CN212892769U - Novel bucket separating mechanism - Google Patents

Novel bucket separating mechanism Download PDF

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Publication number
CN212892769U
CN212892769U CN202021221466.1U CN202021221466U CN212892769U CN 212892769 U CN212892769 U CN 212892769U CN 202021221466 U CN202021221466 U CN 202021221466U CN 212892769 U CN212892769 U CN 212892769U
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China
Prior art keywords
conveyer
frame
installs
aluminum section
section frame
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CN202021221466.1U
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Chinese (zh)
Inventor
白铁男
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Shenyang Huachen Plastic Products Co ltd
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Shenyang Huachen Plastic Products Co ltd
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Abstract

The utility model discloses a novel divide bucket mechanism, main technical characteristic is: the conveyer is installed in aluminum section frame, square pipe installs the frame department in the conveyer left and right sides respectively, the bottom of the integrative plastic drum of stack respectively with the conveyer, square pipe contact, first binding clasp difference symmetrical arrangement is at the last plane of aluminum section frame's the left and right sides, linear guide installs the plane on the frame of the left and right sides at conveyer rear end respectively, the second binding clasp is installed on linear guide, first photoelectric switch is connected to the one end of connecting plate, the other end of connecting plate is connected with aluminum section frame's left side, first proximity switch installs at conveyer right frame middle part, second proximity switch installs at conveyer right frame rear portion, second photoelectric switch installs tip behind aluminum section frame. The beneficial effects are that: the manual barrel separation is replaced, the working intensity of workers is reduced, the barrel separation speed is high, and the production efficiency is improved.

Description

Novel bucket separating mechanism
Technical Field
The utility model relates to a divide bucket mechanism, especially a novel divide bucket mechanism.
Background
In the existing plastic bucket production, the plastic buckets produced are generally stacked and stored, namely, a second plastic bucket is inserted into the first plastic bucket, and a third plastic bucket is inserted into the second plastic bucket, so that the plastic buckets are sequentially stacked, and the plastic buckets are convenient to store and space-saving. In the process of plastic drum production, one of the processes is to print packaging patterns outside the plastic drum, the existing method is to sequentially pull out the plastic drums which are stacked and stored in a manual mode and place the plastic drums on a printing machine for printing, and because the plastic drums are stacked, the plastic drums at the bottom are connected too tightly under the action of gravity, the plastic drums are very laboured when being pulled out, the physical strength of workers is reduced, meanwhile, the number of the printed plastic drums cannot be increased, and the delivery period is delayed.
SUMMERY OF THE UTILITY MODEL
The utility model discloses an overcome the weak point among the above-mentioned technical problem, provide a novel bucket mechanism that divides.
In order to overcome the technical problem, the utility model discloses a technical scheme is:
including aluminium alloy frame, conveyer, square pipe, integrative plastic drum of stack, first binding clasp, second binding clasp, connecting plate, first photoelectric switch, first proximity switch, second photoelectric switch and linear guide, characterized by: the conveyer is installed in aluminum section frame, square pipe installs the frame department in the conveyer left and right sides respectively, the bottom of the integrative plastic drum of stack respectively with the conveyer, square pipe contact, first binding clasp difference symmetrical arrangement is at the last plane of aluminum section frame's the left and right sides, linear guide installs the plane on the frame of the left and right sides at conveyer rear end respectively, the second binding clasp is installed on linear guide, first photoelectric switch is connected to the one end of connecting plate, the other end of connecting plate is connected with aluminum section frame's left side, first proximity switch installs at conveyer right frame middle part, second proximity switch installs at conveyer right frame rear portion, second photoelectric switch installs tip behind aluminum section frame.
Furthermore, the second clamping device is composed of an air cylinder, a connecting seat, a bending plate and a sliding block, wherein the end part of the bending plate is an arc-shaped notch, the bending plate is connected with the end part of a piston rod of the air cylinder, the end part of a cylinder body of the air cylinder is fixed with the connecting seat, and the bottom end of the connecting seat is connected with the sliding block.
Compared with the prior art, the beneficial effects of the utility model are that: the manual barrel separation is replaced, the working intensity of workers is reduced, the barrel separation speed is high, and the production efficiency is improved.
Drawings
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
Fig. 1 is a schematic top view of the present invention.
Fig. 2 is a view of fig. 1 taken along line a.
Fig. 3 is a schematic structural view of a second clamp according to the present invention.
Detailed Description
As shown in fig. 1-3, the aluminum profile frame comprises an aluminum profile frame 1, a conveyor 2, a square pipe 3, an integrated plastic barrel 4, a first clamp 5, a second clamp 6, a connecting plate 7, a first photoelectric switch 8, a first proximity switch 9, a second proximity switch 10, a second photoelectric switch 11 and a linear guide rail 12, wherein the conveyor 2 is installed in the aluminum profile frame 1, the square pipe 3 is respectively installed at the frame positions of the left side and the right side of the conveyor 2, the bottom of the integrated plastic barrel 4 is respectively contacted with the conveyor 1 and the square pipe 3, the first clamp 5 is respectively and symmetrically arranged on the upper planes of the left side and the right side of the aluminum profile frame 1, the linear guide rail 12 is respectively installed on the upper planes of the frame positions of the left side and the right side of the rear end of the conveyor 1, the second clamp 6 is installed on the linear guide rail 12, one end of the connecting plate 7 is connected with the first photoelectric switch 8, the other end of the connecting plate 7, first proximity switch 9 installs at 1 right frame middle part of conveyer, and second proximity switch 10 installs at 1 right frame rear portion of conveyer, and second photoelectric switch 11 installs at aluminium alloy frame 1 rear end portion.
Further, the second clamping device 6 is composed of an air cylinder 6-1, a connecting seat 6-2, a bending plate 6-3 and a sliding block 6-4, wherein the end portion of the bending plate 6-3 is an arc-shaped notch 6-5, the bending plate 6-3 is connected with the piston rod end of the air cylinder 6-1, the end portion of the cylinder body of the air cylinder 6-1 is fixed with the connecting seat 6-2, the bottom end of the connecting seat 6-2 is connected with the sliding block 6-4, and the sliding block 6-4 is installed on the linear guide rail 12.
When the device works, the conveyor 2 conveys the integrally superposed plastic barrels 4, the integrally superposed plastic barrels 4 are guided linearly through the square pipes 3, when the first photoelectric switch 8 detects the barrel opening edge at the end part of the integrally superposed plastic barrels 4, the conveyor 1 stops working, meanwhile, the first clamping device 5 clamps the second barrel edge in the integrally superposed plastic barrels 4, the second clamping device 6 clamps the first barrel edge of the integrally superposed plastic barrels 4 and moves backwards through the linear guide rail 12, when the second clamping device 6 shields the second proximity switch 10, the first clamping device 5 is loosened, the conveyor 2 works to convey the integrally superposed plastic barrels 4 to the first photoelectric switch 8, the first photoelectric switch 8 detects the second barrel edge of the integrally superposed plastic barrels 4, meanwhile, the first barrel edge of the integrally superposed plastic barrels 4 reaches the second photoelectric switch 11, and the second photoelectric switch 11 detects a signal of the first barrel edge of the integrally superposed plastic barrels 4, and then the conveyor is enabled to be driven 2 stops working, in this state, the second clamping device 6 shields the second proximity switch 10, the first proximity switch 9 is electrified, and the second clamping device 6 returns to the first proximity switch 9 to shield the first proximity switch 9. When the first plastic barrel 4 is taken away, the second clamp 6 clamps the second plastic barrel 4 to move backward. The above actions are circulated successively to separate each plastic barrel in the plastic barrels 4 which are integrally stacked, thereby achieving the purpose of replacing manual barrel separation.
The present invention is not limited to the precise arrangements described above and shown in the drawings, and various modifications and changes may be made without departing from the scope thereof. The scope of the present invention is limited only by the appended claims.

