The present invention relates to an adjustable wrench, and particularly to an adjustable wrench with an adjusting element. The adjustable wrench has advantages and effects of adjusting quickly and easily for use and a lever arm thereof being adjustable for labor saving, etc.
As shown in
However, based on such adjusting design, there are only two adjustable sizes of the opening between the curved jaw 93 and the toothed portion 92 (the positioning pin 951 is correspondingly located in either the first slot 911A or a second slot 911B), and only at most three nut sizes can be applied for the conventional wrench. Therefore, the conventional wrench has a drawback of low applicability.
Accordingly, it is necessary to invent improved new products to overcome the above-mentioned shortcomings and problems.
An object of the present invention is to provide an adjustable wrench having advantages and effects of fast and simple adjustment and a lever arm thereof being adjustable for labor saving, etc. The present invention can solve drawbacks of low applicability of conventional wrenches.
To solve the above the above mentioned problems, the present invention provides an adjustable wrench comprising the following.
A handle part comprises a first pivotal portion, a second pivotal portion and a toothed portion. The toothed portion is formed at one end of the handle part, and the first pivotal portion is installed adjacent to the toothed portion.
A curved jaw part comprises an inner toothed portion, a linkage pivot portion, a jaw pivot portion and a planar portion. The jaw pivot portion and the planar portion are respectively formed at two opposite ends of the curved jaw part. The jaw pivot portion is pivotally connected to the first pivotal portion so as to enable the curved jaw part to rotate by a predetermined angle with respect to the first pivotal portion and to at least reach a first position thereof and a second position thereof.
A linkage part is connected to the linkage pivot portion at an end thereof. Additionally, the linkage part comprises a reacting portion.
An adjusting element comprises a plucking portion, an element interlinking portion, and an adjusting pivot portion. The element interlinking portion is used to engage with and move the reacting portion of the linkage part. The adjusting pivot portion is pivotally connected to the second pivotal portion so as to enable the adjusting element to rotate by a predetermined angle and allow the plucking portion to at least reach a third position thereof and a fourth position thereof.
A restoring element connects the handle part and the curved jaw part to enable the curved jaw part to remain in the first position thereof while no external force is applied thereon.
In this manner, when the plucking portion is pushed by an external force to move from the third position thereof to the fourth position thereof, the element interlinking portion is simultaneously moved to push the reacting portion of the linkage part so as to enable the linkage part to pull the curved jaw part moving from the first position thereof to the second position thereof. When the external force is withdrawn, the restoring element enables the curved jaw part to restore back to the first position thereof. Meanwhile, the element interlinking portion is simultaneously moved by the reacting portion of the linkage part so as to cause the plucking portion moving from the fourth position thereof to the third position thereof.
The objects and advantages of the present invention are further described in detail for better understanding in cooperation with accompanying drawings and embodiments as follows.
Referring to
The handle part 10 defines a first pivotal portion 11, a second pivotal portion 12, and a toothed portion 13. The toothed portion 13 is formed at one end of the handle part 10, and the first pivotal portion 11 is installed adjacent to the toothed portion 13. As shown in
The curved jaw part 20 defines an inner toothed portion 21, a linkage pivot portion 22, a jaw pivot portion 23, and a planar portion 24. The jaw pivot portion 23 and the planar portion 24 are respectively formed at two opposite ends of the curved jaw part 20. The jaw pivot portion 23 is pivotally connected to the first pivotal portion 11 so as to enable the curved jaw part 20 to rotate by a predetermined angle with respect to the first pivotal portion 11 and to at least reach a first position P1 thereof and a second position P2 thereof.
The linkage part 30 is connected to the linkage pivot portion 22 at an end thereof. Additionally, the linkage part 30 comprises a reacting portion 31.
The adjusting element 40 comprises a plucking portion 41, an element interlinking portion 42, and an adjusting pivot portion 43. The element interlinking portion 42 is used to engage with and move the reacting portion 31 of the linkage part 30. The adjusting pivot portion 43 is pivotally connected to the second pivotal portion 12 so as to enable the adjusting element 40 to rotate by a predetermined angle and allow the plucking portion 41 to at least reach a third position P3 thereof and a fourth position P4 thereof.
The restoring element 50 connects the handle part 10 and the curved jaw part 20 to enable the curved jaw part 20 to remain in the first position P1 thereof while no external force is applied thereon.
In this manner, when the plucking portion 41 is pushed by an external force to move from the third position P3 thereof to the fourth position P4 thereof, the element interlinking portion 42 is simultaneously moved to push the reacting portion 31 of the linkage part 30 so as to enable the linkage part 30 to pull the curved jaw part 20 moving from the first position P1 thereof to the second position P2 thereof. When the external force is withdrawn, the restoring element 50 enables the curved jaw part 20 to restore back to the first position P1 thereof. Meanwhile, the element interlinking portion 42 is simultaneously moved by the reacting portion 31 of the linkage part 30 so as to cause the plucking portion 41 moving from the fourth position P4 thereof to the third position P3 thereof.
