CN118255129B - Leaf arrangement platform of vacuum insulation panel - Google Patents

Leaf arrangement platform of vacuum insulation panel Download PDF

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Publication number
CN118255129B
CN118255129B CN202410694259.4A CN202410694259A CN118255129B CN 118255129 B CN118255129 B CN 118255129B CN 202410694259 A CN202410694259 A CN 202410694259A CN 118255129 B CN118255129 B CN 118255129B
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CN
China
Prior art keywords
driver
sliding
clamping
vacuum insulation
insulation panel
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CN202410694259.4A
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Chinese (zh)
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CN118255129A (en
Inventor
谢建光
赖礼远
陈杰明
蔡晓烽
郑锦滨
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Xiamen Jina Intelligent Equipment Co ltd
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Xiamen Jina Intelligent Equipment Co ltd
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Priority to CN202410694259.4A priority Critical patent/CN118255129B/en
Publication of CN118255129A publication Critical patent/CN118255129A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G47/00Article or material-handling devices associated with conveyors; Methods employing such devices
    • B65G47/22Devices influencing the relative position or the attitude of articles during transit by conveyors
    • B65G47/24Devices influencing the relative position or the attitude of articles during transit by conveyors orientating the articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G2207/00Indexing codes relating to constructional details, configuration and additional features of a handling device, e.g. Conveyors
    • B65G2207/08Adjustable and/or adaptable to the article size

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Sheets, Magazines, And Separation Thereof (AREA)

Abstract

The invention relates to the field of packaging devices, in particular to a vacuum insulation panel leaf finishing platform, which structurally comprises the following components: the arrangement arm comprises a driving slide rail, a clamping arm and a clamping strip, wherein the clamping arm is arranged at the top of the driving slide rail and is symmetrically arranged, a second driver is arranged at one end of the clamping arm, which extends outwards, and is connected with the clamping strip through the second driver, and the second driver is perpendicular to the horizontal plane on which the driving slide rail is arranged; the both sides are moved through the synchronous drive arm lock of drive slide rail, carry out the centre gripping flattening to the leaf of heat insulating board through the grip bar of second driver control bottom, can carry out the correction of position to the heat insulating board through the grip bar simultaneously, more can counterpoint when getting into next machining flow, improve machining efficiency, the fixed cross beam bottom of grip bar sets up the curb plate that can expand, and carry out spacingly through the regulator, the curb plate outwards expands when pushing down, make the heat insulating board leaf part flatten, avoid the resistance too big in outwards dragging.

