Ceramic fiber module bundling device
By using a combination of double-sided extrusion components and a hydraulic system, the problems of uneven density and bulging of the strapping tape in the packaging process of ceramic fiber modules are solved, thereby improving the thermal insulation performance and service life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-12
- Publication Date
- 2026-03-31
AI Technical Summary
In the existing technology, ceramic fiber modules have problems such as uneven module size, fiber layer wrinkles, bulging of strapping, uneven density, and shortened service life when packaged. In particular, the uneven compression and width of the folded blocks caused by unilateral compression are particularly problematic.
Using a double-sided extrusion assembly and hydraulic system, the ceramic fiber modules are extruded by machine and then bundled with strapping to ensure uniform density and prevent bulging after bundling. Wooden boards are used for secondary bundling.
This method achieves uniform extrusion and bundling of ceramic fiber modules, improving thermal insulation performance, extending service life, and avoiding problems such as bulging and uneven density of the bundling tape.
Smart Images

Figure CN224061265U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of ceramic fiber module bundling device, belong to module bundling field. BACKGROUND
[0002] As a kind of heat-insulating material, ceramic fiber module is mainly relied on manual folding fiber blanket and manual bundling in packing, it is easy to cause module size uneven, fiber layer wrinkle, affect heat-insulating performance, and after bundling, because of big elasticity, it will be inflated between bundling belt, it will produce problem for transportation and actual use, also shorten service life, and former extrusion plate frame is fixed on one side, and the other side is pushed to extrude, it will cause the problem of uneven compression of folding block caused by one side extrusion, one side extrusion plate frame is not moved, and material compression is small, while the side of pushing extrusion plate frame because of big pushing pressure, folding block compression is big, it appears uneven density, uneven width of folding. SUMMARY
[0003] According to the problem described in background, the utility model wants to solve the problem: provide a kind of ceramic fiber module bundling device, by bilateral extrusion ceramic fiber module, solve the problem of uneven density, uneven width of folding caused by big compression of folding block of single side extrusion, while artificial is tied through the gap between extrusion plate, after bundling, it is tied again by being placed in wooden board, to solve the problem of inflation after bundling, affect heat-insulating performance and service life.
[0004] To achieve the above object, the utility model provides the following technical scheme: provide a kind of ceramic fiber module bundling device, including rack, extrusion assembly, flat strip, side beam and slide rail, rack is the support frame that passes through up and down, multiple flat strips are installed on the upper end surface of rack, gap is left between flat strip, extrusion assembly is installed on the both sides of rack, side beam is installed on the horizontal both sides of rack, slide rail is installed on side beam.
[0005] Preferably, the extrusion assembly includes side frame, extrusion plate frame, push plate frame, positioning telescopic rod, push rod, hydraulic pump, infusion connecting pipe, sliding block and connecting block, push plate frame is installed on the both sides of rack, two groups of positioning telescopic rod and a group of push rod are installed on push plate frame, positioning telescopic rod and push rod pass through push plate frame, extrusion plate frame is fixedly connected on the inner side of positioning telescopic rod and push rod, side frame is installed on the both sides of rack, side frame is directly placed on ground, hydraulic pump is equipped on side frame, infusion connecting pipe is connected at the tail end of push rod at the output end of hydraulic pump, sliding block is matched with slide rail, connecting block is fixedly connected on the upper end of sliding block, and the side of extrusion plate frame is connected with the other end of connecting block.
[0006] Preferably, extrusion plate strip is also installed on the extrusion plate frame, and extrusion plate strip is installed in the opposite direction of two groups of extrusion plate frame, and the gap is same with flat strip.
[0007] Preferably, the push rod is located in the middle of the two groups of positioning telescopic rods.
[0008] Preferably, the positioning telescopic rod comprises a positioning cylinder and a telescopic rod, the positioning cylinder is installed outside the extrusion plate frame and penetrates and extends inside, and the telescopic rod is installed inside the positioning cylinder and is fixedly connected with the extrusion plate frame at one end outside the positioning cylinder.
[0009] Preferably, the push rod comprises a push rod cylinder and a push rod body, the push rod cylinder is installed outside the extrusion plate frame and penetrates and extends inside, and the push rod body is installed inside the push rod cylinder and is fixedly connected with the extrusion plate frame at one end outside the push rod cylinder.
[0010] Preferably, the lower end of the side beam is further provided with a side beam support, and the side beam support is fixed on the front and rear sides of the frame.
[0011] Preferably, the other end of the infusion connecting pipe is specifically connected to the tail of the push rod cylinder.
