Feed dog adjustment device and sewing machine including same
09903056 ยท 2018-02-27
Assignee
Inventors
Cpc classification
International classification
Abstract
The feed dog adjustment device, includes a feed rock shaft rotatably attached to a sewing machine frame with an eccentric shaft provided at an eccentric position with respect to a center, a feed rock shaft crank that slides about the feed rock shaft, a feed bar rotatably attached to the feed rock shaft crank, a feed dog provided on the feed bar, an actuator for inclination adjustment that rotates the eccentric shaft, and a controller that drives the actuator for inclination adjustment to adjust an inclination of the feed dog on a basis of data related to a type and stretchability of fabric.
Claims
1. A feed dog adjustment device, comprising: a feed rock shaft rotatably attached to a sewing machine frame with an eccentric shaft provided at an eccentric position with respect to a center; a feed rock shaft crank that slides about the feed rock shaft a feed bar rotatably attached to the feed rock shaft crank; a feed dog provided on the feed bar; an actuator for inclination adjustment that rotates the eccentric shaft; a controller that drives the actuator for inclination adjustment to adjust an inclination of the feed dog on a basis of data related to a type and stretchability of fabric; a lower shaft rotatably attached to the sewing machine frame; a vertically moving cam that includes a plurality of cam surfaces that have different largest cam diameters and that is fitted around the lower shaft so as to be slidable in an axial direction of the lower shaft, the vertically moving cam supporting and vertically swinging the feed bar; a sub feed bar rotatably attached to the feed bar, the feed dog being fixed to the sub feed bar; a sub vertically moving cam that includes a plurality of cam surfaces that have different largest cam diameters and that is fitted around the lower shaft so as to be slidable in the axial direction of the lower shaft, the sub vertically moving cam supporting and vertically swinging the sub feed bar; and an actuator for height adjustment that slides the vertically moving cam and the sub vertically moving cam in the axial direction with respect to the lower shaft, wherein a cam surface of the plurality of cam surfaces of the vertically moving cam that supports the feed bar and a cam surface of the plurality of cam surfaces of the sub vertically moving cam that supports the sub feed bar are capable of being selected.
2. The feed dog adjustment device according to claim 1, wherein the cam surface of the vertically moving cam that has been selected to support the feed bar and the cam surface of the sub vertically moving cam that has been selected to support the sub feed bar are formed such that a vertical motion of a rotation center of the sub feed bar on the feed bar and a vertical motion of a contact between the sub vertically moving cam and the sub feed bar are coincident with respect to each other in quantity and in phase.
3. The feed dog adjustment device according to claim 1, further comprising: a presser bar supported by the sewing machine frame so as to be capable of sliding vertically; a presser foot attached to a lower end portion of the presser bar; and a height detection sensor that acquires data related to a thickness of the fabric by detecting a height of the presser bar, wherein the controller drives the actuator for height adjustment to adjust the height of the feed dog on a basis of data related to the thickness of the fabric.
4. The feed dog adjustment device according to claim 3, further comprising: a presser lever that presses the presser bar while having a spring in between, wherein a controller calculates data on a difference between a descended amount of the presser lever when the presser bar compresses the fabric with the presser foot and a descended amount of the presser bar, and on a basis of the data that has been calculated, adjusts the inclination of the feed dog by driving the actuator for inclination adjustment.
5. The feed dog adjustment device according to claim 2, further comprising: a presser bar supported by the sewing machine frame so as to be capable of sliding vertically; a presser foot attached to a lower end portion of the presser bar; and a height detection sensor that acquires data related to a thickness of the fabric by detecting a height of the presser bar, wherein the controller drives the actuator for height adjustment to adjust the height of the feed dog on a basis of data related to the thickness of the fabric.
6. The feed dog adjustment device according to claim 5, further comprising: a presser lever that presses the presser bar while having a spring in between, wherein the controller calculates data on a difference between a descended amount of the presser lever when the presser bar compresses the fabric with the presser foot and a descended amount of the presser bar, and on a basis of the data that has been calculated, adjusts the inclination of the feed dog by driving the actuator for inclination adjustment.