Description

Leaf arrangement platform of vacuum insulation panel
Technical Field
The invention relates to a leaf arranging platform of a vacuum insulation panel, and belongs to the field of packaging devices.
Background
The vacuum heat insulation board is one of vacuum heat insulation materials, is formed by compounding a filling core material and a vacuum protection surface layer, and effectively avoids heat transfer caused by air convection, so that the heat conductivity coefficient can be greatly reduced.
The vacuum insulation panel generally adopts aluminum foil as a shell, the middle core material is thicker, the side edges can be longer edges, and the edges can be tilted at any angle in the interval from 180 degrees upwards to 180 degrees downwards; to ensure that the leaves are combed to a level before the product is fed to the next process.
Therefore, the vacuum insulation board leaf arrangement platform is designed to arrange irregular side edges of the vacuum insulation board, so that the processing efficiency is improved, and the blockage of a conveying device caused in the process of bending the leaves of the vacuum insulation board up and down is avoided.
Disclosure of Invention
Aiming at the defects existing in the prior art, the invention aims to provide a vacuum insulation panel leaf finishing platform so as to solve the problems.
In order to achieve the above object, the present invention is realized by the following technical scheme: a vacuum insulation panel leaf arrangement platform structurally comprises: organism and driver, first slide rail is installed at the organism top, and the organism passes through first slide rail and driver sliding fit, the driver includes:
The arrangement arm comprises a driving slide rail, a clamping arm and a clamping strip, wherein the clamping arm is arranged at the top of the driving slide rail and is symmetrically arranged, a second driver is arranged at one end of the outwards extending side of the clamping arm and is connected with the clamping strip through the second driver, and the second driver is perpendicular to the horizontal plane on which the driving slide rail is arranged;
The conveying frame comprises a frame body, a movable frame and supporting side frames, wherein a suction rod and idler wheels are arranged on the surface of the frame body, the suction rod stretches and contracts perpendicular to the plane of the frame body, the idler wheels are arranged between the idler wheels, and the supporting side frames are also arranged on two sides of the frame body;
The first driver is mechanically connected with a first adjusting belt arranged at the bottom of the sorting arm and a second adjusting belt arranged at the bottom of the conveying frame, the first adjusting belt and the second adjusting belt synchronously rotate with the first driver, and the moving speed of the sorting arm driven by the first adjusting belt is greater than that of the conveying frame driven by the second adjusting belt.
Preferably, a balance rod is further installed between the driving sliding rails, and the balance rod is parallel to the clamping strips.
Preferably, the clamping strip comprises a fixed cross beam, side plates and a regulator, the regulator capable of moving vertically is arranged in the middle of the clamping strip, two sides of the fixed cross beam are movably connected with the side plates, and the fixed cross beam limits the rotation angle of the side plates through the regulator.
Preferably, the fixed cross beam comprises a beam body, a sliding rod is arranged on the bottom surface of the beam body, limiting plates are fixed on two sides of the beam body, the fixed cross beam is in nested fit with the side plates through movable shafts of the limiting plates, and a knob is arranged at the bottom of the sliding rod and used for limiting the movement of the regulator.
Preferably, the sliding rail matched with the regulator is arranged on the inner surface of the plate body of the side plate, a limiting bottom groove is formed in the bottom of the plate body, and the plate body is in nested fit with the pull plate strip through the limiting bottom groove.
Preferably, the adjuster comprises a sliding sleeve, support plates are arranged on two sides of the sliding sleeve in an extending mode and used for installing pull rods, clamping sleeves matched with the sliding rails are arranged at one ends of the pull rods penetrating through the support plates, tension springs are arranged between the pull rods and the support plates, penetrating sliding grooves are formed in the sliding sleeve, and the sliding grooves are in sliding fit with the sliding rods.
Preferably, the sliding rods are arranged in a group, one long and one short, and one long end is provided with external threads matched with the knob.
Preferably, the contact surface of the clamping sleeve and the sliding rail is an inclined surface, and the clamping end is of a movable structure, and the clamping end is telescopic when the clamping sleeve contacts with the sliding rail, so that the movable end of the clamping sleeve is embedded into the groove of the sliding rail.
Preferably, the pull strip is made of an elastic material.
Preferably, one side of the sliding rail is fixed with the movable end at the top of the plate body, a gap is formed between the other side of the sliding rail and the limiting bottom groove, and the gap width is larger than the thickness of the sliding sleeve.
The invention discloses a vacuum insulation board leaf finishing platform, which has the following effects:
