SEWING MACHINE
20210404100 ยท 2021-12-30
Inventors
Cpc classification
D05B27/02
TEXTILES; PAPER
International classification
Abstract
Provided is a sewing machine capable of positioning feed dogs with a sufficient distance below the upper surface of a throat plate when the feed dogs are retracted. Feed dogs 3 protrude and retract from a throat plate 1. A horizontal feed drive unit 8 converts the rotation of a drive shaft 7 into a reciprocating motion in the horizontal direction and transmits the horizontal reciprocating motion to the feed dogs 3. A vertical drive unit 9 converts the rotation of the drive shaft 7 into a reciprocating motion in the vertical direction and transmits the vertical reciprocating motion to the feed dogs 3. A vertical position changing part moves turn-back points P at both ends of a forward path and a return path when the feed dogs 3 reciprocate in the horizontal direction below the throat plate 1.
Claims
1. A sewing machine comprising: feed dogs which protrude and retract from an upper surface of a throat plate; a presser foot which faces a top of the feed dogs; a drive shaft which transmits power of a drive source; a horizontal feed drive unit which converts a rotation of the drive shaft into a reciprocating motion in a horizontal direction and transmits the reciprocating motion in the horizontal direction to the feed dogs; a vertical drive unit which converts the rotation of the drive shaft into a reciprocating motion in a vertical direction and transmits the reciprocating motion in the vertical direction to the feed dogs; a vertical travel distance changing part which changes a reciprocating travel distance of the feed dogs in the vertical direction; and a vertical position changing part which moves turn-back points at both ends of a forward path and a return path at the time of a horizontal reciprocating travel of the feed dogs to be below the upper surface of the throat plate in a case where the vertical travel distance changing part decreases a vertical travel distance of the feed dogs.
2. The sewing machine according to claim 1, wherein the vertical drive unit includes: an eccentric cam which is rotated by the drive shaft; an advancing and retreating arm which is advanced and retreated in the horizontal direction by the eccentric cam; a lifting and lowering link which has a lower end thereof connected to the advancing and retreating arm through a lower connecting shaft and an upper end thereof connected to a feed base which supports the feed dogs through an upper connecting shaft such that the feed dogs can move in the horizontal direction; a square piece provided coaxially with the lower connecting shaft of the lifting and lowering link; a guide member having a guide groove formed therein to linearly guide the square piece; and a rotating shaft which rotatably supports the guide member, the vertical travel distance changing part includes a guide member rotating mechanism which rotates the guide member to change a tilt angle of the guide groove, thereby changing the travel distance of the feed dogs in a state of protrusion from the throat plate, the vertical position changing part is configured by placement in which the rotating shaft of the guide member and a center of a reciprocating travel region of the square piece in the guide groove are shifted away from each other, and the center of the reciprocating travel region of the square piece is positioned so as to be shifted to be lower than the rotating shaft of the guide member in a case where the guide member is rotated by the guide member rotating mechanism to cause the guide groove to tilt.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
DESCRIPTION OF EMBODIMENTS
[0029] An embodiment of the present invention will be described with reference to the accompanying drawings. Although the illustration of the overall configuration is omitted, a sewing machine of the present embodiment is provided with a sewing needle (not illustrated) which vertically reciprocates, a throat plate 1 on which the cloth of clothing or the like is placed, a presser foot 2 which presses the cloth on the throat plate 1, and feed dogs 3 which protrude and retract from the upper surface of the throat plate 1 to feed the cloth, as illustrated in
[0030] The feed dogs 3 are driven by a feed dog drive unit. The feed dog drive unit has a feed rod 4 extending in the horizontal direction, and a feed base 5 which supports the feed rod 4 in a longitudinally movable manner. The feed dogs 3 are integrally provided on the distal end of the feed rod 4.
