AU670550B2 - Fastening tools and tape therefor - Google Patents

Fastening tools and tape therefor Download PDF

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Publication number
AU670550B2
AU670550B2 AU29357/92A AU2935792A AU670550B2 AU 670550 B2 AU670550 B2 AU 670550B2 AU 29357/92 A AU29357/92 A AU 29357/92A AU 2935792 A AU2935792 A AU 2935792A AU 670550 B2 AU670550 B2 AU 670550B2
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AU
Australia
Prior art keywords
carrier tape
punch
fastener
fasteners
head
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AU29357/92A
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AU2935792A (en
Inventor
Stuart Edmund Blacket
Ralph Fuhrmeister
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Atlas Copco IAS UK Ltd
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Henrob Ltd
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Priority to AU29357/92A priority Critical patent/AU670550B2/en
Priority claimed from PCT/AU1992/000621 external-priority patent/WO1993009918A1/en
Publication of AU2935792A publication Critical patent/AU2935792A/en
Application granted granted Critical
Publication of AU670550B2 publication Critical patent/AU670550B2/en
Anticipated expiration legal-status Critical
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Description

OPI DATE 10)6/ AOJP DATE 19/08/93 APPLN. ID 29357/92 PCT NUMBER PCT/AU92/00621 III III11111111 11111 111 IIl AU9229357 I.I. -11 i r JlI uuaiTLoncEU NLrlct. I nr I 1A I IN L.UUPtKA I 1UN KRA IY (PCT) (51) International Patent Classification 5 International Publication Number: WO 93/09918 3/00, B21J 15/26, 15/32 Al (43) International Publication Date: 27 May 1993 (27.05.93) (21) International Application Number: PCT/AU92/00621 (22) International Filing Date: 20 November 1992 (20.11.92) Priority data: PK 9602 PL 0879 PL 3092 20 November 1991 (20.11.91) AU 13 February 1992 (13.02.92) AU 22 June 1992 (22.06.92) AU (74) Agent: GRANT ADAMS COMPANY; 9th Floor, National Mutual Centre, 144 Edward Street, (GPO Box 1413), Brisbane, QLD 4000 (AU).
(81) Designated States: AT, AU, BB, BG, BR, CA, CH, CS, DE, DK, ES, FI, GB, HU, JP, KP, KR, LK, LU, MG, MN, MW, NL, NO, PL, RO, RU, SD, SE, US, European patent (AT, BE, CH, DE, DK, ES, FR, GB, GR, IE, IT, LU, MC, NL, SE), OAPI patent (BF, BJ, CF, CG, CI, CM, GA, GN, ML, MR, SN, TD, TG).
Published With international search report.
Y lJ *'J (71) Applicant (for all designated States except US): HENROB LTD. [GB/GB]; Unit 12, Aber Park, Flint, Clwyd CH6 SEX (GB).
(72) Inventors; and Inventors/Applicants (for US only) BLACKET, Stuart, Edmund [AU/AU]; 18 Beaufort Street, Alderley, QLD 4051 FUHRMEISTER, Ralph [AU/AU]; 14 Jandowae Street, Runcor, QLD 4113 (AU).
(54) Title: FASTENING TOOLS AND TAPE THEPEFOR (57) Abstract A fastening machine for rivets) has a fastening head 21(25) where the fasteners (30) are brought into alignment with th, punch (22) and die in a carrier tape The carrier tape (10) has a web (11) with slots (15, 16) or teeth engageable by a sprocket 2207) wheel (27) which sequentially advances the fasteners (30) until the stems (31) engage a retractable stop When the punch A22 (22) is advanced, the fasteners (30) are pushed through the carrier tape (10) to be deformed by an upsetting die aligned with the lo punch In modified embodiments, the fasteners (30) are 2 urged transversely from the web of the carrier tape, the carrier tape being advanced by a gear which engages teeth on a side flange on the carrier tape. The sprocket wheel (27) may be remotely driven e.g. by a flexible cable drive to accommodate the 27 29 movement as the fastening head (20) is advanced towards, or retracted from, the upsetting die.
TITLE: "FASTENING TOOLS AND TAPE THEREFOR" BACKGROUND OF THE INVENTION Field of the Invention THIS INVENTION relates to fastening tools and fastenercarrying tapes therefor.
The term "fastener" shall include rivets, screws and other fastening devices.
Prior Art US Patent No. 4,615,475 (Fuhrmeister) (=AU-B-28506/8) (556811) International Publication No. WO 84/04710) discloses a feeder for headed fasteners, where the fasteners, mounted in tape, are sequentially advanced into alignment with the punch and die assembly of a fastening machine by an oscillating actuator, which is timed by the plunger holding the punch, the actuator releasably engaging the heads of the fasteners to advance the fasteners.
The feeder, and the fastening machine, has proved commercially successful in a wide range of industries. There are certain applications, however, eg., in the automotive and white goods industries, where the dimensions of the feeding head preclude the use of the fastening machine to fasten components together, where limited space is S• available.
