straightener table

By designing a straightener worktable with a combination of inclined and horizontal surfaces and a telescopic structure, the problems of unsightly appearance and reduced adjustment range caused by shallower installation slots were solved. This achieved stable installation of the straightener and maximum adjustment range, thus improving the appearance quality of the board.

CN117181849BActive Publication Date: 2026-01-13BOLONI SMART TECH (HENGSHUI) CO LTD
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Patent Information

Application Number
CN202311307713.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-10
Publication Date
2026-01-13
Estimated Expiration
2043-10-10

AI Technical Summary

Technical Problem

In the existing technology, after the mounting groove of the straightener on the door panel becomes shallower, the gap between the straightener and the mounting groove increases, which affects the appearance and reduces the adjustment range, and cannot effectively solve the problem of door panel deformation.

Method used

A straightener workbench was designed, including a base and a panel. The panel has inclined and horizontal surfaces. Combined with a telescopic component and a slider structure, the position of the telescopic component is adjusted to press the plate body so that it is aligned with the straightener mounting slot, ensuring that the straightener can be installed and fixed smoothly.

Benefits of technology

This design enables the straightener to be effectively installed inside the board, reduces the gap between the straightener and the board, improves the appearance of the board, and ensures that the straightener is not easily dropped during handling or installation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN117181849B_ABST
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Abstract

The application discloses a straightener workbench, which comprises a base, a panel connected to one side of the base, and a fixed connection between the end surface of the panel close to the base and the base; the panel comprises an inclined plate and a horizontal plate connected to the inclined plate, a horizontal surface is arranged on the side of the horizontal plate away from the base, an inclined surface is arranged on the side of the inclined plate away from the base, the horizontal surface and the inclined surface are connected, and the inclined surface is inclined towards the side close to the base; a connecting block is connected to the side of the horizontal surface away from the inclined surface, a pressing plate is connected to the side of the connecting block away from the horizontal surface, and a gap is formed between the pressing plate and the horizontal surface; a support is connected to the side of the base away from the connecting block, the support comprises an upper cross beam, a left vertical beam, a lower cross beam and a right vertical beam connected in sequence from head to tail, a sliding groove is formed in the side of the upper cross beam close to the base, a sliding block is arranged in the sliding groove, and each sliding block is connected with an extension piece; under the assistance of the straightener workbench, the plate body is pressed into reverse deformation through the extension piece, and the plate body can be easily inserted into the straightener.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of home decoration, and more particularly to a straightener workbench. BACKGROUND

[0002] In the whole house customization industry, more and more customers install long cabinets, and the excessively long cabinet doors are prone to bending deformation. At this time, it is necessary to install a straightener on the cabinet door. The straightener is a hardware that can adjust the cabinet door under the condition of slight deformation. The straightener is divided into external decoration and embedded type, and the materials are mainly alloy and copper. At present, in the furniture industry, almost all super-high doors will be equipped with a long straightener. The long straightener has a larger adjustable amount and is more time-saving and labor-saving to adjust.

[0003] However, when the door panel is processed, the end face of the door panel will be deformed after milling the straightener mounting groove, especially the polyester powder material door panel, which is more severely deformed after high-temperature baking. The maximum deformation degree will exceed 6mm, which will cause the straightener to be unable to penetrate into the door panel, and the door panel will be severely deformed, which will seriously affect the product quality. In order to solve the problem of the door panel being unable to adjust after deformation, the door panel manufacturers will generally make the straightener mounting groove shallower, which makes it easier to install the straightener. The disadvantage is that the gap between the straightener and the straightener mounting groove is larger, which will cause the adjustable amount to decrease, the appearance to be ugly, and other problems.

[0004] Patent document 1 (publication number: CN214683604U) discloses a large-scale civil air defense door frame C-shaped straightener, which comprises a rack, a pressing block for straightening steel materials is arranged on the rack, and a base for placing the steel materials is arranged on the rack. There is a gap between the pressing block and the base. A frame for supporting the steel materials is arranged on the base. When the steel materials are placed on the surface of the frame, and the pressing block is pressed to the surface of the steel materials and the steel materials are straightened, there is a gap between the base and the steel materials. The straightener is used to directly straighten the door frame, and cannot be used to install the straightener in the panel to straighten the panel.

[0005] Patent document 2 (publication number: CN212884243U) discloses a door frame and door leaf deformation straightening device, which comprises a bottom plate, a fixed block and a push plate. A support frame is installed on one side of the outer wall of the upper end of the bottom plate. A door leaf body is arranged on the outer wall of the side of the bottom plate away from the support frame. A fixed block is installed on the outer wall of the side of the bottom plate away from the door leaf body. An electric push rod is symmetrically installed on one side of the lower end of the outer wall of the support frame. A push rod body is arranged on one side of the lower end of the outer wall of the electric push rod. A screw hole is formed in the fixed block. A screw rod is threadedly connected in the screw hole. The push plate is arranged on one end of the screw rod penetrating through the screw hole. The straightener is used to directly straighten the door frame, and cannot be used to install the straightener in the panel to straighten the panel. SUMMARY

[0006] Therefore, the present application provides a straightener workbench for installing a straightener in a plate body to straighten the plate body.

[0007] The present application provides a straightener workbench for installing a straightener in a plate body, comprising a base, one side of the base being connected with a panel, one side end face of the panel away from the base being used for bearing the plate body, one side end face of the panel close to the base being fixedly connected with the base;

[0008] The panel comprises an inclined plate and a horizontal plate connected with the inclined plate, the inclined plate and the horizontal plate being connected with a support plate on one side close to the base, one side of the support plate away from the horizontal plate being connected with the base, one side of the horizontal plate away from the base being provided with a horizontal surface, one side of the inclined plate away from the base being provided with an inclined surface, the horizontal surface and the inclined surface being connected, the horizontal surface and the inclined surface being arranged along a direction parallel to the horizontal plate, the horizontal surface and the inclined surface not being in the same plane, the inclined surface being inclined towards one side close to the base; one side of the horizontal surface away from the inclined surface being connected with a connecting block, one side of the connecting block away from the horizontal surface being connected with a pressing plate, the pressing plate and the horizontal surface having a gap therebetween; in a direction from the base to the panel, the gap has a width greater than a width of the plate body;

[0009] One side of the base away from the connecting block is connected with a support, the support comprising an upper cross beam, a left vertical beam, a lower cross beam and a right vertical beam connected in sequence, the lower cross beam being located on one side of the panel close to the base, the lower cross beam being fixedly connected with the base, the upper cross beam being located on one side of the panel away from the base, the upper cross beam being provided with a sliding groove on one side close to the base, the sliding groove extending in a direction from the left vertical beam to the right vertical beam, at least one sliding block being arranged in the sliding groove, the sliding block being movable along the sliding groove, each sliding block being connected with at least one telescopic member, a piston of the telescopic member being telescopable in a direction from the base to the panel; a normal projection of the telescopic member on the base is located in a range of a normal projection of the inclined surface on the base.

[0010] Optionally, the left vertical beam and the right vertical beam are respectively located at two ends of the upper cross beam in a direction from the left vertical beam to the right vertical beam, the left vertical beam and the right vertical beam being respectively connected with one side of the upper cross beam close to the base.

