The present invention relates to a hand tool and, more particularly, to a rotation wrench.
A conventional rotation wrench was disclosed in the U.S. Pat. No. 2,977,824, and comprises a wrench handle 10, a wrench head 20, and a screw 32. The wrench handle 10 has a yoke 14 having two yoke arms 14a. The wrench head 20 is forced into the yoke 14 of the wrench handle 10 and clamped between the yoke arms 14a of the wrench handle 10. The screw 32 is screwed into screw holes of the wrench handle 10 so that the two yoke arms 14a will not be spread outward.
However, the conventional wrench has the following disadvantages.
In accordance with the present invention, there is provided a wrench comprising a main body, two fitting members, a mounting member, a push rod, two push blocks, a first elastic member, a handle, and a drive mechanism. The main body has a support arm, two pivoting portions, a rotation passage, a first receiving hole, a first receiving slot, two second receiving slots, a second receiving hole, and a shank. The two fitting members are mounted on the two pivoting portions respectively. The push rod has a positioning element and a second mounting portion. Each of the two push blocks has a first received portion, a second received portion, a third mounting portion, a first locking section, a second locking section, a first locking groove, and a second locking groove. The drive mechanism has a driving head, a control rod, and a second elastic member. The driving head has two fitting portions, a third receiving hole, multiple first positioning portions, and an operation end. The control rod has a second positioning portion and a stepped portion.
According to the primary advantage of the present invention, the two push blocks have the same structure. The two push blocks are combined mutually and mounted in the first receiving slot so that the two push blocks are assembled securely and will not be detached from the first receiving slot.
According to another advantage of the present invention, the first locking section of one of the two push blocks is received in the first locking groove of the other one of the two push blocks, and the second locking section of the one of the two push blocks is locked in the second locking groove of the other one of the two push blocks, so that the two push blocks are assembled without detachment.
According to a further advantage of the present invention, the two push blocks are arranged on top and bottom sides of the main body respectively, so that when the driving head of the drive mechanism is rotated to any angle, one of the two push blocks is used to control movement of the push rod, thereby facilitating the user operating the wrench ergonomically.
Further benefits and advantages of the present invention will become apparent after a careful reading of the detailed description with appropriate reference to the accompanying drawings.
Referring to the drawings and initially to
The main body 10 has a first end provided with a support arm 11. The support arm 11 has a substantially Y-shaped configuration. The support arm 11 has two pivoting portions 111 provided on two ends thereof. Each of the two pivoting portions 111 is a perforation. Each of the two pivoting portions 111 has an internal thread. The main body 10 is provided with a rotation passage 12. The rotation passage 12 is arranged at a bottom of the support arm 11. The rotation passage 12 has a determined width and a determined depth. The rotation passage 12 has a rectangular shape and penetrates a whole thickness of the main body 10. The main body 10 is provided with a first receiving hole 13. The first receiving hole 13 is arranged at the bottom of the support arm 11. The first receiving hole 13 is connected to the rotation passage 12. The first receiving hole 13 is a perforation. The main body 10 is provided with a first receiving slot 14. The first receiving slot 14 is connected to the first receiving hole 13. The first receiving slot 14 is a perforation. The first receiving slot 14 has two second receiving slots 15 provided on two end faces thereof. Each of the two second receiving slots 15 is connected to the first receiving slot 14. Each of the two second receiving slots 15 has a length more than that of the first receiving slot 14 and has a width more than that of the first receiving slot 14. The first receiving slot 14 is provided with a second receiving hole 16. The second receiving hole 16 aligns with the first receiving hole 13. The second receiving hole 16 is coaxial with the first receiving hole 13. The second receiving hole 16 has a circular shape. The main body 10 has a second end provided with a shank 17. The shank 17 has a circular shape.
The two fitting members 18 are mounted on the two pivoting portions 111 respectively. Each of the two fitting members 18 has an end extending into and protruding from the support arm 11. Each of the two fitting members 18 is a screw member.
The mounting member 19 is provided with a first mounting portion 191. The first mounting portion 191 is pivotally mounted on the shank 17. The mounting member 19 is provided with a plurality of grooves 192. The grooves 192 increase a friction between the main body 10 and a user's hand. The grooves 192 are arranged annularly.
The push rod 20 is mounted in the first receiving hole 13. The push rod 20 is movable in the first receiving hole 13. The push rod 20 has a first end provided with a positioning element 21. The positioning element 21 protrudes from the first receiving hole 13. The push rod 20 has a second end provided with a second mounting portion 22. The second mounting portion 22 extends into the first receiving slot 14. The second mounting portion 22 has a diameter less than that of the push rod 20.
