CN204587942U - A kind of bidirectional conveyor - Google Patents

A kind of bidirectional conveyor Download PDF

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Publication number
CN204587942U
CN204587942U CN201520104483.XU CN201520104483U CN204587942U CN 204587942 U CN204587942 U CN 204587942U CN 201520104483 U CN201520104483 U CN 201520104483U CN 204587942 U CN204587942 U CN 204587942U
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China
Prior art keywords
copper sheet
conductive copper
chamfering
dolly
short
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CN201520104483.XU
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Chinese (zh)
Inventor
谢桂佳
黄东曦
张志杰
尹启超
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Guangzhou Gen Ye Information Technology Co Ltd
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Guangzhou Gen Ye Information Technology Co Ltd
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Abstract

The utility model proposes a kind of bidirectional conveyor, comprise ring support, circular orbit, dolly, annular carrier bar, first edge Power Block, second edge Power Block, one conductive pole, first short conductive copper sheet, second conductive pole, second short conductive copper sheet, first long conductive copper sheet, second long conductive copper sheet, first Compress Spring, second Compress Spring and two-way carrier bar drive motor, the first short conductive copper sheet left and right sides is all provided with the first chamfering, the second short conductive copper sheet left and right sides is all provided with the second chamfering, the first long conductive copper sheet left and right sides is all provided with the 3rd chamfering coordinated with the first chamfering, the second long conductive copper sheet left and right sides is all provided with the 4th chamfering coordinated with the second chamfering.The utility model can realize two-way discontinuous by two-way carrier bar drive motor, the first chamfering with the 3rd chamfering, the second chamfering and the 4th chamfering, the first Compress Spring and the second Compress Spring and contact bad with the conduction avoiding discontinuous to contact, thus improves the in-use performance of conveyer.

