CN211033970U - Drum-type wire body - Google Patents

Drum-type wire body Download PDF

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Publication number
CN211033970U
CN211033970U CN201921792188.2U CN201921792188U CN211033970U CN 211033970 U CN211033970 U CN 211033970U CN 201921792188 U CN201921792188 U CN 201921792188U CN 211033970 U CN211033970 U CN 211033970U
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auxiliary
main
transmission
roller
wire body
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CN201921792188.2U
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Chinese (zh)
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柯建生
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Guangzhou Ningji Intelligent System Co ltd
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Guangzhou Ningji Intelligent System Co ltd
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Abstract

The utility model discloses a drum-type line body, it includes at least one transfer unit, each transfer unit arranges in proper order along transmission direction and constitutes transmission channel, independent switch has been arranged to each transfer unit, the transfer unit includes main transport mechanism and at least one auxiliary transport mechanism, main transport mechanism includes main frame and a plurality of main cylinder spare, main drive arrangement has been arranged in the main frame, main drive arrangement includes main motor and main transfer line, main transfer line drives each main cylinder spare respectively through the flat belt, auxiliary transport mechanism includes auxiliary frame and a plurality of auxiliary cylinder spare, auxiliary drive arrangement has been arranged in the auxiliary frame, auxiliary drive arrangement includes auxiliary motor and auxiliary transmission line, auxiliary transmission line passes through the flat belt and drives each auxiliary cylinder spare respectively. The auxiliary transmission mechanism is used for increasing the width of the transmission channel, the flat belt drives the transmission channel to reduce noise and realize stable transmission, the transmission unit is provided with an independent switch, the start and stop can be controlled independently, and the transmission device can be widely applied to the technical field of transmission equipment.