7. A sewing machine, comprising: a feed dog adjustment device, wherein the feed dog adjustment device includes a feed rock shaft rotatably attached to a sewing machine frame with an eccentric shaft provided at an eccentric position with respect to a center, a feed rock shaft crank that slides about the feed rock shaft, a feed bar rotatably attached to the feed rock shaft crank, a feed dog provided on the feed bar, an actuator for inclination adjustment that rotates the eccentric shaft, and a controller that drives the actuator for inclination adjustment to adjust an inclination of the feed dog on a basis of data related to a type and stretchability of fabric; a lower shaft rotatably attached to the sewing machine frame; a vertically moving cam that includes a plurality of cam surfaces that have different largest cam diameters and that is fitted around the lower shaft so as to be slidable in an axial direction of the lower shaft, the vertically moving cam supporting and vertically swinging the feed bar; a sub feed bar rotatably attached to the feed bar, the feed dog being fixed to the sub feed bar; a sub vertically moving cam that includes a plurality of cam surfaces that have different largest cam diameters and that is fitted around the lower shaft so as to be slidable in an axial direction of the lower shaft, the sub vertically moving cam supporting and vertically swinging the sub feed bar; and an actuator for height adjustment that slides the vertically moving cam and the sub vertically moving cam in the axial direction with respect to the lower shaft, wherein a cam surface of the plurality of cam surfaces of the vertically moving cam that supports the feed bar and a cam surface of the plurality of cam surfaces of the sub vertically moving cam that supports the sub feed bar are capable of being selected.
8. The sewing machine according to claim 7, wherein the cam surface of the vertically moving cam that has been selected to support the feed bar and the cam surface of the sub vertically moving cam that has been selected to support the sub feed bar are formed such that a vertical motion of a rotation center of the sub feed bar on the feed bar and a vertical motion of a contact between the sub vertically moving cam and the sub feed bar are coincident with respect to each other in quantity and in phase.
9. The sewing machine according to claim 7, further comprising: a presser bar supported by the sewing machine frame so as to be capable of sliding vertically; a presser foot attached to a lower end portion of the presser bar; and a height detection sensor that acquires data related to a thickness of the fabric by detecting a height of the presser bar, wherein the controller drives the actuator for height adjustment to adjust the height of the feed dog on a basis of data related to the thickness of the fabric.
10. The sewing machine according to claim 9, further comprising: a presser lever that presses the presser bar while having a spring in between, wherein the controller calculates data on a difference between a descended amount of the presser lever when the presser bar compresses the fabric with the presser foot and a descended amount of the presser bar, and on a basis of the data that has been calculated, adjusts the inclination of the feed dog by driving the actuator for inclination adjustment.
11. The sewing machine according to claim 8, further comprising: a presser bar supported by the sewing machine frame so as to be capable of sliding vertically; a presser foot attached to a lower end portion of the presser bar; and a height detection sensor that acquires data related to a thickness of the fabric by detecting a height of the presser bar, wherein the controller drives the actuator for height adjustment to adjust the height of the feed dog on a basis of data related to the thickness of the fabric.
12. The sewing machine according to claim 11, further comprising: a presser lever that presses the presser bar while having a spring in between, wherein a controller calculates data on a difference between a descended amount of the presser lever when the presser bar compresses the fabric with the presser foot and a descended amount of the presser bar, and on a basis of the data that has been calculated, adjusts the inclination of the feed dog by driving the actuator for inclination adjustment.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13)
(14)
(15)
DESCRIPTION OF THE PREFERRED EMBODIMENTS
(16) A feed dog adjustment device and a sewing machine including the adjustment device of the present disclosure will be described next with reference to the drawings illustrating an exemplary embodiment.
