1. Field of the Invention
The present invention relates to a sewing machine, and more particularly to a sewing machine with an adjusting structure capable of controlling a swing center of a swing arm.
2. Description of the Prior Art
In the existing sewing machines, there are many mechanisms used to convert circular motion into linear reciprocating motion, therefore, the control of the travel of the presser feet has great influence on sewing quality. Different presser feet are designed to meet different sewing needs, which require the presser foot to have different travels, for example: when buttons are sewed, the presser foot should be specially designed in such a manner that one end of the presser foot is fixed on one end of the presser foot shaft, and the structure of the presser foot which presses the cloth can move along with the cloth. The corresponding total travel of the presser foot, as shown in
After the sewing machine is used for a period of time, some parts will become loose, hence, the positions where first and the second sensing electrodes are turned on are often different from the correct positions of the presser foot, which will produce a defective button hole, for example, as shown in
To solve the above problem, the positions where the first and the sensing electrodes of the travel sensing apparatus are turned on and the positions of the presser foot are designed to be adjusted, so that the start point of the respective travels of the presser foot can be controlled. However, since the corresponding adjusting structure is in the form of a cam, in the principle of mechanical designing, it is known that the cam may normally lead to non-single-direction displacement during the adjustment, in other words, when the displacement in the horizontal direction is needed to be adjusted, the displacement in the horizontal direction will be caused synchronously, thus leading to unneeded displacement, so that the travel of the presser foot is thus quite uncertain.
The present invention has arisen to mitigate and/or obviate the afore-described disadvantages.
The primary objective of the present invention is to provide sewing machine with an adjusting structure capable of controlling a swing center of a swing arm, which utilizes the adjusting apparatus disposed on the swing arm and the pivot shaft which is the swinging center as well as the adjusting bolt of the adjusting apparatus and the elastic element that are disposed between the respective elements to horizontally adjust the relative position and the relation of the whole structure of the swing arm except the swinging center namely the pivot shaft, and immediately position the elements after adjustment. By such arrangements, the swing arm can be accurately brought into contact with the sensing portions of the travel sensing apparatus without complicated adjustment.
The secondary objective of the present invention is to provide a sewing machine with an adjusting structure capable of controlling a swing center of a swing arm, which utilizes the elastic element and the adjusting bolt disposed between the swing arm and the adjusting apparatus to maintain the relevant elements in the optimal elastic prestress state, namely in the optimal pressing state, thus achieving the objective of maintaining the whole structure in the optimal stable state.
The third objective of the present invention is to provide a sewing machine with an adjusting structure capable of controlling a swing center of a swing arm in which the adjusting apparatus is directly mounted on the swing arm and the pivot shaft without any complicated structure or cam, so the assembly of the whole structure is simple, convenient and quick.
The present invention will be clearer from the following description when viewed together with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment in accordance with the present invention.
Referring to
The sensor 30 includes a first sensing portion 31, a second sensing portion 32 and a movable induction portion 33 disposed between the first and the second sensing portions 31. The first sensing portion 31, the second sensing portion 32 and the induction portion 33 are in the form of a metal sheet electrode. Each of the first sensing portion 31, the second sensing portion 32 and the induction portion 33 is connected to a computer through a wire 34. The induction portion 33 can be moved by the main body 40 of the swing arm assembly B in such a manner that the induction portion 33 can move toward any one of the two sensing portions 31, 32 when the presser foot 11 moves to the start and end points of the travel to push the sliding element 50 and rotate the swing arm 40. Besides the metal sheet electrodes, the first sensing portion 31, the second sensing portion 32 and the induction portion 33 in the present embodiment can also be in the form of a photosensitive interrupt sensing element.
The fixing rack 20 is formed with a threaded hole 200 for locking a pivot shaft 21. The pivot shaft 21 is pivotally connected to the swing arm assembly B, so that the whole swing arm assembly B can pivot about the pivot shaft 21. The pivot shaft 21 includes a first end with an outer thread, a middle portion in the form of a cylinder, and a second end formed into a disk-shaped head. The middle portion of the pivot shaft 21 is bigger in outer diameter than the first end of the pivot shaft 21 but smaller in outer diameter than the second end of the pivot shaft 21.
The present invention is characterized in that:
The main body 40 of the swing arm assembly B is provided at a bottom thereof with a pivotal portion 41 in alignment with the threaded hole 200 of the fixing frame 20. The pivotal portion 41 is a rectangular frame and formed in a center thereof with a hollow rectangular horizontally-extending sliding groove 410. The pivotal portion 41 is formed in a side surface thereof with an adjusting threaded hole 411 in such a manner that an adjusting apparatus 60 can be screwed into the adjusting threaded hole 411 to perform the adjustment.
