CN210456301U - Hang assembly line and garment piece carry assembly line - Google Patents

Hang assembly line and garment piece carry assembly line Download PDF

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Publication number
CN210456301U
CN210456301U CN201920931529.3U CN201920931529U CN210456301U CN 210456301 U CN210456301 U CN 210456301U CN 201920931529 U CN201920931529 U CN 201920931529U CN 210456301 U CN210456301 U CN 210456301U
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rail
annular main
station
main rail
assembly line
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CN201920931529.3U
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孙建国
余云林
袁峰
袁剑
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Ningbo Saint Regis Industrial Automation Co ltd
Zhejiang Ruisheng Intelligent Technology Co Ltd
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Ningbo Saint Regis Industrial Automation Co ltd
Zhejiang Ruisheng Intelligent Technology Co Ltd
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Abstract

The utility model discloses a hanging assembly line and garment piece hanging assembly line, which comprises a work station, a first annular main rail and a second annular main rail, wherein a station entering mechanism and a station exiting mechanism of the work station are respectively connected with the first annular main rail and the second annular main rail; the first annular main rail is only responsible for the work of entering the workstation, and the second annular main rail is only responsible for the work of leaving the workstation; the utility model provides a hang assembly line can be applied to the carry processing work of garment piece, and the special line is special, improves work efficiency.

