CA1133325A - Apparatus for attaching slide fastener elements to fabric - Google Patents

Apparatus for attaching slide fastener elements to fabric

Info

Publication number
CA1133325A
CA1133325A CA352,970A CA352970A CA1133325A CA 1133325 A CA1133325 A CA 1133325A CA 352970 A CA352970 A CA 352970A CA 1133325 A CA1133325 A CA 1133325A
Authority
CA
Canada
Prior art keywords
blade
feed
base member
cutter blade
sewing
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired
Application number
CA352,970A
Other languages
French (fr)
Inventor
Henry J. Gauthier
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Scovill Inc
Original Assignee
Scovill Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Scovill Inc filed Critical Scovill Inc
Application granted granted Critical
Publication of CA1133325A publication Critical patent/CA1133325A/en
Expired legal-status Critical Current

Links

Classifications

    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05BSEWING
    • D05B3/00Sewing apparatus or machines with mechanism for lateral movement of the needle or the work or both for making ornamental pattern seams, for sewing buttonholes, for reinforcing openings, or for fastening articles, e.g. buttons, by sewing
    • D05B3/12Sewing apparatus or machines with mechanism for lateral movement of the needle or the work or both for making ornamental pattern seams, for sewing buttonholes, for reinforcing openings, or for fastening articles, e.g. buttons, by sewing for fastening articles by sewing
    • D05B3/18Sewing apparatus or machines with mechanism for lateral movement of the needle or the work or both for making ornamental pattern seams, for sewing buttonholes, for reinforcing openings, or for fastening articles, e.g. buttons, by sewing for fastening articles by sewing hooks or eyelets
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05DINDEXING SCHEME ASSOCIATED WITH SUBCLASSES D05B AND D05C, RELATING TO SEWING, EMBROIDERING AND TUFTING
    • D05D2207/00Use of special elements
    • D05D2207/02Pneumatic or hydraulic devices
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05DINDEXING SCHEME ASSOCIATED WITH SUBCLASSES D05B AND D05C, RELATING TO SEWING, EMBROIDERING AND TUFTING
    • D05D2305/00Operations on the work before or after sewing
    • D05D2305/08Cutting the workpiece
    • D05D2305/12Cutting the workpiece transversally

Abstract

Abstract:

Apparatus is disclosed for feeding and cutting off slide fastener ladder as it is sewn directly to fabric, which in-cludes a pair of parallel blades one of which, the feed or indexing blade, is loosely mounted and biased downwardly, and the other of which, the cutter blade, is rigidly mounted so that when the assembly is depressed downwardly to its ful-lest extent, the feed blade yields and cutter blade severs the ladder. A cam arrangement is provided to drive the as-sembly in a rectangular path to engage the ladder element-by-element, pulling it through the sewing station, and an override is provided to momentarily stop the back-and-forth movement of the assembly, at which time a depressor urges the assembly downwardly to accomplish the aforesaid sever-ing action.

Description

11;~332S

This invention relates to an apparatus for feeding a ladder of slide fastener el~ments past the needle of a sewing machine in timed sequence with a reciprocating needle of the sewing machine to permit the direct attachment of the slide fastener elements to the fabric of a garment.
In particular, the invention relates to apparatus of the type including a reciprocable blade which is engageable between adjacent fastener elements of a line of such fastener elements constituting the ladder and a linkage driven by the sewing machine for reciprocating the blade in a continuous path to index the fastener elements through the sewing machine simultaneously with and in timed se~uence with reciprocation of the needle.
In a prior app æ atus of this type it has been proposed that the reciprocable indexin~ blade also perform the function of a cutter, which can be selectively actuated to sever connecting cords of the ladder of fastener elements on the completion of the sewing of a selected number of elements to the fabric.
While not limited thereto, the invention of the present application finds particul æ application in the sewing to fabric of a slide fastener of the type disclosed in U.S. Patent 3,414,948, that slide fastener comprising two ladders of interfitting fastener elements of generally U-shaped configuration, which æ e held in uniform spaced relation by a pair of connecting cords buried respectively in the ends of the two legs.
It is an object of the present invention to provide an improved apparatus of the type referred to above and which is capable of operation at high speeds over p~otracted periods of time.
According to the present invention, there is provided an apparatus for sewing a ladder of slide fastener elements directly to the fabric of a garment or th~e like, the ladder comprising plastic U-shaped fastener elements 33~S

