CN210557353U - Conveying device for aluminum alloy doors and windows - Google Patents

Conveying device for aluminum alloy doors and windows Download PDF

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Publication number
CN210557353U
CN210557353U CN201921097654.5U CN201921097654U CN210557353U CN 210557353 U CN210557353 U CN 210557353U CN 201921097654 U CN201921097654 U CN 201921097654U CN 210557353 U CN210557353 U CN 210557353U
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support
section
aluminum alloy
limiting plate
windows
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CN201921097654.5U
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Chinese (zh)
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李启亮
徐昕
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Shaanxi Meitai Energy Saving Technology Co Ltd
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Shaanxi Meitai Energy Saving Technology Co Ltd
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Abstract

The utility model relates to an aluminum alloy door and window processing field's a conveyer for aluminum alloy door and window, it includes support and pivot, the pivot runs through the support setting, first rotary drum is installed at the extension section both ends that the pivot stretches out the support, be provided with the bull stick that corresponds the setting with the pivot on the support, install the second rotary drum on the extension section that the bull stick stretches out the support, around being equipped with the conveyer belt on corresponding first rotary drum and the second rotary drum that sets up, pivot one end is connected with driving motor, the both sides of conveyer belt are provided with the limiting plate that is located on the support, be provided with two-way screw rod between two limiting plates, the limiting plate diapire is provided with joint, be connected. The conveyer for aluminum alloy door and window of design is located the limiting plate of conveyer belt both sides, can prevent that the work piece from droing from conveyer, and the limiting plate is adjustable, is convenient for carry on spacingly to the limiting plate according to the size specification of work piece, improves conveyer for aluminum alloy door and window's application scope and practicality.