[0011] Optionally, the upper cross beam and the lower cross beam extend in a direction from the base to the panel; the left vertical beam and the right vertical beam extend in a direction from the base to the panel; the direction from the base to the panel is a vertical direction; the direction from the left vertical beam to the right vertical beam is perpendicular to the direction from the base to the panel.

[0012] Optionally, the sliding groove comprises an upper groove body and a lower groove body, the upper groove body and the lower groove body are connected; the lower groove body is located on a side of the upper groove body close to the panel; in a direction parallel to the horizontal plate, the width of the upper groove body is greater than the width of the lower groove body.

[0013] The sliding block comprises an upper column body and a lower column body; the upper column body and the lower column body are connected, and the upper column body and the lower column body are coaxially arranged; in a direction from the base to the panel, the height of the upper column body is less than the height of the upper groove body; in a direction parallel to the horizontal plate, the width of the upper column body is less than the width of the upper groove body; in a direction parallel to the horizontal plate, the width of the upper column body is greater than the width of the lower groove body; in a direction parallel to the horizontal plate, the width of the lower column body is less than the width of the lower groove body; the upper column body is inserted into the upper groove body, and the lower column body is inserted into the lower groove body; a side of the lower column body close to the panel is connected to the telescopic member.

[0014] Optionally, at least one ash chute is arranged on the horizontal surface, the ash chute is located on a side of the connecting block close to the inclined surface, and a projection of the ash chute on the horizontal surface is located within a projection range of the pressing plate on the horizontal surface.

[0015] Optionally, the ash chute penetrates in a direction from the base to the panel.

[0016] Optionally, the base comprises a support frame, the panel is fixedly connected to a side end face of the support frame, a plurality of support legs are arranged on a side end face of the support frame away from the panel, and the extension direction of the support legs is perpendicular to the plane in which the support frame is located; a reinforcing rib is further arranged between adjacent two support legs, and the extension direction of the reinforcing rib is parallel to the plane in which the support frame is located; and the two ends of the extension direction of the reinforcing rib are fixedly connected to adjacent two support legs, respectively.

[0017] Optionally, when the telescopic member is a pneumatic cylinder, the upper cross beam is provided with a trunk through hole penetrating in a direction from the left vertical beam to the right vertical beam, and the trunk through hole is located on a side of the sliding groove away from the panel; the upper cross beam is provided with branch through holes penetrating in a direction from the base to the panel, the number of the branch through holes is the same as the number of the telescopic members, and the branch through holes are connected to the trunk through hole.

[0018] The air pipe of each telescopic member penetrates into the trunk through the corresponding branch through hole, and then penetrates out of the upper cross beam through the trunk through hole, and is connected with an external air source.

[0019] Optionally, the horizontal surface, the inclined surface, the connecting block, and the pressing plate are all provided with protective pads.

[0020] Optionally, the distance between the side of the inclined surface close to the horizontal surface and the side of the inclined surface away from the horizontal surface ranges from 5mm to 9mm along the direction from the base to the panel.

[0021] The angle α between the inclined surface and the direction from the base to the panel ranges from 88° to 89°.

[0022] Compared with the prior art, the straightener workbench provided by the present application at least has the following beneficial effects:

[0023] The straightener workbench is used for installing a straightener in a plate body to straighten the plate body. The upper cross beam is provided with a sliding groove, and a sliding block is capable of moving along the sliding groove. Each sliding block is connected with at least one telescopic member. The length of the plate body placed on the panel can be used to slide the sliding block in the sliding groove, so that the telescopic member is adjusted to the corresponding position of the plate body, and the position of the plate body is changed by adjusting the position of the telescopic member. In the direction parallel to the horizontal plate, the two ends of the plate body are pressed on the panel by the pressing plate and the piston of the telescopic member. Under the action of the pressing plate and the piston of the telescopic member, the end face of the plate body close to the base can be in close contact with the horizontal surface and the inclined surface. With the assistance of the straightener workbench, the plate body is pressed into the straightener by the telescopic member, and the plate body can be easily inserted into the straightener. When the telescopic member is loosened, the original deformation of the plate body before being inserted into the straightener is solved, the straightener is fixed on the plate body, and the straightener cannot be taken out, so that the straightener can produce the maximum adjustment amount. After the installation of the straightener is completed, the straightener and the plate body are in a fixed state, and the straightener can be prevented from falling during the process of carrying or installing the plate body. The gap between the straightener and the mounting groove on the plate body is reduced, the straightener can be perfectly matched with the plate body after the installation of the straightener is completed by the straightener workbench, and the outer surface of the plate body is in a planar state, thereby improving the appearance of the plate body.

[0024] Of course, it is not necessary for any product implementing the present application to achieve all the technical effects mentioned above.

[0025] Other features and advantages of the present application will become apparent from the following detailed description of exemplary embodiments thereof, taken in conjunction with the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0026] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments of the application and, together with the description, serve to explain the principles of the application.

[0027] Figure 1 is a structural schematic diagram of a straightener and a plate body provided by the embodiment;

[0028] Figure 2 is a structural schematic diagram of a straightener workbench provided by the embodiment;

[0029] Figure 3 is a side view structural schematic diagram of a straightener workbench provided by the embodiment;

[0030] Figure 4 is a structural schematic diagram of a plate body without a straightener provided by the embodiment;

[0031] Figure 5 is a structural schematic diagram of an upper cross beam, a sliding block and a cylinder provided by the embodiment;

[0032] Figure 6 is a structural schematic diagram of a straightener provided by the embodiment; Figure 5 is an enlarged structural schematic diagram of A in FIG. 7;

[0033] Figure 7 is a structural schematic diagram of a horizontal surface and an ash chute provided by the embodiment. DETAILED DESCRIPTION

[0034] Various exemplary embodiments of the present application will now be described in detail with reference to the figures. It should be noted that the relative arrangements, numerical expressions, and values of the components and steps set forth in these embodiments are not limiting to the scope of the present application unless otherwise specifically stated.

[0035] The following description of at least one exemplary embodiment is merely exemplary in nature and is in no way intended to limit the application or its application or uses.

[0036] Techniques, methods, and devices known to those of ordinary skill in the relevant art can not be discussed in detail herein. However, where appropriate, such techniques, methods, and devices can be viewed as part of the specification and can be claimed as such.

[0037] In all of the examples shown and discussed herein, any specific values should be interpreted as merely exemplary and not as a limitation. Thus, other examples of the exemplary embodiments can have different values.

[0038] It should be noted that like numbers and letters refer to like items throughout the drawings, and that, once an item is defined in one drawing, it need not be discussed further in subsequent drawings.