Description

Drum-type wire body
Technical Field
The utility model relates to a transmission equipment technical field, in particular to drum-type line body.
Background
The roller conveying line is usually used for continuously conveying materials, has the characteristics of large conveying capacity and large conveying distance, can simultaneously complete a plurality of process operations in the conveying process, and is very wide in application. At present, every two adjacent conveying rollers in a commonly used roller conveying line body are generally conveyed in a chain transmission mode, and the roller conveying line body is high in noise and vibration. In addition, the existing roller conveying line is mostly a continuous conveying working mode, if a certain operation procedure delays time midway, the roller conveying line causes subsequent materials to be continuously conveyed forwards due to the characteristic of continuous conveying, so that the operation procedure is disordered, if the transmission of the roller conveying line is closed at the moment, the materials are continuously conveyed after the operation procedure returns to normal, and then the production efficiency is influenced.
In addition, the width of the conventional roller conveyor line body is fixed, and if a wider plate needs to be conveyed, rollers with corresponding widths need to be customized, which undoubtedly increases the production cost.
SUMMERY OF THE UTILITY MODEL
For solving at least one among the above-mentioned technical problem, noise reduction avoids influencing production efficiency, reduces manufacturing cost, the utility model discloses the technical scheme who adopts as follows:
the utility model provides a drum-type line body, it includes at least one transfer unit, each transfer unit arranges in proper order along transmission direction and constitutes transmission channel, independent switch has been arranged to each transfer unit, the transfer unit includes main transport mechanism and at least one auxiliary transport mechanism, each auxiliary transport mechanism arranges side by side, each auxiliary transport mechanism is located same one side of main transport mechanism, main transport mechanism includes main frame and a plurality of main cylinder spare, main drive arrangement has been arranged in the main frame, main drive arrangement includes main motor and main transfer line, main transfer line drives each main cylinder spare respectively through the flat belt, auxiliary transport mechanism includes auxiliary machine frame and a plurality of auxiliary cylinder spare, auxiliary drive arrangement has been arranged in the auxiliary machine frame, auxiliary drive arrangement includes auxiliary motor and auxiliary transfer line, auxiliary transfer line drives each auxiliary cylinder spare respectively through the flat belt.
Furthermore, detectors are respectively arranged at the feeding end and the discharging end of the main conveying mechanism, and the detectors are photoelectric reflectors.
Further, the detector is installed in transmission channel's top through first crossbeam and first mounting panel, and the detector is installed at first mounting panel, and first mounting panel passes through the screw and the slider nut is installed on first crossbeam, and first crossbeam is the aluminium alloy.
Further, first crossbeam is installed at the main frame through first perpendicular roof beam, and first crossbeam is arranged at the top of first perpendicular roof beam through first corner seat, installs through screw and slider nut between first corner seat and the first crossbeam, installs through screw and slider nut between first corner seat and the first perpendicular roof beam, and first perpendicular roof beam is the aluminium alloy.
Furthermore, the output end of the main motor drives the main transmission rod through a toothed belt, and the output end of the auxiliary motor drives the auxiliary transmission rod through the toothed belt.
Furthermore, two ends of the main roller piece are respectively installed on the main frame through a support, and two ends of the auxiliary roller piece are respectively installed on the auxiliary frame through a support.
Further, the top shaping of support has first mounting groove, and the one end of first mounting groove is uncovered, and the open end of first mounting groove is located the top of support.
Further, a flange assembly is arranged on one side of the main frame and comprises a guardrail, and a protective pad is arranged on one side, used for abutting against the workpiece, of the guardrail.
Further, the guardrail is installed at the main frame through two at least second vertical beams, and the back shaft that is used for installing the guardrail is arranged to the upper end of second vertical beam.
Further, a second mounting groove for clamping the support shaft is formed at the upper end of the second vertical beam, and the support shaft can move in the second mounting groove along the axis direction of the support shaft.
Has the advantages that: designing an auxiliary transmission mechanism to be arranged on one side of the main transmission mechanism and used for increasing the width of the transmission channel; the flat belt is adopted to drive the main roller piece and the auxiliary roller piece, so that noise is reduced, stable transmission is ensured, and the conveying unit is provided with an independent switch and can be independently controlled to start and stop. The utility model discloses it is rational in infrastructure, but wide application in transmission equipment technical field.
Drawings
FIG. 1 is a block diagram of a transfer unit;
FIG. 2 is a schematic view of the main transport mechanism;
FIG. 3 is a side view of the main transport mechanism;
FIG. 4 is a block diagram of the detector, first cross beam and first vertical beam;
FIG. 5 is a block diagram of the guardrail, second vertical beam and support shaft, with the guardrail shown in partial length;
FIG. 6 is a block diagram of an auxiliary transport mechanism;
FIG. 7 is a partial view of area A of FIG. 6;
fig. 8 is a side view of the auxiliary transport mechanism.
Detailed Description
The present invention will be further described with reference to fig. 1 to 8.
The utility model relates to a drum-type line body, it includes at least one transfer unit, and each transfer unit arranges in proper order along direction of transfer and constitutes transmission path.