As shown in
Specifically in details, when the curved jaw part 20 restores from the second position P2 thereof back to the first position P1 thereof, the linkage part 30 is pulled simultaneously by the curved jaw part 20, and the reacting portion 31 of the linkage part 30 moves to push the element interlinking portion 42 of the adjusting element 40 to further cause the plucking portion 41 moving from the fourth position P4 thereof to the third position P3 thereof.
In the first embodiment of the present invention, the element interlinking portion 42 is defined as a middle section of the adjusting element 40. When the adjusting element 40 rotates about the second pivotal portion 12 to enable the plucking portion 41 to move from the third position P3 to the fourth position P4, the element interlinking portion 42 engages with the reacting portion 31 of the linkage part 30 and pushes the reacting portion 31 so as to move the linkage part 30 and cause the curved jaw part 20 being pushed to rotate about the first pivotal portion 11 by a required opening angle.
Certainly, except for the third position P3 and the fourth position P4, the plucking portion 41 is capable of being located at any locations between the third position P3 and the fourth position P4 so as to adjust a size of the opening defined between the curved jaw part 20 and the toothed portion 13. As shown in
When the adjustable wrench of the present invention is applied to nuts 70 of different sizes, users simply need to hold the handle part 10 of the adjustable wrench with one hand thereof and pluck the plucking portion 41 with fingers (such as their thumbs), and a required size of the opening between the curved jaw part 20 and the toothed portion 13 can be immediately adjusted. In this situation, a polygonal side of the nuts 70 is able to correspond to the planar portion 24 of the curved jaw part 20, and at least two exterior edges of the nuts 70 defined between the polygonal sides are able to respectively correspond to the inner tooth portion 21 of the curved jaw part 20 and the toothed portion 13 of the handle part 10.
In design, the handle part 10 further comprises a limit element 14. The linkage part 30 comprises a limit trough 32. The limit element 14 is slidably movable and insertedly installed in the limit trough 32 so as to restrict a moving range of the linkage part 30. As shown in
As shown in
In addition, an extension length of the plucking portion 41 is adjustable. In design for adjusting, the plucking portion 41 can be designed as being adjustable by either screwing or engaging fitting. As shown in
Certainly, a distance between the plucking portion 41 and the second pivotal portion 12 increases due to length extension of the plucking portion 41. Therefore, a length of a lever arm which the distance between the plucking portion 41 and the second pivotal portion 12 stands for at the effort side of a lever extends, plucking actions to move the plucking portion 41 along the lever become much labor-saving.
To sum up, advantages and effects of the present invention can be concluded as following.
[1] Easy adjustment and high applicability: a drawback of adjusting design of conventional wrenches is low applicability because an opening formed between their corresponding curved jaws 93 and toothed portions 92 only has two sizes for adjustment. On the contrary, in the present invention, only action necessary is pushing the plucking portion 41 to adjust rotation angles of the adjusting element 40. As a result, the size of the opening between the curved jaw part 20 and the toothed portion 13 is accordingly adjusted to achieve best adjustment based on a size of a nut as required. Accordingly, the present invention has advantages of easy adjustment and high applicability.
[2] Adjustability of a lever arm for labor-saving: the present invention utilizes length adjustment of the plucking portion 41 to increase the distance between the plucking portion 41 and the second pivotal portion 12 so as to achieve an effect of length extension of the lever arm of a lever formed by the plucking portion 41 and the second pivotal portion 12. Accordingly, the present invention has advantages of labor-saving in actions of plucking the plucking portion 41.
The above mentioned is only exemplary embodiments of the present invention. As in detailed explanations as above, the present invention is proved to be understandable and the above mentioned inventive purpose is proved to be achievable by persons of ordinary skill in this art field. It should be noted, for persons of ordinary skill in this art field, improvements and modifications within the spirit of the present invention can be further made, and such improvements and modifications should be seemed to be included in the claimed scope of the present invention.
Number | Date | Country | Kind |
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101133641 A | Sep 2012 | TW | national |
Number | Name | Date | Kind |
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676318 | Jackson | Jun 1901 | A |
831750 | Smith | Sep 1906 | A |
937959 | Richards | Oct 1909 | A |
4616534 | Park et al. | Oct 1986 | A |
6349621 | Khachatoorain | Feb 2002 | B1 |
Number | Date | Country | |
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20140076112 A1 | Mar 2014 | US |