Description

Conveying device for aluminum alloy doors and windows
Technical Field
The utility model relates to an aluminum alloy door and window processing field especially relates to an aluminum alloy door and window uses conveyer.
Background
The conveying device is a transfer device for conveying semi-finished products or finished products, which is designed for improving the processing efficiency of products and reducing the manpower loss in the processing process of aluminum alloy doors and windows, at present, blanking is firstly carried out in the processing process of aluminum alloy doors and windows, then frame sash, frame material and sash material are cut, welding is carried out, and finally assembly is carried out, wherein in the welding process of an outer frame, the outer frame material is welded through a four-corner welding machine, after the welding is completed, the welded outer frame needs to be conveyed, and the transfer device is mainly manually conveyed or transferred through a transfer vehicle at the present stage, so that the working efficiency is influenced.
Chinese patent publication No. CN203255617U discloses a transfer device, the conveying device comprises a frame, a plurality of first rollers, a plurality of second rollers, a third roller, a first motor, a plurality of chains and a plurality of chain wheels, wherein the frame comprises a first support bar, a second support bar, a third support bar and a reinforcing rib which connects the first support bar, the second support bar and the third support bar into a whole, the two ends of the first roller are respectively and rotationally connected with the first support bar and the second support bar, the two ends of the second roller are respectively and rotationally connected with the second support bar and the third support bar, the two ends of the third roller are respectively and rotationally connected with the first support bar and the third support bar, the end parts of the first rollers, the third rollers and the first motor, which are close to, and two adjacent chain wheels are connected through chains respectively, the end parts of the second rollers and the third rollers, which are close to the second supporting bars, are connected with the chain wheels, and the two adjacent chain wheels are connected through chains respectively.
Above-mentioned technical scheme is in the use, and first cylinder and second cylinder both sides do not set up stop device, and when the work piece was uneven with first cylinder and second cylinder contact surface atress, the work piece skew easily takes place, drops from conveyer.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an aluminum alloy is conveyer for door and window, the limiting plate that is located the conveyer belt both sides can prevent that the work piece from droing from conveyer, and the limiting plate is adjustable, is convenient for carry on spacingly to the limiting plate according to the size specification of work piece, improves aluminum alloy is conveyer for door and window's application scope and practicality.
The above object of the present invention can be achieved by the following technical solutions:
a conveying device for aluminum alloy doors and windows comprises a support and a rotating shaft which is positioned on the support and is rotationally connected with the support, wherein the rotating shaft penetrates through the support, a first rotary drum is sleeved on the rotating shaft, a rotary rod which is correspondingly arranged with the rotating shaft is also arranged on the support, a second rotary drum which is corresponding to the first rotary drum is sleeved on the rotary rod, the highest points of the first rotary drum and the second rotary drum are higher than the surface of the support, a conveying belt is wound on the first rotary drum and the second rotary drum which are correspondingly arranged, the extending section of the rotating shaft extending out of the support is connected with a driving motor which is positioned on the support, limiting plates which are positioned on the support are arranged on two sides of the conveying belt along the length direction, a bidirectional screw which drives the limiting plates to move in opposite directions or in opposite directions is arranged between the two limiting plates, and a connecting joint which is in threaded connection with, and the bidirectional screw is connected with a driving component for driving the bidirectional screw to rotate.
Through the implementation of the technical scheme, when the outer frame is conveyed, the outer frame is placed on the conveying belt, the driving assembly is adjusted, the driving assembly drives the bidirectional screw to rotate, the bidirectional screw drives the connecting joint to move, the connecting joint drives the limiting plate to move, the outer frame can be limited when the limiting plate moves to the limiting plate, the driving assembly is adjusted, the driving assembly stops working, then the driving motor is adjusted, the driving shaft of the driving motor drives the rotating shaft to rotate, the rotating shaft drives the first rotating cylinder to rotate, the first rotating cylinder drives the conveying belt to rotate, the conveying belt drives the second rotating cylinder to rotate, meanwhile, the conveying belt drives the outer frame to move, and the outer frame; the conveyer for aluminum alloy door and window of design is located the limiting plate of conveyer belt both sides, can prevent that the frame from droing from conveyer, and the limiting plate is adjustable, is convenient for carry on spacingly to the limiting plate according to the size specification of frame, improves conveyer for aluminum alloy door and window's application scope and practicality.