The improved device controls the first adjusting belt and the second adjusting belt to drive the arranging arm and the conveying frame to carry out adaptive adjustment according to different sizes of the heat insulation plates through the first driver, so that the problem that the heat insulation plates are overlarge in deviation in the moving process and topple over is avoided in use;
The clamping arms are synchronously driven to move by the driving sliding rails at two sides, the clamping bars at the bottom are controlled by the second driver to clamp and level the leaves of the heat insulation plate, meanwhile, the positions of the heat insulation plate can be corrected by the clamping bars, and the heat insulation plate can be aligned when entering the next processing flow, so that the processing efficiency is improved;
The fixed crossbeam bottom of centre gripping strip sets up the curb plate that can expand to carry out spacingly through the regulator, the curb plate outwards expands when pushing down, makes the local exhibition of heat-insulating board leaf, avoids the resistance too big when outwards dragging, also more flattening at the in-process of stretching.
The regulator is spacing through the slide bar, and slide bar length cooperation is short when making things convenient for the knob to lock one side of short to assist and is removed, avoids the sliding sleeve to remove the in-process and appears the skew, makes things convenient for the dismantlement installation of sliding sleeve simultaneously, and later maintenance is more convenient.
Drawings
Other features, objects and advantages of the present invention will become more apparent upon reading of the detailed description of non-limiting embodiments, given with reference to the accompanying drawings in which:
Fig. 1 is a schematic structural view of a leaf finishing platform for a vacuum insulation panel according to the present invention.
Fig. 2 is a schematic structural diagram of the driver of the present invention.
Fig. 3 is a schematic structural view of the carriage of the present invention.
Fig. 4 is an enlarged schematic view of the a structure of fig. 1.
Fig. 5 is a schematic view of the structure of the finishing arm of the present invention.
Fig. 6 is a schematic view of the structure of the clamping strip of the present invention.
Fig. 7 is a schematic view of the structure of the fixed beam and the regulator of the present invention.
Fig. 8 is a schematic structural view of a side plate according to the present invention.
FIG. 9 is a schematic cross-sectional view of a clip strip of the present invention.
In the figure:
1. A driver; 2. a first slide rail; 3. a body;
11. a finishing arm; 12. a carriage; 13. a first adjustment belt; 14. a second adjustment belt; 15. a first driver;
111. a balance bar; 112. driving the slide rail; 113. a clamp arm; 114. a second driver; 115. clamping the strip;
121. a frame body; 122. a suction rod; 123. a roller; 124. a moving rack; 125. a support side frame;
51. Fixing the cross beam;
511. a beam body; 512. a slide bar; 513. a knob; 514. a limiting plate;
52. A side plate;
521. A plate body; 522. a slide rail; 523. a limiting bottom groove; 524. pulling the strip;
53. A regulator;
531. a sliding sleeve; 532. a chute; 533. a pull rod; 534. a tension spring; 535. a card sleeve.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present invention more apparent, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is apparent that the described embodiments are some embodiments of the present invention, but not all embodiments. All other embodiments, based on the embodiments of the invention, which are apparent to those of ordinary skill in the art without inventive faculty, are intended to be within the scope of the invention. Thus, the following detailed description of the embodiments of the invention, as presented in the figures, is not intended to limit the scope of the invention, as claimed, but is merely representative of selected embodiments of the invention. All other embodiments, based on the embodiments of the invention, which are apparent to those of ordinary skill in the art without inventive faculty, are intended to be within the scope of the invention.
In the description of the present invention, the terms "first," "second," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include one or more such feature. In the description of the present invention, the meaning of "a plurality" is two or more, unless explicitly defined otherwise.
The existing vacuum insulation panel generally adopts aluminum foil as a shell, the middle core material is thicker, the side edges can be longer edges, and the edges can be tilted at any angle in the interval from 180 degrees upwards to 180 degrees downwards; in order to ensure that the leaves are combed to be in a horizontal state before the product is sent to the next process, the scheme provides the following technical scheme for solving the problems:
Referring to fig. 1 to 9, the present invention provides a technical solution for a vacuum insulation panel leaf finishing platform: the driver 1 includes: the arrangement arm 11, the arrangement arm 11 comprises a driving slide rail 112, a clamping arm 113 and a clamping strip 115, the clamping arm 113 is arranged at the top of the driving slide rail 112, the clamping arm 113 is symmetrically arranged, one end of the clamping arm 113 extending outwards is provided with a second driver 114, the second driver 114 is connected with the clamping strip 115 through the second driver 114, and the second driver 114 is perpendicular to the horizontal plane on which the driving slide rail 112 is arranged;