each comprising a pair of legs and a central bight! the elements being connected and held in spaced relation by a plurality of oonnecting cords at least one of which is embedded in each of the legs of the successive elements, the apparatus comprising (a) a sewing machine having a vertically reciprocating needle adapted to engage work at a sewing station and a wDrk-supporting platform above which a needle reciprocates; (b) a pressing foot adapted to guide and present the fabric and the ladder in the desired relation to the needle at the sewing station; (c) a feed blade and cutter blade assembly including a feed blade and a cutter blade, a base member and means attaching the cutter blade rigidly thereto adjacent the pressing f.oot and means attaching the feed blade resiliently to the base memker and generally aligned with and parallel to the cutter blade; (d) drive means for driving the feed blade and cutter blade and a portion of the base mem~er there adjacent in an up-and-down and back-and-forth rectangular pattern of motion so that the feed blade engages successive fastener elements and moves the ladder step-by-step fashion to the sewing station; and (el means for momentarily restricting the back-and-~orth mcvement of the base member thereby terminating the feed, and for depressing the base member adjacent the blades below the usual lower limit of up-and-down travel so that the feed blade yields as it engages the connecting cords but the cutt~r blade moves downward and severs the connecting cords.

The following is a description by way of example of an embcdiment of the present invention, reference being had to the accompanying drawings in which:

~1333~5 Figure LA is an enlarged view transverse of a line of fastener elements with which the invention is adapted to be used;
Figure 1 is a perspective view of an apparatus embodying the invention attached to a conventional sewing machine, Figure 2 is a sectional view taken on the line 2-2 of Figure l;
Figure 3 is a sectional view taken on the line 3-3 of Figure 2;
Figure 4 is a rear view of the apparatus with a cylinder and an upper part of an end plate of the apparatus broken away to save drawing spa oe;
Figure 5 is a greatly enlarged front view of the sewing station of the machine;
Figure 6 is a sectional view taken on the line 6-6 of Figure 5;
Figure 7 is a greatly enlarged sectional view taken on the line 7-7 of Figure 15;
Figure 8 is an enlarged fragmentary sectional view taken on the line 8-8 of Figure 4 with a portion of a feed and cutter assembly and a presser foot shown broken away to show interior constructic,n;
Figure 8a is a front view of Figure 8 showing feed and cutter blades of the feed and cutter assembly elevated above the fastener elements;
Figure 9 is a view similar to Figure 8 but showing the feed and cutter assembly with its front end downward to engage fastener elements in the line;
Figure 9a is a view similar to Figure 8a but showing the feed blade engaging the line of fastener elements. The left portion of the feed blade is shown broken away to shcw the cutting blade;
Figure 10 is comparable to Figures 8 and 9 but shows the feed and cutting assembly drawn rearward to the end of its ~133325 stroke and a depressor bar pushing the front end of the feed and cutter assembly downward for the cutter blade to sever the connecting cords of the line of fastener elements;
Fig. lOa is comparable to Fig. 9a but shows the cutter blade actually cutting the connecting cords;
Fig. 11 is a greatly enlarged view of the encircled portion of Fig. 9 showing the feed blade engaged between adjacent fastener elements in a line of fastener elements;
Fig. 12 is an enlarged sectional view taken on the line 12-12 of Fig. 2;
Fig. 13 is a greatly enlarged fragmentary sectional view taken on the line 13-13 of Fig. 2;
Fig. 14 is an enlarged fragmentary sectional view taken on the line 14-14 of Fig. 2;
Fig. 15 is an enlarged sectional view taken on the line 15-15 of Fig. 2;
Fig. 16 is a sectional view taken on the line 16-16 of Fig. 2;
Fig. 17 is an enlarged fragmentary exploded view in per-spective of the front end of the feed and cutter assembly;
Fig. 18 is a sectional view taken on the line 18-18 of Fig. 6; and Fig. 19 is a perspective view of the sewing foot with the feed and cutter assembly and mounting block removed.

