CN105209360A - Parts feeder - Google Patents

Parts feeder Download PDF

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Publication number
CN105209360A
CN105209360A CN201380030400.0A CN201380030400A CN105209360A CN 105209360 A CN105209360 A CN 105209360A CN 201380030400 A CN201380030400 A CN 201380030400A CN 105209360 A CN105209360 A CN 105209360A
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CN
China
Prior art keywords
described part
transport path
resettlement section
jet system
air jet
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.)
Granted
Application number
CN201380030400.0A
Other languages
Chinese (zh)
Other versions
CN105209360B (en
Inventor
柴田弘树
堀内贵仁
坂东茂树
开泽修一
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.)
YKK Corp
Original Assignee
YKK Corp
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 YKK Corp filed Critical YKK Corp
Publication of CN105209360A publication Critical patent/CN105209360A/en
Application granted granted Critical
Publication of CN105209360B publication Critical patent/CN105209360B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G47/00Article or material-handling devices associated with conveyors; Methods employing such devices
    • B65G47/02Devices for feeding articles or materials to conveyors
    • B65G47/04Devices for feeding articles or materials to conveyors for feeding articles
    • B65G47/12Devices for feeding articles or materials to conveyors for feeding articles from disorderly-arranged article piles or from loose assemblages of articles
    • B65G47/14Devices for feeding articles or materials to conveyors for feeding articles from disorderly-arranged article piles or from loose assemblages of articles arranging or orientating the articles by mechanical or pneumatic means during feeding
    • B65G47/1407Devices for feeding articles or materials to conveyors for feeding articles from disorderly-arranged article piles or from loose assemblages of articles arranging or orientating the articles by mechanical or pneumatic means during feeding the articles being fed from a container, e.g. a bowl
    • B65G47/1442Devices for feeding articles or materials to conveyors for feeding articles from disorderly-arranged article piles or from loose assemblages of articles arranging or orientating the articles by mechanical or pneumatic means during feeding the articles being fed from a container, e.g. a bowl by means of movement of the bottom or a part of the wall of the container
    • B65G47/1457Rotating movement in the plane of the rotating part

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Feeding Of Articles To Conveyors (AREA)
  • Delivering By Means Of Belts And Rollers (AREA)
  • Portable Nailing Machines And Staplers (AREA)

Abstract

To provide a parts feeder in which a component causing a blockage can be reliably discharged from a component transportation path. The present invention is provided with: a component housing part (21) for housing components (P1); a component transportation path (30) for transporting the components (P1) in the component housing part (21) so as to arrange the components (P1) in a prescribed orientation; a detection device (40) provided to the component transportation path (30), the detection device (40) detecting a component (P1) blockage from the state of transportation of the components (P1); a discharge device (50) provided to the component transportation path (30), the discharge device (50) expanding the component transportation path (30) on the basis of information from the detection device (40) and discharging the components (P1) into the component housing part (21); and an air jetting device (60) provided on the component transportation path (30) downstream of the discharge device (50), the air jetting device (60) jetting air onto the components (P1) and discharging the components (P1) into the component housing part (21).