In addition, the minimum radius of curvature of the tape entering and leaving the feeder head also limits the reduction of size of the feeder hereinbefore described to suit such applications.
SUMMARY OF THE INVENTION It is an object of the present invention to provide an improved feeding head for the fastening machine which enr0ables the fastening machine to be used in confined spaces.
It is a further preferred object to provide a feeder where the fastener stems or shanks are engaged as the fasteners are advancerd by the punch to prevent the fasteners from tilting or becoming misaligned with the die assembly.
It is a further preferred object to provide a feeding head in a remote, fixed position spaced from the punch and die assembly, with a different orientation, for improved access.
It is a still further preferred object to provide a remote drive for the feeding head.
Other preferred objects will become apparent from the following description.
The term "fastening machine" shall be hereinafter used to refer to fastening machines of the type disclosed in US Patent No.
4,615,475 discussed above, subject to the modifications and improvements hereinafter described and illustrated, but shall not be limited to such machines.
The term "stem" of a fastener shall be hereinafter used to also include a "shank" of a fastener.
*ii 15 In a first aspect, the present invention provides a feeding head for a fastening machine including: a feeder block mountable on a plunger having a punch; a guide path in the block; a fastener guide passage, aligned with the punch, below the U. 20 guide path; ~carrier tape drive means to push or pull the carrier tape through the guide path; and stop means releasably engageable with the head and/or stem of the fastener, or indexing means operating on the carrier tape 25 drive means, to cause the carrier tape to be selectively advanced so that on descent of the punch, the punch will drive the fastener from the carrier tape into the fastener guide passage, the carrier tape being held against movement until the punch is withdrawn from the carrier tape.
Preferably, the carrier tape is of the type of the first aspect o hereinbefore described.
Preferably, an inlet guide passage or tube guides the carrier ,tape from a source a spool) to the guide path, a similar outlet guide passage guiding the empty carrier tape from the guide path. Preferably, the inlet and outlet guide passages are parallel and perpendicular to the guide path, the carrier tape passing around rollers, wheels or sprockets as it changes direction entering and leaving the guide path.
The sprocket(s) may have rachet means to index the advance of the carrier tape and/or prevent its retraction as the plunger is advanced towards the die.
Head and/or stem stop means may be provided in the guide path to index the advance of the fasteners into alignment with the punch and the fastener guide passage, the stem stop means preferably being springloaded and retractable as the punch advances the fasteners from the carrier tape.
Preferably, the stems are releasably engaged by retractable rollers in the fastener guide passage to maintain the alignment of the 15 fasteners with the punch and die as the fasteners are advanced by the .o punch.
Probe means, eg., a limit switch, proximity sensor, light switch S: or the like may be provided in the feeder block to sense when the fastener is aligned with the punch and die to shut off the carrier tape drive means and/or to initiate the advance of the punch towards the fasteners.
In a second aspect, the present invention resides in a feeding head for a fastening machine including: a guide bush; a plunger mounted for coaxial advance and retraction through the guide bush; a punch on the leading end of the plunger; a fastener delivery passage aligned with the plunger; a guide path, spaced to one side of the guide bush, to guide a carrier tape of fasteners; means to feed the carrier tape through the guide path; transfer means to sequentially engage fasteners in the carrier tape in the guide path and transport the fasteners into a delivered position aligned with the punch and the fastener delivery passage; and stop means releasably engageable with the head and/or stem of the fastener, or indexing means operating on the carrier tape drive means to cause the carrier tape to be selectively advanced into alignment with the transfer means.
Preferably, the guide bush is mounted in a cylinder. The cylinder is preferably mounted on a mounting block mounted on a slide assembly on one jaw of the frame of a fastening machine. Actuator means are provided to raise and lower the mounting block on the jaw.
Preferably, the fastener delivery passage is aligned with the fastener upsetting die on the other jaw. Preferably, a pair of spring load stops, eg., profiled rollers, are provided adjacent the fastener delivery passage to releasably engage the stems of the fasteners when transported by the transfer means, the stops being movable apart by the S 15 punch as it advances the fasteners through the fastener delivery passage.
Preferably, the guide path is profiled to support the carrier tape as it travels in a path transverse to the jaws of the fastener frame and spaced inwardly of the guide bush.
The indexing means may include indexing wheels, sprockets or blocks which engage the carrier tape, to sequentially advance the fasteners into alignment with the transfer means.
The transfer means preferably includes a pusher blade which engages the fastener stems, the pusher blade being reciprocally movable by a hydraulic or pneumatic cylinder, solenoid or mechanical actuator, to push the fasteners free from the tape to the delivered position.
Preferably, the pusher blade engages the stems just below the fastener heads, and may optionally also engage the stems below the carrier tape and/or the fastener heads.
