The present invention relates to a pipe bender, in particular to the pipe bender having a support block capable of sliding on a support arm.
With reference to
However, the two support blocks 53 of the aforementioned structure are fixed at a fixed position of the support arm 52 and cannot be adjusted according to the working conditions such as the length and diameter of the pipe to be bent 6, and thus the conventional pipe bender is inapplicable for various different types of pipes. On the other hand, the support arm 52 of the aforementioned design comes with a specific length, so that when the support arm 52 and the actuating handle 51 are integrally combined, the support arm 52 occupies too much space relative to the transversal expansion produced by the actuating handle 51, and thus it is inconvenient to store the conventional pipe bender. If the support arm 52 and the actuating handle 51 come with a modular design, the space occupied by the support arm 52 can be reduced to overcome the aforementioned issue, but it will take some time to assemble and disassemble the pipe bender for its use and storage, and thus the application is inconvenient.
Therefore, it is a primary objective of the present invention to overcome the aforementioned problem of the prior art by providing a pipe bender, and the pipe bender has a support arm with a telescopic structure provided for adjusting the outwardly extending length of the support arm to facilitate storage.
To achieve the aforementioned objective, the present invention provides a pipe bender, comprising: an actuating handle, movably installed at an actuating element and controllable to move in a longitudinal direction of the actuating handle; and a support arm, transversally spanned over the actuating handle, and having a support device disposed at both ends of the actuating handle separately and slidable along the support arm, for abutting the actuating element together with a pipe for a pipe bending operation; wherein each support device includes a base, and the base includes a pivotal support block, and the base includes a grip portion, and a grip space formed in the grip portion, and the base is sheathed from the grip space on the support arm through the grip portion so as to generate a sliding motion on the support arm, and the support device includes a positioning mechanism for positioning the support device at a selected position on the support arm.
Wherein, the base includes a column erected from the base, and the support block includes a through hole formed therein and sheathed on the column through the through hole.
The column has a fixing hole penetrating through the grip space, and the positioning mechanism includes a positioning element and an elastic element sequentially accommodated in the fixing hole, and a fixing element is passed into the through hole and fixed to the fixing hole, so that the elastic element abuts the fixing element, and the elastic force of the elastic element acts on the positioning element to push the positioning element against the support arm, so as to position the support device on the support arm; and the support arm includes a plurality of positioning portions provided for the positioning element to pick one of the positioning portions for positioning.
Further, the fixing hole of the column is a screw hole, and the fixing element has a screw provided for locking and securing with the screw hole.
In another preferred embodiment, the positioning mechanism includes a clutch portion disposed separately at the support arm and the base, and when the clutch portions of the support arm and the base are combined, the base can just slide and move in one direction along the support arm only, and if the clutch portions of the support arm and the base are separated, the base can move in both directions along the support arm. Preferably, the clutch portion of the support arm is the inverted tooth structure configured along the support arm, and the clutch of the base portion is a pivoting hook controlled to clutch the inverted tooth structure of the support arm.
In another preferred embodiment, the base has a specific length along the extending direction of the support arm, and a part of the base moves out from the support arm through the sliding motion of the base relative to the support arm. Wherein, the grip portion of the base has a containing hole concavely formed thereon, and the positioning mechanism includes an elastic element and a positioning element sequentially accommodated in the containing hole, so that the elastic force of the elastic element drives the positioning element to push the support arm to position the support device on the support arm, and the support arm includes a plurality of positioning portions disposed thereon and provided for the positioning element to pick one of the positioning portions for positioning.
The present invention will become clearer in light of the following detailed description of an illustrative embodiment of this invention described in connection with the drawings. It is intended that the embodiments and drawings disclosed herein are to be considered illustrative rather than restrictive.
With reference to
The support device 3 includes a base 31, and a support block 32 pivoted on the base 31. In this preferred embodiment, the support block 32 is a cube having a groove 321 formed at the periphery of the cube for supporting the pipe, and allowing users to change a support block of a different specification from the base 31. The base 31 has a grip portion 33 facing downward, and the grip portion 33 has a grip space 34 formed therein. The base 31 is disposed on the support arm 2, and the grip portion 33 is sheathed on the support arm 2 through the grip space 34. In other words, the grip portion 33 is a structure enclosing the support arm 2, and the specific structure of this preferred embodiment is a sheathing hole formed at the bottom of the base 31, and the sheathing hole is formed in the grip space 34. The support device 3 is sheathed on the support arm 2 through the sheathing hole of the base 31, and slidable on the support arm 2. The support device 3 includes a positioning mechanism for positioning the support device 3 at a selected position on the support arm 2.
In
The screw 371 of the fixing element 37 is secured into the screw hole 351 to a certain depth to control the elastic force of the spring 362 abutting the positioning element 361, so as to adjust the strength of positioning the support device 3 on the support arm 2.
With the aforementioned structure of the present invention, the support device 3 is slid along the support arm 2 and moved to an appropriate position for positioning according to the diameter and length of the curved pipe in order to operate the actuating element 11 for a pipe bending operation. Wherein, the actuating element 11 has a calibration 12A that indicates a pipe bending angle to facilitate users to observe the progress of a pipe bending job. On the other hand, the support arm 2 and the base 31 also have calibrations 12B, 12C thereon respectively to indicate the position of the support device 3 and the rotating angle of the support block 32. Like the aforementioned calibration 12A of the actuating handle 1, these calibrations 12B, 12C also facilitate users to determine and set the operating conditions.
With reference to
When it is necessary to adjust the position of the support device freely, the pivoting hook 38 is controlled to pivot as shown in
With reference to
In the structure of this preferred embodiment as shown in
The advantages of this preferred embodiment reside on that the working length is variable, so that the required length can be extended if necessary, and shortened by storing the support device 3 along the support arm 2 as shown in
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