The utility model discloses further set up to, drive assembly is including being located first motor on the support, be provided with the driving gear on the motor shaft of first motor, two-way screw rod is including integrative positive thread section and the negative thread section that sets up, positive thread section and negative thread section junction be provided with driving gear engaged with driven gear, positive thread section and negative thread section respectively with two connect joint on the limiting plate connects.
By implementing the technical scheme, the first motor is adjusted, the motor shaft of the first motor drives the driving gear to rotate, the driving gear drives the driven gear to rotate, the driven gear drives the bidirectional screw to rotate, and the bidirectional screw drives the connecting joint to move; the drive assembly of design is convenient for drive limiting plate and moves in opposite directions or deviates from, is convenient for mediate the limiting plate.
The utility model discloses further set up to, be provided with the sliding block on the limiting plate, be provided with on the support and set up and can supply the groove of sliding that the sliding block slided with the sliding block cooperation, the groove of sliding is followed two-way screw rod axial direction sets up.
Through implementing above-mentioned technical scheme, the groove that slides of seting up on the limiting plate can lead the limiting plate, makes the limiting plate slide along certain direction.
The utility model discloses further set up to, the limiting plate is including integrative horizontal segment and the vertical section that sets up, the sliding block is located on the horizontal segment, vertical section is close to conveyer belt one side and is provided with a plurality of evenly distributed's gyro wheel.
By implementing the technical scheme, the limiting plates arranged in sections are convenient for limiting the outer frame; the designed roller can reduce the friction force between the outer frame and the limiting plate, so that the conveyor belt can drive the frame plate to move, and the frame plate is transferred.
The utility model discloses further set up to, the bull stick has been seted up with the leg joint and has been located direction spout on the support, the direction of delivery that the conveyer belt was followed to the direction spout sets up, be provided with the direction slider that can follow the direction spout and slide in the direction spout, be provided with the regulation pole that the drive direction slider slided between direction slider and direction spout cell wall.
Through implementing above-mentioned technical scheme, the regulation pole is adjusted in the alignment, adjusts the pole and drives the guide slide block and slide along the direction spout, and the guide slide block drives the bull stick motion, and the bull stick drives the second rotary drum motion, and the second rotary drum drives the conveyer belt motion, and the guide slide block and the direction spout of design can be adjusted the position of second rotary drum, the tensioning conveyer belt of being convenient for.
The utility model discloses further set up to, adjust the pole include the linkage segment and with the regulation section that linkage segment threaded connection and cavity set up, the linkage segment is connected with the groove cell wall that slides, it is connected with the direction slider rotation to adjust the section.
Through the implementation of the technical scheme, the adjusting section is rotated, moves along the connecting section, meanwhile, the guide sliding block is pushed to slide along the guide sliding groove, the guide sliding block drives the rotating rod to move, the rotating rod drives the second rotating drum to move, and the second rotating drum tensions and adjusts the conveying belt; the telescopic of design is adjusted the pole, is convenient for adjust the direction slider, and then adjusts the rate of tension of conveyer belt.
The utility model discloses further set up to, be provided with the antiskid line on the periphery wall of regulation section.
Through implementing above-mentioned technical scheme, adjust the anti-skidding line that the section outer wall set up, be convenient for rotate the regulation section.
The utility model discloses further set up to, the support include the frame and with a plurality of bracing pieces of frame connection and evenly distributed, the bracing piece includes the support section that cavity set up and follows the section of sliding that supports the section and slide, support the embedded cylinder that is equipped with of section, the cylinder axle and the section diapire of sliding of cylinder are connected.
By implementing the technical scheme, the air cylinder is adjusted, the air cylinder shaft of the air cylinder drives the sliding section to slide along the supporting section, and the supporting section drives the frame plate to move, so that the height of the frame plate can be adjusted; the liftable support is designed, so that the liftable support can be conveniently matched with devices of different specifications, the practicability of the conveying device for the aluminum alloy doors and windows is improved, and the application range of the conveying device for the aluminum alloy doors and windows is enlarged.
To sum up, the utility model discloses following beneficial effect has:
the conveying device for the aluminum alloy doors and windows has the advantages that the limiting plates are arranged on the two sides of the conveying belt, so that workpieces can be prevented from falling off from the conveying device, the limiting plates can be adjusted, the limiting plates can be limited according to the size specification of the workpieces, and the application range and the practicability of the conveying device for the aluminum alloy doors and windows are improved;
this conveyer for al-alloy door & window, the regulation pole of design, the support of design liftable is convenient for cooperate with the equipment of different specifications, improves conveyer for al-alloy door & window's practicality, enlarges conveyer for al-alloy door & window's application scope.