The conveying frame 12, the conveying frame 12 comprises a frame body 121, a movable frame 124 and a supporting side frame 125, a suction rod 122 and a roller 123 are arranged on the surface of the frame body 121, the suction rod 122 can stretch and retract perpendicular to the plane of the frame body 121, the roller 123 is arranged between the rollers 123, and the supporting side frame 125 is also arranged on two sides of the frame body 121;
the first driver 15, the first driver 15 is mechanically connected with the first adjusting belt 13 installed at the bottom of the sorting arm 11 and the second adjusting belt 14 installed at the bottom of the conveying frame 12, the first adjusting belt 13 and the second adjusting belt 14 rotate synchronously with the first driver 15, and the moving speed of the sorting arm 11 driven by the first adjusting belt 13 is larger than that of the conveying frame 12 driven by the second adjusting belt 14.
The main structure of the device comprises a driver 1, wherein the driver 1 is arranged at the top of a machine body 3 through a first sliding rail 2, the driver 1 comprises a finishing arm 11 and a conveying frame 12, the finishing arm 11 is used for leveling the edge of a middle heat insulation plate, and the conveying frame 12 in the middle is used for conveying the heat insulation plate, so that the heat insulation plate is horizontally conveyed to a production line.
The driving unit of the driver 1 is located at the bottom of the top surface of the machine body 3, the first driver 15 is used for synchronously driving the first adjusting belt 13 and the second adjusting belt 14 to act through power input, the first adjusting belt 13 is used for controlling the lateral movement of one side of the sorting arm 11, the second adjusting belt 14 is used for controlling the lateral movement of the conveying frame 12, and the first adjusting belt 13 and the second adjusting belt 14 are connected with the main shaft of the first driver 15 together to synchronously rotate.
The specific rotation speed ratio of the first adjusting belt 13 to the second adjusting belt 14 is 2:1, and when the first adjusting belt 13 moves by 20cm, the second adjusting belt 14 moves by 10cm, which mainly acts on the middle position of the conveying frame 12 when conveying different plate body widths, so that unstable falling of the heat insulation plate is avoided.
The structure of carriage 12 includes support body 121, support body 121 surface is provided with a plurality of suction bars 122 and gyro wheel 123 to support side bearer 125 is used for preventing inclining in the both sides of support body 121, sets up the movable frame 124 that can slide in the bottom of support body 121 and refer to fig. 4, and the telescopic link of movable frame 124 is risen in the time of the pay-off, and the sucking disc at telescopic link top carries out the actuation to the insulation board, removes the translation of frame 124 after the actuation, removes to working area under the assistance of gyro wheel 123, carries out jacking actuation spacing through suction bar 122 after putting in place, and then the arrangement arm 11 work of both sides.
The structure of arrangement arm 11 includes balancing pole 111, balancing pole 111 installs at the middle part of drive slide rail 112 for the action of synchronous drive slide rail 112 avoids arm lock 113 to lead to clamp strip 115 to appear the skew when removing, and arm lock 113 is V type structure, sets up second driver 114 in the opening part and is used for driving clamp strip 115 and centre gripping, and arrangement arm 11 is to propping the setting, and one side is fixed, and one side drive slide rail 112 of activity and the nested swing joint of first slide rail 2 drive through first regulation area 13, and the removal of drive slide rail 112 double stroke makes this device more convenient at the heat insulating board of processing different width.
The fixed cross beam 51 at the top of the clamping bar 115 is used for being fixed with the second driver 114, the side plates 52 are arranged at the bottom and used for arranging the heat-insulating plate leaves, the limiting plates 514 at the two sides of the fixed cross beam 51 are in nested fit with the side plates 52, and when the fixed cross beam 51 presses down the pulling plate bars 524 at the bottom of the side plates 52, the heat-insulating plate leaves are flattened.
The bottom of the beam body 511 is provided with two sliding rods 512 matched with the regulator 53 and locked through a knob 513, wherein the sliding rods 512 are arranged in long and short matching, one long side is used for being matched with the knob 513 for locking and limiting, and the short side is used for assisting in avoiding the regulator 53 from shifting when sliding up and down.
The structure of the regulator 53 is provided with a sliding sleeve 531, the sliding sleeve 531 is provided with two sliding grooves 532 matched with the sliding rod 512, two sides of the sliding sleeve 531 are provided with a pull rod 533 to connect the clamping sleeve 535 with the sliding rail 522 on the surface of the plate body 521 for nesting and matching, and when the plate body 521 is unfolded, the sliding rail 522 is pulled under the matching of a tension spring 534 connected with the clamping sleeve 535, so that the leaf of the heat insulation plate can be leveled in the process of pushing down and displacing.
The limit bottom groove 523 at the bottom of the plate body 521 is used for nesting the pull strip 524, and the pull strip 524 is made of flexible materials, so that damage to the leaves of the heat insulation plate is avoided.
The device is used for processing the concrete flow:
