CN206437576U - A kind of part auto-sequencing feeding machanism - Google Patents
A kind of part auto-sequencing feeding machanism Download PDFInfo
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- CN206437576U CN206437576U CN201621187519.6U CN201621187519U CN206437576U CN 206437576 U CN206437576 U CN 206437576U CN 201621187519 U CN201621187519 U CN 201621187519U CN 206437576 U CN206437576 U CN 206437576U
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- block
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- glide path
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Abstract
The utility model is related to a kind of part auto-sequencing feeding machanism, including part guide plate, part baffle, part orientation adjustment block, part slideway bottom plate, part slides block, part glide path template, part derivation block, second part glide path template, part sliding way template is constituted, the part orientation adjustment block, part sliding way template, part glide path template and part derivation block are separately fixed on the part slideway bottom plate, the utility model is a kind of passive type sequence based on vibrations and gravity ordering principle, array mechanism, front end is connected with the outlet of a upper equipment part, part is sorted on request after storing part, and released with identical posture from rear end, send into subsequent processing equipment.So, the single processing apparatus in workshop is not only linked to be apparatus for production line, and has saved the personnel of shop logistics management, management cost, substantially increase production efficiency.
Description
Technical field
The present invention relates to a kind of feeding machanism, more particularly, to a kind of part auto-sequencing feeding machanism.
Background technology
In industrial automation, non-standard equipment industry, automatic vibration feed and ordering techniques application are particularly automated
It is quite varied, i.e., using vibrations principle, the part that needs are processed or assembled is occurred high frequency shake by certain vibration frequency and amplitude
It is dynamic, force part slightly to be bounded forward along certain track, and posture sequence is carried out by gravity rule during advance, so as to protect
Demonstrate,prove operating efficiency and the positioning posture requirement of automatic equipment feed, thus it is general using disk and straight line vibrations loader there is provided
Part onward impulse, manual repair track, to adapt to the successfully order transmission of different parts and screening and sequencing.But its defect is:
1st, because using relatively independent feeding system, volume is larger, it is necessary to take certain production space.2nd, it is generally that actively feed sequence is
System, carries out automation seamless link transformation enforcement difficulty larger between two production lines existing for user or two equipment.
Simultaneously in production and processing of the automatic factory to asymmetric small-sized pole class part, part is produced in a upper process
In equipment after completion of processing, it need to circulate to subsequent processing production equipment and continue to complete the production process of later procedure, its part exists
The circulation of two-step equipment room typically realizes that such as next processing apparatus needs part with same appearance by logistics management flow in workshop
State is processed by permanent order into equipment, then the part array sequencing process stream that intermediate links need to be added outside line in the middle of two equipment
Journey, so, not only needs increase personnel cost, management cost, also wastes a large amount of quality time.
The content of the invention
Present invention aim to address it is set forth above the problem of there is provided it is a kind of based on vibrations and gravity ordering principle it is passive
Formula sorts, array mechanism, and front end is connected with the outlet of a upper equipment part, and part sorts on request after storing part, and with phase
Released with posture from rear end, send into a kind of part auto-sequencing feeding machanism of subsequent processing equipment.
Realizing the technical scheme of the object of the invention is:A kind of part auto-sequencing feeding machanism of the present invention, including part are led
Block, part glide path template, part are slided to plate, part baffle, part orientation adjustment block, part slideway bottom plate, part to lead
Go out block, the second part glide path template, part sliding way template composition, the part orientation adjustment block, part sliding way template,
Part glide path template and part derivation block are separately fixed on the part slideway bottom plate, the part orientation adjustment block and zero
Part sliding way template assembles conjunction for one and is arranged in the first part blanking die cavity, and the part glide path template and part derivation block are
Another to assemble conjunction and be arranged in the second part blanking die cavity, two groups of part blanking die cavities are horizontal extremely into " people " font, " people " font
Place heal up to the right, and connects firmly the part and slides block.
Further prioritization scheme is a kind of described part auto-sequencing feeding machanism, and the part baffle is fixed on
On the part guide plate, the square breach that the middle part of the L-shaped structure of part guide plate and the part baffle has
Cooperatively form the input port for being put into part.
Further prioritization scheme is a kind of described part auto-sequencing feeding machanism, the part derivation block it is defeated
Enter the output end of the second part blanking die cavity of end connection, the manhole positioned at the part derivation block is just to the second part blanking
At the slide egress of die cavity.
Further prioritization scheme is a kind of described part auto-sequencing feeding machanism, is fallen positioned at first part
Part is additionally provided with material die cavity, one end of the part is cylindrical end, and its other end is to pass through circle between conical end, the two ends
Post is connected.
Further prioritization scheme is a kind of described part auto-sequencing feeding machanism, and the diameter of the cylinder is less than
Cylindrical end.
