adjustable in head angle of this invention is convenient in adjusting and positioning the angle of the driving head, convenient in operation, simple in structure, easy in manufacturing and able to greatly lower production cost.
This invention will be better understood by referring to the accompanying drawings, wherein:
A preferred embodiment of a wrench 100 adjustable in head angle in the present invention, as shown in
The pull lever has one end formed with an end face 11 provided thereon with two lugs 12, which have a first opening 13 formed therebetween, and the end face 11 is axially disposed with an accommodating groove 14 and the two lugs 12 are respectively and symmetrically provided with a first pivot joint portion 15. Further, the pull lever 101 has another end formed with a holding portion 16. In this preferred embodiment, the first pivot joint portion 15 is an insert hole.
The spring 20 is received in the accommodating groove 14.
The resisting pin 30 to be positioned in the accommodating groove 14 has one end resisting against the spring 20 and another end provided with an engaging portion 31, and the resisting pin 30 is further formed with a first push portion 32. In this preferred embodiment, the engaging portion 31 of the resisting pin 30 is a plurality of ratchets.
The push member 40 consists of a positioning plate 41 located at the first opening 13 and bored with a positioning hole 42 corresponding to the resisting pin 30 for the resisting pin 30 to be inserted therethrough. The positioning plate 41 is formed with a second push portion 43 corresponding with the first push portion 32 of the resisting pin 30, the first push portion 32 being elastically pushed by the spring 20 to resist against the second push portion 43. The positioning plate 41 has at least one side edge protruding out of the first opening 13 and extending axially along the pull lever 10 to form a push plate 44 to be tightly stuck to the pull lever 10. In addition, a space 45 is formed between the positioning plate 41 and the end face 11 of the pull lever 10 to allow the push member 40 to move toward the end face 11. In this preferred embodiment, the positioning plate 41 has two opposite side edges protruding out of the first opening 13 and respectively extending axially along the pull lever 10 to form the push plate 44, making the push member 40 almost U-shaped and forming a second opening 46, which faces the first opening 13 of the pull lever 10.
The driving head 50 is formed with a pivot turning portion 51, which is provided with a second pivot joint portion 52 corresponding with the first pivot join portion 15 for the driving head 50 and the pull lever 10 to be pivotally connected with each other. The pivot turning portion 51 of the driving head 50 is provided with a ratchet surface 511 corresponding with the engaging portion 31 of the resisting pin 30 to enable the ratchet surface 511 to be engaged with the engaging portion 31. In this preferred embodiment, the second pivot joint portion 52 is also an insert hole, and a pivot 53 is inserted through both the first pivot joint portion 15 and the second pivot joint portion 52 for pivotally connecting the pull lever 10 together with the driving head 50 so that the driving head 50, with the pivot 53 serving as an axis, can be turned relative to the pull lever 10, thus able to adjust the angle of the driving head 50.
Referring to
One special feature of this invention is that each push plate 44 is fixed thereon with a projecting non-skid block 441, which has anti-skid effect and facilitates a user to push the push member.
Another special feature of this invention is that the engaging portion 31 of the resists pin 30 is a plurality of ratchets so that the resisting pin 30 can be firmly engaged with the ratchet surface 511 of the driving head 50.
While the preferred embodiment of the invention has been described above, it will be recognized and understood that various modifications may be made therein and the appended claims are intended to cover all such modifications that may fall within the spirit and scope of the invention.
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5768960 | Archuleta | Jun 1998 | A |
5771761 | Binkowski | Jun 1998 | A |
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6886429 | Lee | May 2005 | B1 |
7000507 | Lin | Feb 2006 | B1 |
7051625 | Lee | May 2006 | B1 |
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Number | Date | Country | |
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20180001445 A1 | Jan 2018 | US |