s1 drives the first adjusting belt 13 and the second adjusting belt 14 to drive the tidying arm 11 and the conveying frame 12 to move through the first driver 15 at the bottom, and the tidying arm and the conveying frame 12 are adjusted to a proper position, so that the heat insulation plate is in a central position when entering.
S2, when the heat insulation plate enters the conveying frame 12 through the production line, the heat insulation plate moves to the bottom of the heat insulation plate through the moving frame 124, is sucked and conveyed through the suction rod 122, is placed when being conveyed to the supporting side frame 125, and is limited through the suction rod 122.
S3, the servo motor driving the slide rail 112 drives the clamping arm 113 to move, when the clamping strip 115 is positioned in the middle of the heat insulation plate, the slide rail 112 is driven to stop rotating, then the second driver 114 downwards drives the clamping strip 115 to clamp towards the middle, and after clamping, the slide rail 112 is driven to move reversely, so that the clamping strip 115 pulls the leaves of the heat insulation plate, and the leaves are unfolded.
When the clamping bars 115 are pressed down, the side plates 52 are unfolded towards two sides under the support of the fixed cross beam 51, and the leaves of the heat insulation plate are flatter in the unfolding process.
S4, the regulator 53 drives the side plate 52 to reset after the second driver 114 contracts, so that the sliding rail 112 is driven to move reversely after the pressure of the side plate 52 and the leaves of the heat insulation plate is reduced, and the leaves are flattened.
S5, after the clamping strip 115 is separated from the insulating plate leaves, the sliding rail 112 is driven to push the clamping strip 115 to move towards the middle of the insulating plate again, and the second driver 114 controls the clamping strip 115 to have a fine gap with the insulating plate leaves, so that the insulating plate is positioned in the middle when the clamping strip 115 is attached to the edges of the insulating plate, and further the positioning of the next packaging process is facilitated.
And the tension spring 534 is aged due to the long time operation, so that the side plate 52 cannot be completely reset.
The adjuster 53 can be replaced by this arrangement, and the sliding sleeve 531 can be moved downward after the knob 513 is loosened, and the sliding rail 522 has a gap with the bottom limiting bottom groove 523, so that the adjuster 53 can be removed after the clamping sleeve 535 is separated.
During installation, the sliding sleeve 531 is nested with the sliding rod 512 again, the plate body 521 is pressed after nesting, the sliding rail 522 is buckled with the groove body of the clamping sleeve 535, the enlarged sliding groove is provided with a telescopic sliding block, the sliding block is retracted during pressing, the sliding rail 522 can be embedded to be limited, only the clamping sleeve 535 is slid to the bottom of the sliding rail 522 during disassembling, and the sliding sleeve is more convenient during disassembling by changing the setting.
The improved device controls the first adjusting belt 13 and the second adjusting belt 14 to drive the arranging arm 11 and the conveying frame 12 to carry out adaptive adjustment according to different sizes of the heat insulation plates through the first driver 15, so that the problem that the heat insulation plates are overlarge in deviation in the moving process and topple over is avoided in use;
The clamping arms 113 are synchronously driven to move by the driving slide rails 112 at two sides, the clamping bars 115 at the bottom are controlled by the second driver 114 to clamp and level the leaves of the heat insulation plate, meanwhile, the position of the heat insulation plate can be corrected by the clamping bars 115, and the heat insulation plate can be aligned when entering the next processing flow, so that the processing efficiency is improved;
the bottom of the fixed cross beam 51 of the clamping strip 115 is provided with the expandable side plate 52, the side plate 52 is limited by the regulator 53, and the side plate 52 expands outwards when being pressed down, so that the leaves of the heat insulation plate are partially flattened, the excessive resistance is avoided when the heat insulation plate is pulled outwards, and the heat insulation plate is also more flattened in the stretching process.
The regulator 53 is spacing through slide bar 512, and slide bar 512 length cooperation is carried out the auxiliary movement in the short one side when making things convenient for knob 513 to lock, avoids sliding sleeve 531 to remove the in-process and appears the skew, makes things convenient for the dismantlement installation of sliding sleeve 531 simultaneously, and later maintenance is more convenient.
The foregoing has described only the basic principles and preferred embodiments of the present invention, and many variations and modifications will be apparent to those skilled in the art in light of the above description, which variations and modifications are intended to be included within the scope of the present invention.
Furthermore, it should be understood that although the present disclosure describes embodiments, not every embodiment is provided with a separate embodiment, and that this description is provided for clarity only, and that the disclosure is not limited to the embodiments described in detail below, and that the embodiments described in the examples may be combined as appropriate to form other embodiments that will be apparent to those skilled in the art.