The present invention has positive effect:1st, the present invention is a kind of passive type row based on vibrations and gravity ordering principle
Sequence, array mechanism, front end is connected with the outlet of a upper equipment part, and part sorts on request after storing part, and with identical appearance
State is released from rear end, sends into subsequent processing equipment.So, the single processing apparatus in workshop has not only been linked to be apparatus for production line, and
Personnel, the management cost of shop logistics management are saved, production efficiency is substantially increased.
2nd, scattered single devices are functionally linked as automatic production line, improve production efficiency.Used from user
Feedback is investigated, and part output capacity improves 23%.Shop logistics management and production management flow are simplified, management is substantially reduced
Cost.Because of management process optimization, operating personnel 8 are saved, production cost is directly reduced.
Brief description of the drawings
In order that present disclosure is easier to be clearly understood, it is right below according to specific embodiment and with reference to accompanying drawing
The present invention is described in further detail, wherein
Fig. 1 is structural representation of the invention;
The structural representation of Fig. 2 parts;
Fig. 3 is the structural representation of part process posture 1;
Fig. 4 is the structural representation of part process posture 2;
Fig. 5 is the structural representation of part process posture 3;
Fig. 6 is the structural representation of part process posture 4;
Fig. 7 is the structural representation of part process posture 5;
Fig. 8 is the structural representation of part process posture 6;
Fig. 9 is the structural representation of part process posture 7;
Figure 10 is the structural representation of part process posture 8;
Figure 11 is the structural representation of part process posture 9;
Figure 12 is the structural representation of part process posture 10;
Figure 13 is the structural representation of part process posture 11;
Figure 14 is the structural representation of part process posture 12.
Embodiment
See Fig. 1 to Figure 14, the present invention has a kind of part auto-sequencing feeding machanism, including part guide plate 1, part are kept off
Plate 2, part orientation adjustment block 3, part slideway bottom plate 4, part slide block 5, part glide path template 6, part derivation block 7,
Second part glide path template 8, part sliding way template 9 are constituted, the part orientation adjustment block 3, part sliding way template 9,
Part glide path template 6 and part derivation block 7 are separately fixed on the part slideway bottom plate 4, the part orientation adjustment block 3
Conjunction is assembled for one be arranged in the first part blanking die cavity 14, the part glide path template 6 and part with part sliding way template 9
Derivation block 7 assembles conjunction and is arranged in the second part blanking die cavity 15 to be another, and two groups of part blanking die cavities are horizontal into " people " font
Extremely, " people " font heals up place to the right, and connects firmly the part and slide block 5.The part baffle 2 is fixed on the part and is oriented to
On plate 1, the square breach that the middle part of the L-shaped structure of the part guide plate 1 and the part baffle 2 has, which is cooperatively formed, to be put
Enter the input port of part.The input of the part derivation block 7 connects the output end of the second part blanking die cavity 15, positioned at described
The manhole of part derivation block 7 just to the slide egress of the second part blanking die cavity 15 at.Positioned at the first part blanking
Be additionally provided with part 16 on die cavity 14, one end of the part 16 is cylindrical end 10, its other end is conical end 13, the two ends it
Between connected by cylinder 11.The diameter of the cylinder 11 is less than cylindrical end.
Its course of work is:As shown in Fig. 2 part is configured as pole class part substantially, possess two different-diameter and shape
The architectural feature of shape.
Embodiment 1
As shown in Fig. 3 to Fig. 9, when part enters die cavity blanking port with the posture 1 to the left of cylindrical end 10, front end, it falls
Adjustment posture process refer to Fig. 3 → Fig. 4 → Fig. 5 → Fig. 6 → Fig. 7 → Fig. 8 → Fig. 9, during the shape of die cavity blanking port is designed to
Between thick, the thin shape in two, intermediate width is the diameter dimension of part cylindrical end 10, is maximum diameter dimension in part, two
Width be part small-diameter sized.When part is fallen by Fig. 3 positions from host computer blanking port, is shaken to Fig. 4 positions, because of zero
Part is tilted, still can not the first part blanking die cavity 14 fall, but when continuing to shake to Fig. 5 positions, part is with substantially with the 1st
Part blanking 14 blanking ports of die cavity are parallel, its larger diameter end, and cylindrical end 10 is stopped by the narrower place of front end die cavity blanking port, it is impossible to enter
Enter, and part small diameter portion then falls into die cavity blanking port, as shown in Figure 6.So, part completes first step pose adjustment,
Its die cavity blanking port forces part to be fallen in the mode directed downwardly of conical end 13.Part falls to sliding way, as shown in fig. 7, part
Conical end 13 contacts part sliding way template 9 first, by slideway Curvature Effect, part conical end 13 is slided block 5 to part
It is mobile, as shown in Figure 8.Part is slided after 5 grades of block stops by part and falls to glide path, as shown in figure 9, then part is with cylindrical end
10 advanced modes are sent by part derivation block 7.