Description

Feed appliance
Technical field
The present invention relates to a kind of feed appliance (partsfeeder), more specifically relate to a kind of feed appliance sliding part of slide fastener (slidefastener) being supplied to sliding part apparatus for assembling.
Background technology
As existing feed appliance, following as everyone knows, namely, comprise the upstream side blocking releasing portion and downstream blocking releasing portion of part being carried out with the posture of regulation the part transport path that transports and be arranged in part transport path, upstream side blocking releasing portion comprises hook, described hook utilizes cylinder and moves up, the part of blocking (sliding part) is made to fall from part transport path and discharge, downstream blocking releasing portion comprises: hook, utilize cylinder to move up, make the part of blocking fall from part transport path and discharge; And part sensing device, the conveyance state of the part by downstream blocking releasing portion is sensed (for example, referring to patent documentation 1).
Prior art document
Patent documentation
Patent documentation 1: Japanese Patent Laid-Open 06-293429 publication
Summary of the invention
[inventing problem to be solved]
But, in the feed appliance recorded in described patent documentation 1, only utilize the hook moved up that the part of blocking is fallen, the board member that the part thus blocked can be hooked on constituent part transport path can not fall, thus sometimes the part of blocking cannot be discharged from part transport path.
The present invention completes in view of described situation, its object is to provide a kind of can by the part of blocking positively from the feed appliance that part transport path is discharged.
[means of dealing with problems]
Described object of the present invention is reached by following formation.
(1) feed appliance, is characterized in that comprising: part resettlement section, accommodates part; Part transport path, arranges by the part in part resettlement section with the posture of regulation and transports described part; Detecting device, is arranged in part transport path, detects the blocking of part according to the conveyance state of part; Eduction gear, is arranged in part transport path, expands part transport path according to the information of detecting device, is discharged to by part in part resettlement section; And air jet system, be arranged on the ratio eduction gear side place farther downstream of part transport path, air sprayed to part, and part is discharged in part resettlement section.
(2) feed appliance Gen Ju (1), is characterized in that: eduction gear is set to than detecting device upstream side.
(3) according to (1) or the feed appliance described in (2), it is characterized in that: air jet system is the first air jet system, described feed appliance also comprises the second air jet system, described second air jet system is arranged on the ratio eduction gear upstream side place of part transport path, air is sprayed to the part be positioned in part transport path, part is discharged in part resettlement section.
(4) feed appliance Gen Ju (3), it is characterized in that: utilize the air of the first air jet system to spray, the part of failing to be discharged by eduction gear is discharged in part resettlement section, the air of the second air jet system is utilized to spray, part is discharged in part resettlement section, can not be shifted into than the second air jet system side place farther downstream to make part.
(5) according to the feed appliance according to any one of (1) to (4), it is characterized in that: part is the body forming slide fastener sliding part, comprising: separate in the vertical direction and the upper flange that is configured concurrently and lower wing plate; By the guide post that upper flange and lower wing plate are linked at leading section; And being arranged on the front pillar of upper surface and the rear pillar of upper flange, part transport path comprises: the dip plane being arranged on the basal part of part resettlement section; Be placed in the dip plane of the moveable block on basal part; First guide plate, is arranged on the dip plane of basal part, and guides the aft end face of the lower wing plate of part; Second guide plate, is arranged on the dip plane of moveable block, and guides the front end face of the lower wing plate of part; And the 3rd guide plate, be inserted into the front and back intercolumniation of part, eduction gear comprises: the first actuating device, is arranged on part resettlement section and moveable block is driven up and down; And second actuating device, be arranged on the dip plane of basal part and driven up and down by the 3rd guide plate, utilizing the first actuating device that moveable block is moved up, and utilizing the second actuating device that the 3rd guide plate is moved up, part transport path is expanded thus.
(6) according to the feed appliance according to any one of (1) to (5), it is characterized in that: detecting device comprises light-projecting component and photo detector, the detection light of light-projecting component is irradiated to part transport path, and received by photo detector, light-projecting component and photo detector detect whether having transported part at each specified time, and detect the blocking of the part in part transport path.
[effect of invention]
According to the present invention, comprising: part resettlement section, accommodate part; Part transport path, arranges by the part in part resettlement section with the posture of regulation and transports; Detecting device, is arranged in part transport path, detects the blocking of part according to the conveyance state of part; Eduction gear, is arranged in part transport path, expands part transport path, be discharged to by part in part resettlement section according to the information of detecting device; And air jet system, be arranged on the ratio eduction gear side place farther downstream of part transport path, air sprayed to part, part is discharged in part resettlement section, thus can positively the part of blocking be discharged from part transport path.