[0039] Referring to Figures 1 to 3 illustrated, Figure 1 is a structural schematic view of a straightener and a plate body provided by the embodiment, Figure 2 is a structural schematic view of a straightener workbench provided by the embodiment, Figure 3 is a structural schematic view of another straightener workbench provided by the embodiment, the straightener workbench is used for mounting the straightener 1 on the plate body 2, and includes a base 3, one side of the base 3 is connected with a panel 4, and the side end face of the panel 4 away from the base 3 is used for bearing the plate body 2, and the side end face of the panel 4 close to the base 3 is fixedly connected with the base 3;

[0040] The panel 4 includes an inclined plate 43 and a horizontal plate 44 connected with the inclined plate 43, the inclined plate 43 and the horizontal plate 44 are connected with a support plate 45 on the side close to the base 3, the support plate 45 is connected with the base 3 on the side away from the horizontal plate 44, the horizontal plate 44 is provided with a horizontal surface 41 on the side away from the base 3, the inclined plate 43 is provided with an inclined surface 42 on the side away from the base 3, the horizontal surface 41 and the inclined surface 42 are connected, the horizontal surface 41 and the inclined surface 42 are arranged along a direction D2 parallel to the horizontal plate 44, the horizontal surface 41 and the inclined surface 42 are not in the same plane, and the inclined surface 42 is inclined to the side close to the base 3; the horizontal surface 41 is connected with a connecting block 5 on the side away from the inclined surface 42, the connecting block 5 is connected with a pressing plate 6 on the side away from the horizontal surface 41, and the pressing plate 6 has a gap H with the horizontal surface 41; along a direction D1 from the base 4 to the panel 4, the width of the gap H is greater than the width of the plate body 2;

[0041] The base 3 is connected with a support 7 on the side away from the connecting block 5, the support 7 includes an upper cross beam 71, a left vertical beam 72, a lower cross beam 73 and a right vertical beam 74 connected in sequence, the lower cross beam 73 is located on the side of the panel 4 close to the base 3, and the lower cross beam 73 is fixedly connected with the base 3; the upper cross beam 71 is located on the side of the panel 4 away from the base 3, and the upper cross beam 71 is provided with a sliding groove 8 on the side close to the base 3, the sliding groove 8 extends along a direction D3 from the left vertical beam 72 to the right vertical beam 74, the direction D3 from the left vertical beam 72 to the right vertical beam 74 intersects with the direction D1 from the base 4 to the panel 4 and the direction D2 parallel to the horizontal plate 44, and optionally, the direction D3 from the left vertical beam 72 to the right vertical beam 74 and the direction D1 from the base 4 to the panel 4 are perpendicular to the direction D2 parallel to the horizontal plate 44; at least one sliding block 9 is arranged in the sliding groove 8, the sliding block 9 can move along the sliding groove 8, and each sliding block 9 is connected with at least one telescopic piece 10, and the piston of the telescopic piece 10 can be telescoped along the direction D1 from the base 4 to the panel 4; the orthographic projection of the telescopic piece 10 on the base 3 is located in the orthographic projection range of the inclined surface 42 on the base 3.

[0042] Specifically, continuing to refer to Figures 1 to 3As shown, the embodiment provides a straightener workbench for mounting the straightener 1 on the plate body 2, which can be a door plate, and the straightener workbench comprises a base 3, one side of the base 3 is connected with a panel 4, and the side end face of the panel 4 away from the base 3 is used for carrying the plate body 2, and the side end face of the panel 4 close to the base 3 is fixedly connected with the base 3.

[0043] The panel 4 comprises an inclined plate 43 and a horizontal plate 44 connected with the inclined plate 43, the inclined plate 43 and the horizontal plate 44 are connected with a support plate 45 close to one side of the base 3, the side of the support plate 45 away from the horizontal plate 44 is connected with the base 3, the side of the horizontal plate 44 away from the base 3 is provided with a horizontal surface 41, the side of the inclined plate 43 away from the base 3 is provided with an inclined surface 42, the horizontal surface 41 and the inclined surface 42 are connected, and the horizontal surface 41 and the inclined surface 42 are used for carrying the plate body 2; the horizontal surface 41 and the inclined surface 42 are arranged along a direction D2 parallel to the horizontal plate 44, the direction D2 is intersected with a direction D1 from the base 4 to the panel 4; the thickness of the inclined plate 43 along the direction D1 from the base 4 to the panel 4 can be 5mm-9mm, if the thickness of the inclined plate 43 along the direction D1 from the base 4 to the panel 4 is less than 5mm, the inclined slope of the inclined plate 43 is not obvious, and the bending effect of the plate body 2 is poor; if the thickness of the inclined plate 43 along the direction D1 from the base 4 to the panel 4 is greater than 9mm, the end surface of the plate body 2 is prone to crack; therefore, the thickness of the inclined plate 43 along the direction D1 from the base 4 to the panel 4 can be 5mm-9mm, which can ensure the bending effect of the plate body 2 and avoid the cracking of the end surface of the plate body 2; specifically, the thickness of the inclined plate 43 along the direction D1 from the base 4 to the panel 4 can be 5mm, 6mm, 7mm, 8mm or 9mm; the thickness of the horizontal plate 44 along the direction D1 from the base 4 to the panel 4 can be set according to the size of the inclined plate 43; optionally, the direction D1 from the base 4 to the panel 4 is perpendicular to the direction D2 parallel to the horizontal plate 44, the direction D1 from the base 4 to the panel 4 can be a vertical direction, the panel 4 can be located directly above the base 3, and the bottom surface of the panel 4 is fixedly connected with the top surface of the base 3; the horizontal surface 41 and the inclined surface 42 jointly constitute the top surface of the panel 4; optionally, the horizontal surface 41 can be arranged along a horizontal direction; the horizontal surface 41 and the inclined surface 42 are not in the same plane, and the inclined surface 42 is inclined to the side close to the base 3; the side of the horizontal surface 41 away from the inclined surface 42 is connected with a connecting block 5, the connecting block 5 can be a rectangular body, the side of the connecting block 5 away from the horizontal surface 41 is connected with a pressing plate 6, the pressing plate 6 is used for pressing the plate body 2, and the pressing plate 6 can be parallel to the horizontal surface 41; the two ends of the connecting block 5 along the direction D1 from the base 4 to the panel 4 are fixedly connected with the horizontal surface 41 and the pressing plate 6 respectively, the connecting block 5 serves to connect the horizontal surface 41 and the pressing plate 6, there is a gap H between the pressing plate 6 and the horizontal surface 41, the width of the gap H along the direction D1 from the base 4 to the panel 4 is greater than the width of the plate body 2 along the direction D1 from the base 4 to the panel 4; the thickness of the gap H along the direction D1 from the base 4 to the panel 4 is not less than 22mm, and the pressing plate 6 needs to bear force and is prone to break when the thickness of the gap H is less than 22mm.The plate 2 is placed on the horizontal surface 41 and the inclined surface 42 of the panel 4. The side of the plate 2 closest to the connecting block 5 is inserted into the gap H, so that the plate 2 is located between the pressure plate 6 and the panel 4. The pressure plate 6 presses the plate 2 onto the panel 4, preventing the side of the plate 2 closest to the connecting block 5 from shifting or warping when the straightener 1 is installed.