To assist in understanding the apparatus of the invention, the structure of the fastener elements with which the appara-tus of the invention is useful will first be explained. The slide fastener involved comprises two ladders or lines of interfitting fastener elements, a representative element of which is designated generally E in Fig. A. It comprises legs L joined by a central bight B having an enlarged head H.
The outer portions of the legs are formed with notches for reasons which will appear. The individual elements are held in uniform spaced relation by a pair of connect-ing cords C buried respectively in the ends of the legs.

1~3;~;~S

An apparatus embodying the invention is generally desiynated 10 in Fig. 1, and is shown attached to a conventional in-dustrial sewing machine 12 having needles 14 at the lower end of needle bars (not shown). A bed or support platform 18 is provided, under which are disposed the conventional mechanism including the bobbin assembly and means to inter-connect the bobbin and main threads and feed the fabric as the sewing progresses.

A special foot 20 is provided which holds down the fabric F
being worked on against -the bed or platform 18. S-trip feed tubes 21 supported by means not shown deliver strips to the foot.

An end plate 22 of the apparatus of the present invention replaces the conventional end plate of the sewing machine 12 and is secured as by bolts to the frame of the sewing machine. The end plate 22 has an upward projection 22a.
An end of a drive shaft 24 is journaled in the plate for ro-tation. The shaft 24 is driven by the motor of the sewingmachine so that its rotation is in timed relation to the reciprocation of the needles 14. The foot 20 is mounted on the lower end of a foot shaft 26 (Fig. 3), which is urged downwardly by an adjustable spring 27 and held for vertical reciprocation within the bearing 29 in conventional fashion.
It is operated by the sewing machine upon actuation of con-trols, not shown. It is shown in the down position in Fig.
2 but may rise on actuation to permit passage of the fabric without interference.
Referring more specifically to the foot 20, it comprises a mounting block 28 of inverted "T" shape (Fig. 5). The block 28 is vertically apertured to receive the bottom of the foot shaft 26 and a set screw 30 is provided to hold the two in proper relation. Secured by bolts to the oppo-site side of the outward flanges 32 of the block 28 is the . . , . ~

.

.

inverted channel block 34 which supports bottom plates 36, 37, 38. I'his structure provides an opening 39 which permits the passage of the head of a feed and cutter assem-bly 40 (Fig. 7).
As shown in Figs. 1, 18 and 19, the sides of the forward end of the channel element 34 are formed with tapered for-ward wings 34a and 34b. These wings help support the outer bottom plates or runners 36 and 3g (Figs. 5, 6 and 7). A
central bottom plate 37 as well as the outer plates are secured by bolts as shown to the inverted channel block 34.
The central portion 35 (Figs. 18 and 19) of the inverted channel block 34 extends forward, is raised as at 35a and is stepped downward to present a notch 42 (Fiy. 6) running trans-verse thereof.

As best shown in Figs. 6 and 19, the side bottom plates36 and 38 are spaced from the central bottom plate 37 to provide channels 44 and 46, respectively. As shown, the in-verted channel block 34 (Fig. 7~ is notched out at 48 and 50in line with the channels 44 and 46 for clearance purposes.
The channels 44 and 46 are each defined by a pair of offset flanges 52a and 52b and 54a and 54b, respectively, which en-gage in notches N (Fig. A) of the individual slide fastener - 25 element to help support them as they travel through the foot 20.

The lines of fasteners are additionally supported by a wire guide 60 (Figs. 5, 6) which is of generally "U" shape, hav-ing a central bight 60a with a bend 60b engaged by the headof a bolt 62 to hold it in the notch 42 on the channel block.
The guide at the ends of the bight turns downward as at 60c into the channels 44 and 46 and terminates in rearward runs 60d which are disposed between the flanges 52a and 52b, and 54a and 54b, respectively.