Accompanying drawing explanation
Fig. 1 is the front elevation of the embodiment that feed appliance of the present invention is described.
Fig. 2 is the main portion amplification plan view of the feed appliance body shown in Fig. 1.
(a) of Fig. 3 is the right side view of the body of slide fastener sliding part, and (b) is the front elevation of body.
Fig. 4 is the A-A line section-drawing of Fig. 2.
Fig. 5 is the B-B line section-drawing of Fig. 2.
Fig. 6 is that the moveable block shown in instruction diagram 5 and the 3rd guide plate move up and the section-drawing of the state that part transport path is expanded.
Fig. 7 illustrates under the state of Fig. 6, utilizes the first air jet system shown in Fig. 2 to dispel the block diagram of the state of part.
Fig. 8 is the C-C line section-drawing of Fig. 2.
Fig. 9 illustrates to utilize the second air jet system shown in Fig. 8 to dispel the section-drawing of the state of part.
Detailed description of the invention
Below, with reference to the accompanying drawings an embodiment of feed appliance of the present invention is described in detail.
The feed appliance 10 of present embodiment comprises the base station 11 being placed in ground and the feed appliance body 20 overlooked as circular shape as shown in Figure 1, and described feed appliance body 20 to be arranged on base station 11 and to utilize not shown vibration machine and vibrate.
Feed appliance body 20 as shown in Figure 2, comprising: part resettlement section 21, accommodates the part P1 dropped into from top; Screw-shaped part transport path 30, arranges by the part P1 in part resettlement section 21 with the posture of regulation and transports; Detecting device 40, is arranged in part transport path 30, and detects according to the blocking of conveyance state to part P1 of part P1; Eduction gear 50, is arranged on the ratio detecting device 40 upstream side place of part transport path 30, expands part transport path 30, be discharged to by part P1 in part resettlement section 21 according to the information of detecting device 40; First air jet system 60, is arranged on the ratio eduction gear 50 side place farther downstream of part transport path 30, sprays air, be discharged to by part P1 in part resettlement section 21 part P1; And second air jet system 70, be arranged on the ratio eduction gear 50 upstream side place of part transport path 30, air sprayed to the part P1 be positioned in part transport path 30, part P1 is discharged in part resettlement section 21.In addition, part P1 utilizes the vibration of not shown vibration machine and is transported in part transport path 30, in present embodiment, transport according to the order of part resettlement section 21 → the second air jet system 70 → eduction gear 50 → the first air jet system 60 → detecting device 40.And so-called part P1 blocks, refer to the state that the conveyance of part P1 stops because of any reason in part transport path 30.
Herein, the part P1 that the feed appliance 10 by present embodiment transports is described.This part P1 is the body forming slide fastener sliding part, comprise: separate in the vertical direction and the upper flange Pa configured concurrently and lower wing plate Pb, by the guide post Pc that upper flange Pa and lower wing plate Pb is linked at leading section, along the edge, the left and right sides of upper flange Pa and the flange Pd arranged, and be arranged at the front pillar Pe of upper surface and the rear pillar Pf of upper flange Pa, to form the shoulder mouth Pg of the left and right be separated by guide post Pc in the front portion of body, form deutostoma Ph at the rear portion of body.In addition, in present embodiment, using transported part as body, but be not limited to this, such as, also can be the lid component, claw component, spring member, puller etc. that form slide fastener sliding part.
Part resettlement section 21, as shown in Fig. 2, Fig. 4, Fig. 5 and Fig. 8, comprises roughly discoideus base plate 22 and is arranged on the roughly cylindric side plate 23 of periphery of base plate 22.
And, as shown in figs. 5 and 8, at the outer peripheral face of side plate 23, be installed with part return path 25, the part P1 that this part return path 25 makes to utilize eduction gear 50, first air jet system 60 and the second air jet system 70 and discharges turns back in part resettlement section 21.This part return path 25 comprises: dip down towards side plate 23 tiltedly install return base plate 26, and be arranged on the external end edge that returns base plate 26 return side plate 27.
The part transport path 30 of detecting device 40 as shown in Figures 2 and 4, comprises: roughly the first basal part 31 of echelon form, is arranged on the outer peripheral face of the side plate 23 of part resettlement section 21; Lower flipper guide 32a, is arranged on the dip plane 31a of the first basal part 31, guides the lower surface of the lower wing plate Pb of part P1; A pair distance piece 32b, is arranged on the Width two ends of the upper surface of lower flipper guide 32a; And upper flipper guide 32c, be arranged on the upper surface of a pair distance piece 32b respectively, and the front pillar Pe of part P1, the side of rear pillar Pf are guided.And the dip plane 31a of the first basal part 31 is towards leaving the side of side plate 23 and downward-sloping face.Thus, in lower flipper guide 32a, a pair distance piece 32b and a pair, flipper guide 32c tilts in the same manner as the 31a of dip plane.
Detecting device 40 as shown in Figures 2 and 4, comprising: section is the load-carrying element 41 of L-shaped, is arranged on the upper surface of flipper guide 32c on a pair, and arranges in the mode be erected on a pair between flipper guide 32c; Be arranged on the support stay (stay) 42 of the roughly U-shaped of load-carrying element 41; And be arranged on light-projecting component 43 and the photo detector 44 at the two ends supporting stay 42.And the detection light R of light-projecting component 43 is irradiated in lower flipper guide 32a and a pair between flipper guide 32c, and is received by photo detector 44.And light-projecting component 43 and photo detector 44 detect whether having transported part P1 at each specified time, and detect the blocking of the part P1 in part transport path 30.In addition, light-projecting component 43 and photo detector 44 are opto-electronic pickup, the detection light R being irradiated to photo detector 44 from light-projecting component 43 is blocked by the part P1 as detected object thing, can detect this part P1 thus, or reflected from the detection light R that light-projecting component 43 is irradiated to photo detector 44 by the part P1 as detected object thing, can detect this part P1 thus.
