Impregnated paper edge pressing and arranging device
By designing an edge-pressing and finishing device for impregnated paper, and utilizing a motor-driven telescopic sleeve and sliding sleeve, the problem of edge curling of impregnated paper was solved, achieving automated paper web flattening and improving production efficiency and product quality.
Patent Information
- Application Number
- CN202520295990.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2035-02-24
AI Technical Summary
In the current impregnated paper production process, edge curling makes it difficult to flatten the paper, affecting subsequent quality inspection and stacking processes.
Design an impregnated paper edge pressing and finishing device, including front and rear finishing components and left and right finishing components, and achieve flattening of the four sides of the paper web through a telescopic sleeve and a sliding sleeve driven by a motor.
It enables automatic smoothing of the edges of impregnated paper, improving production efficiency and product quality while reducing manual intervention.
Smart Images

Figure CN223607651U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the production and processing technical field of impregnated paper, especially to an impregnated paper edge pressing and arranging device. BACKGROUND
[0002] The impregnated paper is mainly made of PE, plant fiber and non-woven fabric wood pulp, and has the characteristics of anti-dissolution, super absorption, impact resistance, deformation resistance, flame resistance, moisture resistance and wear resistance, so it is widely used in the veneering of cabinets, wardrobes and reinforced composite floors.
[0003] In the prior art, the edge of the impregnated paper produced may be warped due to various problems, which not only leads to errors in subsequent quality or defect detection, but also causes the edge to be bent or misaligned when the impregnated paper is arranged in an orderly pile. In the existing operation process, the edge can only be arranged by manual pressing and flattening, which cannot ensure the flatness of the edge of the impregnated paper. SUMMARY
[0004] To solve the above problems, the utility model aims to provide an impregnated paper edge pressing and arranging device, which solves the problem of difficult flatness caused by the upward warping of the edge of the existing impregnated paper.
[0005] To achieve the above purpose, the utility model adopts the following technical solutions:
[0006] An impregnated paper edge pressing and arranging device includes a base, a paper placing groove arranged on the base, four support columns fixedly arranged at the four corners of the base, a front and rear arranging assembly arranged on the left and right sides of the paper placing groove and used for pushing the front and rear edges of the paper flat, a left and right arranging assembly movably arranged on the base along the height direction and used for driving the left and right movement of the two front and rear arranging assemblies to push the left and right edges of the paper flat, and a fixed sleeve arranged in the front and rear direction.
[0007] Each front and rear arranging assembly includes a fixed sleeve arranged in the front and rear direction, a pair of elastic telescopic sleeves fixedly arranged at the front and rear ends of the fixed sleeve, a first bidirectional rotating motor fixedly arranged at the middle segment of the fixed sleeve, a pair of first rotating threaded columns fixedly connected with the corresponding output shaftes of the first bidirectional rotating motor and arranged on the front and rear sides of the first bidirectional rotating motor, and a pair of telescopic columns arranged corresponding to the two first rotating threaded columns and threadedly connected with the corresponding first rotating threaded columns.
[0008] The end of each telescopic column away from the corresponding first bidirectional rotating motor is fixedly connected with the inner wall of the corresponding telescopic sleeve.
[0009] The left-right arrangement assembly comprises a pair of connecting columns fixed on the upper sides of the two side fixed sleeves in the height direction, a second bidirectional rotating motor arranged between the two connecting columns, a pair of second rotating threaded columns arranged on the left and right sides of the second bidirectional rotating motor and fixed on the output shaftes of the second bidirectional rotating motor in the axial direction, a pair of left and right sliding sleeves fixed on the top of the two connecting columns and threadedly sleeved on the corresponding second rotating threaded columns, a pair of supporting members sleeved on the free ends of the two second rotating threaded columns, and a pair of sliding sub-assemblies arranged between each supporting member and the two supporting columns on the corresponding side and used for allowing the supporting member to move in the vertical direction.
[0010] The two second rotating threaded columns are oppositely arranged in the threaded direction.