The pivotal portion 41 includes a first side 412, a second side 413, a top end 414 and a bottom end 415 that are connected together. The pivotal portion 41 is centrally further provided in each of the top end 414 and the bottom end 415 with a fixing threaded hole 416, 417 for insertion of the corresponding elements of the adjusting apparatus 60.
The adjusting apparatus 60 includes a sliding block 61 which is square-shaped in cross section allowed to slide relative to the sliding groove 410. The sliding block 61 is slidably disposed in the sliding groove 410 of the pivotal portion 41 in such a manner that its top and bottom end surfaces that are disposed in the sliding groove 410 abut against the top end 414 and the bottom end 415 of the pivot portion 41. The sliding block 61 is centrally formed with a pivot hole 610 for insertion of the pivot shaft 21. When the pivot shaft 21 is fixed in the threaded hole 200, the pivot hole 610 of the sliding block 61 is just mounted on the pivot shaft 21 in such a manner that the sliding block 61 can rotate on the pivot shaft 21.
The sliding block 61 is provided at an end exposed out of the sliding groove 410 with two opposite protruding ears 612 extending in an up and down direction, and each of the two opposite protruding ears 612 includes a horizontally-extending sliding slot 611. A fixing element 64 in the form of a bolt is inserted through each of the sliding slots 611 and screwed into each of the fixing threaded holes 416, 417, so that the sliding block 61 can be fixed by screwing the fixing elements 64 and released to slide horizontally in the sliding groove 410 by unscrewing the fixing elements 64.
The adjusting apparatus 60 is further provided with an elastic element 62 in the form of a coil spring and an adjusting bolt 63. The elastic element 62 is disposed between the sliding groove 410 and the sliding block 61. In the present embodiment, the elastic element 62 is disposed in the sliding groove 410 and elastically presses against the second side 413 of the pivotal portion 41 and a first end surface of the sliding block 61. The adjusting bolt 63 is screwed in the adjusting threaded hole 411 in the first side 412 of the sliding groove 410 and inserted in the sliding groove 410 while pushing against a second end surface of the sliding block 61. Before adjustment, as shown in
When in adjustment, the relative position of the main body 40 with respect to the sliding block 61 and the pivot shaft 21 which is the swinging center of the whole swing arm assembly B can be adjusted by rotating the adjusting bolt 63, so that the induction portion 33 connected to the main body 40 can be pre-adjusted to contact the first sensing portion 31 as shown in
With the above structures, the present invention can offer the following functions:
1. Micro-adjustment, quick and high accuracy: with rotation of the adjusting bolt 63 and the pushing of the elastic element 62, the relative position of the pivotal portion 41 of the main body 40 with respect to the sliding block 61 and the pivot shaft 21 can be quickly adjusted in such a manner that the main body 40 and the pivot shaft 21 only move horizontally relative to each other without causing height difference, so that when the presser foot 11 moves, the swing arm assembly B can accurately move the induction portion 33 to contact the first sensing portion 31 and the second sensing portion 32, ensuring high accuracy and quality of sewing of the button hole.
2. Stable overall structure: since the elastic element 62 is elastically disposed between the sliding groove 410 of the pivotal portion 41 of the main body 40 and the sliding block 61 of the pivot shaft 21, the swing arm assembly B, the pivot shaft 21 and the adjusting apparatus 60 can be assuredly positioned, offering a stable overall structure.
Referring to
As shown in
As shown in
In the present invention, between the sliding element 50 and the main body 40 is additionally provided an arc elastic plate 51 for producing an elastic frictional force when the sliding element 50 is moved in the main body 40. The elastic plate 51 is disposed at one side of the bottom end of the main body 40 where the sliding element 50 is inserted, so that when the sliding element 50 is inserted in the main body 40, the elastic plate 51 will elastically push against the sliding element 50.
While we have shown and described various embodiments in accordance with the present invention, it is clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.
Number | Name | Date | Kind |
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2746750 | Hacklander | May 1956 | A |
2905120 | Hacklander | Sep 1959 | A |
3200780 | Eriksson | Aug 1965 | A |
6382118 | Wolf | May 2002 | B1 |
6712015 | Chen | Mar 2004 | B1 |
Number | Date | Country | |
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20120210923 A1 | Aug 2012 | US |