Description

Hang assembly line and garment piece carry assembly line
Technical Field
The utility model mainly relates to a hang assembly line technical field, especially relate to a hang assembly line and garment piece carry assembly line.
Background
The hanging assembly line is mainly used for continuously conveying goods or workpieces in space, and is a conveying system which is more used in mass flow production operation in numerous industries at present. The hanging assembly line generally comprises an annular main rail and a workstation arranged on one side of the annular main rail, wherein an in-out mechanism is arranged on the workstation, the in-out mechanism is connected with the annular main rail through an in-out branch rail, the out-out mechanism is connected with the annular main rail through an out-out branch rail, the clothes run on the annular main rail through a clothes rack and are conveyed to a designated workstation for processing, and after the processing is finished, the clothes return to the annular main rail from the workstation and are conveyed to the next workstation for processing of the next procedure.
In the clothing hanging pipeline workstation, the in-out mechanism of the workstation is respectively connected with the same annular main rail through the in-out branch rail. Because the clothes hangers on the annular main rail are conveyed ceaselessly, the clothes hangers can enter the inbound branch rail ceaselessly through the annular main rail, the clothes hangers/articles on the clothes hangers can return to the annular main rail through the outbound branch rail after being processed at the workstation, therefore, if the flow of the hanging production line is extremely large, the clothes hanger flow of the annular main rail is very large, the clothes hanger flow of the inbound branch rail is correspondingly increased, the clothes hangers can enter the inbound branch rail ceaselessly, after the maximum treatment capacity of the workstation within a certain time is exceeded, the clothes hangers on the inbound branch rail are more and more, and due to the fact that the length of the inbound branch rail is fixed, the clothes hangers can occupy the whole inbound branch rail finally, even overflow the inbound branch rail to occupy the annular main rail, the blockage of the annular main rail is caused, and the work of the production line is influenced. In order to solve the above problem, chinese utility model patent, application number: 200920119954.9, filing date: 2009.05.15, discloses a pull-in guide rail of clothes rack in the clothing-making workstation, which is spirally coiled, solving the problems of the prior clothes rack pull-in guide rail that the length is limited and the clothes rack is piled up too much to cause blockage. However, the technical scheme can only relieve the accumulation problem of the clothes hangers on the hanging production line to a certain extent.
The annular main rail is generally provided with a certain number of push rods for pushing the clothes hangers to move, the clothes hangers can move under the pushing action of the push rods, if the push rods meet the production peak, the flow of a hanging assembly line is very large, the flow of a work station entering or exiting the work station is also very large, and when the push rods for pushing the clothes hangers to move on the annular main rail reach a saturated state, the rest clothes hangers can not exit in time, and are stacked on the annular rail to influence the overall working efficiency.
Disclosure of Invention
1. Problems to be solved
In view of the above problem, the utility model provides a hang assembly line can prevent that clothes hanger from piling up on annular main rail to can regard as garment piece carry assembly line to use.
2. Technical scheme
In order to solve the above problem, the utility model discloses the technical scheme who adopts as follows:
a hanging assembly line comprises a work station and an annular main rail, wherein the work station comprises a station entering mechanism, a station entering branch rail, a lifting mechanism, a station exiting branch rail and a station exiting mechanism which are sequentially connected, and the annular main rail comprises a first annular main rail and a second annular main rail; and the station entering mechanism and the station exiting mechanism of the workstation are respectively connected with the first annular main rail and the second annular main rail. The first annular main rail is only responsible for the work of entering the workstation, and the second annular main rail is only responsible for the work of leaving the workstation, reduces the clothes hanger flow on the annular main rail, avoids the clothes hanger that enters, leaves the workstation to move on same annular main rail, because of the too big production of flow piles up, influences whole work efficiency.
The station entering mechanism is connected with the bent rail through a station entering support rail, and the station entering support rail is spirally and spirally arranged. The length of the arrival branch rail can be increased in a limited space, the storage quantity of the arrival clothes hangers is increased, and the problem of clothes hanger accumulation on the arrival branch rail is avoided.
The two lifting mechanisms are arranged, the first lifting mechanism is connected with the second lifting mechanism through the bent rail, so that the clothes hanger running on the bent rail can slide downwards only by gravity without arranging an additional pushing or dragging mechanism, and the outlet of the first lifting mechanism is higher than the inlet of the second lifting mechanism; the station-entering mechanism is connected with the first lifting mechanism through the station-entering branch rail, and the station-exiting mechanism is connected with the second lifting mechanism through the station-exiting branch rail. Corresponding processing stations can be arranged in the area adjacent to each lifting mechanism, the number of the lifting mechanisms is increased, the number of the processing stations is also increased correspondingly, and the working efficiency of the whole system is improved; in addition, the bent rails for connecting the two lifting mechanisms have a certain clothes hanger caching function while the processing stations are conveniently and flexibly arranged, the phenomenon that clothes hangers are stacked on the outbound branch rails is avoided, and the outbound efficiency is reduced. Or a processing station can be arranged at the first lifting mechanism, and the bent rail, the second lifting mechanism and the outbound branch rail mainly play a role in caching the clothes hangers.
The first annular main rail is arranged above the second annular main rail. The two annular main rails are arranged up and down, so that the space of a workshop can be fully utilized; meanwhile, the first annular main rail and the second annular main rail have enough height difference so as to avoid the interference of the clothes hangers running on the two annular main rails.
The utility model provides a clothing piece carries assembly line, includes foretell assembly line of hanging, the workstation is clothing piece carries workstation, and first annular main rail is empty clothes hanger orbit, and second annular main rail is the clothes hanger orbit of carrying the clothing piece. Empty clothes hangers on the first annular main rail enter a workstation to carry clothes pieces, and after workers or machines carry the clothes pieces, the clothes hangers carrying the clothes pieces enter the second annular main rail.
3. Advantageous effects
Compared with the prior art, the beneficial effects of the utility model are that:
(1) the utility model provides a hanging assembly line, including workstation and annular main rail, annular main rail includes first annular main rail and second annular main rail, and first annular main rail only is responsible for the work of entering of workstation, and second annular main rail only is responsible for the work of leaving the station, and the special line is special, reduces the clothes hanger flow on the annular main rail, avoids because of the too big clothes hanger that causes of flow piles up, the effectual whole work efficiency who guarantees hanging assembly line system;
