Positioning structure for an eccentrically movable tongue seat
10801142 ยท 2020-10-13
Inventors
Cpc classification
D05B37/00
TEXTILES; PAPER
International classification
D05B37/00
TEXTILES; PAPER
D05B81/00
TEXTILES; PAPER
Abstract
A positioning structure for a movable tongue seat includes: an eccentric positioning member disposed between the movable tongue seat and the cutter seat, the eccentric positioning member is provided with a rotary end which is located toward one end of the cutter seat, wherein the eccentric positioning member rotates about the rotary end and is further provided with a drive end which is inserted in a slot of the movable tongue seat, the drive end and the rotary end are not coaxially aligned; and a pivot hole and a pivot provided between the movable tongue seat and the cutter seat, so that the movable tongue seat is able rotate on the cutter seat by rotating about the pivot. When the eccentric positioning member rotates about the rotary end, the drive end can push the movable tongue seat to rotate about the pivot to a desired position.
Claims
1. A positioning structure for an eccentrically movable tongue seat, wherein the tongue seat is provided on a cutter seat of a sewing machine, and a movable tongue is on the movable tongue seat; the positioning structure of the movable tongue seat comprising: an eccentric positioning member disposed between the movable tongue seat and the cutter seat, the eccentric positioning member being provided with a rotary end which is located toward one end of the cutter seat, wherein the eccentric positioning member rotates about the rotary end and is further provided with a drive end which is inserted in a slot of the movable tongue seat, the drive end and the rotary end are not coaxially aligned; and the movable tongue seat includes a pivot, the cutter seat includes a pivot hole for insertion of the pivot of the movable tongue seat, so that the movable tongue seat is able rotate on the cutter seat by rotating about the pivot, when the eccentric positioning member rotates about the rotary end, the drive end can push the movable tongue seat to rotate about the pivot to a desired position.
2. The positioning structure as claimed in claim 1, wherein a top surface of the cutter seat includes a first end surface and a second end surface which is higher than the first end surface, the pivot hole is located at the first end surface for insertion of the pivot which protrudes out of a bottom of the movable tongue seat, and a blade is provided at a lateral surface of the first end surface of the cutter seat.
3. The positioning structure as claimed in claim 2, wherein a micro-adjustment seat is disposed at the second end surface of the cutter seat, the micro-adjustment seat is provided with an eccentric hole for insertion of the rotary end, the micro-adjustment seat is provided with a stop portion, and the stop portion is provided with a drive portion.
4. The positioning structure as claimed in claim 1, wherein a pressing member is fixed to the cutter seat and includes a restricting top portion horizontally extending toward the movable tongue seat to restrict the movable tongue within the movable tongue seat, and an elastic portion horizontally extends from the pressing member and elastically presses against the eccentric positioning member to provide a damping effect.
5. The positioning structure as claimed in claim 4, wherein the eccentric positioning member is further provided with a damping portion which is located between the drive end and the rotary end, the rotary end is located at a center of the damping portion, the elastic portion elastically presses against the damping portion to provide a damping effect, and a pulling portion extends from an edge of the damping portion.
6. The positioning structure as claimed in claim 5, wherein the movable tongue which includes a tongue end, a guide portion extending from the tongue end, and a pulling end perpendicular to the guide portion, the movable tongue seat includes a guide member in the form of a groove, and a gap formed in a lateral surface of the guide member, so that the guide portion is slidably received in the guide member, the pulling end extends out of the gap, and a lateral edge of the movable tongue seat cooperates with the pulling portion to restrict a rotation angle of the eccentric positioning member.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(8) 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.
(9) Referring to
(10) The positioning structure of the movable tongue seat 20 comprises an eccentric positioning member 40 which is disposed between the movable tongue seat 20 and the cutter seat 10. The eccentric positioning member 40 is provided with a cylinder-shaped rotary end 41 which is located toward one end of the cutter seat 10. The eccentric positioning member 40 rotates about the rotary end 41 and is further provided with a cylinder-shaped drive end 42 which is inserted in a slot 22 of the movable tongue seat 20. The slot 22 has a width equal to a diameter of the drive end 42. The drive end 42 and the rotary end 41 are not coaxially aligned, so that, when the drive end 42 is eccentrically moved by the rotation of the eccentric positioning member 40, it will push the slot 22 to cause displacement of the movable tongue seat 20. The eccentric positioning member 40 is further provided with a disc-shaped damping portion 43 which is located between the drive end 42 and the rotary end 41 to facilitate the fixing of the angle of the eccentric positioning member 40 (the angle at which the eccentric positioning member 40 is located), and the rotary end 41 is located at the center of the disc-shaped damping portion 43. A pulling portion 44 extends from the edge of the damping portion 43.