[0031] The feed base 5 has the proximal end thereof connected to a frame (not illustrated) through a swing shaft 6 so as to be vertically swingable. As the feed base 5 swings, the feed dogs 3 at the distal end of the feed rod 4 move in the vertical direction. Further, the feed dog drive unit has a drive shaft 7 which transmits the power of a drive source (not illustrated), a horizontal feed drive unit 8, and a vertical drive unit 9. The drive shaft 7 is provided below the feed base 5. The drive source also drives the sewing needle.
[0032] The horizontal feed drive unit 8 has a first eccentric cam 10 which is rotated by the drive shaft 7, a first advancing and retreating arm 11 which is advanced and retreated in the horizontal direction by the first eccentric cam 10, and an advancing and retreating link 12 which transmits the advancing and retreating motion of the first advancing and retreating arm 11 to the feed rod 4. The rotation of the drive shaft 7 is converted into a horizontal feed motion by the horizontal feed drive unit 8 configured as described above and the horizontal feed motion is transmitted to the feed dogs 3.
[0033] The vertical drive unit 9 is adapted to convert the rotation of the drive shaft 7 into a vertical motion and transmit the vertical motion to the feed dogs 3, and includes a second eccentric cam 13, a second advancing and retreating arm 14 which is advanced and retreated in the horizontal direction by the second eccentric cam 13, and a lifting and lowering link 15 connected to the second advancing and retreating arm 14, as illustrated in
[0034] The lifting and lowering link 15 has the lower end thereof connected to the second advancing and retreating arm 14 through a lower connecting shaft 16, and the upper end thereof connected to the feed base 5 through an upper connecting shaft 17, as illustrated in
[0035] The square piece 18 is slidably accommodated in a guide groove 20 formed in a guide member 19. The guide member 19 is disposed on one side (the right side in
[0036] As illustrated in
[0037] The guide groove 20 is formed on one surface of the body block 22. The body block 22 has an extended member 23 extending outward in the radial direction from one portion thereof. A return spring 24 is connected to the extended member 23. The return spring 24 is installed between the extended member 23 and a frame (not illustrated).
[0038] Further, the body block 22 is restricted, by a stopper pin 25 corning in contact with the extended member 23, in counterclockwise rotation in
[0039] The simple configuration of the guide member 19 enables the guide member 19 to be installed without any problem even in a relatively narrow space such as directly under the feed base 5. Consequently, a vertical drive unit 9 has a compact configuration.
[0040] In addition, the rotating shaft 21 is provided such that the center thereof is eccentric with respect to the center of the round body block 22. The relationship among the eccentric rotating shaft 21, the tilt of the guide groove 20 caused by the rotation of the guide member 19, and the reciprocating travel region of the square piece 18 creates the configuration for obtaining the function as the vertical position changing part in the present invention. This configuration will be described in detail later.
[0041] As illustrated in
[0042] More specifically, in a state in which the presser operation lever 26 is down, the presser foot 2 is in a state of pressure-contact with cloth on the feed dogs 3, and in a state in which the presser operation lever 26 is up, the presser foot 2 is in a state of being separated from the cloth on the feed dogs 3.
[0043] Further, as illustrated in
[0044] When the presser operation lever 26 is positioned at the lower end of the operation range thereof, the guide groove 20 of the guide member 19 is set to be horizontal (or substantially horizontal) by the first link part 28, the transmission shaft 29, and the second link part 30. Further, a function of the vertical travel distance changing part makes it possible to adjust the tilt angle of the guide groove 20 of the guide member 19 according to the operation angle of the presser operation lever 26.
[0045] As illustrated in
[0046] When the presser operation lever 26 is raised, the first link part 28 moves along the longitudinal direction thereof, and the second link part 30 rotates the guide member 19 against the biasing of the return spring 24 as the transmission shaft 29 rotates. This causes the guide groove 20 of the guide member 19 to tilt. The tilt of the guide groove 20 at this time will be a tilt that causes gradual movement down in a direction in which the second advancing and retreating arm 14 pushes out (rightward in the drawing).