[0044] A bracket 7 is connected to the side of the base 3 away from the connecting block 5. The bracket 7 includes an upper crossbeam 71, a left longitudinal beam 72, a lower crossbeam 73, and a right longitudinal beam 74 connected end to end. The lower crossbeam 73 is located on the side of the panel 4 near the base 3 and is fixedly connected to the base 3. The upper crossbeam 71 is located on the side of the panel 4 away from the base 3. A sliding groove 8 is provided on the side of the upper crossbeam 71 near the base 3. The sliding groove 8 extends along the direction D3 from the left longitudinal beam 72 to the right longitudinal beam 74. Furthermore, the sliding groove 8 can pass through along the direction D3 from the left longitudinal beam 72 to the right longitudinal beam 74. The direction D3 from the left longitudinal beam 72 to the right longitudinal beam 74 intersects with the direction D1 from the base 4 to the panel 4 and the direction D2 parallel to the horizontal plate 44. The direction D1 from the base 4 to the panel 4, the direction D2 parallel to the horizontal plate 44, and the direction D4 from the left longitudinal beam 72 to the right longitudinal beam 74 all intersect. The direction D3 pointing to the right longitudinal beam 74 can be perpendicular to each other; at least one slider 9 is provided in the slide groove 8; depending on the actual situation, the number of sliders 9 can be one, two, four, six or eight, and this embodiment does not make a specific limitation; the number of sliders 9 can preferably be six; the sliders 9 can move along the slide groove 8, and each slider 9 is connected to at least one telescopic member 10; depending on the actual situation, the number of telescopic members 10 can be one, two, four, six or eight, and this embodiment does not make a specific limitation; the number of telescopic members 10 can preferably be one; the piston of the telescopic member 10 can extend and retract along the direction D1 from the base 4 to the panel 4; the orthographic projection of the telescopic member 10 on the base 3 is located within the orthographic projection range of the inclined surface 42 on the base 3; optionally, the telescopic member 10 can be a cylinder, a hydraulic cylinder or an electric push rod;

[0045] Combination Figure 4 As shown, Figure 4This is a schematic diagram of the plate structure without the straightener installed in this embodiment. In use, the base 3 is placed on a flat, horizontal surface. The surface of the plate 2 has a mounting groove 21, which extends along direction D3 from the left longitudinal beam 72 to the right longitudinal beam 74. The mounting groove 21 is used to install and accommodate the straightener 1. The plate 2 is placed on the horizontal surface 41 and the inclined surface 42 of the panel 4. The mounting groove 21 is located on the side of the plate 2 away from the panel 4, thus exposing the mounting groove 21 and facilitating the insertion of the straightener 1 into it. The side of the plate 2 closest to the connecting block 5 is inserted into the gap H. The pressure plate 6 can press down on the plate 2 to prevent one side of the plate 2 from shifting or warping. Then, the piston of the telescopic member 10 extends along direction D1 from the base 4 to the panel 4 towards the side closest to the panel 4, allowing the piston of the telescopic member 10 to press smoothly and firmly onto the plate 2. The plate 2 is fixed between the inclined surface 42 and the piston of the telescopic member 10. In the direction D2 parallel to the horizontal plate 44, both ends of the plate 2 are pressed onto the panel 4 by the pistons of the pressure plate 6 and the telescopic component 10, respectively. Under the action of the pistons of the pressure plate 6 and the telescopic component 10, the end face of the plate 2 near the base 3 can be in contact with the horizontal surface 41 and the inclined surface 42. Since the horizontal surface 41 and the inclined surface 42 are connected, they are not in the same plane. The inclined surface 42 is inclined along the side near the base 3. When the plate 2 is in contact with the horizontal surface 41 and the inclined surface 42, the plate 2 will be pressed into an arc shape by the pressure plate 4 and the telescopic component 10. This arc shape protrudes towards the side away from the base 3. At this time, the straightener 1 is inserted into the mounting groove 21 in the direction D3 from the left longitudinal beam 72 to the right longitudinal beam 74. After the straightener 1 is installed, the piston of the telescopic component 10 is retracted in the direction D1 from the base 4 to the panel 4, and the plate 1 can be taken out from the gap H, completing the entire installation process of the straightener 1.

[0046] With the assistance of the straightener workbench provided in this embodiment, the plate 2 is pressed into a reverse deformation by the telescopic member 10, so that the straightener 1 can be easily inserted. When the telescopic member 10 is released, the original deformation of the plate 2 before the straightener 1 is inserted is resolved, and the straightener 1 is fixed on the plate 2 and cannot be removed, so that the straightener 1 can produce the maximum adjustment range. After the straightener 1 is installed, the straightener 1 and the plate 2 are fixed, which can also prevent the straightener 1 from falling off during the handling or installation of the plate 2. The gap between the straightener 1 and the mounting groove 21 on the plate 2 is reduced. After the straightener 1 is installed by the straightener workbench, it can fit perfectly with the plate 2 and make the outer surface of the plate 2 flat, improving the aesthetic appearance of the plate 2.

[0047] Optional, see below Figure 3As shown, the distance between the telescopic member 10 and the connecting block 5 along the direction D2 parallel to the horizontal plate 44 can be 350mm, so that the straightener workbench of this embodiment can be applied to a plate 2 with a width greater than 350mm.

[0048] As can be seen from the above embodiments, the straightener worktable provided in this embodiment achieves at least the following beneficial effects:

[0049] This embodiment provides a straightener workbench for installing a straightener 1 inside a plate 2 to straighten the plate 2. A groove 8 is provided on the upper crossbeam 71, and sliders 9 can move along the groove 8. Each slider 9 is connected to at least one telescopic member 10. The sliders 9 can slide within the groove 8 according to the length of the plate 2 placed on the panel 4, thereby adjusting the telescopic member 10 to the corresponding position of the plate 2. The position of the pressed plate 2 is changed by adjusting the position of the telescopic member 10. Along the direction D2 parallel to the horizontal plate 44, both ends of the plate 2 are pressed against the panel 4 by the pistons of the pressure plate 6 and the telescopic member 10, respectively. Under the action of the pistons of the pressure plate 6 and the telescopic member 10, the end face of the plate 2 near the base 3 can be aligned with the horizontal surface 41 and... The inclined surfaces 42 are in contact; with the assistance of the straightener worktable, the plate 2 is pressed into a reverse deformation by the telescopic component 10, so that the straightener 1 can be easily inserted; when the telescopic component 10 is released, the original deformation of the plate 2 before the straightener 1 is inserted is resolved, and the straightener 1 is fixed on the plate 2 and cannot be removed, so that the straightener 1 can produce the maximum adjustment range; after the straightener 1 is installed, the straightener 1 and the plate 2 are in a fixed state, which can also prevent the straightener 1 from falling off during the handling or installation of the plate 2; the gap between the straightener 1 and the mounting groove 21 on the plate 2 is reduced, and after the straightener 1 is installed by the straightener worktable, it can fit perfectly with the plate 2 and make the outer surface of the plate 2 flat, improving the aesthetic appearance of the plate 2.

[0050] In some alternative embodiments, see also [link to previous document]. Figure 2 As shown, the left longitudinal beam 72 and the right longitudinal beam 74 are located at the two ends of the upper crossbeam 71 along the direction D3 from the left longitudinal beam 72 to the right longitudinal beam 74, respectively. The left longitudinal beam 72 and the right longitudinal beam 74 are connected to the side of the upper crossbeam 71 near the base 3.

[0051] For details, please refer to [link / reference]. Figure 2As shown, in this embodiment, the left longitudinal beam 72 and the right longitudinal beam 74 are located at both ends of the upper crossbeam 71 along the direction D3 from the left longitudinal beam 72 to the right longitudinal beam 74. The left longitudinal beam 72 and the right longitudinal beam 74 are connected to the side of the upper crossbeam 71 near the base 3. Since the side of the upper crossbeam 71 near the base 3 is provided with a groove 8 extending along the direction D3 from the left longitudinal beam 72 to the right longitudinal beam 74, the slider 9 can move along the groove 8. By setting the left longitudinal beam 72 and the right longitudinal beam 74 at both ends of the upper crossbeam 71 along the direction D3 from the left longitudinal beam 72 to the right longitudinal beam 74, the left longitudinal beam 72 and the right longitudinal beam 74 can be prevented from blocking the groove 8, thereby preventing the left longitudinal beam 72 and the right longitudinal beam 74 from hindering the slider 9 from sliding smoothly.