The part transport path 30 of eduction gear 50 as shown in figures 2 and 5, comprises: the dip plane 33a being arranged on the second basal part 33 of the roughly echelon form of the outer peripheral face of the side plate 23 of part resettlement section 21; Be placed in the dip plane 34a of the moveable block 34 of the roughly echelon form on the second basal part 33; First guide plate 35a, is arranged on the dip plane 33a of the second basal part 33, and guides the aft end face of the lower wing plate Pb of part P1; Second guide plate 35b, is arranged on the dip plane 34a of moveable block 34, and guides the front end face of the lower wing plate Pb of part P1; 3rd guide plate 35c, is arranged on the second actuating device 52 described later, and is inserted between front pillar Pe, rear pillar Pf of part P1.And the dip plane 33a of the second basal part 33 and dip plane 34a of moveable block 34 is towards downward-sloping face, the side leaving side plate 23.And the lower surface of dip plane 33a to the rearward end of the lower wing plate Pb of part P1 of the second basal part 33 guides, the lower surface of dip plane 34a to the leading section of the lower wing plate Pb of part P1 of moveable block 34 guides.
And, between the upper edge of the dip plane 33a of the second basal part 33 and the lower ora terminalis of the dip plane 34a of moveable block 34, form part and fall slit 35d, this part falls slit 35d makes the part P1 not becoming prescribed form drop to the part return path 25 returned.And, the second basal part 33 is formed and makes the part P1 fallen drop to the through hole 33b of part return path 25.
Eduction gear 50 as shown in Figures 5 and 6, comprising: the first actuating device 51, is arranged on the outer peripheral face of the side plate 23 of part resettlement section 21, moveable block about 34 is driven; And second actuating device 52, be arranged on the dip plane 33a of the second basal part 33, the 3rd guide plate 35c is driven up and down.
First actuating device 51 comprises: the cylinder 51a being fixed on the outer peripheral face of the side plate 23 of part resettlement section 21, and is fixed on the support stay 51c of roughly L-shaped of sliding part 51b of cylinder 51a, and moveable block 34 is fixed on the bottom supporting stay 51c.
Second actuating device 52 comprises: the orthogonal mode with the dip plane 33a relative to the second basal part 33 and the substrate plate 53 be fixed, be fixed on the cylinder 52a of the medial surface of substrate plate 53, and being fixed on the support stay 52c of sliding part 52b of cylinder 52a, the 3rd guide plate 35c is fixed on the bottom supporting stay 52c.And the 3rd guide plate 35c orthogonal direction is driven up and down at the dip plane 33a relative to the second basal part 33.
In the eduction gear 50 of formation like this, the blocking of part P1 is detected in detecting device 40, thus as shown in Figure 6, utilize the first actuating device 51 that moveable block 34 is moved up, and utilize the second actuating device 52 that the 3rd guide plate 35c is moved up, thus comprise the dip plane 33a of the second basal part 33, dip plane 34a, the first guide plate 35a of moveable block 34, the part transport path 30 of the second guide plate 35b and the 3rd guide plate 35c expanded.Therefore, no matter be positioned at the part P1 of corresponding site with or without blocking, all can fall the through hole 33b of slit 35d and the second basal part 33 via the part be expanded equally and fall in part return path 25, and turn back in part resettlement section 21.In addition, moveable block 34 and the 3rd guide plate 35c move up in process, utilize vibration and the conveyance of part P1 carried out can not stop.
First air jet system 60 to be positioned at eduction gear 50 the 3rd guide plate 35c end of downstream side near part P1 spray air, the part P1 removed completely without eduction gear 50 is fallen, and as shown in Fig. 2 and Fig. 7, comprise: the nozzle holder 61 being fixed on the lateral surface returning side plate 27, from the injection nozzle 62 of the linearity that nozzle holder 61 extends, and compressed-air actuated not shown air compressor is transmitted to injection nozzle 62.And the first air jet system 60 is set as follows: during utilizing the first actuating device 51, second actuating device 52 to make moveable block 34 and the 3rd guide plate 35c move up and down, spray air from injection nozzle 62.
Injection nozzle 62 carrys out direction initialization towards upstream side towards the mode that moveable block 34 side spray penetrates air with the downstream from part transport path 30.Therefore, if the air sprayed from injection nozzle 62 touches part P1, then part P1 such as shown in Figure 7, blow side to moveable block 34 loose, and utilization is arranged on the second guide plate 35b of moveable block 34 and rebounds, fall slit 35d from the part transport path 30 through expanding and part to drop in part return path 25, and turn back in part resettlement section 21.
The part transport path 30 of the second air jet system 70, as shown in Fig. 2 and Fig. 8, comprises: roughly the 3rd basal part 36 of echelon form, is arranged on the outer peripheral face of the side plate 23 of part resettlement section 21; First guide plate 37, is arranged on the dip plane 36a of the 3rd basal part 36, and guides the lower surface of the lower wing plate Pb of part P1; And second guide plate 38, be arranged on the upper surface of the first guide plate 37, and the aft end face of the lower wing plate Pb of part P1 is guided.And the dip plane 36a of the 3rd basal part 36 is towards leaving the side of side plate 23 and downward-sloping face.Thus, the first guide plate 37 and the second guide plate 38 tilt in the same manner as the 36a of dip plane.