Description

A kind of bidirectional conveyor
Technical field
The utility model relates to conveyer technical field, refers to a kind of bidirectional conveyor especially.
Background technology
Annular multistation load transfer device progressively enters flow shop already, along with the development of logistic industry, it also displays day by day to this device requirement, and quality, efficiency are the basic demands of most equipment, and this equipment is mainly reflected in the aspect such as precision, use.On market, this equipment is all travelling bogie continuous firing, article can be caused like this can not to be transported to the place of specifying, the supplementary means that just must increase other could by article, existing conveyer only has unidirectional conveying function, the quantity of vehicle motor and dolly will be increased like this when needing oppositely conveying, the space that vehicle motor and dolly take will be increased, raise the cost, thus reduce the in-use performance of conveyer on the whole.
Therefore, must make improvements for above-mentioned shortcoming.
Utility model content
The utility model proposes a kind of bidirectional conveyor, solve the problem of the in-use performance difference of conveyer in prior art.
The technical solution of the utility model is achieved in that
A kind of bidirectional conveyor, comprise ring support, be located at the circular orbit on described ring support and be located at the dolly of the multiple circumference array on described circular orbit, all gap is provided with between two between described dolly, described circular orbit is provided with the annular carrier bar be connected with described dolly, described dolly is fixed on described annular carrier bar by base pads, the first edge Power Block is provided with inside described ring support, the second edge Power Block corresponding with described first edge Power Block is provided with outside described ring support, described first edge Power Block is provided with the first conductive pole, the first short conductive copper sheet is provided with inside described first conductive pole, described second edge Power Block is provided with the second conductive pole, the second short conductive copper sheet is provided with inside described second conductive pole, the the first long conductive copper sheet matched with described first short conductive copper sheet is provided with inside described base pads, the the second long conductive copper sheet matched with described second short conductive copper sheet is provided with outside described base pads, described first conductive pole is connected with described first short conductive copper sheet by the first Compress Spring, the described first short conductive copper sheet left and right sides is all provided with the first chamfering, described second conductive pole is connected with described second short conductive copper sheet by the second Compress Spring, the described second short conductive copper sheet left and right sides is all provided with the second chamfering, the described first long conductive copper sheet left and right sides is all provided with the 3rd chamfering coordinated with described first chamfering, the described second long conductive copper sheet left and right sides is all provided with the 4th chamfering coordinated with described second chamfering, the two-way carrier bar drive motor for driving described annular carrier bar is provided with below described circular orbit.
Further, described first long conductive copper sheet is electrically connected with the vehicle motor in described dolly by the first electric wire, and described second long conductive copper sheet is electrically connected with the vehicle motor in described dolly by the second electric wire.
Further, described first conductive pole is connected with electric cabinet by the 3rd electric wire, and described second conductive pole is connected with electric cabinet by the 4th electric wire.
Further, described first conductive pole and described second conductive pole are all that copper material is made.
Further, the feet of multiple circumference array is provided with below described ring support.
Further, described base pads is insulating material.
Further, at least one feeder is also provided with outside described dolly.
Enforcement the beneficial effects of the utility model have:
The utility model drives annular carrier bar by two-way carrier bar drive motor, dolly can be carried by two-way discontinuous, the first short conductive copper sheet can be facilitated to contact with the discontinuous of the second long conductive copper sheet with the first long conductive copper sheet, the second short conductive copper sheet by the first chamfering and the 3rd chamfering, the second chamfering and the 4th chamfering, the conduction the first short conductive copper sheet and the first long conductive copper sheet, the second short conductive copper sheet can being avoided to contact with the discontinuous of the second long conductive copper sheet by the first Compress Spring and the second Compress Spring is bad, thus improves the in-use performance of conveyer.
Accompanying drawing explanation
In order to be illustrated more clearly in the utility model embodiment or technical scheme of the prior art, be briefly described to the accompanying drawing used required in embodiment or description of the prior art below, apparently, accompanying drawing in the following describes is only embodiments more of the present utility model, for those of ordinary skill in the art, under the prerequisite not paying creative work, other accompanying drawing can also be obtained according to these accompanying drawings.
Fig. 1 is the perspective view of a kind of bidirectional conveyor of the utility model embodiment;
Fig. 2 is A-A structure for amplifying schematic diagram in Fig. 1;
Fig. 3 is B-B structure for amplifying schematic diagram in Fig. 2;
Figure number and explanation thereof:
1, ring support; 2, regulating block; 3, feet; 4, dolly; 5, feeder; 6, vehicle motor; 7, the second edge Power Block; 8, two-way carrier bar drive motor; 9, annular carrier bar; 10, the second long conductive copper sheet; 11, the 4th chamfering; 12, base pads; 13, the first short conductive copper sheet; 14, the first chamfering; 15, the first Compress Spring; 16, the first edge Power Block; 17, the first conductive pole.
Detailed description of the invention
Below in conjunction with the accompanying drawing in the utility model embodiment, be clearly and completely described the technical scheme in the utility model embodiment, obviously, described embodiment is only the utility model part embodiment, instead of whole embodiments.Based on the embodiment in the utility model, those of ordinary skill in the art are not making the every other embodiment obtained under creative work prerequisite, all belong to the scope of the utility model protection.
Referring to figs. 1 through Fig. 3, a kind of bidirectional conveyor that the utility model provides, comprise ring support 1, be located at the circular orbit on ring support 1 and be located at the dolly 4 of the multiple circumference array on circular orbit, all gap is provided with between two between dolly 4, circular orbit is provided with the annular carrier bar 9 be connected with dolly, dolly 4 is fixed on annular carrier bar 9 by base pads 12, the first edge Power Block 16 is provided with inside ring support 1, the second edge Power Block 7 corresponding with the first edge Power Block 16 is provided with outside ring support 1, first edge Power Block 16 is provided with the first conductive pole 17, the first short conductive copper sheet 13 is provided with inside first conductive pole 17, second edge Power Block 7 is provided with the second conductive pole, the second short conductive copper sheet is provided with inside second conductive pole, the first long conductive copper sheet that conductive copper sheet 13 short in first matches is provided with inside base pads 12, the second long conductive copper sheet 10 that conductive copper sheet short in second matches is provided with outside base pads 12, first conductive pole 17 is connected with the first short conductive copper sheet 13 by the first Compress Spring 15, first short conductive copper sheet 13 left and right sides is all provided with the first chamfering 14, second conductive pole is connected with the second short conductive copper sheet by the second Compress Spring, the second short conductive copper sheet left and right sides is all provided with the second chamfering, first long conductive copper sheet 13 left and right sides is all provided with the 3rd chamfering coordinated with the first chamfering 14, second long conductive copper sheet 10 left and right sides is all provided with the 4th chamfering 11 coordinated with the second chamfering, the two-way carrier bar drive motor 8 for driving annular carrier bar is provided with below circular orbit.First chamfering 14 is positioned on the angle, two, left and right of the first short conductive copper sheet 13 and the first long conductive copper sheet contact surface, second chamfering is positioned on the angle, two, left and right of the second short conductive copper sheet and the second long conductive copper sheet 10 contact surface, first chamfering 14, second chamfering, the 3rd chamfering and the 4th chamfering 11 are all chamfer, be more conducive to the discontinuous energising of dolly 4 on the go like this, realize the conveying of dolly 4 discontinuous.The dolly 4 of the technical program can two-wayly be carried, namely the bidirectional-movement of annular carrier bar 9 and dolly 4 is driven by two-way carrier bar drive motor 8, the quantity of vehicle motor 6 and dolly 4 just can be reduced like this under the conditions of demand needing two-way conveying, the space that minimizing vehicle motor 6 and dolly 4 take, reduce costs, thus improve the in-use performance of conveyer on the whole.A dolly is omitted in Fig. 1, like this can the more convenient technology understanding the technical program from accompanying drawing.
First long conductive copper sheet is electrically connected with the vehicle motor 6 in dolly 4 by the first electric wire, and the second long conductive copper sheet 10 is electrically connected with the vehicle motor 6 in dolly by the second electric wire.The first long conductive copper sheet and the second long conductive copper sheet 10 can be made like this to keep being electrically connected with vehicle motor 6.
First conductive pole 17 is connected with electric cabinet by the 3rd electric wire, and the second conductive pole is connected with electric cabinet by the 4th electric wire.Can ensure that the first short conductive copper sheet 13 can be energized when contacting with the second long conductive copper sheet 10 with the first long conductive copper sheet, the second short conductive copper sheet like this, vehicle motor 6 can be worked, drive dolly 4 belt conveyor realization above conveying article.Can momentary power failure when the first short conductive copper sheet and the first long conductive copper sheet, the second short conductive copper sheet and the second long conductive copper sheet 10 separate, thus realize carrying accurately, prevent from article from falling into not to be the place of specifying, can to use manpower and material resources sparingly like this to get back not at the article of predetermined place.
First conductive pole 17 and the second conductive pole are all that copper material is made.Certainly, the first conductive pole 17 and the second conductive pole also can adopt other conductive material to substitute.
Ring support 1 is provided with the feet 3 of multiple circumference array below.The quantity of feet 3 can adjust according to the weight size of complete machine, to ensure that complete machine can normally work.Feet 3 lower end is also provided with regulating block 2, adjusts complete machine local overbalance by regulating block 2 is convenient.
Base pads 12 is insulating material.The first long conductive copper sheet and the second long conductive copper sheet 10 short circuit can be prevented like this, improve dolly 4 stability in the course of the work.
At least one feeder 5 is also provided with outside dolly 4.Can by the article load-transfer device being transported to each dolly successively by feeder 5.
In sum, the utility model drives annular carrier bar by two-way carrier bar drive motor, dolly can be carried by two-way discontinuous, by the first chamfering and the 3rd chamfering, second chamfering and the 4th chamfering can facilitate the first short conductive copper sheet and the first long conductive copper sheet, second short conductive copper sheet contacts with the discontinuous of the second long conductive copper sheet, the first short conductive copper sheet and the first long conductive copper sheet can be avoided by the first Compress Spring and the second Compress Spring, the conduction that second short conductive copper sheet contacts with the discontinuous of the second long conductive copper sheet is bad, thus improve the in-use performance of conveyer.
The foregoing is only preferred embodiment of the present utility model; not in order to limit the utility model; all within spirit of the present utility model and principle, any amendment done, equivalent replacement, improvement etc., all should be included within protection domain of the present utility model.