1~3~325 As the lines of slide fastener elemen~s move through the foot 20, the wire guide 60 serves to assure that the "U"-shaped elements are sufficiently spread and properly angled as they approach the sewing station (see X in Fig. 6). The rear ends of the run 60d provide a kind of ratchet effect to avoid any forward movement of the lines of fastener ele-ments as the feed and cutter assembly moves forward.

Referring more specifically to the feed and cutter assem-bly 40, its Eorward end includes a base plate 70 supported above the bottom of the central section or web of the in-verted channel block. To the rear end of the base plate 70 are secured a pair of vertically disposed side plates 72 (Fig. 8) held in spaced relation by a spacer element 74.
The forward ends of the side plates 72 are tapered, as shown in Fig. 8, where they are integral with the base plate 70.
A spring strip 76 overlies the base plate 70 and has its rearward end secured thereto by a bolt 78 (Fig. 7). Its forward end extends beyond the end of the plate 70.
The front end of plate 70 is provided with a pair of spaced pins 80, 82 (Figs. 6, 17) which extend forwardly as shown.
The pins are received into ample openings 84 in a flat inver-ted "U"-shaped cutter blade 86 having a downward "V"-shaped cutter 88 on either end thereof. Note central aperture 90.
A feed or indexing blade 92 is similarly flat and inverted "U"-shaped and is formed with a pair of downward-facing not-ches 94, the feed blade being thinned at both of its lower ends at 96 and shaped at the downward ends with cut-outs 98, each cut-out having a central tongue 100. Note central aper-ture 102.

A clamp pla-te 110, also of inverted "U" shape, is provided - with central opening 111 and apertures 112 (Fig. 17) which receive the ends of the pins 80, 82 after they pass through the openings 84, 94 in the cutter and feed blades. The plate 11~33~S

110 has a rearward spacer 113 about opening 111. A bolt 114 extends throuyh central openings 111, 102, and 90 and fits into a tapped opening 116 in the base plate 70 to hold the assembl~ together. Spacer 113 extends through the aper~
ture 102 in the feed blade 92 and tightly engages cutter blade 86 (Fig. 18). The spacer 113 is thicker than feed blade 92, and thus permits feed blade 92 to move vertically with respect to the spacer.

As best shown in Fig. 5, the feed blade 92 is urged downward-ly by the spring 76, and is normally positioned with the upper ends of the notches 94 abutting against the pins 80, 82.
The spring strip 76 yields upon upward force on the feed blade 92 to permit the feed blade, after bottoming on surface 35a (Fig. 10), to move upwardly with respect to the pins 80, 82. Cutter blade 86, as e~plained, is held rigidly with re-spect to the base plate 70.

As disclosed, the feed and cutter assembly 40 comprises the two elongate side plates 72 spaced by the spacing element 74. A pin 120 extends between the side plates 72 and is jour-naled in a collar 122 having a central opening and flat sides.

A support arm 124 (Fig. 8) is pivoted to the sewing machine end plate 22 by a pin 126 passing through a boss inter-mediate the ends of the arm 124. The lower end of the arm 124 is formed with an elongated slot 127 which receives the collar 122. A spring 128 presses the collar 122 downward.
The lower end of the slot 127 is formed with inward fingers 127a which provide stop means for the lower end of travel of the collar 122 in the slot 127.

The feed and cutter assembly 40 is thus supported, floating fashion, on the arm 124, the collar 122 being permitted sub-stantial vertical sliding movement in the slot 127. The up-per end of the arm 124 supports a follower wheel 130 rotat-ably mounted on a pin 132 carried by the arm 124. As shown 113;~3;2~

in Fig 13, the whee1 130 is spaced outwardly frorn plate 22.

The rearward end of the feed and cutter assembly 40 is provided with a pin 140 which extends between the spaced side plates 72. Intermediate these plates, the pin is re-ceived into an opening in a link 142, the upper end of which is pivotally attached by a pin 144 to a kind of walking beam 146 pivotally attached to the plate 22 by a bolt 148 rigidly mounted thereon. The other end of the beam carries a second follower wheel 150.