[0047] As illustrated in
[0048] Further, as described above, the rotating shaft 21 is provided such that the center thereof is eccentric with respect to the center of the round body block 22, thus making it possible to reliably retract the feed dogs 3 below the upper surface of the throat plate 1.
[0049] This will be described in detail by comparison with a case where the center of the rotating shaft 21 is not eccentric with respect to the center of the body block 22.
[0050] In
[0051] The square piece 18 reciprocates along the guide groove 20. At this time, the longitudinal dimension of the guide groove 20 can be reduced by making the longitudinal center of the guide groove 20 and a center S1 of a reciprocating travel region W of the square piece 18 coincide with each other, and the body block 22 can be consequently made compact. Further, in this case, the center of the body block 22 and the longitudinal center of the guide groove 20 coincide with each other.
[0052] As illustrated in
[0053] In the state in which the cloth is fed during a sewing operation, the feed dogs 3 move on the elliptical trajectory, moving above the upper surface of the throat plate 1 to feed the cloth and moving below the upper surface of the throat plate 1 to go back to the return position thereof. At this time, the feed dogs 3 move, drawing an elliptical trajectory R with respect to the throat plate 1 as indicated by the relationship between the trajectory of the feed dogs 3 and the throat plate 1 in
[0054] Further, the turn-back points P at both ends of the forward path and the return path of the reciprocating travel of the feed dogs 3 in the horizontal direction are set to be very slightly below the upper surface of the throat plate 1. The trajectory of the feed dogs 3 in the retracted state becomes a linear trajectory that connects both turn-back points P. In the configuration OM without eccentricity illustrated as a reference example in
[0055] Here; if it is assumed that the turn-back points P of the feed dogs 3 are undesirably positioned slightly above the upper surface of the throat plate 1 as illustrated in
[0056] In contrast, according to the configuration NM with eccentricity of the present embodiment illustrated in
[0057] Consequently, turn-back points Pa of the feed dogs 3 in the retracted state can be positioned below the turn-back points P of the feed dogs 3 during a sewing operation as illustrated in
[0058] In the present embodiment, the function as the vertical position changing part in the present invention is obtained by setting the center of the rotating shaft 21 of the guide member 19 to be eccentric with respect to the center of the round body block 22 of the guide member 19. The function as the vertical position changing part can be obtained by the position of the center S1 of the reciprocating travel region W of the square piece 18 being shifted more to the lowering side than the rotating shaft 21 of the guide member 19 when the guide groove 20 tilts.
[0059] Further, the present embodiment is configured such that the guide groove 20 becomes horizontal when the presser operation lever 26 is positioned at the lower end, however, the present invention is not limited thereto. More specifically, the configuration may alternatively be such that the guide groove 20 becomes horizontal when the presser operation lever 26 is positioned at the upper end. In addition, the angle of the guide groove 20 during a sewing operation is not limited to horizontal, and can be set appropriately according to the dimensions of parts or the like.
DESCRIPTION OF REFERENCE NUMERALS
[0060] 1 . . . throat plate; 2 . . . presser foot; 3 . . . feed dogs; 5 . . . feed base; 7 . . . drive shaft; 8 . . . horizontal feed drive unit; 9 . . . vertical drive unit; 13 . . . second eccentric cam (eccentric cam); 14 . . . second advancing and retreating arm (advancing and retreating arm); 15 . . . lifting and lowering link; 16 . . . lower connecting shaft; 17 . . . upper connecting shaft; 18 . . . square piece; 19 . . . guide member; 20 . . . guide groove; 21 . . . rotating shaft; 26 . . . presser operation lever (vertical travel distance changing part); 27 . . . rotating link (guide member rotating mechanism); P, Pa . . . turn-back point; W . . . reciprocating travel region; and S2 . . . center of reciprocating travel region.