First guide plate 37 is formed: the inserting hole 37a that the injection nozzle 72 for the second air jet system 70 described later is inserted, and the injection hole 37b that the air sprayed from injection nozzle 72 is passed through.And injection hole 37b is formed at the lower surface position in opposite directions with the lower wing plate Pb of part P1.
Second air jet system 70 as can be seen from figures 8 and 9, comprising: the nozzle holder 71 being fixed on the outer peripheral face of the side plate 23 of part resettlement section 21; From the injection nozzle 72 of the roughly J shape that nozzle holder 71 extends downwards; Compressed-air actuated not shown air compressor is transmitted to injection nozzle 72; Be fixed on the support stay 73 of the outer peripheral face of the side plate 23 of part resettlement section 21; And be fixed on support stay 73 and the cap 74 of the top of the injection hole 37b of covering the first guide plate 37.And the second air jet system 70 is set to during utilizing the first actuating device 51, second actuating device 52 to make moveable block 34 and the 3rd guide plate 35c move up and down, and sprays air from injection nozzle 72.Thus, during moveable block 34 and the 3rd guide plate 35c move up and down, part P1 can not enter into the injection hole 37b side place farther downstream than the first guide plate 37.
Injection nozzle 72 is configured to, after extending in the first guide plate 37 from nozzle holder 71 via the inserting hole 37a of the first guide plate 37, point to the injection hole 37b of the first guide plate 37.Thus, if touch the lower surface of the lower wing plate Pb of part P1 from the air of injection nozzle 72 injection, then part P1 such as shown in Figure 9, blown side loose towards cap 74, and utilize the medial surface of cap 74 to be rebounded, drop in part return path 25, thus turn back in part resettlement section 21.
In the feed appliance 10 of formation like this, the blocking of part P1 is detected in detecting device 40, utilize the first actuating device 51, second actuating device 52 thus and moveable block 34 and the 3rd guide plate 35c are moved up (with reference to Fig. 5 and Fig. 6), and spraying air (with reference to Fig. 7 ~ Fig. 9) from the injection nozzle 62 of the first air jet system 60 and the injection nozzle 72 of the second air jet system 70.Thus, the part transport path 30 of eduction gear 50 is expanded, no matter be positioned at the part P1 of corresponding site with or without blocking, all fall in part return path 25, and utilize the air of the first air jet system 60 to spray, the part P1 removed completely without eduction gear 50 falls in part return path 25.And now, utilize the air of the second air jet system 70 to spray, part P1 falls in part return path 25, injection hole 37b side place farther downstream than the first guide plate 37 can not be entered into make part P1.Then, utilize the first actuating device 51, second actuating device 52 to make moveable block 34 and the 3rd guide plate 35c be moved down into original position, and stop the air of the first air jet system 60 and the second air jet system 70 to spray.
As described above, feed appliance 10 according to the present embodiment, because comprising: detecting device 40, being arranged on and part P1 is arranged with the posture of regulation and in the part transport path 30 transported, detected the blocking of part P1; Eduction gear 50, is arranged on the ratio detecting device 40 upstream side place of part transport path 30, expands part transport path 30, and be discharged in part resettlement section 21 by part P1 according to the information of detecting device 40; And first air jet system 60, be arranged on the ratio eduction gear 50 side place farther downstream of part transport path 30, air is sprayed to part P1, part P1 is discharged in part resettlement section 21, thus can positively the part P1 of blocking be discharged from part transport path 30.
And, feed appliance 10 according to the present embodiment, because comprising the second air jet system 70, this second air jet system 70 is arranged on the ratio eduction gear 50 upstream side place of part transport path 30, air is sprayed to the part P1 be positioned in part transport path 30, and part P1 is discharged in part resettlement section 21, part P1 thus can be stoped to enter into than the second air jet system 70 side place farther downstream.Thus, in eduction gear 50, can prevent by the moveable block 34 in moving down and the 3rd guide plate 35c holding parts P1, and the blocking of new part P1 occurs.And, because preventing the clamping of part P1, so can prevent that part P1's is impaired.
In addition, the present invention is not limited in described embodiment illustrative, can suitably change without departing from the spirit and scope of the invention.
Such as, in present embodiment, detecting device 40 configures than the first air jet system 60 side farther downstream, but its allocation position is any, such as, also can be between eduction gear 50 and the first air jet system 60, between eduction gear 50 and the second air jet system 70 and than the second air jet system 70 upstream side.
[explanation of symbol]
10: feed appliance
20: feed appliance body
21: part resettlement section
25: part return path
30: part transport path
31: the first basal parts
31a: dip plane
32a: lower flipper guide
32b: distance piece
32c: upper flipper guide
33: the second basal parts (basal part)
33a: dip plane
34: moveable block
34a: dip plane
35a: the first guide plate
35b: the second guide plate
35c: the three guide plate
35d: part falls slit
36: the three basal parts
36a: dip plane
37: the first guide plates
38: the second guide plates
40: detecting device
43: light-projecting component
44: photo detector
50: eduction gear
51: the first actuating devices
52: the second actuating devices
60: the first air jet systems
70: the second air jet systems
P1: part
Pa: upper flange
Pb: lower wing plate
Pc: guide post
Pe: front pillar
Pf: rear pillar
R: detect light