If the number of the conveying units is two or more, each conveying unit is provided with an independent switch, so that each conveying unit can be started and stopped independently. And if the second conveying unit also conveys the plate, the second conveying unit suspends conveying, and when the plate in the first conveying unit is conveyed completely, the second conveying unit continues conveying again.
Correspondingly, each subsequent conveying unit adopts the mode, so that the subsequent conveying units play a role of temporarily storing the plates. By adopting the sectional conveying mode, the number of the plates entering the conveying channel can be increased.
The conveying unit comprises a main conveying mechanism and at least one auxiliary conveying mechanism, the auxiliary conveying mechanisms are arranged side by side and are positioned on the same side of the main conveying mechanism, the auxiliary conveying mechanisms are used for increasing the width of the conveying channel, and the number of the auxiliary conveying mechanisms can be determined according to the width of the plate.
Each main transmission mechanism comprises a main frame 12 and a plurality of main roller pieces 11, a main driving device is arranged in the main frame 12 and comprises a main motor 13 and a main transmission rod 14, the main transmission rod 14 respectively drives the roller pieces through flat belts, the number of the flat belts corresponds to that of the main roller pieces 11, and half-cross transmission is adopted between the main transmission rods 14 and the flat belts.
The auxiliary conveying mechanism comprises an auxiliary machine frame 29 and a plurality of auxiliary roller parts 26, an auxiliary driving device is arranged in the auxiliary machine frame 29, the auxiliary driving device comprises an auxiliary motor 27 and an auxiliary driving rod 28, the auxiliary driving rod 28 drives the auxiliary roller parts 26 respectively through a flat belt, the number of the auxiliary roller parts 26 on the flat belt corresponds to that of the auxiliary roller parts, and half-cross transmission is formed between the auxiliary driving rod 28 and the flat belt.
In the same transmission unit, the switch controls the start and stop of the main motor 13 and the auxiliary motor 27 simultaneously.
Compared with the traditional chain transmission mode, the flat belt transmission adopted in the main transmission mechanism and the auxiliary transmission mechanism has the advantages of high speed, low noise and the like.
The output end of the main motor 13 drives the main transmission rod 14 through a toothed belt, the output end of the auxiliary motor 27 drives the auxiliary transmission rod 28 through the toothed belt, and the toothed belt transmission has the advantages of stable and synchronous transmission and the like, and is convenient for the instant start and stop of the main roller part 11.
Both ends of the main drum member 11 are respectively mounted on the main frame 12 through the brackets 15, and both ends of the auxiliary drum member 26 are respectively mounted on the auxiliary frame 29 through the brackets 15. The top of the support 15 is formed with a first mounting groove, one end of the first mounting groove is open, and the open end of the first mounting groove is located at the top of the support 15, so that the main roller 11 can be conveniently assembled and disassembled from the support 15.
A flange assembly is arranged at one side of the main frame 12, specifically, the flange assembly and the auxiliary conveying mechanism are respectively positioned at two sides of the main frame 12, and the flange assembly prevents the plates from falling from the side surface of the conveying channel. The flange subassembly includes guardrail 21, and the protection pad 22 has been arranged to one side that is used for supporting the work piece on the guardrail 21, can avoid the panel side to produce the mar, and protection pad 22 can be selected to use the foam or foam.
The guard rail 21 is mounted to the main frame 12 by at least two second vertical beams 23, and a support shaft 24 for mounting the guard rail 21 is disposed at an upper end of the second vertical beams 23. The upper end shaping of second vertical beam 23 has the second mounting groove that is used for pressing from both sides tight back shaft 24, and the second mounting groove is U type groove, and back shaft 24 can move in the second mounting groove along self axis direction, and the position control of back shaft 24 is accomplished the back, through the uncovered of bolt and nut locking second mounting groove to fixed back shaft 24.
The detector 16 is respectively arranged at the feeding end and the discharging end of the main conveying mechanism, the detector 16 is used for detecting the front end of the plate, and the detector 16 is a photoelectric reflector. It should be noted that the detector 16 is disposed on the same side of the main frame 12 as the edge guard assembly.
Detector 16 installs in transmission channel's top through first crossbeam 17 and first mounting panel 18, and detector 16 installs at first mounting panel 18, and first mounting panel 18 passes through the screw and the slider nut is installed on first crossbeam 17, and first crossbeam 17 is the aluminium alloy, and the outside shaping of aluminium alloy has the cell body that can supply the slider nut to install, and detector 16 can move the adjustment position on first crossbeam 17.
First crossbeam 17 is installed at main frame 12 through first perpendicular roof beam 19, and first crossbeam 17 arranges the top at first perpendicular roof beam 19 through first corner seat 20, installs through screw and slider nut between first corner seat 20 and the first crossbeam 17, installs through screw and slider nut between first corner seat 20 and the first perpendicular roof beam 19, and first perpendicular roof beam 19 is the aluminium alloy.
The main frame 12 has a straight beam made of aluminum profile, the first vertical beam 19 is mounted on the side of the straight beam through the second corner seat 25, screws and slide nuts, and the position of the first vertical beam 19 can be adjusted along the transmission direction and also can be adjusted in the vertical direction so as to adjust the height of the detector 16.
The embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present invention within the knowledge of those skilled in the art.