[0012] The utility model discloses the beneficial effect is:
[0013] 1. Through machine extrusion, the problem of incomplete manual extrusion, even folding, leading to poor heat insulation effect is solved.
[0014] 2. After machine extrusion, the problem of bulging after bundling is solved by manually passing the bundling belt through the gap between the flat strip and the extrusion strip, and then placing the wooden board on both sides of the ceramic fiber module for re-bundling.
[0015] 3. Through double-side extrusion, the problem of uneven density and width of the folding block caused by large pushing pressure of the single-side extrusion plate frame is solved. BRIEF DESCRIPTION OF DRAWINGS
[0016] Fig. 1 It is a structural schematic view of the utility model;
[0017] Fig. 2 It is a top view of the utility model;
[0018] In the figure: 1 is a frame; 2 is an extrusion assembly; 3 is a side frame; 4 is an extrusion plate frame; 5 is a flat strip; 6 is a push plate frame; 7 is a positioning telescopic rod; 8 is a push rod; 9 is a hydraulic pump; 10 is an infusion connecting pipe; 11 is a side beam; 12 is a sliding rail; 13 is a sliding block; 14 is a connecting block; 31 is a blocking strip; 41 is an extrusion strip; 71 is a positioning cylinder; 72 is a telescopic rod; 81 is a push rod cylinder; 82 is a push rod body; 111 is a side beam support. DETAILED DESCRIPTION
[0019] The embodiments of the utility model are further described below in combination with the drawings:
[0020] Embodiment 1
[0021] As Figs. 1-2 shown, the utility model includes frame 1, extrusion subassembly 2, flat strip 5, side beam 11 and slide rail 12, frame 1 is the support frame that passes through up and down, install multiple flat strips 5 on frame 1 upper end face, leave the gap between flat strip 5, install extrusion subassembly 2 on frame 1 both sides, install side beam 11 on frame 1 horizontal both sides, install slide rail 12 on side beam 11.
[0022] Extrusion subassembly 2 includes side frame 3, extrusion plate frame 4, push plate frame 6, positioning telescopic rod 7, push rod 8, hydraulic pump 9, liquid transfer connecting pipe 10, sliding block 13 and connecting block 14, install push plate frame 6 on frame 1 both sides, install two groups of positioning telescopic rod 7 and a group of push rod 8 on push plate frame 6, positioning telescopic rod 7 and push rod 8 pass through push plate frame 6, the inboard of positioning telescopic rod 7 and push rod 8 is fixedly connected with extrusion plate frame 4, install side frame 3 on frame 1 both sides, side frame 3 is placed directly on the ground, be equipped with hydraulic pump 9 on side frame 3, the output end of hydraulic pump 9 is connected with liquid transfer connecting pipe 10, the other end of liquid transfer connecting pipe 10 is connected with the tail end of push rod 8, the sliding block 13 is cooperated with slide rail 12, the upper end of sliding block 13 is fixedly connected with connecting block 14, and the other end of connecting block 14 is connected with the side of extrusion plate frame 4.
[0023] In order to realize that the device can be directly banded on the device after extrusion, extrusion plate strip 41 is also installed on extrusion plate frame 4, extrusion plate strip 41 is installed in the opposite direction of two groups of extrusion plate frame 4, and the gap is same with flat strip 5.
[0024] Push rod 8 is located in the middle position of two groups of positioning telescopic rod 7, which is convenient for realizing extrusion.
[0025] Positioning telescopic rod 7 includes positioning cylinder 71 and telescopic rod 72, positioning cylinder 71 is installed on the outside of push plate frame 6 and extends inwards, telescopic rod 72 is installed in positioning cylinder 71 and is fixedly connected with extrusion plate frame 4 at one end not in positioning cylinder 71; when extrusion plate frame 4 moves, positioning telescopic rod 7 can also realize positioning and extrusion force balance through telescopic rod 72 in positioning cylinder 71.
[0026] Push rod 8 includes push rod cylinder 81 and push rod body 82, push rod cylinder 81 is installed on the outside of push plate frame 6 and extends inwards, push rod body 82 is installed in push rod cylinder 81 and is fixedly connected with extrusion plate frame 4 at one end not in push rod cylinder 81; push rod 8 realizes that push rod body 82 in push rod cylinder 81 is pushed forward by the pressurization of hydraulic pump 9, so as to realize that extrusion plate frame 4 is pushed forward to realize extrusion.
[0027] The lower end of the side beam 11 is also provided with a side beam support 111 fixed on the front and rear sides of the frame 1 to avoid damage of the side beam 11 due to excessive fatigue.