(2) the hanging assembly line provided by the utility model has the advantages that the inbound branch rail is spirally and spirally arranged, the length of the inbound branch rail can be increased in a limited space, the storage capacity of inbound clothes hangers is increased, the problem of clothes hanger accumulation on the inbound branch rail is avoided, and the overall working efficiency of the hanging assembly line system is further ensured;
(3) the utility model provides a hanging assembly line is provided with a plurality of lifting mechanisms, corresponding processing stations are arranged below each lifting mechanism, the number of the lifting mechanisms is increased, the number of the processing stations is correspondingly increased, and the work efficiency of the whole system is improved; in addition, the bent rails are used for connecting the two lifting mechanisms, and the clothes rack buffer function is realized, so that the phenomenon that clothes racks are stacked on the outbound branch rails is avoided, and the outbound efficiency is influenced; a processing station can be arranged only at the first lifting mechanism, and the bent rail, the second lifting mechanism and the outbound branch rail mainly play a role in caching the clothes hangers;
(4) the utility model provides a hang assembly line, simple structure, reasonable in design easily makes, can be applied to the carry of garment piece.
Drawings
FIG. 1 is a schematic view of the overall structure of the hanging assembly line provided by the present invention;
FIG. 2 is a schematic structural view of a workstation of the hanging assembly line provided by the present invention;
in the figure: 1. a station entering mechanism; 2. entering a station and supporting a rail; 3.1, a first lifting mechanism; 3.2, a second lifting mechanism; 4. a branch rail is taken out; 5. an outbound mechanism; 6. a first annular main rail; 7. a second annular main rail; 8. and (4) bending the rail.
Detailed Description
The technical solution of the present invention will be clearly and completely described below with reference to the accompanying drawings.
As shown in fig. 1 and 2, a hanging assembly line comprises a work station and an annular main rail, wherein the work station comprises a station entering mechanism 1, a station entering branch rail 2, a lifting mechanism, a station exiting branch rail 4 and a station exiting mechanism 5 which are sequentially connected through a guide rail, the annular main rail comprises a first annular main rail 6 and a second annular main rail 7, and the station entering mechanism 1 and the station exiting mechanism 5 are respectively connected with the first annular main rail 6 and the second annular main rail 7. It should be noted that the pull-in mechanism can be a pull-in swing head, which can be referred to the rail-changing structure disclosed in the chinese utility model patent, publication No. CN 207275663U; the station-entering mechanism can also be a flow divider, which can be referred to as a track-changing mechanism disclosed in Chinese utility model patent, publication No. CN208603283U, and the key point to be considered is that the track-changing of the carrier on the first annular main track 6 can be realized and the carrier is conveyed to the station-entering branch track 2 of the workstation; the outbound mechanism can be a power outbound mechanism, and can refer to a track-changing structure disclosed in Chinese utility model patent, publication No. CN 207275663U; the out-station mechanism can also be an out-station swing head, and can refer to Chinese utility model patent, the rotary out-station mechanism disclosed in publication No. CN207242875U, and can also be other structures such as inclined sliding curved rail, the key point to be considered is that the carrier on the out-station track 4 of the workstation can be smoothly output to the second annular main rail 7, and the mechanism of the in-station mechanism and the out-station mechanism can be determined according to the structures of the in-station track, the out-station track and the annular main rail. The first endless main rail 6 is only responsible for the work station's inbound work and the second endless main rail 7 only receives the work station's outbound work pieces. The first endless main rail 6 is located above the second endless main rail 7. A plurality of workstations may be provided connecting the first endless primary rail and the second endless primary rail.
As shown in fig. 2, two lifting mechanisms may be provided in the hanging assembly line, a corresponding processing station may be provided below each lifting mechanism, the inbound mechanism 1 is connected to the first lifting mechanism 3.1 through the inbound branch rail 2, the first lifting mechanism 3.1 is connected to the second lifting mechanism 3.2 through the curved rail 8, and the second lifting mechanism 3.2 is connected to the outbound mechanism 5 through the outbound branch rail 4; the outlet of the first lifting mechanism 3.1 is higher than the inlet 3.2 of the second lifting mechanism, so that the clothes rack only needs to slide by means of the gravity of the clothes rack when passing through the bent rail 8 without additionally arranging a transmission part; of course, if desired, the number of lifting mechanisms may be increased accordingly. It should be noted that, the first lifting mechanism and the second lifting mechanism may be provided with work stations, or only the first lifting mechanism may be provided with a processing station, at this time, the bent rail 8 and the outbound branch rail 4 may be used as temporary storage rails, the hangers are stored on the bent rail 8 and the outbound branch rail 4, the hangers on the outbound branch rail 4 enter the second annular main rail 7 through the outbound mechanism 5 when waiting for a proper time, and the hangers temporarily stored on the bent rail 8 enter the outbound branch rail 4 through the second lifting mechanism 3.2.
As shown in fig. 2, the inbound track 2 may be arranged in a helically curved spiral. The hanging assembly line is applied to hanging of garment pieces, and the work station is a garment piece hanging station, the first annular main rail 6 is an empty hanger running rail, empty hangers on the first annular main rail 6 enter the work station, and hangers with garment pieces enter the second annular main rail 7 after workers or machines hang the garment pieces.
The specific working process is as follows:
the first annular main rail 6 is used for conveying empty clothes hangers, the empty clothes hangers enter the inbound branch rail 2 through the inbound mechanism, and if the empty flow of the first annular main rail 6 is extremely large, the clothes hangers can be temporarily cached on the inbound branch rail 2; the clothes hangers on the station-entering branch rail 2 are conveyed to an inlet of a first lifting mechanism 3.1, the first lifting mechanism 3.1 is started, and the clothes hangers are conveyed from the inlet of the first lifting mechanism 3.1 to the lowest point of the first lifting mechanism to carry out garment piece mounting work; after the hanging is finished, the clothes hanger with the garment piece is lifted to the curved rail 8 by the first lifting mechanism 3.1; the clothes rack entering the curved rail 8 slides to the inlet of the second lifting mechanism 3.2, the second lifting mechanism 3.2 is started, and the clothes rack loaded with the garment piece is lifted to the outbound branch rail 4 by the second lifting mechanism 3.2 and enters the second annular main rail 7 through the outbound mechanism 5. If the clothes rack can not enter the second annular main rail 7 through the outbound mechanism 5 in time, the clothes rack can be temporarily stored at the outbound branch rail 4, and if the outbound branch rail 4 is full of clothes racks, the clothes rack can be temporarily stored at the bent rail 8.