As disclosed, the shaft 24 rotates in a bearing mounted in the end plate 22. Inward of the plate, the shaft 24 (Fig.
13) has rigidly mounted thereon a first eccentric cam 160 which continuously engages the follower wheel 150 and as the shaft 24 rotates, causes the follower wheel 150 to move up and down. This in turn causes and oscillating movement of the walking beam 146, the motion of the rear end of which is communicated by the link 142 to the rearward end of the feed and cutter assembly 40. As the said rearward end moves up and down, the forward end carrying the feed and cutter blades moves down and up correspondingly (Fig. 8).

Inwardly of the cam 160, the shaft 24 loosely mounts an override cam 170 (Fig. 13) which is formed with a nose 170a.
The cam has an integral rearwardly extending arm 172 by which the override cam 170 can be rotated even while the shaft 24 itself is rotating. Further inward from the over-ride cam 170, the shaft 24 rigidly mounts a second eccen-tric cam 180. This cam engages the follower wheel 130 (Fig.13) and moves it forward and rearward (Fig. 2) which motion is reflected in a corresponding rearward and forward motion of the lower end of the arm 124. This motion produces cor-responding movements of the feed and cutter assembly 40.
Still further inward, the shaft 24 is supported by a bearing plate 186 which helps steady the shaft in its rotation. In-ward of the bearing plate 186, the shaft 24 is driven by means not shown.

11~33'~5 In operatioll, the continuous rotation of the shaft 24 re-sults in a movement of the forward end of the feed and cut-ter assembly 40 which yenerally follows a square or rectan-gular path proceediny in a counterclockwise sense in the Fig. 2 view. It will, incidentally, be noted -that the up-per portion of the arm 124 is biased rightwardly (Fig. 8) by a spring unit 190 and that the rear end of the walking beam 146 is biased downwardly by a spring unit 192 to insure continued engagement of the followers with the respective cams at all times.

The result of the rectangular movement of the front end of the feed and cutter assembly 40 can best be understood by referring to Fig. 11. The working end 96 of the feed ele-ment 92 will, as the motion of the assembly is achieved,repeatedly engage between successive adjacent pairs of fast-ener elements E and move them rightwardly one element's pitch.
The result is that one complete turn of the shaft 24 results in the rightward stepping of the line of slide fastener ele-ments by the pitch of one element. As this movement is re-peated again and again, the lines of slide fastener elements are moved together through the sewing foot and the lines are held in such a position in the channels 44 and 46 by the defining flanges 52a, 52b and 54a, 54b as well as the wire element 60, that the needles 14 (Fig. 1) in their nor-mal stroking sew each successive element to the fabric F.

As well shown in Fig. 2, a cylinder piston unit 200 has its upper end pivotally attached by a pin 202 to the upper end 22a of the plate 22. A downward piston shaft from the unit 200 is attached to a clevis 204 which carries a pin 206.
The pin 206 engages a link 208 intermediate the ends thereof.
The forward end of the link 208 is attached to a collar 210 on the upper end of the presser foot shaft 26. A cutter ele-ment depressor bar 220 is mounted in the plate 22 and extendsdownward to adjacent the base plate 70. As shown in Fig.
2, towards its left end the link 208 is slotted longitudi-nally as at 212. A transverse pin 214 mounted rigidly on the depressor bar 220 is disposed in the slot 212. Piv-otally attached to the rear end of the link 208 is a second link 230 as by a pin 232. The lower end of the link 230 is pivotally attached as by a pin 234 to the arm 172 of the override cam 170.

As shown in Figs. 9 and 10, the lowering of the arm 172 causes the nose 170a to engage the follower 130 to over-ride the cam 180 (Fig. 13) and spring unit 190 to cause the follower 130 to move leftwardly irrespective of the posi-tion of cam 180. This, of course, causes the full retraction or rightward movement (Fig. 2) of the feed and cutter assem-bly 40.