(17) Exemplary embodiment
(18) Referring to
(19) A main configuration of a motion mechanism inside a sewing machine body will be described. In
(20) Feed rock shaft cranks 7 and a horizontal swing arm 8 are integrally attached to the bearing 6 for the feed rock shaft. A feed bar 13 is rotationally connected to the feed rock shaft cranks 7, and a forked link 14 is rotationally connected to the horizontal swing arm 8. A sub feed bar 17 to which the feed dog 16 is fixed is rotationally attached to the feed bar 13, The feed bar 13 is in slide contact with a cam surface of the vertically moving earn 11, and the sub feed bar 17 is in slide contact with a cam surface of the sub vertically moving cam 12. The vertically moving cam 11 and the sub vertically moving cam 12 each include a plurality of earn surfaces that have different largest cam diameters and are moved by being integrally slid in the axial direction with respect to the lower shaft 3 with a stepping motor 18 for adjusting the height of the feed dog. With the above, the feed bar 13 and the sub feed bar 17 are capable of selectively coming into sliding contact with one of the plurality of cam surfaces of the vertically moving cam and one of the plurality of cam surfaces of the sub vertically moving cam, respectively.
(21) In the forked link 14, a square piece 20 is pivotally supported, and the square piece 20 is engaged to a groove 22 of a horizontal feed adjuster 21. The horizontal feed adjuster 21 is rotatably supported by the sewing machine frame and is rotationally driven by a stepping motor 23 for the horizontal feed adjuster. The presser bar 26 to which the presser foot 25 is attached to the lower end is provided so as to be capable of sliding vertically with respect to the sewing machine frame and is driven vertically with a stepping motor 27 for driving the presser bar while having the spring 28 in between. A slit plate 30a is installed and fixed to the presser bar 26 and constitute a height detection sensor 30, which detects the height of the presser bar 26, together with a transmission optical sensor 30b fixed to the sewing machine frame.
(22)
(23) As illustrated in
(24) As illustrated in
(25) As illustrated in
(26) A flange portion 49 is provided in the portion near the center of the cam body D in the axial direction, and the flange portion 49 is engaged with a slide lever 50 that is driven by the stepping motor 18 for adjusting the height of the feed dog. Note that while in the present exemplary embodiment, the vertically moving cam 11 and the sub vertically moving cam 12 are integrally formed with the cam body D, the vertically moving cam 11 and the sub vertically moving cam 12 do not necessarily have to be formed integrally as above as long as both cams are driven in a coordinated manner allowing the plurality of cam surfaces to be selectively switched. Furthermore, each of the vertically moving cam 11 and the sub vertically moving cam 12 may be formed of a single cam surface.
(27)
(28) One end of the presser lever 53 is pivotally supported to the sewing machine frame with a pin 59 and extends in a lateral direction that is substantially orthogonal to the axis of the presser bar 26, and a ring portion 60 that, is fitted around the presser bar 26 in a slidable manner in the vertical direction is formed at the other end of the presser lever 53. An upper surface of the ring portion 60 is capable of engaging with a raising flange 61 that is fixed to the presser bar 26, and an underside of the ring portion 60 is capable of engaging with an upper surface of a washer 62 that, is capable of sliding on the presser bar 26 and that abuts against an upper end of the spring 28. A presser bar guide bracket 65 that includes a bearing surface that abuts against a lower end of the spring 28 and that extends outward in an arm-like shape having the slit plate 30a at the distal end is fixed to a portion near the middle of the presser bar 26.
(29) As illustrated in
(30) Various operations, functions, and messages that are required for the sewing work are displayed on the touch panel 70 provided in the pillar portion 200 of the sewing machine body, and as illustrated in
(31) Use modes and effects of the present embodiment will be described next. The feed dog 16 that is fixed to the sub feed bar 17 having a rotation center in the feed bar 13 is moved in the horizontal direction by swinging and rotation of the bearing 6 for the feed rock shaft and is moved in the vertical direction by rotations of the vertically moving cam 11 and the sub vertically moving cam 12. As described subsequently, the horizontal motion and the vertical motion both occur by interlocking to the rotation of the lower shaft 3. The feed dog 16 moves in a substantially elliptical manner while protruding and retracting with respect to the upper surface of the needle plate 9 and transfers the fabric SSI in the sewing direction.
