The present invention relates to a hand tool and, more particularly, to a pipe plier structure or a pair of pipe pliers.
A conventional pipe plier structure was disclosed in the U.S. Pat. No. 7,546,784, and comprises a shank 10, a fixed jaw 15, and a movable jaw 20. The fixed jaw 15 is locked on the shank 10. The fixed jaw 15 has multiple locking teeth 150. The movable jaw 20 is pivotally connected with the shank by a pivot shaft 12. The movable jaw 20 has a first toothed face 21 and a second toothed face 22. The first toothed face 21 has multiple first engaging teeth 210, and the second toothed face 22 has multiple second engaging teeth 220. An angle between the locking teeth 150 of the fixed jaw 15 is ranged between 90° and 92°. An angle between the first engaging teeth 210 of the first toothed face 21 is ranged between 93° and 97°. An angle between the second engaging teeth 220 of the second toothed face 22 is ranged between 93° and 97°. A line L1 passes the apexes of the first engaging teeth 210 of the first toothed face 21. A line L2 passes the apexes of the second engaging teeth 220 of the second toothed face 22. An angle H between the line L1 and the line L2 is ranged between 134° and 136°. In addition, the locking teeth 150 of the fixed jaw 15 and the workpiece 30 have a first contact point P1 and a first tangent line L3, the first engaging teeth 210 of the first toothed face 21 of the movable jaw 20 and the workpiece 30 have a second contact point P2 and a second tangent line L4, and the second engaging teeth 220 of the second toothed face 22 of the movable jaw 20 and the workpiece 30 have a third contact point P3 and a third tangent line L5. The third tangent line L5 and a face of a contacting one of the second engaging teeth 220 of the second toothed face 22 of the movable jaw 20 have an included angle C ranged between 160° and 176°.
However, the conventional pipe plier structure has the following disadvantages.
The primary objective of the present invention is to provide a pipe plier structure having a better rotation effect.
In accordance with the present invention, there is provided a pipe plier structure comprising a first body, a second body, a pivot member, and a locking member. The first body is provided with a plurality of first teeth, an arc line, an axis, a first vertical line, a radius, a first angle, and a second angle. The second body is provided with a plurality of second teeth, a plurality of third teeth, a second vertical line, a first connecting line, a second connecting line, a third angle, a fourth angle, a concave face, a fifth angle, a sixth angle, a seventh angle, and an eighth angle. The pivot member is assembled with the first body and the second body. The locking member is assembled with the first body and the second body. The locking member provides an elastically restoring force to the first body and the second body after the second body is extended outward relative to the first body.
According to the primary advantage of the present invention, when the second body is under a minimum rotation state, the third teeth are closest to the first teeth. A fourth angle is defined between the second connecting line and the second vertical line. The first circle is arranged at one side of the first vertical line when the pipe plier structure is rotated. When the pipe plier structure is under a larger rotation state, the second circle is arranged at the other side of the first vertical line. Thus, when the first body and the second body are used to rotate pipes of different specifications, the pipes of different specifications are from one side of the first vertical line to the other side of the first vertical line, so that the pipes of different specifications are distributed to the two sides of the first vertical line and will not be concentrated at a single side of the first vertical line.
According to another advantage of the present invention, the third angle is 120°. The second body is rotated relative to the first body, with the pivot member and the second pivot portion functioning as an axis, so that the first body and the second body of the pipe plier structure are used to clamp the first operation member, the second operation member, various screw members, and various pipes of different specifications and different diameter, thereby enhancing the versatility of the pipe plier structure.
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 first body 10 is a serrated jaw. The first body 10 is provided with a plurality of first teeth 11. The first teeth 11 have an arcuate convex annular arrangement. Each of the first teeth 11 has a tooth crest (or top or apex). An arc line 111 passes through and connects the tooth crests of the first teeth 11. The arc line 111 is a single arc. The arc line 111 has an axis 112. A first vertical line 113 passes through the axis 112. The first vertical line 113 bisects the first teeth 11 and functions as a perpendicular bisector of the first teeth 11. The arc line 111 has a radius 114. Each of the first teeth 11 has an inside defining a first angle 115. The first angle 115 is ranged between 75° and 89° or the first angle 115 is 82°. A second angle 116 is defined between any two of the first teeth 11. The second angle 116 is ranged between 83° and 97° or the second angle 116 is 90°. The second angle 116 is more than the first angle 115. The first body 10 is provided with a first pivot portion 12. The first pivot portion 12 is a circular perforation. The first body 10 is provided with a first locking portion 13. The first locking portion 13 is a cavity or a hole. The first locking portion 13 is close to the first pivot portion 12.