[0052] In some alternative embodiments, see also [link to previous document]. Figure 2 As shown, the upper crossbeam 71 and the lower crossbeam 73 extend along direction D3 from left longitudinal beam 72 to right longitudinal beam 74, and the left longitudinal beam 72 and the right longitudinal beam 74 extend along direction D1 from base 4 to panel 4; direction D1 from base 4 to panel 4 is vertical; direction D3 from left longitudinal beam 72 to right longitudinal beam 74 is perpendicular to direction D1 from base 4 to panel 4.

[0053] For details, please refer to [link / reference]. Figure 2 As shown, in this embodiment, the upper crossbeam 71 and the lower crossbeam 73 can extend along direction D3 from the left longitudinal beam 72 to the right longitudinal beam 74, and the left longitudinal beam 72 and the right longitudinal beam 74 can extend along direction D1 from the base 4 to the panel 4; direction D1 from the base 4 to the panel 4 can be vertical; direction D3 from the left longitudinal beam 72 to the right longitudinal beam 74 can be perpendicular to direction D1 from the base 4 to the panel 4; and since the panel 4 can be located directly above the base 3, the upper crossbeam 71 is located on the panel 4 away from the base 3. On one side, the lower crossbeam 73 is located on the side of the panel 4 near the base 3; it can be understood that the upper crossbeam 71 and the lower crossbeam 73 can extend horizontally, with the upper crossbeam 71 located above the lower crossbeam 73, and the left longitudinal beam 72 and the right longitudinal beam 74 can extend vertically. The upper crossbeam 71, the left longitudinal beam 72, the lower crossbeam 73 and the right longitudinal beam 74 are connected to form a rectangular frame structure, which can prevent the left longitudinal beam 72, the lower crossbeam 73 and the right longitudinal beam 74 from obstructing the panel 4, thereby facilitating the placement of the plate 2 on the panel 4.

[0054] In some alternative embodiments, see Figure 5 and Figure 6 As shown, Figure 5 This is a structural schematic diagram of the upper crossbeam, slider, and cylinder provided in this embodiment. Figure 6 yes Figure 5 Enlarged structural diagram at point A; the slide 8 includes an upper groove 81 and a lower groove 82, which are connected; combined with Figure 2As shown, the lower groove 82 is located on the side of the upper groove 81 that is close to the panel 4; along the direction D2 parallel to the horizontal plate 44, the width of the upper groove 81 is greater than the width of the lower groove 82.

[0055] The slider 9 includes an upper column 91 and a lower column 92; the upper column 91 and the lower column 92 are connected and coaxially arranged; along the direction D1 from the base 4 to the panel 4, the height of the upper column 91 is less than the height of the upper groove 81; along the direction D2 parallel to the horizontal plate 44, the width of the upper column 91 is less than the width of the upper groove 81; along the direction D2 parallel to the horizontal plate 44, the width of the upper column 91 is greater than the width of the lower groove 82; along the direction D2 parallel to the horizontal plate 44, the width of the lower column 92 is less than the width of the lower groove 82; the upper column 91 is inserted into the upper groove 81, the lower column 92 is inserted into the lower groove 82, and the side of the lower column 92 closest to the panel 4 is connected to the telescopic member 10.

[0056] For details, please refer to [link / reference]. Figure 5 and Figure 6 As shown, in this embodiment, the slide 8 includes an upper slide body 81 and a lower slide body 82; the upper slide body 81 and the lower slide body 82 are connected; continuing to combine Figure 2 As shown, the lower groove 82 is located on the side of the upper groove 81 that is close to the panel 4; along the direction D2 parallel to the horizontal plate 44, the width of the upper groove 81 is greater than the width of the lower groove 82.

[0057] The slider 9 includes an upper column 91 and a lower column 92; the upper column 91 and the lower column 92 are connected and coaxially arranged; along the direction D1 from the base 4 to the panel 4, the height of the upper column 91 is less than the height of the upper groove 81; along the direction D2 parallel to the horizontal plate 44, the width of the upper column 91 is less than the width of the upper groove 81; along the direction D2 parallel to the horizontal plate 44, the width of the upper column 91 is greater than the width of the lower groove 82; along the direction D2 parallel to the horizontal plate 44... The width of the upper column 92 is smaller than the width of the lower groove 82; the upper column 91 is inserted into the upper groove 81, and the lower column 92 is inserted into the lower groove 82. The side of the lower column 92 closest to the panel 4 is connected to the telescopic component 10. It can be understood that the upper column 91 can be inserted into the upper groove 81, and the lower column 92 can be inserted into the lower groove 82. Furthermore, the upper column 91 can be held in place by the edge of the groove wall of the lower groove 82, allowing the upper column 91 to move freely within the upper groove 81 without falling out of the lower groove 82.

[0058] Optional, see below Figure 6 As shown, along direction D3 perpendicular to the direction from the left longitudinal beam 72 to the right longitudinal beam 74, the cross-sectional shape of the upper groove 81 and the lower groove 82 can be rectangular; the rectangular structure of the upper groove 81 and the lower groove 82 can facilitate processing and improve production efficiency.

[0059] Optional, see below Figure 6 As shown, both the upper column 91 and the lower column 92 can be cylindrical structures; cylindrical structures facilitate processing and improve production efficiency.

[0060] In some alternative embodiments, see Figure 7 As shown, Figure 7 This is a structural schematic diagram of the horizontal surface and ash leakage trough provided in this embodiment, combined with... Figure 2 As shown, at least one ash leakage groove 11 is provided on the horizontal surface 41. The ash leakage groove 11 is located on the side of the connecting block 5 near the inclined surface 42. The orthographic projection of the ash leakage groove 11 on the horizontal surface 41 is within the orthographic projection range of the pressure plate 6 on the horizontal surface 41.

[0061] For details, please refer to [link / reference]. Figure 2 and Figure 7 As shown, in this embodiment, at least one ash-draining groove 11 is provided on the horizontal surface 41. The ash-draining groove 11 is located on the side of the connecting block 5 near the inclined surface 42. The orthographic projection of the ash-draining groove 11 on the horizontal surface 41 is within the orthographic projection range of the pressure plate 6 on the horizontal surface 41. Furthermore, the connecting block 5 can be a rectangular body. The orthographic projection of the connecting block 5 on the horizontal surface 41 is within the orthographic projection range of the pressure plate 6 on the horizontal surface 41. The orthographic projection of the ash-draining groove 11 on the pressure plate 6 and the orthographic projection of the connecting block 5 on the pressure plate 6 do not overlap. Since the plate 2 placed on panel 4 and waiting to be fitted with straightener 1 is generally a plate with a pre-processed surface, in order to prevent dust and debris on panel 4 from scratching the plate 2, a dust drain groove 11 is provided on panel 4. Impurities on panel 4 can be cleaned and dropped off through the dust drain groove 11, thereby ensuring the integrity of the surface of plate 2 and avoiding accidental scratches on the surface of plate 2. The orthographic projection of dust drain groove 11 on horizontal surface 41 is located within the orthographic projection range of pressure plate 6 on horizontal surface 41. That is to say, dust drain groove 11 is located directly below pressure plate 6, which can avoid the presence of sanitary dead corners near pressure plate 6, making it easier to clean panel 4 and further preventing dust and debris on panel 4 from scratching plate 2.