[0011] More preferably, the sliding sub-assembly comprises a pair of sliding rails movably arranged on the side close to the supporting member of the two corresponding supporting columns in the height direction, and a pair of sliding members slidably arranged in the corresponding sliding rail and fixedly connected with the supporting member.
[0012] More preferably, a lifting handle is fixed between the two same-side sliding members.
[0013] More preferably, a pushing plate is fixed on the end of each telescopic sleeve away from the corresponding first bidirectional rotating motor.
[0014] The utility model has the following beneficial effects:
[0015] 1. The front and rear arrangement assemblies are used for smoothing the paper web placed in the paper placing groove from the center of the paper web to the front and rear directions of the paper web, and then the left and right arrangement assemblies are used for driving the front and rear arrangement assemblies to move in the left and right directions, so that the paper web is gradually smoothed from the center of the paper web to the left and right sides, thereby achieving the effect of arranging and smoothing the four edges of the paper web placed in the paper placing groove.
[0016] 2. The front and rear arrangement assemblies are lifted upward by the sliding sub-assembly before the paper web is placed, so that the front and rear arrangement assemblies are separated from the paper placing groove, and then the paper web is placed, and the front and rear arrangement assemblies are placed on the paper web by the sliding sub-assembly, thereby meeting the use of paper webs with different thicknesses. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is an overall explosion view of the utility model;
[0018] Figure 2 It is an overall axial side view of the utility model;
[0019] Figure 3 It is an isolated explosion view of the one-side front and rear arrangement assembly of the utility model;
[0020] Figure 4The utility model relates to a left and right arrangement assembly isolated explosion view.
[0021] Mark explanation:
[0022] 1, base; 2, paper placing groove; 3, supporting column; 4, front and rear arrangement assembly; 41, fixed sleeve; 42, telescopic sleeve; 43, first bidirectional rotation motor; 44, first rotation screw column; 45, telescopic column; 5, left and right arrangement assembly; 51, connecting column; 52, second bidirectional rotation motor; 53, second rotation screw column; 54, left and right sliding sleeve; 55, supporting piece; 56, sliding subassembly; 561, sliding rail; 562, sliding piece; 6, lifting column; 7, push flat plate. Specific embodiment
[0023] The utility model will be made further detailed explanation below combining with the drawings and specific embodiment
[0024] As Figure 1 , Figure 2 , Figure 3 And Figure 4 As shown in the utility model discloses a paper edge dipping arrangement device, including base 1, be located on the paper placing groove 2 of base 1, four fixedly set up in the four corners of base 1 and support column 3, a pair of respectively set up in paper placing groove 2 left and right sides and be used to push the front and rear two sides of paper web flat front and rear arrangement assembly 4 and along the height direction movable set up in base 1 and be used to drive two front and rear arrangement assembly 4 left and right activities and push the left and right two sides of paper web flat left and right arrangement assembly 5,
[0025] Each front and rear arrangement assembly 4 includes the fixed sleeve 41 setting along the front and rear direction, a pair of respectively fixedly set up in the front and rear two ends of fixed sleeve 41 and the elastic telescopic sleeve 42, the first bidirectional rotation motor 43 fixedly set up in the middle section of fixed sleeve 41, a pair of respectively set up in the front and rear two sides of first bidirectional rotation motor 43 and respectively with the axial fixed connection of first bidirectional rotation motor 43 corresponding output shaft Setting first rotation screw column 44 and a pair of respectively corresponding two first rotation screw column 44 setting and screw connection sleeve set up on corresponding first rotation screw column 44 telescopic column 45,
[0026] The end of each telescopic column 45 away from corresponding first bidirectional rotation motor 43 is fixedly connected with the inner wall of corresponding telescopic sleeve 42,
[0027] The left-right arrangement assembly 5 comprises a pair of connecting columns 51 fixed on the upper sides of the two side fixed sleeves 41 along the height direction, a second bidirectional rotation motor 52 arranged between the two connecting columns 51, a pair of second rotation threaded columns 53 arranged on the left and right sides of the second bidirectional rotation motor 52 and fixedly arranged with the output shafts of the second bidirectional rotation motor 52 along the axial direction, a pair of left-right sliding sleeves 54 fixedly arranged on the top of the two connecting columns 51 and threadedly sleeved on the corresponding second rotation threaded columns 53, a pair of supporting members 55 sleeved on the free ends of the two second rotation threaded columns 53, and a pair of sliding sub-assemblies 56 arranged between each supporting member 55 and the corresponding two supporting columns 3 and used for allowing the supporting member 55 to move along the vertical direction.