The feeder head may be provided with a flexible drive for a Rfastening tool including: a motor mounted on or adjacent a frame of a fastening machine, the machine having an upper jaw carrying a fastening head with a punch and a lower jaw having an upsetting die; at least one sprocket on the upper jaw and movable therewith to advance a fastener-carrying tape to index fasteners into alignment with the punch; a right-angled drive having an output operably connected to the sprocket; and a telescopic drive shaft operably connecting the input of the right-angled drive to the motor, so arranged to maintain operable driving connoction between the motor and the right-angled drive as the fastener head or punch is advanced towards, or retracted from, the lower jaw.
In an alternative embodiment, the feeder head may be provided with a flexible drive for a fastening machine including: a motor mounted on or adjacent a frame of a fastening machine, the machine having a fastening head having a punch and a s15 lower jaw having an upsetting die; at least on sprocket on the fastening head and movable therewith to advance a fastener-carrying tape to index fasteners into alignment with the punch; and a right-angled drive having an input operably connected to 20 the motor and its output operably connected to the sprocket by a flexible ;,."cable drive to maintain operable driving connection between the motor and the sprocket as the fastening head or punch is advanced towards, or retracted from, the lower jaw.
In a further embodiment, the feeder head may be provided with a flexible drive for a fastening machine of the type having an upper jaw having a fastening head with a punch and a fixed lower jaw having an upsetting die; and at least one sprocket on the fastening head and movable therewith to advance a fas'ener-carrying tape to index fasteners into 30 alignment with the punch, the flexible drive including: a motor mounted remote from the frame; and a flexible cable drive interconnecting the motor to the sprocket to maintain operable driving connection therebetween as the fastening jaw or punch is advanced towards, or retracted from, the lower jaw.
The motor, right-angled drive, or the sprocket(s) may incorporate a rachet, cam, a one-way roller clutch, or like one-way drive means so that the carrier tape can only travel in one direction to advance the fasteners to the punch) during the fastening cycle.
BRIEF DESCRIPTION OF THE DRAWINGS To enable the invention to be fully understood, a number of preferred embodiments will now be described with reference to the accompanying drawings, in which: FIG. 1 is an isometric underside view of a first embodiment of a carrier tape suitable for the feeder head of the present invention; FIG. 2 is a sectional side view of a first embodiment of the feeder head; FIG. 3 shows plan and end views of a fastener stop in the feeder head; FIG. 4 shows plan and sectional side views of fastener guide rollers in the feeder head; i :20 FIGS 5 and 6 are sectional side views of a second 3,"embodiment of the feeder head with the punch in advanced, and retracLed positions, r ectively; .t .1 S, FIGS. 7 and 8 are end elevation and side views of the punch and gear wheel, respectively, in the feeder head of FIGS. 5 and 6; FIG. 9 is a side view of the feeder head; FIG. 10 is a sectional view taken on line 10-10 on FIG. 9; 0 o":•FIG. 11 is a sectional end view of the feeder head, showing an optional flexible drive for the gear wheel; FIGS. 12 and 12a are respective side views of a third embodiment of the feeder head; FIGS. 13 to 14 are respective side and end views of a fourth embodiment of the feeder head; FIGS. 15 to 19 are respective schematic views of first to fifth embodiments of flexible drives for the feeder heads; FIGS. 20 and 21 show respective plan and end views of a second embodiment of the carrier tape suitable for the feeder head; FIG. 22 is an end view of a third embodiment of the carrier tape (having the same plan view as FIG. FIGS. 23 and 24 are respective plan and end views of a fourth embodiment of the carrier tape; FIGS. 25 to 27 are respective plan and end views of a fourth embodiment of the carrier tape; FIGS. 25 to 27 are respective plan, end and side views of a fifth embodiment of the carrier tape; FIGS. 28 to 30 are respective end, side and plan views of a seventh embodiment of the carrier tape; i: 15 FIGS. 34 to 36 are similar views of an eighth embodiment of S.the carrier tape; FIG. 37 is a schematic side view of a fastening machine with a remote feeder head; FIGS. 38 and 39 are respective sectional plan and side ii 20 views of the fastener transfer mechanism for the feeder head of FIG. 37; FIGS. 40 and 41 are sectional side views of respective fastener support mechanisms in the fastening machine; FIG. 42 is a sectional view taken on line 42-42 on FIG. and FIG. 43 is a sectional plan view of a fastener guide roller of FIG 42.
DETAILED DESCRIPTION OF THE PREFERRED
EMBODIMENTS
EOM
Referring to FIG. 1, the fastener carrier tape 10 is extruded 30 from plastics material polypropylene, polyethylene) and has a planar web 11 interconnecting parallel (downwardly directed) side flanges 12, 13 Holes 14 are formed in the web 11 undersize relative to the stem diameter of the fasteners rivets). (The holes 14 may be formed by driving the fastener stems into the web 11.) Driving holes 15, 16 are provided in pairs along the sides of the web 11 adjacent the side flanges 12, 13 and may be engaged by pins on drive sprockets in the feeder heads.