Claims (10)

1. A vacuum insulation panel leaf arrangement platform structurally comprises: organism (3) and driver (1), first slide rail (2) are installed at organism (3) top, and organism (3) pass through first slide rail (2) and driver (1) sliding fit, its characterized in that: the driver (1) comprises:
The sorting arm (11), the sorting arm (11) comprises a driving sliding rail (112), a clamping arm (113) and a clamping strip (115), the clamping arm (113) is arranged at the top of the driving sliding rail (112), the clamping arm (113) is symmetrically arranged, a second driver (114) is arranged at one end of the outwards extending side of the clamping arm (113), the second driver (114) is connected with the clamping strip (115), and the second driver (114) is perpendicular to the horizontal plane on which the driving sliding rail (112) is arranged;
The conveying device comprises a conveying frame (12), wherein the conveying frame (12) comprises a frame body (121), a movable frame (124) and supporting side frames (125), suction rods (122) and rollers (123) are arranged on the surface of the frame body (121), the suction rods (122) stretch out and draw back perpendicular to the plane of the frame body (121), the rollers (123) are arranged between the suction rods (122), and the supporting side frames (125) are also arranged on two sides of the frame body (121);
The first driver (15), first driver (15) and install first regulation area (13) in arrangement arm (11) bottom and install second regulation area (14) in carriage (12) bottom mechanical connection, first regulation area (13) and second regulation area (14) and first driver (15) synchronous rotation, and the movement speed of first regulation area (13) drive arrangement arm (11) is greater than the movement speed of second regulation area (14) drive carriage (12).
2. A vacuum insulation panel leaf finishing station as claimed in claim 1 wherein: and a balance rod (111) is further arranged between the driving sliding rails (112), and the balance rod (111) and the clamping strip (115) are mutually parallel.
3. A vacuum insulation panel leaf finishing station as claimed in claim 2 wherein: the clamping strip (115) comprises a fixed cross beam (51), side plates (52) and an adjustor (53), wherein the adjustor (53) capable of moving vertically is arranged in the middle of the clamping strip (115), two sides of the fixed cross beam (51) are movably connected with the side plates (52), and the fixed cross beam (51) limits the rotation angle of the side plates (52) through the adjustor (53).
4. A vacuum insulation panel leaf finishing station as claimed in claim 3 wherein: the fixed cross beam (51) comprises a beam body (511), a sliding rod (512) is mounted on the bottom surface of the beam body (511), limiting plates (514) are fixed on two sides of the beam body (511), movable shafts through the limiting plates (514) are in nested fit with the side plates (52), and a knob (513) is arranged at the bottom of the sliding rod (512) and used for limiting movement of the regulator (53).
5. A vacuum insulation panel leaf finishing station as claimed in claim 3 wherein: the inner surface of a plate body (521) of the side plate (52) is provided with a sliding rail (522) matched with the regulator (53), the bottom of the plate body (521) is provided with a limiting bottom groove (523), and the plate body (521) is in nested fit with a pull plate strip (524) through the limiting bottom groove (523).
6. A vacuum insulation panel leaf finishing station as claimed in claim 3 wherein: the adjuster (53) comprises a sliding sleeve (531), support plates are arranged on two sides of the sliding sleeve (531) in an extending mode and used for installing a pull rod (533), a clamping sleeve (535) matched with the sliding rail (522) is installed at one end of the pull rod (533) penetrating through the support plates, a tension spring (534) is installed between the pull rod (533) and the support plates, and the sliding sleeve (531) is provided with a penetrating sliding groove (532) which is in sliding fit with the sliding rod (512).
7. A vacuum insulation panel leaf finishing station as claimed in claim 4 wherein: the sliding rods (512) are arranged in a group, one long and one short, and one long end is provided with external threads matched with the knob (513).
8. A vacuum insulation panel leaf finishing station as claimed in claim 6 wherein: the contact surface of the clamping sleeve (535) and the sliding rail (522) is an inclined surface, and the clamping end is of a movable structure, and is telescopic when being contacted with the sliding rail (522), so that the movable end of the clamping sleeve (535) is embedded into the groove of the sliding rail (522).
9. A vacuum insulation panel leaf finishing station as claimed in claim 5 wherein: the draw bar (524) is made of elastic materials.
10. A vacuum insulation panel leaf finishing station as claimed in claim 5 wherein: one side of the sliding rail (522) is fixed with the movable end at the top of the plate body (521), and the other side of the sliding rail is in clearance with the limiting bottom groove (523), and the width of the clearance is larger than the thickness of the sliding sleeve (531).
CN202410694259.4A 2024-05-31 2024-05-31 Leaf arrangement platform of vacuum insulation panel Active CN118255129B (en)

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Application Number Priority Date Filing Date Title
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CN118255129B true CN118255129B (en) 2024-08-06

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CN119408036B (en) * 2025-01-06 2025-04-15 福建荣阳鞋业有限公司 A shoe outsole hot pressing device

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CN214877577U (en) * 2021-05-19 2021-11-26 湖北兴兴环保科技有限公司 Guiding, leveling and conveying device for light plastering gypsum finished product bag

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