[0028] The two second rotation threaded columns 53 are oppositely arranged in the threaded direction.
[0029] In use, the fixed sleeve 41 is in abutting contact with the middle part of the paper web, the first bidirectional rotation motor 43 is started, the two side first rotation threaded columns 44 are synchronously rotated, each telescopic column 45 is moved out of the fixed sleeve 41 away from the one end of the first bidirectional rotation motor 43 along the threaded direction of the corresponding first rotation threaded column 44, each telescopic column 45 is supported and stretched out of the telescopic sleeve 42, and the push plate 7 is continuously pushed away from the corresponding first bidirectional rotation motor 43, so that the push plate 7 is smoothed from the center of the paper web to the front and rear sides of the paper web. After the telescopic sleeve 42 is completely supported and stretched out, the second bidirectional rotation motor 52 is started, the two side second rotation threaded columns 53 are synchronously rotated, the two side left-right sliding sleeves 54 are moved away from the second bidirectional rotation motor 52 along the threaded direction of the corresponding second rotation threaded column 53, the fixed sleeve 41 is continuously moved away from the corresponding side of the paper web, and the fixed sleeve 41, the telescopic sleeve 42 and the push plate 7 are moved away from the paper web along the corresponding side to smooth the paper web.
[0030] As shown in Figure 1 , Figure 2 and Figure 4 , the sliding sub-assembly 56 comprises a pair of sliding rails 561 movably arranged on the side close to the supporting member 55 of the two corresponding supporting columns 3 along the height direction, and a pair of sliding members 562 slidably arranged in the corresponding sliding rail 561 and fixedly connected with the supporting member 55.
[0031] In use, the sliding member 562 is pushed upward to slide upward along the sliding rail 561, the supporting member 55 is synchronously moved upward with the sliding member 562, the front-rear arrangement assembly 4 is moved upward to be separated from the paper placing groove 2, the paper web to be arranged is placed in the paper placing groove 2, the holding column 6 is released, the fixed sleeve 41 is in abutting contact with the middle part of the paper web.
[0032] AsFigure 1 、 Figure 2 and Figure 4 As shown in
[0033] The product is convenient for the operator to apply a pushing force to the two side sliding members 562 during use.
[0034] As shown in Figure 1 、 Figure 2 and Figure 3 Each telescopic sleeve 42 is fixedly provided with a push plate 7 away from one end of the corresponding first bidirectional rotating motor 43.
[0035] The product solves the problem that the paper web edge between the two telescopic sleeves 42 cannot be flattened, resulting in uneven paper web arrangement, through the arrangement of the push plate 7 during use.
[0036] The working principle of the device is as follows:
[0037] First step: synchronously hold the two side lifting columns 6 and push the lifting columns 6 upward, driving each sliding member 562 to slide upward along the sliding rail 561, so that the supporting member 55 slides upward synchronously with the sliding member 562, thereby driving the front and rear arrangement assembly 4 to separate upward from the paper placing groove 2. At this time, the paper web to be arranged is placed in the paper placing groove 2 with the paper web edge upward, and then the lifting column 6 is loosened to freely fall, so that the fixed sleeve 41 is in contact with the middle part of the paper web.