Weakening lines 17 extend transversely of the web 11, intermediate the holes 14, interconnect the drive holes 15, 16, and are aligned with V-shaped slots 18, 19 in the side flanges 12, 13.
The weakening lines 17 and slots 18, 19 define bending axes for the tape 10 to pass around a sprocket wheel, block, roller or wheel of small radius.
To assist the advance of the fasteners from the carrier tape by the punch of a fastening machine, one or more radial slits or weakening lines may radiate from the holes 14, and the slits or weakening S: 15 lines folding or tearing as the fastener heads pass through the holes 14.
The weakening lines 17 relieve the tension in the tape 10 when it is bent about a small radius and the fasteners are less likely to be inadvertently e released from the holes 14.
Referring now to FIGS. 2 to 4, the feeder head 20 is mounted on the plunger 21 (25) of the riveting machine (10) of US Patent •No. 4,615,475, with a punch 22 (37) and is provided with a hydraulic cylinder assembly and retracting spring means of that machine.
.t .t (Numerals in parentheses refer to the reference numerals of parts of the machine in the patent.) A horizontal tape guide path 23 interconnects an inlet tape guide passage 24 and outlet guide passage 25 through the feeder head 20. A fastener guide passage 26 extends downwardly from the guide path 23 in alignment with the punch 22 (37) and anvil (18).
The carrier tape passes through the guide path 23 and passes around a pair of sprocket wheels 27 on one side of the feeder head 20, the sprocket wheels having pins 28 to engage the driving holes 16 in the carrier tape 10. (Rollers 29 maintain the carrier tape 10 in 9 driving engagement with the sprocket wheels 27.) A rotary motor (not shown) either drivably engage the carrier tape 10 remote from the feeder head 20, or drives the sprocket wheels 27, to advance the carrier tape (and fasteners 30) to (and through) the feeder head The stems 31 of the fasteners 30 engage a retractable stem stop roller 32 (see FIG. provided with a spring 33 which enables the stem stop roller 32 to be retracted when the punch 22 (37) drives the fasteners 30 from the carrier tape 10 into the fastener guide passage 26.
The heads of the fasteners also engage a head stop (ni shown).
A spring loaded finger 34 (with spring 35) is hingedly mounted in the feeder head 20 and engages the finger 36 of a microswitch 38 connected to the rotary motor, so arranged that when the fastener 30 is aligned with the punch 22 (and anvil the micro-switch 38 will switch off the rotary motor.
When the punch 22 is advanced, along the fastening cycle, i 8wl wthof h oaymtr the fastener 30 is expelled from the carrier tape 10 into the fastener guide passage 26, to be aligned with supported by a pair of retractable fastener guide rollers 39, 40 (see FIG. 40) provided with springs 41. Further i 20 advances of the punch 22 drives the fasteners through the sheets/panels •being fastened, the stem 31 of the fastener being deformed by the anvil (18) of the upsetting die. (The enlarged diameter portion 22A of the punch 22 holds the finger 34 in the "off' position for the micro-switch 38.
When the punch 22 has been retra ,led from the tape 10, the finger 34 25 moves to the "on" postion for the micro-switch 38 to enable the next fastener to be brought into alignment with the punch 22, to enable the fastening cycle to be repeated.
In a second embodiment, the feeder head 50 has a spro'kat wheel 51 which engages the carrier tape 10 (see FIGS. 5 to 10). The sprocket wheel 51 has a plurality of teeth 52 engageable by a pin 53 on a panel 54 (see FIG. 7) mounted in the feeder head 50, a second pin being engageable in a slot 56 in the punch 57 A spring 58 bears against the panel 54.
As the punch 57 is advanced to expel the aligned fastener from the carrier tape 10, into the tape guide passage 59, the pin 53 on the panel 54 rides over a tooth 52 on the driving sprocket 51 As the punch 57 is withdrawn, the pin 53 engages the tooth 52 to cause the sprocket wheel 51 to advance the carrier tape 10 to bring the next fastener 30 into alignment with the punch 57.
In a modified embodiment, the feeder head 60 has a sprocket wheel 61, which drivably engages the carrier tape 10, driven from a remote rotary motor by a flexible drive 62 a Bowden cable) connected to the axle 63 of the sprocket wheel 61.
In the embodiment of the feeder head 70 in FIGS. 12 and 12a, the sprocket wheel 71 is rotatably mounted on one end of a rocker arm 72 hingedly mounted in the feeder head 70, the sprocket wheel 71 engaging the carrier tape 10 (with fasteners 30) which is guided from the feeder head 70 by guide rollers 73, A pair of rollers 74, 75 on the rocker arm 72 engage respective abutments 76, 77 on the side of the punch 78 As the punch 78 is advanced, it expels the aligned fastener 30 from the carrier tape 10, and while it is engaged in the hole 14, the abutment 76 engages the roller 74 to move the rocker arm 72 and sprocket wheel 71 to the retracted position in FIG. 12 where a fastener S..is brought into alignment with the punch for the next fastening cycle, the fastener head engaging a head stop 78A. In this embodiment, the sprocket wheel 31 pushes, not pulls, the carrier tape 10 into the feeder head ~Spring 79 stops the rotation of the sprocket wheel 71 as the rocker arm advances the carrier tape as it moves from the position in FIG. 12a to the position in FIG, 12, but allows the sprocket wheel 71 to rotate in an anti-clockwise direction as it is moved to engage the next driving slots 15, 16 in the carrier tape, ie., to the position in FIG. 12a.