Drawings
Fig. 1 is a schematic view of the overall structure of the embodiment of the present invention.
3 fig. 32 3 is 3 a 3 sectional 3 view 3 taken 3 along 3 the 3 plane 3 a 3- 3 a 3 of 3 fig. 31 3. 3
Fig. 3 is a sectional view taken along the plane B-B of fig. 1.
Fig. 4 is a schematic partial structure diagram of an embodiment of the present invention.
Reference numerals: 1. a support; 11. a frame; 12. a support bar; 121. a slipping section; 122. a support section; 13. a cylinder; 14. a guide chute; 15. a guide slider; 16. adjusting a rod; 161. an adjustment section; 162. a connecting section; 2. a drive assembly; 21. a first motor; 22. a driving gear; 23. a driven gear; 24. a bidirectional screw; 25. connecting a joint; 3. a drive motor; 31. a first rotating drum; 32. a conveyor belt; 33. a second rotating drum; 34. a rotating rod; 35. a rotating shaft; 4. a limiting plate; 41. a roller; 42. a vertical section; 43. a horizontal segment; 44. a sliding groove; 45. and (4) a sliding block.
Detailed Description
The technical solution of the embodiment of the present invention will be described below with reference to the accompanying drawings.
As shown in fig. 1, a conveyer for aluminum alloy door and window, including support 1 and the pivot 35 that is located on support 1 and is connected with support 1 rotation, pivot 35 runs through support 1 and sets up, and pivot 35 stretches up and installs first rotary drum 31, still be provided with on the support 1 and correspond with pivot 35 and set up and axially parallel's bull stick 34, install the second rotary drum 33 that corresponds with first rotary drum 31 on the bull stick 34, the peak point of first rotary drum 31 and second rotary drum 33 is higher than support 1 surface setting, the caulking groove has all been seted up on first rotary drum 31 and the second rotary drum 33 periphery wall, not shown in the figure, around being equipped with conveyer belt 32 on corresponding first rotary drum 31 and the second rotary drum 33 who sets up, conveyer belt 32 is provided with five groups, be connected with the driving motor 3 that is located on support 1 on the extension section that pivot 35 stretches out support 1.
As shown in fig. 2, the two sides of the conveyor belt 32 along the length direction are provided with the position-limiting plates 4 located on the support 1, each position-limiting plate 4 comprises a horizontal section 43 and a vertical section 42 which are integrally arranged, one side of the vertical section 42 close to the conveyor belt 32 is provided with a plurality of rollers 41 which are uniformly distributed, the surface of the horizontal section 43 is fixedly connected with a sliding block 45, the support 1 is provided with a sliding groove 44 which is matched with the sliding block 45 and can allow the sliding block 45 to slide, the sliding groove 44 is arranged along the axial direction of the bidirectional screw 24, the bottom wall of the horizontal section 43 is fixedly connected with the connecting joint 25, the two connecting joints 25 are connected through the bidirectional screw 24, the bidirectional screw 24 is in threaded connection with the connecting joint 25, the bidirectional screw 24 comprises a positive thread section and a negative thread section which are integrally arranged, the positive thread section and the negative thread section are respectively, the driving assembly 2 comprises a first motor 21 positioned on the bracket 1, a driving gear 22 is installed on a motor shaft of the first motor 21, and a driven gear 23 meshed with the driving gear 22 is arranged at the joint of the normal thread section and the reverse thread section.
As shown in fig. 4, a guide chute 14 located on the support 1 is provided at a connection position of the rotating rod 34 and the support 1, the guide chute 14 is arranged along a conveying direction of the conveyor belt 32, a guide slider 15 capable of sliding along the guide chute 14 is arranged in the guide chute 14, an adjusting rod 16 is connected between the guide slider 15 and a wall of the guide chute 14, the adjusting rod 16 comprises a connecting section 162 and an adjusting section 161 which is connected with the connecting section 162 in a threaded manner and is arranged in a hollow manner, the connecting section 162 is connected with a wall of the sliding chute 44, the adjusting section 161 is rotatably connected with the guide slider 15, and anti-skid lines are arranged on an outer peripheral wall of the.
As shown in fig. 2 and 3, the bracket 1 includes a frame 11 and four sets of support rods 12 connected to the frame 11 and uniformly distributed, each support rod 12 includes a support section 122 disposed in a hollow manner and a sliding section 121 sliding along the support section 122, an air cylinder 13 is embedded in the support section 122, and an air cylinder shaft of the air cylinder 13 is fixedly connected to a bottom wall of the sliding section 121.
The utility model discloses the theory of operation does: when conveying the frame, place the frame on conveyer belt 32, adjust first motor 21, the motor shaft of first motor 21 drives driving gear 22 and rotates, driving gear 22 drives driven gear 23 and rotates, driven gear 23 drives two-way screw rod 24 and rotates, two-way screw rod 24 drives joint 25 and moves, joint 25 drives limiting plate 4 and moves, it can carry out spacingly to the frame to move to limiting plate 4, adjust first motor 21, first motor 21 stop work, then adjust driving motor 3, driving motor 3's drive shaft drives pivot 35 and rotates, pivot 35 drives first rotary drum 31 and rotates, first rotary drum 31 drives conveyer belt 32 and rotates, conveyer belt 32 drives second rotary drum 33 and rotates, and simultaneously, conveyer belt 32 drives the frame and moves, transport the frame to the assigned position.

