The present invention relates to a hand tool, especially to a pipe pliers.
A conventional pipe pliers includes a first clamping body and a second clamping body pivotally connected. The first clamping body has a sliding groove to allow the second clamping body to slide with respect to the first clamping body. A distance between a fixed clamping portion of the first clamping body and a movable clamping portion of the second clamping body is changeable by sliding the second clamping body. The movable clamping portion can be moved toward the fixed clamping portion by pivoting the second clamping body to clamp a pipe connector, as shown in patent TWM511931. However, in the conventional pipe pliers, the movable clamping portion approaches the fixed clamping portion by pivoting (in an arc path). When clamping the connector, the line defined by the force points of the fixed clamping portion and the movable clamping portion doesn't penetrate the center of the clamped object. That is, the two clamping portions are not parallel. Thus, the connector may slide between or separate from the fixed clamping portion and the movable clamping portions.
The pipe pliers disclosed in the publication EP 0421107 includes a main body. The main body has a fixed jaw and a clamping element sldiably disposed on the main body. Each of two sides of the main body is formed with a sliding groove. The clamping element has two side plates. Each side plate has a protrusion on a face facing the other side plate. The two protrusions are slidably disposed in the two sliding grooves to make the clamping element slidably disposed on the main body. However, the two protrusions are difficult to be processed or shaped except precision casting. The clamping element manufactured by precision casting is not durable and costs too much.
The pliers disclosed in publication CN204843895 has a main body having two side plates. Each side plate is formed with a receiving groove. The clamping element (or the second pliers opening) having a guiding protrusion. The guiding protrusion is slidably disposed in the receiving groove to make the clamping element slidable with respect to the main body. However, the thickness of the guiding protrusion has to be larger than the width of the receiving groove for sliding. Thus, when assembling the clamping element and the main body, the two side plates (102 and 103 in this publication) have to be pulled away from each other, and the two protrusions enter the receiving groove followed by pushing the side plates until the clamping element is unable to leave the two side plates. The side plates are quite hard, so the operation has to be made by machines. However, the structure may be damaged to reduce the durability and accuracy. In addition, the length of the guiding protrusion along the sliding direction is short, so shaking is resulted between the clamping element and the main body. Besides, the guiding groove perpendicular to the receiving groove has plural teeth. During clamping, the guiding protrusion presses the teeth to damage the teeth.
The main object of the present invention is to provide a pipe pliers having a first clamping portion and a second clamping portion sliding parallel to clamping the polygon pipe connector. In addition, the second clamping portion prevents from shaking so as to improve the accuracy.
To achieve the above and other objects, the pipe pliers of the present invention includes a first clamping body, a driving handle, and a clamping element. The first clamping body includes a first handle portion, a first clamping portion, and a body portion connected first handle portion and the first clamping portion therebetween. he body portion includes two side plates and is formed with two guiding toothed grooves. A receiving groove is defined between the two side plates. Each of the side plates is formed with a sliding groove on a face thereof facing the other side plate. The two sliding grooves are parallel to but not overlap the two guiding toothed grooves. The driving handle is restrictively and slidably arranged at the two guiding toothed grooves and pivotally connected to the first clamping body by a pivot portion. The driving handle has a second handle portion at an end and a protrusion at the other end. The clamping element includes a second clamping portion and a sliding piece connected to each other. The sliding piece is received in the receiving groove and slidably arranged in the two sliding grooves. The second clamping portion corresponds to the first clamping portion. The clamping element is formed with a recess. The protrusion is rotatably inserted in the recess. The protrusion is able to drive the clamping element to slide with respect to the first clamping body by the driving handle sliding or pivoting with respect to the first clamping body.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment(s) in accordance with the present invention.
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The first clamping body 1 includes a first handle portion 11, a first clamping portion 12, and a body portion 13 connecting the first handle portion 11 and the first clamping portion 12 therebetween. The body portion 13 includes two side plates 131 and is formed with two guiding toothed grooves 14. A receiving groove 17 is defined between the two side plates 131. Each of the side plates 131 is formed with a sliding groove 15 on a face thereof facing the other side plate 131. The two sliding grooves 15 are parallel to but not overlap the two guiding toothed grooves 14.
The driving handle 2 is restrictively and slidably arranged at the two guiding toothed grooves 14 and is pivotally connected to the first clamping body 1 by a pivot portion 4. The driving handle 2 has a second handle portion 21 at an end and a protrusion 22 at the other end.