Referring now to FIGS. 13 and 14, the fastening machine eg., for the manufacture of bread tins 81, has the carrier tape (with fasteners 30) drawn past the feeder head 82 by a sprocket wheel 83 on a rotary motor 84, the motor 84 being mounted on the C-frame 85 of the fastening machine 80. The fastening machine 80 has a retractable anvil 86, on a cylinder 87, which is timed to advance in opposition to the punch 88 during the fastening cycle.
FIG. 15 is a schematic view of a first flexible drive 90 for a fastening head 91 of a fastening machine 92. The fastening machine 92 has a C-frame with the fastening head 91 mounted for vertical movement, and a lower jaw 93 with an upsetting die 94 aligned with the punch (not shown) of the fastening head 91. The feeder head for the carrier tape is incorporated in the fastening head 91. A ram assembly 95 advances the fastening head 91 (and punch) towards the die 94 in advance of the fastener a rivet) piercing the workpiece(s) to be connected and 1 o 5 being upset to connect them together One or more sprocket wheels, as hereinbefore described,
SO
drivably engage the carrier tape 10 to advance the fasteners 30 into alignment with the punch and die 94, •o An electric motor 96 is mounted on the ram assembly 20 and has an output shaft 97 connected to one (or both) sprocket wheels by ,P a flexible cable drive 98 a Bowden cable).
The sprocket wheel(s) incorporate a rachet assembly so that the carrier tape 10 can only be drawn from a supply spool (not shown) to advance the fasteners into alignment with the punch and die as the fastening head 91 moves down towards the die 94, the carrier tape may be pulled from the spool and the tape advanced within the fastening head 91 by the sprocket wheel(s) but on the upward stroke of the fastening o•:o head 91, the carrier tape will not be able to travel in the reverse direction.
In the embodiment of FIG. 16, the motor 100 is mounted on 30 the upper jaw 101 of the C-frame 102 and the output shaft 103 of the motor and the drive input shaft 104 of a right-angled drive 105 are direct coupled (or common) 12 A flexible cable drive 106 a Bowden cable) connects the drive unit 105 to the fastening head 107 to accommodate the vertical movement of the latter.
In the embodiment of FIG. 17, the motor 110 and rights angled drive 111 are mounted on the ram assembly 112, and the rightangled drive 111 is connected to the fastening head 113 via the flexible zable drive 1 14.
In the embodiments of FIGS. 18 and 19, respectively, the motors 120, 130 are mounted remotely from the fastening heads 121, 131, and the motors 120, 130 are connected direct to the sprocket(s) 122, 132 via the flexible drive cables 124, 134 to accommodate the vertical travel of the fastening heads 121, 131 indicated by the double-headed arrows.
It will be noted that the sprockets 124, 134 may be directly or indirectly driven and the rachet (or like one way drive means) may be provided at the motor 96, 105, 110, 120, 130, the right-angled drive 105, 111, fastening heads 91, 107, 113, 121, 131 or at the sprockets 124, 134 themselves.
Referring to FIGS. 20 and 21, the fastener carrier tape 140 20 is extruded from plastics material polypropylene, polyethylene) (which may be fibre-reinforced) and has a planar web 141 with a side 9 flange 142. Holes for the fasteners 143 may be preformed (preferably undersize) to receive and engage the stems 144 of the fasteners, or may be formed by driving the fasteners 143 into the web 141, the holes being 25 formed adjacent the opposite side of the web 141 and connected to that .o.coo S• side by slits or weakening lines 145 (see FIG. Driving holes 146 are provided in equally spaced relationship along the side of the web 141 adjacent the side flange to be engaged by pins on a drive sprocket.
*30 Weakening lines 147 extend transversely of the web 141, intermediate the fastener holes, and may be aligned with slots (not Vshown) in the side flange 142 to enable a carrier tape 140 to pass around a sprocket wheel, block, roller or wheel of small radius.
Referring now to FIG. 22, the carrier tape 150, also extruded of plastics material, has a pair of spaced webs 151, 152, with fastener holes, and weakening lines as for carrier tape 140, where the side flange 153 interconnects the webs 151 152 and is provided with driving holes 154 to be engaged by the driving sprockets.
As this carrier tape 150 engages the stem 155 of the fastener 156 at two points, it is particularly suitable for fasteners with long stems.