Claims (6)

1. a feed appliance (10), is characterized in that, comprising:
Part resettlement section (21), accommodates part (P1);
Part transport path (30), arranges the described part (P1) in described part resettlement section (21) with the posture specified and transports described part (P1);
Detecting device (40), is arranged on described part transport path (30), and the blocking of conveyance state to described part (P1) according to described part (P1) detects;
Eduction gear (50), be arranged on described part transport path (30), expand described part transport path (30) according to the information of described detecting device (40), described part (P1) is discharged in described part resettlement section (21); And
Air jet system (60), eduction gear (50) side place farther downstream described in the ratio being arranged on described part transport path (30), air is sprayed to described part (P1), described part (P1) is discharged in described part resettlement section (21).
2. feed appliance according to claim 1 (10), is characterized in that:
Described eduction gear (50) is set to than described detecting device (40) upstream side.
3. feed appliance according to claim 1 and 2 (10), is characterized in that:
Described air jet system (60) is the first air jet system,
Described feed appliance (10) also comprises the second air jet system (70), eduction gear (50) upstream side place described in the ratio that described second air jet system (70) is arranged on described part transport path (30), air is sprayed to the described part (P1) be positioned on described part transport path (30), described part (P1) is discharged in described part resettlement section (21).
4. feed appliance according to claim 3 (10), is characterized in that:
Utilize the air of described first air jet system (60) to spray, the described part (P1) of failing to be discharged by described eduction gear (50) be discharged in described part resettlement section (21),
The air of described second air jet system (70) is utilized to spray, described part (P1) is discharged in described part resettlement section (21), can not be transplanted on than described second air jet system (70) side place farther downstream to make described part (P1).
5. feed appliance according to any one of claim 1 to 4 (10), is characterized in that:
Described part (P1) is the body forming slide fastener sliding part, comprising:
Upper flange (Pa) and lower wing plate (Pb), separate in the vertical direction and be configured concurrently;
Guide post (Pc), is linked described upper flange (Pa) and described lower wing plate (Pb) at leading section; And
Front pillar (Pe) and rear pillar (Pf), be arranged on the upper surface of described upper flange (Pa),
Described part transport path (30) comprises:
Dip plane (33a), is arranged on the basal part (33) of described part resettlement section (21);
Dip plane (34a), is placed in the moveable block (34) on described basal part (33);
First guide plate (35a), is arranged on the described dip plane (33a) of described basal part (33), and guides the aft end face of the described lower wing plate (Pb) of described part (P1);
Second guide plate (35b), is arranged on the described dip plane (34a) of described moveable block (34), and guides the front end face of the described lower wing plate (Pb) of described part (P1); And
3rd guide plate (35c), between described front and back post (Pe, Pf) being inserted into described part (P1),
Described eduction gear (50) comprising:
First actuating device (51), is arranged on described part resettlement section (21), and described moveable block (34) is driven up and down; And
Second actuating device (52), is arranged on the described dip plane (33a) of described basal part (33), and is driven up and down by described 3rd guide plate (35c),
Utilize described first actuating device (51) that described moveable block (34) is moved up, and utilize described second actuating device (52) to make described 3rd guide plate (35c) move up, described part transport path (30) is expanded thus.
6. feed appliance according to any one of claim 1 to 5 (10), is characterized in that:
Described detecting device (40) comprises light-projecting component (43) and photo detector (44),
The detection light (R) of described light-projecting component (43) is irradiated to described part transport path (30), and is received by described photo detector (44),
Described light-projecting component (43) and described photo detector (44) detect whether having transported described part (P1) at each specified time, detect the blocking of the described part (P1) of described part transport path (30).
CN201380030400.0A 2013-11-11 2013-11-11 Feed appliance Active CN105209360B (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/JP2013/080445 WO2015068307A1 (en) 2013-11-11 2013-11-11 Parts feeder