In operation, the lowering of the arm 172, as shown in Figs.
8, 9 and 10, is accomplished by the lowering of the clevis 204 (Fig. 2) by the piston cylinder assembly 200 actuated by means not shown. The lowering of the clevis 204, of course, lowers the rightward end of the link 208. Simultaneously, the lowering of link 208 through the pin 214 causes`the de-pressing of the depressor bar 220. This causes the engage-ment of the lower pointed end of the depressor bar 220 with the bed plate 70 (compare Figs. 9 and 10). It is seen that doing this during this time, becaùse of the override nose 170a engaging the follower 130, the feed and cutter assembly 40 is immobilized from horizontal reciprocation even though the needles 14 and feed means 17 of the sewing machine may continue to operate.

The depressing of the bed plate 70 by bar 220 moves the front end of the assembly 40 down. Because as they lower, the ends 96 of the feed blade 92 engage the connecting threads C. The further lowering of the front end of the as-sembly 40 causes feed blade 92 to bottom out on surface 35a (Fig. 10) and slide up on pins 80, 82, thus forcing spring plate 76 to yield. As the front end goes lower, the cutter blade 86 cuts the cords C between two elements.

1~3~325 It should he notecl that even with the~depressor bar 220 down, foo~ 20 and the forward end of the eeed and cuttex assembly 40 may be raised as the collar 210 and forward end of link 208 raise with the foot and the spring 1~ (Fig. 2) compresses.

It should be clear that the control of the apparatus of the invention may be by means of a suitable solid state device.
Such devices can be selectively programmed to control the length of the zipper, length of pre-zipper and post-zipp~r anchoring stitches, etc.

The apparatus of the invention produces a reliable means to I attach slide fastener strips directly to the fabric of a garment or the like. I-t is important to understand that there is substantial demand for such means.

Claims (14)