The clamping element 3 includes a second clamping portion 31 and a sliding piece 32. The sliding piece 32 is located in the receiving groove 17 and is slidably arranged in the two sliding grooves 15. The second clamping portion 31 corresponds to the first clamping portion 12. The clamping element 3 has a recess 34. The protrusion 22 is rotatably inserted into the recess 34.
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The pivot button 42 is inserted into the pivot hole 23 and axially slidable between a locking position and a release position. The elastic element 31 is received in the pivot hole 23 to be biased between a stopping wall 231 of the pivot hole 23 and the pivot button 42 so that the pivot button 42 tends to move toward the locking position. When the pivot button 42 is located at the locking position, as shown in
Preferably, the pivot button 42 has two said restriction toothed portions 43 corresponding to the two guiding toothed grooves 14 respectively. The pivot button 42 tends to retain at the locking position, and each of the restriction toothed portions 43 is engaged with one of the guiding toothed grooves 14. Each restriction toothed portion 43 has an inclined face section 431 along the axial direction of the pivot portion 4. When the pivot button 42 is pressed to move to the release position, the inclined face sections 431 of the restriction toothed portions 43 are separated from the guiding toothed grooves 14. More specifically, when the pivot button 42 is located at the release position and the width of the opening is changed, if the pivot button 42 is to be moved toward the locking position, the restriction toothed portion of a conventional pipe pliers and the guiding toothed groove contact each other because the restriction toothed portion is perpendicular to the axial direction of the pivot portion. Even though the restriction toothed portion has a chamfered edge at the opening end thereof, it is still difficult to make the restriction toothed portion and the guiding toothed groove be engaged precisely. In the present invention, the inclined face section 431 faces the guiding toothed groove 14, as shown in
Practically, a neck portion 33 is located between the second clamping portion 31 and the sliding piece 32. Each of the side plates 131 has a flange 16 parallel to the two sliding grooves 15 wherein the flanges 16 face each other. The neck portion 33 is located between the two side plates 131 and is slidably arranged on the two flanges 16. The second clamping portion 31 is formed with an abutting face 35 at an end near the neck portion 33. The abutting face 35 abuts against the sliding face 132 on the top of the two side plates 131 to slide thereon. Thus, the clamping element 3 can slide steadily with respect to the first clamping body 1 to prevent the shaking between the clamping element 3 and the first clamping body 1. The sliding piece 32 is slidably arranged between the sliding grooves 15 so that the two sliding grooves 15 and the sliding piece 32 are prevented from collision by other objects to result the deformation of the sliding piece 32 and the sliding grooves 15. Besides, the two sliding grooves 15 are located inside the two side plates 131 so that dust may not accumulates in the sliding grooves and that the sliding grooves may not be splashed by fluid to result corrosion. Thus, the pipe pliers is more durable and has an improved accuracy.
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More specifically, the pivot button 42 includes a first connecting element 421 and a second connecting element 422. The first connecting element 421 has a rod portion 4211, and the second connecting element 422 has a sleeve portion 4221. The sleeve portion 4221 is sleeved onto the rod portion 4211. Each of the first connecting element 421 and the second connecting element 422 has a said restriction toothed portion 43. The two restriction toothed portions 43 correspond to the two guiding toothed grooves 14 respectively. In the present embodiment, the rod portion 4211 is formed with a notch 4212 at an end facing the sleeve portion 4221, as shown in
Besides, each of the first connecting element 421 and the second connecting element 422 preferably has a head portion 423 at an end remote from the other one of the first connecting element 421 and the second connecting element 422 wherein each of the head portion 423 has a larger diameter. The head portions of the first connecting element 421 and the second connecting element 422 are restricted at the inner wall of the guiding toothed grooves 14 so that the first connecting element 421 and the second connecting element 422 are unable to be separated from the two side plates 131.
In the present embodiment, the sliding piece 3 has a rectangle cross-section. However, as shown in
In conclusion, the first clamping portion and the second clamping portion slide parallel to clamp the connector of pipe. In addition, the second clamping portion may reduce the shaking to improve the accuracy.
Besides, the sliding piece is arranged between the two sliding grooves to prevent the sliding grooves and the sliding piece from collision by other objects resulting the deformation of the two sliding grooves. In addition, the two sliding grooves are arranged inside the side plates so that dust or fluid may not enter the sliding grooves. Thus, the pipe pliers is more durable.