Claims (8)

1. The conveying device for the aluminum alloy doors and windows is characterized by comprising a support (1) and a rotating shaft (35) which is positioned on the support (1) and is rotatably connected with the support (1), wherein the rotating shaft (35) penetrates through the support (1) and is arranged, a first rotating drum (31) is sleeved on the rotating shaft (35), a rotating rod (34) which is correspondingly arranged with the rotating shaft (35) is further arranged on the support (1), a second rotating drum (33) corresponding to the first rotating drum (31) is sleeved on the rotating rod (34), the highest points of the first rotating drum (31) and the second rotating drum (33) are higher than the surface of the support (1), a conveying belt (32) is wound on the first rotating drum (31) and the second rotating drum (33) which are correspondingly arranged, the rotating shaft (35) extends out, a driving motor (3) positioned on the support (1) is connected to an extending section of the support (1), conveyer belt (32) are provided with along length direction's both sides and are located limiting plate (4) on support (1), two be provided with the drive between limiting plate (4) or two-way screw rod (24) that deviate from the motion in opposite directions, limiting plate (4) diapire be provided with two-way screw rod (24) threaded connection's attach fitting (25), be connected with the drive on two-way screw rod (24) pivoted drive assembly (2).
2. The conveying device for the aluminum alloy doors and windows as claimed in claim 1, wherein the driving assembly (2) comprises a first motor (21) located on the support (1), a driving gear (22) is arranged on a motor shaft of the first motor (21), the bidirectional screw (24) comprises a forward thread section and a backward thread section which are integrally arranged, a driven gear (23) meshed with the driving gear (22) is arranged at the joint of the forward thread section and the backward thread section, and the forward thread section and the backward thread section are respectively connected with two connecting joints (25) on the limiting plate (4).
3. The conveying device for the aluminum alloy doors and windows as claimed in claim 2, wherein the limiting plate (4) is provided with a sliding block (45), the support (1) is provided with a sliding groove (44) which is matched with the sliding block (45) and can be used for the sliding block (45) to slide, and the sliding groove (44) is arranged along the axial direction of the bidirectional screw (24).
4. The conveying device for the aluminum alloy doors and windows as claimed in claim 3, wherein the limiting plate (4) comprises a horizontal section (43) and a vertical section (42) which are integrally arranged, the sliding block (45) is positioned on the horizontal section (43), and one side of the vertical section (42) close to the conveying belt (32) is provided with a plurality of uniformly distributed rollers (41).
5. The conveying device for the aluminum alloy doors and windows as claimed in claim 1, wherein a guide chute (14) located on the support (1) is formed at the joint of the rotating rod (34) and the support (1), the guide chute (14) is arranged along the conveying direction of the conveying belt (32), a guide sliding block (15) capable of sliding along the guide chute (14) is arranged in the guide chute (14), and an adjusting rod (16) for driving the guide sliding block (15) to slide is arranged between the guide sliding block (15) and the chute wall of the guide chute (14).
6. The conveying device for the aluminum alloy doors and windows as claimed in claim 5, wherein the adjusting rod (16) comprises a connecting section (162) and an adjusting section (161) which is connected with the connecting section (162) in a threaded manner and is arranged in a hollow manner, the connecting section (162) is connected with the wall of the sliding groove (44), and the adjusting section (161) is rotatably connected with the guide sliding block (15).
7. The conveying device for the aluminum alloy doors and windows as claimed in claim 6, wherein the adjusting section (161) is provided with anti-slip lines on the outer circumferential wall.
8. The conveying device for the aluminum alloy doors and windows as claimed in claim 1, wherein the support (1) comprises a frame (11) and a plurality of support rods (12) which are connected with the frame (11) and are uniformly distributed, each support rod (12) comprises a support section (122) which is arranged in a hollow mode and a sliding section (121) which slides along the support section (122), a cylinder (13) is embedded in the support section (122), and a cylinder shaft of the cylinder (13) is connected with the bottom wall of the sliding section (121).
CN201921097654.5U 2019-07-12 2019-07-12 Conveying device for aluminum alloy doors and windows Active CN210557353U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921097654.5U CN210557353U (en) 2019-07-12 2019-07-12 Conveying device for aluminum alloy doors and windows

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921097654.5U CN210557353U (en) 2019-07-12 2019-07-12 Conveying device for aluminum alloy doors and windows

Publications (1)

Publication Number Publication Date
CN210557353U true CN210557353U (en) 2020-05-19

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Application Number Title Priority Date Filing Date
CN201921097654.5U Active CN210557353U (en) 2019-07-12 2019-07-12 Conveying device for aluminum alloy doors and windows

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111993046A (en) * 2020-09-04 2020-11-27 深圳市合东兴科技有限公司 Improved intelligent automatic production line for doors and windows and production method thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111993046A (en) * 2020-09-04 2020-11-27 深圳市合东兴科技有限公司 Improved intelligent automatic production line for doors and windows and production method thereof
CN111993046B (en) * 2020-09-04 2021-08-03 深圳市合东兴科技有限公司 Improved intelligent automatic production line for doors and windows and production method thereof

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