[0062] Optional, continue to combine Figure 2As shown, the length difference between the pressure plate 6 and the connecting block 5 along the direction D2 parallel to the horizontal plate 44 can be 10mm to 40mm. If the length difference between the pressure plate 6 and the connecting block 5 along the direction D2 parallel to the horizontal plate 44 is less than 10mm, the length of the pressure plate 6 is too small, and it is easy to fail to press down the plate 2. If the length difference between the pressure plate 6 and the connecting block 5 along the direction D2 parallel to the horizontal plate 44 is greater than 40mm, the length of the pressure plate 6 is too long, and it is not easy for the plate 2 to be inserted under the pressure plate 6. Therefore, the length difference between the pressure plate 6 and the connecting block 5 along the direction D2 parallel to the horizontal plate 44 can be 10mm to 40mm, which can both allow the pressure plate 6 to press down the plate 2 and facilitate the insertion of the plate 2 under the pressure plate 6. Specifically, the length difference between the pressure plate 6 and the connecting block 5 along the direction D2 parallel to the horizontal plate 44 can be 10mm, 20mm, 30mm, or 40mm.

[0063] In some alternative embodiments, see also [link to previous document]. Figure 7 As shown, the ash leakage groove 11 extends through the base 4 in the direction D1 pointing from the panel 4.

[0064] For details, please refer to [link / reference]. Figure 7 As shown, in this embodiment, the ash drain trough 11 can be through along the direction D1 from the base 4 to the panel 4. It can be understood that along the direction D1 from the base 4 to the panel 4, the ash drain trough 11 can be a through groove. The through groove structure can facilitate the cleaning of impurities that fall into the ash drain trough 11. The impurities will fall to the ground through the ash drain trough 11, which can prevent too many impurities from accumulating in the ash drain trough 11 and being unable to be cleaned.

[0065] Optional, see below Figure 7 As shown, the ash leakage trough 11 can extend along the direction D3 from the left longitudinal beam 72 to the right longitudinal beam 74, making the ash leakage trough 11 a long strip structure. This can increase the area occupied by the ash leakage trough 11 on the horizontal surface 41, thereby improving the ash leakage effect and avoiding accidental scratches on the surface of the plate 2. At the same time, it also prevents the ash leakage trough 11 from extending to the outside of the pressure plate 6, hiding the ash leakage trough 11 under the pressure plate 6 and improving the aesthetics of the straightener workbench.

[0066] Optional, see below Figure 2 and Figure 7 As shown, there can be multiple ash leakage channels 11. The multiple ash leakage channels 11 are arranged at equal intervals along the direction D3 from the left longitudinal beam 72 to the right longitudinal beam 74, which can improve the ash leakage effect and avoid accidental scratches on the surface of the plate 2. At the same time, it also prevents the ash leakage channels 11 from extending to the outside of the pressure plate 6, and hides the ash leakage channels 11 under the pressure plate 6, improving the aesthetics of the straightener workbench.

[0067] Optional, see below Figure 2 and Figure 7As shown, the length of the ash-leaking trough 11 along the direction D2 parallel to the horizontal plate 44 can be 10mm to 30mm. If the length of the ash-leaking trough 11 along the direction D2 parallel to the horizontal plate 44 is less than 10mm, the area of ​​the ash-leaking trough 11 on the horizontal surface 41 is too small, and the ash-leaking effect is not ideal. If the length of the ash-leaking trough 11 along the direction D2 parallel to the horizontal plate 44 is greater than 30mm, the width of the ash-leaking trough 11 is too large and it is easy to be exposed on the outside of the pressure plate 6, affecting the overall aesthetics. Therefore, the length of the ash-leaking trough 11 along the direction D2 parallel to the horizontal plate 44 can be 10mm to 30mm, which can both play the role of ash leakage and be hidden under the pressure plate 6, improving the aesthetics. Further optionally, the length of the ash-leaking trough 11 along the direction D2 parallel to the horizontal plate 44 can be 10mm, 15mm, 20mm, 25mm or 30mm.

[0068] In some alternative embodiments, see also [link to previous document]. Figure 2 As shown, the base 3 includes a support frame 31, and the panel 4 is fixedly connected to one side end face of the support frame 31. The side end face of the support frame 31 away from the panel 4 is provided with multiple support legs 32. The extension direction of the support legs 32 is perpendicular to the plane of the support frame 31. A reinforcing rib 33 is also provided between two adjacent support legs 32. The extension direction of the reinforcing rib 33 is parallel to the plane of the support frame 31. The two ends of the extension direction of the reinforcing rib 33 are fixedly connected to two adjacent support legs 32 respectively.

[0069] For details, please refer to [link / reference]. Figure 2 As shown, in this embodiment, the base 3 includes a support frame 31, which can be a rectangular structure. The panel 4 is fixedly connected to one end face of the support frame 31. Multiple support legs 32 are provided on the end face of the support frame 31 away from the panel 4. The number of support legs can be 4, 6, 8, or 10 depending on the actual situation; this embodiment does not specifically limit this. The extension direction of the support legs 32 is perpendicular to the plane of the support frame 31. Furthermore, the extension direction of the support legs 32 can be direction D1 from the base 4 to the panel 4. The plane of the support frame 31 is parallel to direction D2 parallel to the horizontal plate 44 and direction D2 from the left longitudinal beam 72 to the right longitudinal beam 72. The directions D3 of beams 74 are parallel to each other; in actual use, the support legs 32 can be placed on the ground and the panel 4 is supported by the support frame 31; a reinforcing rib 33 can also be provided between two adjacent support legs 32. The extension direction of the reinforcing rib 33 is parallel to the plane of the support frame 31, that is, the extension direction of the reinforcing rib 33 can be parallel to the direction D2 of the horizontal plate 44 or from the left longitudinal beam 72 to the right longitudinal beam 74 in the direction D3; the two ends of the extension direction of the reinforcing rib 33 are fixedly connected to the two adjacent support legs 32 respectively; the reinforcing rib 33 is used to connect two adjacent support legs 32 and improve the connection strength between the two adjacent support legs 32.

[0070] In some alternative embodiments, see also [link to previous document].Figure 2 As shown, when the telescopic component 10 is a cylinder, the upper crossbeam 71 is provided with a main through hole 711 that extends along the direction D3 from the left longitudinal beam 72 to the right longitudinal beam 74. The main through hole 711 is located on the side of the slide groove 8 away from the panel 4. The upper crossbeam 71 is provided with a branch through hole 712 that extends along the direction D1 from the base 4 to the panel 4. The number of branch through holes 712 is the same as the number of telescopic components. The branch through holes 712 are connected to the main through hole 711.

[0071] The ventilation pipe of each telescopic component 10 passes through the corresponding branch through hole 712 into the main through hole 711, and then passes through the main through hole 711 out of the upper crossbeam 71 to connect with the external air source.