THE EMBODIMENTS OF THE INVENTION IN WHICH AN EXCLUSIVE
PROPERTY OR PRIVILEGE IS CLAIMED ARE DEFINED AS FOLLOWS:
1. An apparatus for sewing a ladder of slide fastener elements directly to the fabric of a garment or the like, the ladder comprising plastic U-shaped fastener elements each comprising a pair of legs and a central bight, the elements being connected and held in spaced relation by a plurality of connecting cords at least one of which is embedded in each of the legs of the successive elements, the apparatus comprising (a) a sewing machine having a vertically reciprocating needle adapted to engage work at a sewing station and a work-supporting platform above which a needle reciprocates;
(b) a pressing foot adapted to guide and present the fabric and the ladder in the desired relation to the needle at the sewing station;
(c) a feed blade and cutter blade assembly including a feed blade and a cutter blade, a base member and means attaching the cutter blade rigidly thereto adjacent the pressing foot and means attaching the feed blade resilient-ly to the base member and generally aligned with and parallel to the cutter blade;
(d) drive means for driving the feed blade and cutter blade and a portion of the base member there adjacent in an up-and-down and back-and-forth rectangular pattern of motion so that the feed blade engages successive fastener elements and moves the ladder step-by-step fashion to the sewing station; and (e) means for momentarily restricting the back-and-forth movement of the base member thereby terminating the feed, and for depressing the base member adjacent the blades below the usual lower limit of up-and-down travel so that the feed blade yields as it engages the connecting cords but the cutter blade moves downward and severs the connecting cords.
2. An apparatus as claimed in Claim 1 wherein the drive means comprises a pair of followers associated with the base member, one of the followers controlling the back-and-forth movement, the other controlling the up-and-down movement, and cam means are provided and driven in timed relation to the sewing machine.
3. An apparatus as claimed in Claim 2 wherein the means for momentar-ily restricting the back-and-forth movement of the base member comprises override means adapted to override the action of the cam means against the follower controlling the back-and forth movement.
4. An apparatus as claimed in Claim 3 wherein the override means and the depressor means are driven simultaneously be pneumatic means.
5. An apparatus as claimed in Claim 3 wherein the override means is a lever pivotally mounted on the cam shaft and adapted when in the override position to move the said one follower away from the cam means.
6. An apparatus as claimed in Claim 1 wherein the feed blade and cutter blade are parallel and mounted on pins extending forward from the base member, the feed member receiving the pins through ample openings and a spring member extends from the top of the base member to urge down the feed blade on its mounting on the pins but yielding to permit upward movement of the feed blade on the pins when the feed blade is urged up with respect to the base member.
7. An apparatus as claimed in Claim 1 wherein the pressing foot includes track means adapted to engage the opposite sides of the fastener elements, and wire means to engage the U-shaped element from the inside.
8. An apparatus for sewing a ladder of slide fastener elements directly to the fabric of a garment or the like, the ladder comprising plastic U-shaped fastener elements each comprising a pair of legs and a central bight, the elements being connected and held in spaced relation by a pair of connecting cords embedded respectively in the legs of the successive elements, the apparatus comprising:
(a) a sewing machine having a vertically reciprocating needle adapted to engage work at a sewing station and a work-supporting platform above which a needle reciprocates;
(b) a pressing foot adapted to guide and present the fabric and the ladder in the desired relation to the needle at the sewing station; the pressing foot having an opening therethrough extending in a direction parallel to the sewing line;
(c) a feed and cutter assembly adapted to move the ladder to the sewing station and cut the ladder when desired and comprising a feed blade and a cutter blade and a generally horizontal elongate element having a forward end extending through the opening and mounting the feed blade and the cutter blade on the front end thereof, the cutter blade being rigidly mounted and the feed blade being resiliently mounted, the blades both being downwardly directed, spaced and parallel;
(d) a pair of arms pivotally attached to the sewing machine and supporting the elongate element, the arms each having a cam follower associated therewith, the first arm and associated first follower adapted to m we the elongate element in a back-and-forth movement and the second arm and associated second follower adapted to m we the front end of the elongate element in an up-and-down motion;
(e) rotary cam means driven in timed relation to the sewing machine and adapted to be engaged by the two followers to produce the aforementioned movements.
9. An apparatus as claimed in Claim 8 including means to override the cam means with respect to the first follower to still the back-and-forth movement of the elongate element.
10. An apparatus as claimed in Claim 9 including additional means to depress the forward end of the elongate element whereby the cutter blade severs the connecting cords.
11. An apparatus as claimed in Claim 10 wherein the override means and the depressor means are operated together by a single movement source.
12. An apparatus as claimed in Claim 11 whereby the movement source is a pneumatic cylinder.
13. An apparatus for sewing a line of slide fastener elements directly to the fabric of a garment or the like, the line comprising a plurality of individual plastic fastener elements each comprising a body having a head, the elements being connected and held in spaced relation by a plurality of connecting cords running the length of the line and each being embedded in the successive elements at points remote from the heads thereof, the apparatus comprising:
(a) a sewing machine having a vertically reciprocating needle adapted to engage work at a sewing station and a work-supporting platform above which the needle reciprocates;
(b) a pressing foot adapted to guide and present the fabric and the line in the desired relation to the needle at the sewing station, (c) a feed blade assembly including a feed blade, a base member and means attaching the feed blade to the base member;
(d) drive means for driving the feed blade and a portion of the base member thereadjacent in an up-and-down and back-and-forth repetitive pattern of motion so that the feed blade engages successive fastener elements and moves the line step-by-step fashion to the sewing station;