Claims (2)

1. The utility model provides a novel divide bucket mechanism, includes aluminum section frame, conveyer, square pipe, integrative plastic drum of stack, first binding clasp, second binding clasp, connecting plate, first photoelectric switch, first proximity switch, second photoelectric switch and linear guide, characterized by: the conveyer is installed in aluminum section frame, square pipe installs the frame department in the conveyer left and right sides respectively, the bottom of the integrative plastic drum of stack respectively with the conveyer, square pipe contact, first binding clasp difference symmetrical arrangement is at the last plane of aluminum section frame's the left and right sides, linear guide installs the plane on the frame of the left and right sides at conveyer rear end respectively, the second binding clasp is installed on linear guide, first photoelectric switch is connected to the one end of connecting plate, the other end of connecting plate is connected with aluminum section frame's left side, first proximity switch installs at conveyer right frame middle part, second proximity switch installs at conveyer right frame rear portion, second photoelectric switch installs tip behind aluminum section frame.
2. The novel barrel distributing mechanism as claimed in claim 1, wherein: the second clamping device consists of an air cylinder, a connecting seat, a bending plate and a sliding block, wherein the end part of the bending plate is an arc-shaped notch, the bending plate is connected with the end of a piston rod of the air cylinder, the end part of a cylinder body of the air cylinder is fixed with the connecting seat, and the bottom end of the connecting seat is connected with the sliding block.
CN202021221466.1U 2020-06-29 2020-06-29 Novel bucket separating mechanism Active CN212892769U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021221466.1U CN212892769U (en) 2020-06-29 2020-06-29 Novel bucket separating mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021221466.1U CN212892769U (en) 2020-06-29 2020-06-29 Novel bucket separating mechanism

Publications (1)

Publication Number Publication Date
CN212892769U true CN212892769U (en) 2021-04-06

Family

ID=75281017

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021221466.1U Active CN212892769U (en) 2020-06-29 2020-06-29 Novel bucket separating mechanism

Country Status (1)

Country Link
CN (1) CN212892769U (en)

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