The two push blocks 30 are combined mutually and mounted in the first receiving slot 14 without detachment. The two push blocks 30 are moved linearly in the first receiving slot 14 and drive the push rod 20 to move axially in the first receiving hole 13. Each of the two push blocks 30 is provided with a first received portion 31 received in one of the of the two second receiving slots 15. Each of the two push blocks 30 is provided with a second received portion 32 received in the first receiving slot 14. The second received portion 32 of each of the two push blocks 30 is provided with a third mounting portion 33. The third mounting portions 33 of the two push blocks 30 are mounted on the second mounting portion 22 respectively, so that the two push blocks 30 and the push rod 20 are assembled. The two push blocks 30 drive the push rod to move axially. The second received portion 32 of each of the two push blocks 30 has a first end provided with a first locking section 34 and a second locking section 35. The first locking section 34 and the second locking section construct an L-shaped piece. The second received portion 32 of each of the two push blocks 30 has a second end provided with a first locking groove 36 and a second locking groove 37. The first locking groove 36 and the second locking groove 37 construct an L-shaped channel. The first locking section 34 of one of the two push blocks 30 is received in the first locking groove 36 of the other one of the two push blocks 30, and the second locking section 35 of the one of the two push blocks 30 is locked in the second locking groove 37 of the other one of the two push blocks 30, so that the two push blocks 30 are assembled.
The first elastic member 40 is mounted in the second receiving hole 16. The first elastic member 40 is biased elastically between a bottom of the second receiving hole 16 and the push rod 20. The first elastic member 40 provides a restoring force to the push rod 20 when the push rod 20 is moved in the main body 10.
The handle 60 is mounted on the shank 17. The handle 60 restricts the mounting member 19.
The drive mechanism 50 is pivotally mounted on the support arm 11. The drive mechanism 50 is provided with a “PUSH” structure that is normal in the hand tool industry. The drive mechanism 50 is operated in a two-way manner or in a one-way manner. The drive mechanism 50 includes a driving head 51, a control rod 52, and a second elastic member 53.
The driving head 51 is provided with two fitting portions 511. The two fitting portions 511 align with the two pivoting portions 111 respectively. Each of the two fitting members 18 extends through one of the two pivoting portions 111 and is fitted into one of the two fitting portions 511, so that the driving head 51 is pivotally mounted on the two pivoting portions 111. The driving head 51 is rotated on the support arm 11 with the two pivoting portions 111 functioning an axis. The driving head 51 is provided with a third receiving hole 512. The third receiving hole 512 has an axis perpendicular to that of the two fitting portions 511. The third receiving hole 512 penetrates the driving head 51. The driving head 51 has an outer face provided with multiple first positioning portions 513. The first positioning portions 513 are arranged between the two fitting portions 511. Each of the first positioning portions 513 is movable to align with the positioning element 21. The positioning element 21 pushes and locates one of the first positioning portions 513, so that the driving head 51 is positioned on the main body 10 by the push rod 20. Preferably, the driving head 51 has three first positioning portions 513, and each of the first positioning portions 513 is a cavity (or dimple or cutout). The driving head 51 is provided with an operation end 514. The operation end 514 passes the rotation passage 12 when the driving head 51 is rotated, so that the driving head 51 is rotated through 360 degrees.
When the two push blocks 30 are pushed toward the handle 60 and moved through a maximum distance, the push rod 20 is driven and moved by the two push blocks 30, and the positioning element 21 is retracted into and hidden in the first receiving hole 13, so that the operation end 514 is moved to pass the rotation passage 12.
The control rod 52 is mounted in the third receiving hole 512. The control rod 52 has a first end provided with a second positioning portion 521. The second positioning portion 521 has a recess. The positioning element 21 pushes and locates the second positioning portion 521. When the push rod 20 is moved, the second positioning portion 521 is pushed and moved, and the control rod 52 is moved in the third receiving hole 512. The control rod 52 has a second end provided with a stepped portion 522. The stepped portion 522 is moved to align with the operation end 514 so that a socket mounted on the operation end 514 is removed quickly.
The second elastic member 53 is mounted on the control rod 52. The second elastic member 53 is biased between mounted on the control rod 52 the second positioning portion 521 and the driving head 51 so that the control rod 52 is movably elastically.
In assembly, the mounting member 19 is mounted on the shank 17. The push rod 20 is mounted in the first receiving hole 13. The two push blocks are combined and are assembled with the main body 10 and the push rod 20. The first elastic member 40 is mounted in the second receiving hole 16. The drive mechanism 50 is pivotally connected with the main body 10. The handle 60 is mounted on the shank 17.
In operation, referring to
Referring to
Referring to
Referring to
In another preferred embodiment of the present invention, the operation end 514 is a hexagonal head, a square recess or a hexagonal recess. Accordingly, the wrench has the following advantages.
Although the invention has been explained in relation to its preferred embodiment(s) as mentioned above, it is to be understood that many other possible modifications and variations can be made without departing from the scope of the present invention. It is, therefore, contemplated that the appended claim or claims will cover such modifications and variations that fall within the scope of the invention.
Number | Name | Date | Kind |
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2977824 | Rueb | Apr 1961 | A |
8505419 | Cheng | Aug 2013 | B2 |
9808917 | Chien | Nov 2017 | B1 |
20170361450 | Chien | Dec 2017 | A1 |
Number | Date | Country | |
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20230294256 A1 | Sep 2023 | US |