With both carrier tapes 140, 150, the fastener 143, 156 is released by pushing it in a direction transverse to the longitudinal axis of the tape and away from the side flange 142, 153.
Referring now to FIGS. 23 and 24, the carrier tape 160 has a vertical planar web 161 of extruded plastics material, to which is fixed, at spaced intervals, a co-extruded secondary web 162, of reduced mechanical strength, to form spaced loops 163 engageable by the fastener stems 164 (in the nature of a bandolier).
~In a feeder, the fasteners 165 may be replaced by strings, strips or cords to form fracturable loops. Driving holes may be provided S 20 along one, or both, sides of the main web 161.
The tape 180 of FIGS. 25 to 27 is of channel section and has a pair of spaced webs 181, 182 similar to web 141 to tape 140, connected by a slotted spacer 183, again with rack-like teeth, engageable St by a toothed wheel or drive gear in the feeder head. The slots 185 in the ~25 spacer 183 enables a transfer mechanism to engage, and eject, the fastener 186 from the tape.
In the tape 190 of FIGS. 28 to 30, the planar web 191 has slits 192 interconnecting the holes 193 to the side of the webs 191 spaced from the flange 194 (provided with the teeth 195).
30 The tapes 200, 210 of FIGS. 31 to 33, and 34 to 36 respectivey, where the webs 201, 211 have loops 202, 212 to engage the Sfasteners 203, 213 and rack-like teeth 204, 214 on flanges 205, 215. The -Ff0 i (H I fasteners 203, 213 are pushed through slits 206 or holes 216 through the webs 201, 211 to eject the fasteners.
Referring now to FIG. 37, the fastening machine 220 can be designed to operate in very confined spaces in the corr'-; of two sheet metal components) at the apex or nose of the machine.
The fastening machine 220 has a C-frame 221 with an upper jaw 222, and a lower jaw 223 with the fastener upsetting die 224.
A fastener feeder 225 is mounted in (or on) the upper jaw 223. A tape guide block 226 (see FIGS. 38 and 39) is profiled to match the appropriate carrier tape 227, with a slot 228 on the upstream side of the stems 229 of the fasteners 230. A transfer slot 239 extends transversely of the guide block 227 and the junction of the slots 228, 1 forms a stop 232 for the fasteners 230.
A transfer mechanism 233 has a reciprocating plunger 234 mounted in a pneumatic or hydraulic cylinder 235 (or solenoid) and has a head 236 with an upper finger 237 to engage the fasteiner head and a lower finger 238 to engage the fastener stem 229. From the retracted position shown in FIG. 38, the plunger 234 is advanced to engage and push each fastener 230 sideways out of the carrier tape 227 to advance 20 the fastener to the delivery position where the fastener 230 is aligned with the punch on the plunger in the guide bush 239 (see FIG. 37). The guide bush 239 is slidably mounted on the plunger and urged to an advanced t* position by a compression spring, the plunger being mounted in a hydraulic ram 240. The ram 240 is mounted on a support block 241, in 25 turn mounted on a slide assembly 243 on the upper jaw 222. The support block 241 is vertically movable via an actuating linkage 244 connected to the piston rod 245 of a hydraulic cylinder 246.
In the advanced position, the fastener 230 is releasably supported by a pair of profiled rollers 247 (see FIGS. 42 and 43), the axles 248 thereof being slidably rotatably engaged in slots 249 (see FIG.
42) in the guide 239. Leaf springs 250 urge the rollers 247 into /i 5R4 engagement with the fastener 230. As the fastener 230 is moved to the advanced position by the transfer mechanism 233, the rollers 247 retiact to enable the fastener 230 to be located directly below the punch and above the upsetting die 224.
After the fastener 230 has been placed between, and supported by, the rollers 247 in the guide bush 239, and the transfer mechanism 233 has been retracted, the ram 246 is timed to move the support block 242 downwardly until the guide bush 239 engages the metal sheets to be fastened. Ram 241 is then operated to advance the punch to engage the fastener 230 and push it down below the rollers 247, the fastener piercing the metal sheets and being deformed on the upsetting die 254.
The sequence is reversed.
The next fastener 230 is advanced to the stop 232 and the fastening sequence is repeated.
In FIG. 41, the fastener 230 is initially moved by the transfer mechanism 233 into engagement with upper rollers 251A before being engaged by the punch and guided in its travel by the lower rollers 247.
°°The ends of the upper rollers 251A are radius to enable the fastener 230 to be fed into guide bush 239 in a direction parallel to the rotation axes of 20 the upper rollers 251A.
"Sensors in the fastening machine can detect the presence of fasteners at various locations in the machine and the machine can be e, .t S. .controlled and timed by a central processor unit. The transfer mechanism may expel the fasteners 230 from the carrier tape 227 and the fasteners 230 may be blown, or fall under gravity, through a feed tube with a T-section or circular bore) to the guide bush 239. This enables the transfer mechanism 233, and tape 227, to be some distance from the fastening machine.