The second body 20 is pivotally connected with the first body 10. The second body 20 is a serrated jaw corresponding to the first body 10. The second body 20 is provided with a plurality of second teeth 21 and a plurality of third teeth 210. The second teeth 21 are directed toward the first teeth 11. The second teeth 21 have a straight line arrangement. The third teeth 210 are directed toward the first teeth 11. The third teeth 210 have a straight line arrangement. The second body 20 has a second vertical line 211 which is an imaginary (or phantom) line. The second vertical line 211 is parallel with or coincide the first vertical line 113. Each of the second teeth 21 has a tooth crest (or top or apex). A first connecting line 212 passes through and connects the tooth crests of the second teeth 21. Each of the third teeth 210 has a tooth crest (or top or apex). A second connecting line 213 passes through and connects the tooth crests of the third teeth 210. A third angle 214 is defined between the first connecting line 212 and the second connecting line 213. The third angle 214 is 120°. The third teeth 210 are closest to the first teeth 11 under a minimum rotation of the second body 20. A fourth angle 215 is defined between the second connecting line 213 and the second vertical line 211. The fourth angle 215 is ranged between 110° and 120° or the fourth angle 215 is ranged between 110° and 116° or the fourth angle 215 is 115°. The second body 20 is provided with a concave face 216 formed between the second teeth 21 and the third teeth 210. The concave face 216 is a single arcuate face. Each of the second teeth 21 has an inside defining a fifth angle 217. The fifth angle 217 is close to or equal to 90° or the fifth angle 217 is ranged between 88° and 92°. A sixth angle 218 is defined between any two of the second teeth 21. The sixth angle 218 is close to or equal to 90° or the sixth angle 218 is ranged between 88° and 92°. A seventh angle 219 is defined between a longer side of each of the second teeth 21 and the second vertical line 211. The seventh angle 219 is ranged between 85° and 96° or the seventh angle 219 is 91.5°. An eighth angle 2191 is defined between a longer side of each of the third teeth 210 and the second vertical line 211. The eighth angle 2191 is ranged between 26° and 36° or the eighth angle 2191 is 31.5°.
The second body 20 is provided with a second pivot portion 22 aligning with the first pivot portion 12. The second pivot portion 22 is a circular perforation. The second body 20 is provided with a second locking portion 23. The second locking portion 23 is distant from the second teeth 21 and the third teeth 210.
In the preferred embodiment of the present invention, the first body and the first teeth 11 are formed integrally. Alternatively, the first teeth 11 construct a single element that is then assembled on the first body 10.
In the preferred embodiment of the present invention, the second body 20 and the second teeth 21 are formed integrally. Alternatively, the second teeth 21 construct a single element that is then assembled on the second body 20.
In the preferred embodiment of the present invention, the second body 20 and the third teeth 210 are formed integrally. Alternatively, the third teeth 210 construct a single element that is then assembled on the second body 20.
The pivot member 30 is assembled with the first body 10 and the second body 20. The pivot member 30 extends pivotally through the first pivot portion 12 and the second pivot portion 22. Thus, the second body 20 is pivoted relative to the first body 10 about the pivot member 30 and the second pivot portion 22. In addition, the first body 10 and the second body 20 are pivotally connected by the pivot member 30 without detachment.
The locking member 40 is assembled with the first body 10 and the second body 20. The locking member 40 is hidden in the second body 20. The locking member 40 has a first end provided with a third locking portion 41 locked on the first locking portion 13. The locking member 40 has a second end provided with a fourth locking portion 42 mounted on the second locking portion 23. The fourth locking portion 42 is distant from the third locking portion 41. The locking member 40 contains elasticity. The locking member 40 provides an elastically restoring force to the first body 10 and the second body after the second body 20 is extended outward relative to the first body 10.
Referring to
Referring to
The second distance 63 is more than the first distance 53 when a ratio of an outer diameter of the second circle 60 and that of the first circle 50 is close to two, and when the ratio is more than two and less than 2.5. A ratio of the second distance 63 and the first distance 53 is ranged between 2 and 1.1 or ranged between 1.6 and 1.1.
Referring to
Referring to
Accordingly, the pipe plier structure in accordance with the preferred embodiment of the present invention 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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6026714 | Chang | Feb 2000 | A |
6305251 | Pasbrig | Oct 2001 | B1 |
6971288 | Wei | Dec 2005 | B2 |
7044030 | Chartier | May 2006 | B2 |
7546784 | Yu | Jun 2009 | B1 |
7882768 | Urquizu Osa | Feb 2011 | B2 |
Number | Date | Country | |
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20230321795 A1 | Oct 2023 | US |