[0072] For details, please refer to [link / reference]. Figure 2 As shown, in this embodiment, when the telescopic member 10 is a cylinder, the upper crossbeam 71 is provided with a main through hole 711 that extends along the direction D3 from the left longitudinal beam 72 to the right longitudinal beam 74. The main through hole 711 is located on the side of the slide groove 8 away from the panel 4. The upper crossbeam 71 is provided with a branch through hole 712 that extends along the direction D1 from the base 4 to the panel 4. The number of branch through holes 712 is the same as the number of telescopic members. The branch through holes 712 are connected to the main through hole 711.

[0073] Each telescopic component 10 has a vent pipe that passes through a corresponding branch through hole 712 into a main through hole 711, and then through the main through hole 711 out of the upper crossbeam 71 to connect with an external air source. There can generally be multiple telescopic components 10, each with a vent pipe. Multiple vent pipes can pass through the inside of the upper crossbeam 71 through the branch through hole 712 and the main through hole 711, and then out of the upper crossbeam 71 to connect with an external air source. This can prevent the vent pipes from being placed haphazardly, prevent accidental pressing of the vent pipes which could cause the cylinder to fail to extend or retract properly, and also keep the panel 4 clean and tidy, improving the overall aesthetics.

[0074] In some alternative embodiments, see also [link to previous document]. Figure 3 As shown, protective pads 12 are laid on the side of the horizontal surface 41 near the inclined surface 42, the side of the inclined surface 42, the side of the connecting block 5 near the inclined surface 42, and the side of the pressure plate 6 near the horizontal surface 41.

[0075] For details, please refer to [link / reference]. Figure 3As shown, protective pads 12 are laid on the side of the horizontal surface 41 near the inclined surface 42, the side of the inclined surface 42, the side of the connecting block 5 near the inclined surface 42, and the side of the pressure plate 6 near the horizontal surface 41. That is to say, all the contactable surfaces of the plate 2 are covered with protective pads 12, which can facilitate the plate 2 to be pushed into the gap H, and at the same time avoid scratches on the surface of the plate 2. In this embodiment, protective pads 12 are used to cover the contactable surfaces of the plate 2. The anti-slip pads 12 are easy to replace. When they wear out after long-term use, they can be easily torn off and replaced. Moreover, the material is soft and will not leave marks on the plate 2.

[0076] Optionally, the protective pad 12 can be made of imitation leather. Imitation leather is a synthetic fabric that is resistant to moths, mildew, and has good water resistance. Imitation leather can be divided into PU leather and PVC leather according to its material nature. PU leather is polyurethane, which is divided into polyether type and polyvinyl chloride type. PU leather refers to a type of artificial leather product with a PU coating. It is characterized by its soft texture, fold resistance, and certain moisture absorption. PVC leather is the first generation of PVC artificial leather. It is an imitation leather product with a textile or knitted material as the base and polyvinyl chloride resin as the coating. It is characterized by its resemblance to natural leather, bright appearance, soft texture, wear resistance, fold resistance, and acid and alkali resistance.

[0077] In some alternative embodiments, see also [link to previous document]. Figure 3 As shown, along direction D1 from base 4 to panel 4, the distance between the side of inclined surface 42 closest to horizontal surface 41 and the side of inclined surface 42 furthest from horizontal surface 41 ranges from 5mm to 9mm; and / or,

[0078] The angle α between the inclined surface 42 and the direction D1 from the base 4 to the panel 4 ranges from 88° to 89°.

[0079] For details, please refer to [link / reference]. Figure 3As shown, in this embodiment, if the distance between the side of the inclined surface 42 closest to the horizontal surface 41 and the side of the inclined surface 42 furthest from the horizontal surface 41 along the direction D1 from the base 4 to the panel 4 is less than 5mm, the reverse pressing effect of the plate 2 is not obvious and cannot effectively install the straightener 1; if the distance between the side of the inclined surface 42 closest to the horizontal surface 41 and the side of the inclined surface 42 furthest from the horizontal surface 41 along the direction D1 from the base 4 to the panel 4 is greater than 9mm, cracks will be pressed into the surface of the plate 2; therefore, along the direction D1 from the base 4 to the panel 4, the reverse pressing effect of the plate 2 is not obvious and cannot effectively install the straightener 1; In the direction D1 of plate 4, the distance between the side of inclined surface 42 close to horizontal surface 41 and the side of inclined surface 42 away from horizontal surface 41 is 5mm to 9mm. This can both achieve reverse pressing of plate 2 and serve as a good installation tool for straightener 1, while also preventing cracks from being pressed into the surface of plate 2. Optionally, along the direction D1 from base 4 to panel 4, the distance between the side of inclined surface 42 close to horizontal surface 41 and the side of inclined surface 42 away from horizontal surface 41 can be 5mm, 6mm, 7mm, 8mm or 9mm.

[0080] In this embodiment, if the angle α between the inclined surface 42 and the direction D1 from the base 4 to the panel 4 is less than 88°, the inclination of the inclined surface 42 is too large, which will cause cracks to appear on the surface of the plate 2. If the angle α between the inclined surface 42 and the direction D1 from the base 4 to the panel 4 is greater than 89°, the inclination of the inclined surface 42 is too small, and the reverse pressing effect of the plate 2 is not obvious, which will not play a good role in installing the straightener 1. Therefore, the angle α between the inclined surface 42 and the direction D1 from the base 4 to the panel 4 is in the range of 88° to 89°, which can both achieve reverse pressing on the plate 2 and play a good role in installing the straightener 1, and avoid causing cracks to appear on the surface of the plate 2. Optionally, the angle α between the inclined surface 42 and the direction D1 from the base 4 to the panel 4 can be 88°, 88.3°, 88.5°, 88.7° or 89°.

[0081] In this embodiment, if the distance between the side of the inclined surface 42 closest to the horizontal surface 41 and the side of the inclined surface 42 furthest from the horizontal surface 41 along the direction D1 from the base 4 to the panel 4 is less than 5mm, the reverse pressing effect of the plate 2 is not obvious and it cannot effectively install the straightener 1; if the distance between the side of the inclined surface 42 closest to the horizontal surface 41 and the side of the inclined surface 42 furthest from the horizontal surface 41 along the direction D1 from the base 4 to the panel 4 is greater than 9mm, cracks will be pressed into the surface of the plate 2; at the same time, if the angle α between the inclined surface 42 and the direction D1 from the base 4 to the panel 4 is less than 88°, the inclination of the inclined surface 42 is too large, and cracks will be pressed into the surface of the plate 2; ... If the angle α between the inclined surface 42 and the horizontal surface 41 is greater than 89°, the inclination of the inclined surface 42 is too small, and the reverse pressing effect of the plate 2 is not obvious, thus failing to effectively install the straightener 1. Therefore, along the direction D1 from the base 4 to the panel 4, the distance between the side of the inclined surface 42 closest to the horizontal surface 41 and the side of the inclined surface 42 furthest from the horizontal surface 41 is 5mm to 9mm. This allows for reverse pressing of the plate 2, effectively installing the straightener 1, while preventing cracks from being pressed into the surface of the plate 2. Furthermore, the angle α between the inclined surface 42 and the direction D1 from the base 4 to the panel 4 is 88° to 89°. This allows for reverse pressing of the plate 2, effectively installing the straightener 1, while preventing cracks from being pressed into the surface of the plate 2.