It will be readily apparerit to the skilled addressee that the 30 carrier tapes, and the associated feeder heads (and transfer mechanisms) to enable accurate delivery of the fastening heads to b 5:-T j provided which can be used in extremely confined spaces.
16 The advantages include: a) the ability to feed fasteners with large diameter heads and short stems without tumbling; b) the carrier tape does not interfere with the movement of the fastening machine; c) the tape is fed through a fixed guide path and does not require recoiling with each fastener cycle; d) there is no possibility to put more than one fastener into the fastening guide passage at one time; e) can give better access to the front face of the nose piece very narrow (eg. 10mm for 5mm fastener); f) fastener sensing is easier being positioned directly above the fastener head; g) fastener indexing may be remote and can occur at any time during the fastening cycle; h) fasteners being indexed into the feeder have a positive stop; SI) there is no problem of tape being "chewed" out by fastener or punch and jamming the operation; j) the design will allow two or more fasteners to be fed simultaneously, at close centres; k) narrower tape is possible; I) the tape can be fed from any direction with regard to n e the product, and 25 m) the nose, with injection moulded rollers and springs, *s "o can be made as a totally expendable item, possibly in two pieces.
Various changes and modifications may be made to the .0 :I :o embodiments described and illustrated without departing from the scope of the present invention defined in the appended claims.

Claims (14)

1. A feeding head for a fastening machine including: a feeder block mountable on a plunger having a punch; a guide path in the block; a fastener guide passage, aligned with the punch, below the guide path; carrier tape drive means to push or pull the carrier tape through the guide path; and stop means releasably engageable with the head and/or stem of the fastener, or indexing means operating on the carrier tape drive means, to cause the carrier tape to be selectively advanced so that on descent of the punch, the punch will drive the fastener from the carrier tape into the fastener guide passage, the carrier tape being held against movement until the punch is withdrawn from the carrier tape.
2. A feeding head as claimed in Claim 1 wherein: an inlet guide passage or tube guides the carrier tape from a source to the guide path; :i similar outlet guide passage guides the empty carrier tape S°from the guide path; 20 the inlet and outlet guide passages are parallel an -perpendicular to the guide path; and the carrier tape passes around rollers, wheels or sprockets S as it changes direction entering and leaving the guide path.
3. A feeding head as claimed in Claim 2 wherein: T" 25 the sprocket(s) have rachet means to index the advance of 0. "the carrier tape and/or prevent its retraction as the plunger is advanced towards the die,
4. A feeding head as claimed in Claim 3 wherein: head and/or stem stop means are provided in the guide path 30 to index the advance of the fasteners into alignment with the punch and the fastener guide passage, the stem stop means being spring-loaded and retractable as the punch .dvances the fasteners from the carrier Vler 9 tape; and the stems are releasably engaged by retractable rollers in the fastener guide passage to maintain the alignment of the fasteners with the punch and die as the fasteners are advanced by the punch.
5. A feeding head as claimed in Claim 4 wherein: probe means comprising a limit switch, proximity sensor or light switch is provided in the feeder block to sense when the fastener is aligned with the punch and die to shut off the carrier tape drive means and/or to initiate the advance of the punch towards the fasteners.
6. A feeding head for a fastening machine including: a guide bush; a plunger mounted for coaxial advance and retraction through the guide bush; g b a punch on the leading end of the plunger; a fastener delivery passage aligned with the plunger; S.a guide path, spaced to one side of the guide bush, to guide a carrier tape of fasteners; .means to feed the carrier tape through the guide path; .•.transfer means to sequentially engage fasteners in the carrier tape in the guide path and transport the fasteners into a delivered position aligned with the punch and the fastener delivery passage; and .stop means releasably engageable with the head and/or stem of the fastener, or indexing means operating on the carrier tape drive means to cause the carrier tape to be selectively advanced into alignment with the transfer means.
7. A feeding head as claimed in Claim 6 wherein: the guide bush is mounted in a cylinder; the cylinder is mounted on a mounting block mounted on a slide assembly on one jaw of the frame of a fastening machine; and actuator means are provided to raise and lower the mounting block on the jaw.
8. A feeding head as claimed in Claim 7 wherein: the fastener delivery passage is aligned with the fastener upsetting die on the other jaw; and a pair of spring load stops are provided adjacent the fastener delivery passage to releasably engage the stems of the fasteners when transported by the transfer means, the stops being movable apart by the punch as it advances the fasteners through the fastener delivery passage.
9. A feeding head as claimed in Claim 8 wherein: the guide path is profiled to support the carrier tape as it travels in a path transverse to the jaws of the fastener frame and spaced inwardly of the guide bush.
10. A feeding head as claimed in Claim 9 wherein: the indexing means includes indexing wheels, sprockets or blocks which engage the carrier tape, to sequentially advance the fasteners into alignment with the transfer means.