(e) d cutter blade spaced from the feed blade and supported above the connector threads for up-and-down reciprocation;
(f) means for causing the cutter blade to move down toward the platform at a selected time so that the cutter blade severs the connecting cords; and (g) means for interrupting the pattern of motion of the base member at the selected time so that the line is not moving at the time that the cutter blade moves down.
14. An apparatus for sewing a line of slide fastener elements directly to the fabric of a garment or the like, the line comprising plastic fastener elements each comprising a body having a head, the elements being connected and held in spaced relation by a plurality of connecting cords running the length of the line and each cord being embedded in the successive elements at points remote from the heads thereof, the apparatus comprising:
(a) a sewing machine having a vertically reciprocating needle adapted to engage work at a sewing station and a work-supporting platform above which the needle reciprocates;
(b) a pressing foot adapted to guide and present the fabric and the line in the desired relation to the needle at the sewing station;
(c) a feed blade and cutter blade assembly including a base member and means attaching the cutter blade rigidly thereto adjacent but independent of the pressing foot and means attaching the feed blade resiliently to the base member and generally aligned with and parallel to the cutter blade;

(d) drive and support means for driving the feed blade and cutter blade and a portion of the base member thereadjacent in an up-and-down and back-and-forth repetitive pattern of motion so that the feed blade engages successivefastener elements and moves the line step-by-step fashion to the sewing station; and (e) means for momentarily restricting the back-and-forth movement of the base member adjacent the blade thereby terminating the feed, and for depressing the base member adjacent the blades below the usual lower limit of up-and-down travel so that the feed blade yields as it engages the connector cords but the cutter blade moves downward and severs the connecting cords.
CA352,970A 1979-05-29 1980-05-29 Apparatus for attaching slide fastener elements to fabric Expired CA1133325A (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US4344379A 1979-05-29 1979-05-29
US043,443 1979-05-29

Publications (1)

Publication Number Publication Date
CA1133325A true CA1133325A (en) 1982-10-12

Family

ID=21927200

Family Applications (1)

Application Number Title Priority Date Filing Date
CA352,970A Expired CA1133325A (en) 1979-05-29 1980-05-29 Apparatus for attaching slide fastener elements to fabric

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JP (1) JPS5627203A (en)
AU (1) AU533393B2 (en)
BE (1) BE883542A (en)
BR (1) BR8003366A (en)
CA (1) CA1133325A (en)
CH (1) CH648458A5 (en)
DE (1) DE3020476A1 (en)
DK (1) DK230080A (en)
ES (1) ES8101374A1 (en)
FR (1) FR2457647A1 (en)
GB (1) GB2052579B (en)
IT (1) IT1149966B (en)
NL (1) NL8003072A (en)
NO (1) NO150382C (en)
NZ (1) NZ193859A (en)
SE (1) SE434854B (en)
ZA (1) ZA803017B (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ES2032013T3 (en) * 1987-04-22 1993-01-01 Yoshida Kogyo Co., Ltd. METHOD AND APPARATUS FOR FEEDING THE ZIPPER CLOSURE CHAIN WITH PANT BANDS.

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3244129A (en) * 1959-07-14 1966-04-05 Wahl Brothers Attaching apparatus for slide fastener elements
US3755879A (en) * 1972-06-05 1973-09-04 Scovill Manufacturing Co Slide fastener manufacture
CA1071029A (en) * 1977-03-17 1980-02-05 Jonathan A. Foults Apparatus for affixing slide fastener elements to fabric

Also Published As

Publication number Publication date
FR2457647B1 (en) 1985-04-12
GB2052579A (en) 1981-01-28
NO150382C (en) 1984-10-10
BE883542A (en) 1980-09-15
FR2457647A1 (en) 1980-12-26
BR8003366A (en) 1980-12-30
NO801594L (en) 1980-12-01
IT1149966B (en) 1986-12-10
NZ193859A (en) 1983-07-29
IT8022389A0 (en) 1980-05-29
AU533393B2 (en) 1983-11-24
ES492270A0 (en) 1980-12-16
SE434854B (en) 1984-08-20
DK230080A (en) 1980-11-30
CH648458A5 (en) 1985-03-29
AU5882480A (en) 1980-12-04
NO150382B (en) 1984-07-02
ZA803017B (en) 1981-05-27
ES8101374A1 (en) 1980-12-16
DE3020476A1 (en) 1980-12-11
GB2052579B (en) 1983-01-19
JPS5627203A (en) 1981-03-17
SE8003977L (en) 1980-11-30
NL8003072A (en) 1980-12-02

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