Claims (10)

1. The line body of drum-type, its characterized in that: comprises at least one transmission unit, each transmission unit is sequentially arranged along the transmission direction to form a transmission channel, each transmission unit is provided with an independent switch, each transmission unit comprises a main transmission mechanism and at least one auxiliary transmission mechanism, each auxiliary transmission mechanism is arranged side by side, each auxiliary transmission mechanism is positioned at the same side of the main transmission mechanism, the main transmission mechanism comprises a main frame (12) and a plurality of main roller pieces (11), a main driving device is arranged in the main frame (12), the main driving device comprises a main motor (13) and a main transmission rod (14), the main transmission rod (14) respectively drives each main roller piece (11) through a flat belt, the auxiliary transmission mechanism comprises an auxiliary frame (29) and a plurality of auxiliary roller pieces (26), an auxiliary driving device is arranged in the auxiliary frame (29), and the auxiliary driving device comprises an auxiliary motor (27) and an auxiliary transmission rod (28), an auxiliary drive rod (28) drives each auxiliary roller element (26) separately via a flat belt.
2. A roller-type wire body according to claim 1, wherein: detectors (16) are respectively arranged at the feeding end and the discharging end of the main conveying mechanism, and the detectors (16) are photoelectric reflectors.
3. A drum-type wire body according to claim 2, wherein: detector (16) are installed in transmission channel's top through first crossbeam (17) and first mounting panel (18), and detector (16) are installed in first mounting panel (18), and first mounting panel (18) are installed on first crossbeam (17) through screw and slider nut, and first crossbeam (17) are the aluminium alloy.
4. A roller-type wire body according to claim 3, wherein: first crossbeam (17) are installed at main frame (12) through first perpendicular roof beam (19), and first crossbeam (17) are arranged at the top of first perpendicular roof beam (19) through first angle seat (20), install through screw and slider nut between first angle seat (20) and first crossbeam (17), install through screw and slider nut between first angle seat (20) and first perpendicular roof beam (19), and first perpendicular roof beam (19) is the aluminium alloy.
5. A roller-type wire body according to claim 1, wherein: the output end of the main motor (13) drives the main transmission rod (14) through a toothed belt, and the output end of the auxiliary motor (27) drives the auxiliary transmission rod (28) through the toothed belt.
6. A roller-type wire body according to claim 1, wherein: two ends of the main roller piece (11) are respectively arranged on the main frame (12) through the support (15), and two ends of the auxiliary roller piece (26) are respectively arranged on the auxiliary frame (29) through the support (15).
7. A roller-type wire body according to claim 6, wherein: the top shaping of support (15) has first mounting groove, and the one end of first mounting groove is uncovered, and the open end of first mounting groove is located the top of support (15).
8. A roller-type wire body according to claim 1, wherein: a flange assembly is arranged on one side of the main frame (12), the flange assembly comprises a guardrail (21), and a protective pad (22) is arranged on one side, used for abutting against a workpiece, of the guardrail (21).
9. A roller-type wire body according to claim 8, wherein: the guardrail (21) is mounted on the main frame (12) by at least two second vertical beams (23), and a support shaft (24) for mounting the guardrail (21) is arranged at the upper end of each second vertical beam (23).
10. A roller-type wire body according to claim 9, wherein: the upper end of the second vertical beam (23) is provided with a second mounting groove for clamping the support shaft (24), and the support shaft (24) can move in the second mounting groove along the axis direction.
CN201921792188.2U 2019-10-23 2019-10-23 Drum-type wire body Active CN211033970U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921792188.2U CN211033970U (en) 2019-10-23 2019-10-23 Drum-type wire body

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921792188.2U CN211033970U (en) 2019-10-23 2019-10-23 Drum-type wire body

Publications (1)

Publication Number Publication Date
CN211033970U true CN211033970U (en) 2020-07-17

Family

ID=71566504

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921792188.2U Active CN211033970U (en) 2019-10-23 2019-10-23 Drum-type wire body

Country Status (1)

Country Link
CN (1) CN211033970U (en)

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