11. A feeding head as claimed in Claim 10 wherein: S 15 the transfer means includes a pusher blade which engages the fastener stems, the pusher blade being reciprocally movable by a hydraulic or pneumatic cylinder, solenoid or mechanical actuator, to push the fasteners free from the tape to the delivered position. S12. A feeding head as claimed in Claim 11 wherein: the pusher blade engages the stems just below the fastener S°heads, and optionally also engages the stems below the carrier tape. S13. A fastening machine having a head as claimed in any one of Claims 1 to 12 and further including a flexible drive comprising: a motor mounted on or adjacent a frame of the fastening machine, the fastening machine having an upper jaw carrying the feeding head and a lower jaw having an upsetting die; at least one sprocket on the upper jaw and movable therewith to advance the carrier tape to index fasteners into alignment with the punch; a right-angled dive having an output operably connected to the sprocket; and a telescopic drive shaft operably connecting the input of the right-angled drive to the motor, so arranged to maintain operable driving connection between the motor and the right-angled drive as the feeder head or punch is advanced towards, or retracted from the lower jaw.
14. A fastening machine having a feeding head as claimed in any one of Claims 1 to 12 and further including: a flexible drive comprising: a motor mounted on or adjacent a frame of the fastening machine, the machine having an upper jaw carrying a feeding head an a lower jaw having an upsetting die; at least one sprocket on the feeding head and movable therewith to advance the carrier tape to index fasteners into alignment with the punch; and a right-angled drive having an input operably connected to the motor and its output operably connected to the sprocket by a flexible cable drive to maintain operable driving connection between the motor and the sprocket as the feeder head or punch is advanced towards, or retracted from, the lower jaw.
15. A fastening machine of the type having an upper jaw carrying a feeder head as claimed in any one of Claims 1 to 12 and a fixed lower jaw having an upsetting die; and 20 a flexible drive comprising: at least one sprocket on the feeder head and movable therewith to advance the carrier tape to index the fasteners into alignment with the punch, the flexible drive including: a motor mounted remote from the frame; and 25 a flexible cable drive interconnecting the motor to the S"sprocket to maintain operable driving connection therebetween as the feeder head or punch is advanced towards, or retracted from, the lower "jaw.
16. A fastening machine as claimed in any one of Claims 13 to 30 15 wherein: the motor, right-angled drive, or the sprocket(s) incorporate ,Sa rachet, cam, one-way roller clutch, or like one-way drive means so that the carrier tape can only travel in one direction, to advance the fasteners to the punch during the fastening cycle. 0 0* 00 00*0 0* 0* 00 S **Sm* 0 0 5,0*0 *S *0 CS *.p SI.. CO 0 0 0000 C 00 0*
AU29357/92A 1991-11-20 1992-11-20 Fastening tools and tape therefor Ceased AU670550B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AU29357/92A AU670550B2 (en) 1991-11-20 1992-11-20 Fastening tools and tape therefor

Applications Claiming Priority (8)

Application Number Priority Date Filing Date Title
AUPK9602 1991-11-20
AUPK960291 1991-11-20
AUPL087992 1992-02-13
AUPL0879 1992-02-13
AUPL3092 1992-06-22
AUPL309292 1992-06-22
PCT/AU1992/000621 WO1993009918A1 (en) 1991-11-20 1992-11-20 Fastening tools and tape therefor
AU29357/92A AU670550B2 (en) 1991-11-20 1992-11-20 Fastening tools and tape therefor

Publications (2)

Publication Number Publication Date
AU2935792A AU2935792A (en) 1993-06-15
AU670550B2 true AU670550B2 (en) 1996-07-25

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AU29357/92A Ceased AU670550B2 (en) 1991-11-20 1992-11-20 Fastening tools and tape therefor

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Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0715695Y2 (en) * 1992-02-04 1995-04-12 東海金属工業株式会社 Rivet setting device
EP0725695B1 (en) * 1993-10-01 2000-04-12 Henrob Ltd. Carrier tape for fasteners
AUPO045296A0 (en) * 1996-06-14 1996-07-11 Henrob Ltd Feeding heads for fastening machines
US10865820B2 (en) * 2018-07-10 2020-12-15 The Boeing Company Apparatuses for and methods of installing pre-molded seal caps

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU490512B2 (en) * 1974-04-29 Duo-Fast Corp. Rotary entry fastener carrier and strip
AU538669B2 (en) * 1980-03-10 1984-08-23 Furma Manufacturing Co. Pty. Ltd. Sequential feeding of fastners
AU556811B2 (en) * 1983-05-27 1986-11-20 Nietek Pty. Ltd. Feeding rivets

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU490512B2 (en) * 1974-04-29 Duo-Fast Corp. Rotary entry fastener carrier and strip
AU538669B2 (en) * 1980-03-10 1984-08-23 Furma Manufacturing Co. Pty. Ltd. Sequential feeding of fastners
AU556811B2 (en) * 1983-05-27 1986-11-20 Nietek Pty. Ltd. Feeding rivets

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