[0038] Second step: start the first bidirectional rotating motor 43 to drive the two side first rotating threaded columns 44 to synchronously rotate, so that each telescopic column 45 is extended out of the fixed sleeve 41 away from one end of the first bidirectional rotating motor 43 along the corresponding first rotating threaded column 44, thereby making each telescopic column 45 outwardly support the telescopic sleeve 42 and continuously push the push plate 7 away from the corresponding first bidirectional rotating motor 43, so as to flatten the push plate 7 from the center of the paper web to the front and rear edges of the paper web.
[0039] Third step: after the telescopic sleeve 42 is completely supported and extended, start the second bidirectional rotating motor 52 to make the two side second rotating threaded columns 53 synchronously rotate, so as to drive the two side left and right sliding sleeves 54 to move away from the second bidirectional rotating motor 52 along the corresponding second rotating threaded column 53, thereby driving the two side fixed sleeves 41 to continuously move to the corresponding side of the paper web, so as to drive the fixed sleeve 41, the telescopic sleeve 42 and the push plate 7 to move to the corresponding side of the paper web to flatten the paper web.
[0040] The above merely describes a specific implementation of the present application, and is not intended to limit the patent scope of the present application, and any equivalent structural transformation or direct or indirect application in other related technical fields using the content of the present application specification and drawings are also included in the patent protection scope of the present application.
Claims
1. A pressurized edge finishing device for impregnated paper, characterized by: The utility model relates to a paper arranging device, including base (1), set up on the base (1) paper slot (2), four fixedly set up on the base (1) four corner support column (3), a pair of respectively set up in paper slot (2) left and right sides and are used to the paper web front and back two sides push flat front and back arrangement subassembly (4) and along the height direction activity set up on the base (1) and are used to drive two front and back arrangement subassembly (4) left and right activity and push the paper web left and right two sides flat left and right arrangement subassembly (5); Each front and back arrangement subassembly (4) includes the fixed sleeve (41) that sets up along the front and back direction, a pair of respectively fixedly set up in fixed sleeve (41) front and back two ends elastic telescopic sleeve (42), the first bidirectional rotation motor (43) that is fixedly set up in fixed sleeve (41) middle segment, a pair of respectively set up in the front and back two sides of first bidirectional rotation motor (43) and respectively with first bidirectional rotation motor (43) corresponding output shaft axial fixed connection setting first rotation screw column (44) and a pair of respectively corresponding two first rotation screw column (44) setting and thread connection sleeve set up on corresponding first rotation screw column (44) telescopic column (45); Each telescopic column (45) is fixedly connected with the inner wall of corresponding telescopic sleeve (42) at one end away from corresponding first bidirectional rotation motor (43); The left and right arrangement subassembly (5) includes a pair of connection columns (51) that are fixedly set on the upper side of both sides fixed sleeve (41) along the height direction, a second bidirectional rotation motor (52) is arranged between the two connection columns (51), a pair of second rotation screw columns (53) are arranged on the left and right sides of the second bidirectional rotation motor (52) and are fixedly arranged on the output shaft of the second bidirectional rotation motor (52) in the axial direction, a pair of left and right sliding sleeves (54) are fixedly arranged on the top of the two connection columns (51) and are threadedly sleeved on the corresponding second rotation screw column (53), a pair of supporting members (55) are sleeved on the free end of the second rotation screw column (53), and a pair of sliding subassemblies (56) are arranged between each supporting member (55) and the corresponding two support columns (3) and are used to slide in the vertical direction. The screw directions of the two second rotation screw columns (53) are opposite.
2. The impregnated paper edge finishing device of claim 1, wherein: The sliding subassembly (56) includes a pair of sliding rails (561) that are movably arranged on the side of the two corresponding support columns (3) close to the supporting member (55) along the height direction, and a pair of sliding members (562) are movably arranged in the corresponding sliding rail (561) and are fixedly connected with the supporting member (55).
3. The impregnated paper edge finishing device of claim 2, wherein: A lifting handle (6) is fixedly arranged between the two same-side sliding members (562).
4. The impregnated paper edge finishing device of claim 1, wherein: Each telescopic sleeve (42) is fixedly provided with a flattening plate (7) at one end away from the corresponding first bidirectional rotation motor (43).