[0082] As can be seen from the above embodiments, the straightener worktable provided by the present invention achieves at least the following beneficial effects:

[0083] This embodiment provides a straightener workbench for installing a straightener inside a board to straighten the board. A groove is provided on the upper crossbeam, and sliders can move along the groove. Each slider is connected to at least one telescopic component. The slider can slide within the groove according to the length of the board placed on the panel, thereby adjusting the telescopic component to the corresponding position on the board. Adjusting the position of the telescopic component changes the position of the pressed board. Along a direction parallel to the horizontal plate 44, both ends of the board are pressed against the panel by the pistons of the pressure plate and the telescopic component, respectively. Under the action of the pistons of the pressure plate and the telescopic component, the end face of the board near the base can be aligned with both the horizontal and inclined surfaces. Fitting; With the assistance of the straightener's worktable, the sheet is pressed into a reverse deformation by the telescopic component, allowing it to be easily inserted into the straightener; when the telescopic component is released, the original deformation of the sheet before the straightener is inserted is resolved, and the straightener is fixed on the sheet and cannot be removed, allowing the straightener to produce the maximum adjustment range; after the straightener is installed, it is fixed to the sheet, which also prevents the straightener from falling off during the handling or installation of the sheet; the gap between the straightener and the mounting slot on the sheet is reduced, and after the straightener is installed through the straightener's worktable, it can fit perfectly with the sheet, making the outer surface of the sheet flat and improving the aesthetic appearance of the sheet.

[0084] While specific embodiments of the invention have been described in detail by way of examples, those skilled in the art should understand that the examples are for illustrative purposes only and not intended to limit the scope of the invention. Those skilled in the art should understand that modifications can be made to the above embodiments without departing from the scope and spirit of the invention. The scope of the invention is defined by the appended claims.

Claims

1. A straightener workbench for mounting a straightener on a plate, characterized in that, Includes a base, a panel is connected to one side of the base, the end face of the panel away from the base is used to support the plate, and the end face of the panel close to the base is fixedly connected to the base. The panel includes an inclined plate and a horizontal plate connected to the inclined plate. A support plate is connected to the side of the inclined plate and the horizontal plate near the base. The side of the support plate away from the horizontal plate is connected to the base. A horizontal surface is provided on the side of the horizontal plate away from the base. An inclined surface is provided on the side of the inclined plate away from the base. The horizontal surface and the inclined surface are connected and serve to support the panel. The horizontal surface and the inclined surface are arranged in a direction parallel to the horizontal plate, and the horizontal surface and the inclined surface are not in the same plane. The inclined surface is inclined towards the side closer to the base; a connecting block is connected to the side of the horizontal surface away from the inclined surface, and a pressure plate is connected to the side of the connecting block away from the horizontal surface. A gap exists between the pressure plate and the horizontal surface. The pressure plate is used to press the panel body and is parallel to the horizontal surface. The two ends of the connecting block along the direction from the base to the panel are fixedly connected to the horizontal surface and the pressure plate, respectively. The connecting block is used to connect the horizontal surface and the pressure plate. Along the direction from the base to the panel, the width of the gap is greater than the width of the panel body. Along the direction from the base to the panel, the distance between the side of the inclined surface closer to the horizontal surface and the side of the inclined surface farther from the horizontal surface ranges from 5mm to 9mm; and / or, the angle α between the inclined surface and the direction from the base to the panel ranges from 88° to 89°. A bracket is connected to the side of the base away from the connecting block. The bracket includes an upper crossbeam, a left longitudinal beam, a lower crossbeam, and a right longitudinal beam connected end to end. The lower crossbeam is located on the side of the panel closest to the base and is fixedly connected to the base. The upper crossbeam is located on the side of the panel away from the base. A sliding groove is formed on the side of the upper crossbeam closest to the base. The sliding groove extends in the direction from the left longitudinal beam to the right longitudinal beam. At least one slider is provided in the sliding groove. The slider can move along the sliding groove. Each slider is connected to at least one telescopic member. The piston of the telescopic member can extend and retract in the direction from the base to the panel. The orthographic projection of the telescopic member on the base is within the orthographic projection range of the inclined surface on the base.

2. The straightener worktable according to claim 1, characterized in that, The left longitudinal beam and the right longitudinal beam are located at opposite ends of the upper crossbeam along the direction from the left longitudinal beam to the right longitudinal beam, and the left longitudinal beam and the right longitudinal beam are respectively connected to the side of the upper crossbeam near the base.

3. The straightener worktable according to claim 1, characterized in that, The upper crossbeam and the lower crossbeam extend in the direction from the left longitudinal beam to the right longitudinal beam, and the left longitudinal beam and the right longitudinal beam extend in the direction from the base to the panel; the direction from the base to the panel is vertical; the direction from the left longitudinal beam to the right longitudinal beam is perpendicular to the direction from the base to the panel.

4. The straightener worktable according to claim 1, characterized in that, The slide rail includes an upper slide rail and a lower slide rail, which are connected to each other; the lower slide rail is located on the side of the upper slide rail closer to the panel; along a direction parallel to the horizontal plate, the width of the upper slide rail is greater than the width of the lower slide rail. The slider includes an upper column and a lower column; the upper column and the lower column are connected and coaxially arranged; along the direction from the base to the panel, the height of the upper column is less than the height of the upper groove. Along a direction parallel to the horizontal plate, the width of the upper column is smaller than the width of the upper groove. Along a direction parallel to the horizontal plate, the width of the upper column is greater than the width of the lower groove. Along a direction parallel to the horizontal plate, the width of the lower column is smaller than the width of the lower groove; the upper column is inserted into the upper groove, the lower column is inserted into the lower groove, and the side of the lower column near the panel is connected to the telescopic member.

5. The straightener worktable according to claim 1, characterized in that, At least one ash leakage groove is provided on the horizontal surface. The ash leakage groove is located on the side of the connecting block near the inclined surface. The orthographic projection of the ash leakage groove on the horizontal surface is within the orthographic projection range of the pressure plate on the horizontal surface.

6. The straightener worktable according to claim 5, characterized in that, The ash leakage channel extends along the direction from the base toward the panel.

7. The straightener worktable according to claim 1, characterized in that, The base includes a support frame, the panel is fixedly connected to one end face of the support frame, and the side face of the support frame away from the panel is provided with multiple support legs. The extension direction of the support legs is perpendicular to the plane of the support frame. A reinforcing rib is also provided between two adjacent support legs. The extension direction of the reinforcing rib is parallel to the plane of the support frame. The two ends of the extension direction of the reinforcing rib are fixedly connected to the two adjacent support legs respectively.

8. The straightener worktable according to claim 1, characterized in that, When the telescopic component is a cylinder, the upper crossbeam is provided with a main through hole extending from the left longitudinal beam to the right longitudinal beam, and the main through hole is located on the side of the slide away from the panel; the upper crossbeam is provided with a branch through hole extending from the base to the panel, the number of branch through holes is the same as the number of telescopic components, and the branch through holes are connected to the main through hole; The ventilation pipe of each of the telescopic components passes through the corresponding branch through hole into the main through hole, and then passes through the main through hole out of the upper crossbeam to connect with the external air source.

9. The straightener worktable according to claim 1, characterized in that, Protective pads are laid on the side of the horizontal surface near the inclined surface, the inclined surface, the side of the connecting block near the inclined surface, and the side of the pressure plate near the horizontal surface.

Citation Information

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