Claims (7)

1. a bidirectional conveyor, it is characterized in that, comprise ring support, be located at the circular orbit on described ring support and be located at the dolly of the multiple circumference array on described circular orbit, all gap is provided with between two between described dolly, described circular orbit is provided with the annular carrier bar be connected with described dolly, described dolly is fixed on described annular carrier bar by base pads, the first edge Power Block is provided with inside described ring support, the second edge Power Block corresponding with described first edge Power Block is provided with outside described ring support, described first edge Power Block is provided with the first conductive pole, the first short conductive copper sheet is provided with inside described first conductive pole, described second edge Power Block is provided with the second conductive pole, the second short conductive copper sheet is provided with inside described second conductive pole, the the first long conductive copper sheet matched with described first short conductive copper sheet is provided with inside described base pads, the the second long conductive copper sheet matched with described second short conductive copper sheet is provided with outside described base pads, described first conductive pole is connected with described first short conductive copper sheet by the first Compress Spring, the described first short conductive copper sheet left and right sides is all provided with the first chamfering, described second conductive pole is connected with described second short conductive copper sheet by the second Compress Spring, the described second short conductive copper sheet left and right sides is all provided with the second chamfering, the described first long conductive copper sheet left and right sides is all provided with the 3rd chamfering coordinated with described first chamfering, the described second long conductive copper sheet left and right sides is all provided with the 4th chamfering coordinated with described second chamfering, the two-way carrier bar drive motor for driving described annular carrier bar is provided with below described circular orbit.
2. bidirectional conveyor according to claim 1, it is characterized in that, described first long conductive copper sheet is electrically connected with the vehicle motor in described dolly by the first electric wire, and described second long conductive copper sheet is electrically connected with the vehicle motor in described dolly by the second electric wire.
3. bidirectional conveyor according to claim 1, is characterized in that, described first conductive pole is connected with electric cabinet by the 3rd electric wire, and described second conductive pole is connected with electric cabinet by the 4th electric wire.
4. bidirectional conveyor according to claim 1, is characterized in that, described first conductive pole and described second conductive pole are all that copper material is made.
5. bidirectional conveyor according to claim 1, is characterized in that, is provided with the feet of multiple circumference array below described ring support.
6. bidirectional conveyor according to claim 1, is characterized in that, described base pads is insulating material.
7. bidirectional conveyor according to claim 1, is characterized in that, is also provided with at least one feeder outside described dolly.
CN201520104483.XU 2015-02-11 2015-02-11 A kind of bidirectional conveyor Active CN204587942U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520104483.XU CN204587942U (en) 2015-02-11 2015-02-11 A kind of bidirectional conveyor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520104483.XU CN204587942U (en) 2015-02-11 2015-02-11 A kind of bidirectional conveyor

Publications (1)

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CN204587942U true CN204587942U (en) 2015-08-26

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Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104692060A (en) * 2015-02-11 2015-06-10 广州艮业信息科技有限公司 Bidirectional conveyor

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104692060A (en) * 2015-02-11 2015-06-10 广州艮业信息科技有限公司 Bidirectional conveyor

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