Embodiment 2
As shown in Fig. 8-Figure 14, when part enters die cavity blanking port with the posture 2 to the right of cylindrical end 10, front end, it falls
Adjustment posture process refer to Figure 10 → Figure 11 → Figure 12 → Figure 13 → Figure 14 → Fig. 8 → Fig. 9.When part by Figure 10 positions from upper
Position machine blanking port is fallen, when shaking to Figure 11 positions, because part is tilted, can not still be fallen from the blanking port of the first part blanking die cavity 14
Under, but when continuing to shake to Figure 12 positions, part is with substantially parallel with die cavity blanking port, and its larger diameter end cylindrical end 10 is by rear end
The narrower place of die cavity blanking port stops, it is impossible to enter, and part small diameter portion then falls into die cavity blanking port, as shown in figure 13.This
Sample, part completes first step pose adjustment, and its die cavity blanking port forces part to be fallen in the mode directed downwardly of conical end 13.As schemed
Shown in 14, because of the limitation of the circular arc protuberance of part orientation adjustment block 3, part conical end 13 contacts part sliding way template 9 first, by
Slideway Curvature Effect, makes part conical end 13 slide block 5 to part and moves, as shown in Figure 8.Part slides block 5 by part
Shelves fall to glide path after stopping, as shown in figure 9, then part is sent in the advanced mode of cylindrical end 10 by part derivation block 7.
In summary, part is fallen into before die cavity blanking port from host computer, and its posture can be that cylindrical end 10 is facing forward, also may be used
Be cylindrical end 10 backwards, i.e. posture 1 and posture 2, but after vibrations sorting mechanism, sent with the posture facing forward of cylindrical end 10
Go out, complete unified ranking function.
Particular embodiments described above, has been carried out further in detail to the purpose of the present invention, technical scheme and beneficial effect
Describe in detail it is bright, should be understood that the foregoing is only the present invention specific embodiment, be not intended to limit the invention, it is all
Within the spirit and principles in the present invention, any modification, equivalent substitution and improvements done etc., should be included in the guarantor of the present invention
Within the scope of shield.
Claims (5)
1. a kind of part auto-sequencing feeding machanism, it is characterised in that:Including part guide plate (1), part baffle (2), part
Pose adjustment block (3), part slideway bottom plate (4), part slide block (5), part glide path template (6), part derivation block
(7) on, the second part glide path template (8), part sliding way template (9) composition, the part orientation adjustment block (3), part
Slideway template (9), part glide path template (6) and part derivation block (7) are separately fixed on the part slideway bottom plate (4),
The part orientation adjustment block (3) assembles conjunction for one with part sliding way template (9) and is arranged in the first part blanking die cavity (14),
The part glide path template (6) and part derivation block (7) assemble conjunction and are arranged in the second part blanking die cavity (15), institute to be another
State two groups of part blanking die cavities horizontal extremely into " people " font, " people " font heals up place to the right, and connect firmly the part and slide block
(5)。
2. a kind of part auto-sequencing feeding machanism according to claim 1, it is characterised in that:The part baffle (2)
It is fixed on the part guide plate (1), the L-shaped structure of the part guide plate (1) and the middle part of the part baffle (2)
The square breach having cooperatively forms the input port for being put into part.
3. a kind of part auto-sequencing feeding machanism according to claim 2, it is characterised in that:The part derivation block
(7) input connects the output end of the second part blanking die cavity (15), positioned at the part derivation block (7) manhole just
At the slide egress of the second part blanking die cavity (15).
4. a kind of part auto-sequencing feeding machanism according to claim 3, it is characterised in that:Positioned at first part
Part (16) is additionally provided with blanking die cavity (14), one end of the part (16) is cylindrical end (10), and its other end is conical end
(13), connected between the two ends by cylinder (11).
5. a kind of part auto-sequencing feeding machanism according to claim 4, it is characterised in that:The cylinder (11) it is straight
Footpath is less than cylindrical end.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201621187519.6U CN206437576U (en) | 2016-11-04 | 2016-11-04 | A kind of part auto-sequencing feeding machanism |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201621187519.6U CN206437576U (en) | 2016-11-04 | 2016-11-04 | A kind of part auto-sequencing feeding machanism |
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CN206437576U true CN206437576U (en) | 2017-08-25 |
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CN201621187519.6U Expired - Fee Related CN206437576U (en) | 2016-11-04 | 2016-11-04 | A kind of part auto-sequencing feeding machanism |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108016847A (en) * | 2016-11-04 | 2018-05-11 | 苏州麦克韦尔自动化设备有限公司 | A kind of part auto-sequencing feeding machanism |
CN110893983A (en) * | 2019-12-02 | 2020-03-20 | 江苏科森医疗器械有限公司 | Minimally invasive surgery chuck part machining device |
-
2016
- 2016-11-04 CN CN201621187519.6U patent/CN206437576U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108016847A (en) * | 2016-11-04 | 2018-05-11 | 苏州麦克韦尔自动化设备有限公司 | A kind of part auto-sequencing feeding machanism |
CN110893983A (en) * | 2019-12-02 | 2020-03-20 | 江苏科森医疗器械有限公司 | Minimally invasive surgery chuck part machining device |
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GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20170825 Termination date: 20201104 |