[0028] The other end of the infusion connecting pipe 10 is specifically connected to the tail of the push rod cylinder 81, facilitating hydraulic pressure increase and pressure reduction.
[0029] Working principle: place the ceramic fiber module to be bundled on the flat strip 5, actuate the hydraulic pump 9 on both sides to push the push rod body 82 in the push rod 8, the extrusion plate frame 4 on both sides is balanced under the action of the positioning telescopic rod 7, and moves to the ceramic fiber module direction, gradually extruding, when the extrusion is completed, manually pass the bundling strip through the gap between the flat strip and the extrusion strip to bundle, which is the first bundling, then put the wooden board on both sides of the ceramic fiber module, pass the bundling strip through the gap between the flat strip and the extrusion strip to bundle, realize secondary bundling, solve the problem of bulging after bundling, and solve the problem of uneven density and uneven width of the folding block due to large pushing pressure and large compression of the folding block of the one-side extrusion plate frame when single-side extrusion.
Claims
1. A ceramic fiber module strapping apparatus characterized by, The utility model provides an extrusion assembly, flat strip, side beam and slide rail, including frame (1), extrusion assembly (2), flat strip (5), side beam (11) and slide rail (12), frame (1) is the support frame of upper and lower through, install a plurality of flat strips (5) on frame (1) upper end surface, leave the gap between flat strip (5), install extrusion assembly (2) on both sides of frame (1), install side beam (11) on the horizontal both sides of frame (1), install slide rail (12) on side beam (11).
2. The ceramic fiber module strapping apparatus of claim 1, wherein, The utility model provides an extrusion assembly, flat strip, side beam and slide rail, including frame (1), extrusion assembly (2), flat strip (5), side beam (11) and slide rail (12), frame (1) is the support frame of upper and lower through, install a plurality of flat strips (5) on frame (1) upper end surface, leave the gap between flat strip (5), install extrusion assembly (2) on both sides of frame (1), install side beam (11) on the horizontal both sides of frame (1), install slide rail (12) on side beam (11). Extrusion assembly (2) including side frame (3), extrusion plate frame (4), push plate frame (6), positioning telescopic rod (7), push rod (8), hydraulic pump (9), liquid delivery connecting pipe (10), sliding block (13) and connecting block (14), install push plate frame (6) on both sides of frame (1), install two groups of positioning telescopic rod (7) and a group of push rod (8) on push plate frame (6), positioning telescopic rod (7) and push rod (8) are through push plate frame (6), positioning telescopic rod (7) and push rod (8) inside fixedly connected with extrusion plate frame (4), install side frame (3) on both sides of frame (1) outside, side frame (3) is placed directly on the ground, be equipped with hydraulic pump (9) on side frame (3), the output of hydraulic pump (9) is connected with liquid delivery connecting pipe (10), the other end of liquid delivery connecting pipe (10) is connected with the tail end of push rod (8), the sliding block (13) is cooperated with slide rail (12), the upper end of sliding block (13) is fixedly connected with connecting block (14), and the other end of connecting block (14) is connected with the side surface of extrusion plate frame (4).
3. The ceramic fiber module strapping apparatus of claim 2, wherein, Extrusion plate frame (4) still install extrusion plate strip (41) on, extrusion plate strip (41) install in two groups of extrusion plate frame (4) opposite direction, with flat strip (5) gap same.
4. The ceramic fiber module strapping apparatus of claim 2, wherein, The push rod (8) is located in the middle position of the two positioning telescopic rods (7).
5. The ceramic fiber module strapping apparatus of claim 2, wherein, The positioning telescopic rod (7) includes a positioning cylinder (71) and a telescopic rod (72), the positioning cylinder (71) is installed on the outer side of the push plate frame (6) and penetrates and extends inside, and the telescopic rod (72) is installed in the positioning cylinder (71) and is fixedly connected with the extrusion plate frame (4) at one end not in the positioning cylinder (71).
6. The ceramic fiber module strapping apparatus of claim 2, wherein, The push rod (8) includes a push rod cylinder (81) and a push rod body (82), the push rod cylinder (81) is installed on the outer side of the push plate frame (6) and penetrates and extends inside, and the push rod body (82) is installed in the push rod cylinder (81) and is fixedly connected with the extrusion plate frame (4) at one end not in the push rod cylinder (81).
7. The ceramic fiber module strapping apparatus of claim 1 wherein, The lower end of the side beam (11) is further provided with a side beam support (111), and the side beam support (111) is fixed on the front and rear sides of the frame (1).
8. The ceramic fiber module strapping apparatus of claim 2, wherein, The other end of the liquid delivery connecting pipe (10) is specifically connected to the tail of the push rod cylinder (81).