(32) As illustrated in
(33) As illustrated in
(34) In the present exemplary embodiment, when the feed bar plate 42 is in contact with the portion near the largest cam diameter portion of the vertically moving cam 11, the feed bar 13 is substantially horizontal (see
(35) The reason why the inclination of the feed dog 16 does not change even if the inclination of the feed bar 13 changes is that the vertical motion of the pin 38 serving as the rotation center of the sub feed bar 17 provided on the feed bar 13 and the vertical motion of the sub feed bar 17 are in quantity and in phase, coincident. In other words, both of the cam surfaces are formed so that, when the cam body D rotates, the amount and the phase of the vertical motion of the pin 38 owing to the cam surface 11a, 11b, or 11c of the vertically moving cam 11 and the amount and the phase of the vertical motion of the contact between the cam surface 12a, 12b, or 12c of the sub vertically moving cam 12 and the lower end of the sub feed bar plate 44 coincide each other. As described above, with the coordination between the vertically moving cam 11 and the sub vertically moving cam 12, even if the inclination of the feed bar 13 changes, the inclination of the sub feed bar 17 on which the feed dog 16 is disposed do not change; accordingly, the predetermined inclination of the feed dog 16 can be maintained.
(36) Operation of adjusting the inclination of the feed dog 16 of the present embodiment will be described next with reference to the drawings. To adjust the inclination of the feed dog 16, the feed rock shaft 4 is vertically moved by rotating the eccentric shafts 4a that each have a rotation center that is eccentric with respect to the center of the feed rock shaft 4. As illustrated in
(37) On the other hand, in order to incline the feed dog 16 upward toward the front, as illustrated in
(38) The display of the touch panel 70 illustrated in
(39) When the operator selects the FABRIC TYPE SELECTION key (S3: YES) and determines that the sewn fabric N is included in a group of fabric types that, have a high degree of stretchability or that easily shrinks by sewing and selects a HIGH DEGREE OF STRETCHABILITY key (S4: YES), the controller 80 starts a program that inclines the feed dog 16 downward toward the front (S5) and drives the stepping motor 5 for adjusting the inclination of the feed dog so that the feed dog 16, which is normally set horizontally, is oriented downward toward the front. When the operator determines that the sewn fabric N is included in a group of fabric that has a low degree of stretchability and selects a LOW DEGREE OF STRETCHABILITY key (S6: YES), the controller 80 starts a program that inclines the feed dog 16 upward toward the front (S7) and drives the stepping motor 5 for adjusting the inclination of the feed dog so that the feed dog 16 is oriented upward toward the front. When neither of the HIGH DEGREE OF STRETCHABILITY key nor the LOW DEGREE OF STRETCHABILITY key is selected (S6: NO), the inclination of the feed dog 16 is adjusted so as to be kept horizontal.
(40) In a case in which the spring constant of the fabric N is acquired in step 2 (S2), and when the acquired spring constant exceeds an upper limit threshold of a predetermined range (S9: YES), a program that sets the inclination of the feed dog 16, which is normally set horizontal, downward toward the front is started (S5), and the stepping motor 5 for adjusting the inclination of the feed dog is driven so that the feed dog 16 is oriented downward toward the front. When the spring constant is under an upper limit threshold of the predetermined range (S10: YES), a program that sets the inclination of the feed dog 16 upward toward the front is started (S7), and the stepping motor 5 for adjusting the inclination of the feed dog is driven so that the feed dog 16 is oriented upward toward the front. When the spring constant is within the predetermined range (S10: NO), the inclination of the feed dog 16 is adjusted so as to be kept horizontal.
(41) Referring to
(42) In the above case, the following relational expression holds true between a descended amount do(t) of the presser lever 53, the descended amount dc(t) of the pressor bar 26, and the compressed amount ds(t) of the spring 28.
do(t)=ds(t)+dc(t) (1)
(43) Furthermore, the relationship between the thickness (the height of the presser foot 25) D(t) of the compressed fabric N and the repulsive force F(t) of the fabric N can be expressed by the following relational expression (2), and when the spring constant of the spring 28 is ks, the relational expression can be deformed into relational expressions (3) and (4). Sign A is a constant.