Publications (2)

Publication Number Publication Date
CN105209360A true CN105209360A (en) 2015-12-30
CN105209360B CN105209360B (en) 2017-10-03

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CN108946093A (en) * 2017-05-25 2018-12-07 Ykk株式会社 Carrying device and transport method

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JP2017100051A (en) * 2015-11-30 2017-06-08 セイコーエプソン株式会社 Electronic component transportation device and electronic component inspection device
CN108620838B (en) * 2017-03-16 2021-06-29 Ykk株式会社 Component supply system and component supply method

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JPH072341A (en) * 1993-06-17 1995-01-06 Ntn Corp Component selecting device
JP2004010238A (en) * 2002-06-06 2004-01-15 Nac Feeding Kk Parts feeder
CN101421174A (en) * 2006-04-12 2009-04-29 西德尔合作公司 High-rate preform feeder device
JP2010202341A (en) * 2009-03-03 2010-09-16 Honda Motor Co Ltd Part feeder
CN102826364A (en) * 2011-06-13 2012-12-19 Ykk株式会社 Pull head supplying device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108946093A (en) * 2017-05-25 2018-12-07 Ykk株式会社 Carrying device and transport method
CN108946093B (en) * 2017-05-25 2021-04-30 Ykk株式会社 Conveying device and conveying method

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TWI523803B (en) 2016-03-01
WO2015068307A1 (en) 2015-05-14
TW201527195A (en) 2015-07-16

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