Claims (5)

1. The utility model provides a hang assembly line, includes workstation and annular main rail, the workstation is including the mechanism of coming to the station, the tributary rail of coming to the station, hoist mechanism, the tributary rail of leaving the station and the mechanism of leaving the station that connect gradually, its characterized in that: the annular main rails comprise a first annular main rail and a second annular main rail; and the station entering mechanism and the station exiting mechanism of the workstation are respectively connected with the first annular main rail and the second annular main rail.
2. The hanging assembly line of claim 1, wherein: the station-entering branch rail is spirally bent and coiled.
3. The hanging assembly line of claim 2, wherein: the lifting mechanism comprises a first lifting mechanism and a second lifting mechanism, the first lifting mechanism is connected with the second lifting mechanism through a bent rail, and an outlet of the first lifting mechanism is higher than an inlet of the second lifting mechanism; the station entrance mechanism is connected with the first lifting mechanism through the station entrance branch rail, and the station exit mechanism is connected with the second lifting mechanism through the station exit branch rail.
4. The hanging line of claim 1, 2, or 3, wherein: the first annular main rail is arranged above the second annular main rail, and a height difference is formed between the first annular main rail and the second annular main rail, so that the clothes hangers running on the two annular main rails are prevented from interfering with each other.
5. A clothing hanging assembly line, comprising the hanging assembly line of any one of claims 1 to 4, wherein: the work station is a garment piece hanging work station, the first annular main rail is an empty hanger running rail, and the second annular main rail is a hanger running rail on which garment pieces are hung.
CN201920931529.3U 2019-06-19 2019-06-19 Hang assembly line and garment piece carry assembly line Active CN210456301U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920931529.3U CN210456301U (en) 2019-06-19 2019-06-19 Hang assembly line and garment piece carry assembly line

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920931529.3U CN210456301U (en) 2019-06-19 2019-06-19 Hang assembly line and garment piece carry assembly line

Publications (1)

Publication Number Publication Date
CN210456301U true CN210456301U (en) 2020-05-05

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Application Number Title Priority Date Filing Date
CN201920931529.3U Active CN210456301U (en) 2019-06-19 2019-06-19 Hang assembly line and garment piece carry assembly line

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115140500A (en) * 2022-06-23 2022-10-04 浙江衣拿智能科技股份有限公司 Off-line cutting mechanism

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115140500A (en) * 2022-06-23 2022-10-04 浙江衣拿智能科技股份有限公司 Off-line cutting mechanism
WO2023246022A1 (en) * 2022-06-23 2023-12-28 浙江衣拿智能科技股份有限公司 Off-line cut piece loading mechanism
CN115140500B (en) * 2022-06-23 2024-02-27 浙江衣拿智能科技股份有限公司 Off-line upper cutting mechanism

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