(11) A pivot hole 110 and a pivot 21 are provided between the movable tongue seat 20 and the cutter seat 10, in this embodiment, the pivot hole 110 is located in the cutter seat 10, and the pivot 21 is provided on the movable tongue seat 20, so that the movable tongue seat 20 can rotate on the cutter seat 10 by rotating about the pivot 21 which is inserted in the pivot hole 110. When the eccentric positioning member 40 rotates about the rotary end 41, the drive end 42 can push the movable tongue seat 20 to rotate about the pivot 21 to a desired position. The movable tongue seat 20 is provided at a lateral edge thereof with two protrusive restricting portions 25 which cooperate with the pulling portion 44 to restrict the rotation angle of the eccentric positioning member 40.
(12) It can be learned from the drawings that a top surface of the cutter seat 10 includes a first end surface 11 and a second end surface 12 which is higher than the first end surface 11. The pivot hole 110 is located at the first end surface 11 for insertion of the pivot 21 which protrudes out of a bottom of the movable tongue seat 20. A blade 70 is provided at a lateral surface of the first end surface 11 of the cutter seat 10, and a pressing member 50 is provided at another opposite lateral surface of the first end surface 11 of the cutter seat 10. An adjustment hole 120 is provided at the second end surface 12, and a fixing hole 121 which is perpendicular to the adjustment hole 120 penetrates a lateral surface of the adjustment hole 120, so that a fixing bolt 122 is screwed through the adjustment hole 120 to fix the components disposed in the adjustment hole 120.
(13) The pressing member 50 is fixed on the cutter seat 10, and in this embodiment shown in the drawings, the pressing member 50 is located at a lateral surface of the blade 70 and fixed to the cutter seat 10 by two bolts 51 inserting through a vertical end of the pressing member 50. The pressing member 50 is a flat piece which is bent into an L-shaped elastic structure. The vertical end of the pressing member 50 is provided with a positioning portion 52, and two through holes 520 are formed in the positioning portion 52 for insertion of the two bolts 51 through the cutter seat 10, so that the pressing member 50 is fixed to the cutter seat 10. The pressing member 50 includes a restricting top portion 53 located on the top of the positioning portion 52 and horizontally extending toward the movable tongue seat 20 to restrict the movable tongue 30 within the movable tongue seat 20. Both ends of the restricting top portion 53 are bent toward the movable tongue 30 to form a pressing end 531 to elastically press the movable tongue 30 into the movable tongue seat 20, which prevents disengagement of the movable tongue 30 from the movable tongue seat 20. An elastic portion 54 horizontally extends from the positioning portion 52 and elastically presses against the damping portion 43 of the eccentric positioning member 40 to provide a damping effect.
(14) It is to be noted that a micro-adjustment seat 60 is disposed in the adjustment hole 120 of the second end surface 12 of the cutter seat 10 and can be fixed at a desired angle by the fixing bolt 122. The micro-adjustment seat 60 is provided with an eccentric hole 61, so that the eccentric positioning member 40 can have the rotary end 41 inserted into the eccentric hole 61 and rotate about the eccentric hole 61. The micro-adjustment seat 60 is provided with a stop portion 62 which stays outside the adjustment hole 120. The stop portion 62 is provided on a lateral edge thereof with a drive portion 620 in the form of a notch which is used to engage with and rotate a tool, so that the micro-adjustment seat 60 can be rotated to a desired angle to change the position of the eccentric hole 61, and as a result, the rotary end 41 of the eccentric positioning member 40 can be moved to a desired position, and thus the micro-adjustment of the eccentric positioning member 40 is finished.
(15) The operation of the movable tongue 30 is shown in
(16) The structure of the present invention offers the following advantages:
(17) 1. simple structure: the deviation of the movable tongue seat 20 can be controlled simply by arranging the eccentric positioning member 40 between the movable tongue seat 20 and the cutter seat 10, and using the eccentric positioning member 40 as an eccentric drive means, which requires no further extra structures, and therefore allows for easy assembly and low maintenance.
(18) 2. efficient and direct drive: due to simple structure, the eccentric driving direction of the eccentric positioning member 40 is opposite to the moving direction of the movable tongue seat 20, which allows the user to operate intuitively and quickly without mistake.
(19) Referring to
(20) 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.