D(t)=LoAF(t) (2)
D(t)=LoA{ksds(t)}(3)
D(t)=LoA[ks{do(t)dc(t)}](4)
(44)
(45) As described above, since the repulsive force of the compressed fabric N and the load on the spring 28 are F(t) and are equivalent, when the timing at which the presser foot 25 comes into contact with the fabric N is tp and the spring constant of the fabric N is kc, the following relational expression holds true.
ks{do(tp+t)dc(tp+t)}=kc{dc(tp+t)dc(tp)}(5)
Since the descended amount dc(tp) of the presser bar 26 at the timing tp can be calculated from Lo that has been calculated earlier, by measuring the descended amount do(tp +t) of the presser lever 53 and the descended amount dc(tp +t) of the presser bar 26 at a predetermined timing (tp+t), the spring constant kc of the spring constant kc of the fabric N can be calculated. Note that the above description is an example of the method for acquiring the spring constant of the fabric N and the present disclosure is not limited to the above method.
(46) An operation of changing the height of the feed dog 16 according to the thickness of the fabric N will be described next with reference to the drawings. In the present exemplary embodiment, in order to enable the height of the feed dog 16 to be changed according to the thickness of the sewn fabric N, a plurality of cam surfaces (11a, 11b, and 11c), (12a, 12b, and 12c) that have different largest cam diameters are provided in the vertically moving cam 11 and the sub vertically moving cam 12, respectively, and by sliding the cam body D in the axial direction with respect to the lower shaft 3, a pair of cam surfaces that correspond to each other and that support the feed bar 13 and the sub feed bar 17 can be selected from the plurality of cam surfaces (11a, 11b, and 11c), (12a, 12b, and 12c) of both cams.
(47) As illustrated in
(48) The height of the feed dog 16 can be adjusted by the user operating the touch panel 70; however, in the present exemplary embodiment, the height of the feed dog 16 can be adjusted by the controller 80 automatically determining an appropriate feed dog height on the basis of the measurement result of the height detection sensor 30 and driving the stepping motor 18 for adjusting the height of the feed dog. As illustrated in
(49) The descended amount of the presser bar 26 is calculated by, after the presser bar 26 is descended, integrating the number of slits detected from when a slit 66 of the slit plate 30a is first detected by the transmission optical sensor 30b illustrated in
(50) As illustrated in
(51) When the thickness data exceeds the threshold of a piece of lightweight fabric N is under a threshold of a piece of heavyweight fabric (S24: NO), as illustrated in
(52) Is it is apparent from the configuration of the sub feed bar 17 having a rotation center in the feed bar 13 and the configuration of the sub vertically moving cam 12 that vertically swings the sub feed bar 17, the operation and the control of adjusting the inclination of the feed dog 16 of the present exemplary embodiment and the operation and the control of adjusting the height of the feed dog 16 can be performed individually. In other words, as described above, each of the plurality of cam surfaces (11a, 11b, and 11c) of the vertically moving cam 11 and the corresponding one of the plurality of cam surfaces (12a, 12b, and 12c) of the sub vertically moving cam 12 are formed so that, even if the feed bar 13 changes its inclination by being swung vertically with the pins 35 serving as the support points, the inclination of the sub feed bar 17 on which the feed dog 16 is disposed do not change; accordingly, as illustrated in
(53) Furthermore, as illustrated in
(54) Moreover, in the present exemplary embodiment, by mere operation of the touch panel 70 by the operator, data related to the thickness, type, and stretchability of the sewn fabric can be acquired and the inclination and height of the feed dog 16 can be adjusted automatically by driving the stepping motors 5 and 18 for adjustment; accordingly, a sewing machine including the feed dog adjustment device that is extremely easy to use can be provided,
(55) The feed dog adjustment device and the sewing machine including the adjustment device of the present disclosure are capable of automatically adjusting the inclination of the feed dog to a state appropriate for the sewn fabric, can be widely used for household sewing machines and industrial sewing machines, and are easy to use.