Load-reducing stabilizing device with floating structure

By designing a floating structure to reduce the load and stabilize the device, and using a combination of damping shock absorbers and dust hoods, the problem of decreased stability caused by shaking during the dust removal process of roll materials was solved, achieving more efficient dust removal and quality assurance for roll materials.

CN223603034UActive Publication Date: 2025-11-28OUJIETE (SUZHOU) AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202423083926.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-11-28
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

During dust removal, the stability of the rolled material decreases due to the pulling and shaking during the winding process, which affects the dust removal effect and the quality of the rolled material, and may lead to problems such as tearing.

Method used

Design a load-reducing and stabilizing device with a floating structure, including a roll material dust removal mechanism, a load-reducing component, a movable locking ring seat, and a floating dust removal roller. Floating load reduction is achieved through a damping shock absorber, and a dust suction hood is connected to the load-reducing component to assist in dust adsorption.

Benefits of technology

It improves the stability and effectiveness of roll material dust removal, reduces the risk of roll material shaking and tearing, and enhances the stability and dust removal efficiency of roll material winding and unwinding.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a load reduction stabilizing device with a floating structure, which comprises a coiled material dust removal mechanism, a load reduction component, a movable clamping ring seat and a floating dust removal roller, and a through groove is formed in the upper end of the rear side surface of the coiled material dust removal mechanism. Compared with the prior art, the coiled material dedusting device has the advantages that the coiled material dedusting mechanism, the load reducing assembly, the movable clamping ring base and the floating dedusting roller are additionally arranged, the bearings are installed at the two ends of the floating dedusting roller and arranged on the inner side of the fixed clamping ring base, the movable clamping ring base is arranged above the outer sides of the bearings, and the two sets of connecting plates are connected and fixed through the bolts; the two sets of load reducing assemblies are fixedly arranged in the containing grooves, load reducing of the damping shock absorbers is achieved by pressing the floating dust removal roller in the coiled material guiding and conveying process, the coiled material dust removal effect can be improved, the coiled material dust removal mechanism and the load reducing assemblies are additionally arranged, and a dust suction hood is connected with the load reducing assemblies through a connecting base, so that the coiled material dust removal device can assist in coiled material dust removal.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of coiled material dust removal technology, especially relates to a stable device of reducing load with floating structure. BACKGROUND

[0002] Coiled material is a kind of material widely used in fields such as building, packaging, printing, etc., usually in the form of long strip or sheet, which can be coiled into a reel for transportation and storage, and the coiled material dust removal mechanism is one of the commonly used equipment in industrial production process, which is mainly used to remove dust and impurities on the surface of coiled material, reduce the influence of dust and impurities and improve product quality. There are various ways for coiled material to be dusted, such as using dust removal roller to adhere and adsorb dust on coiled material, but the coiled material will shake due to pulling during the winding process during guiding and conveying, and the length of winding and unwinding stage of coiled material will also affect the size of pulling and shaking force, thereby causing the stability of coiled material dust removal mechanism to decrease in use, affecting the winding and unwinding use of coiled material, and affecting the dust removal use of dust removal roller on coiled material, in addition, the existence of pulling force in the guiding and conveying of coiled material will also affect the quality of coiled material, which may cause tearing and other situations.

[0003] As described above, the coiled material dust removal mechanism that cannot float and reduce load has some problems in use, so it is hoped to propose a new structure to solve the above technical problems. UTILITY MODEL CONTENT

[0004] In view of the deficiencies in the prior art, the utility model aims to provide a stable device of reducing load with floating structure to solve the problems in the background technology.

[0005] The utility model realizes the following technical scheme: a stable device of reducing load with floating structure, comprising: a coiled material dust removal mechanism, a load reduction assembly, a movable clamping ring seat and a floating dust removal roller, a through slot is formed in the upper end of the rear side of the coiled material dust removal mechanism, a placing groove for installing the load reduction assembly is formed in the left and right ends of the lower surface of the inner side of the through slot, a load reduction assembly for floating load reduction of coiled material dust removal is installed in the inner side of the placing groove, a fixed clamping ring seat is arranged at the upper end of the internal composition of the load reduction assembly, a floating dust removal roller for coiled material dust removal is installed above the two load reduction assemblies, a movable clamping ring seat is arranged above the fixed clamping ring seat, and a fixed dust removal roller is arranged above the floating dust removal roller.

[0006] As a preferred embodiment, installation grooves are formed in the inner sides of the left and right ends of the placing groove, guide sliding grooves are formed in the inner sides of the front and rear ends of the placing groove, and a load reduction base is arranged at the lower end of the internal composition of the load reduction assembly.

[0007] As a preferred implementation, the load reduction base is fixedly connected with mounting blocks on both sides, the mounting blocks are embedded with the mounting grooves and fixed with bolts, the load reduction base is fixedly connected with a damping shock absorber above, the load reduction assembly is connected with the floating dust removal roller, and the floating dust removal roller can float and reduce load through the damping shock absorber during the dust removal and guiding of the coiled material.

[0008] As a preferred implementation, the load reduction base is fixedly connected with mounting blocks on both sides, the mounting blocks are embedded with the mounting grooves and fixed with bolts, the load reduction base is fixedly connected with a damping shock absorber above, the load reduction assembly is connected with the floating dust removal roller, and the floating dust removal roller can float and reduce load through the damping shock absorber during the dust removal and guiding of the coiled material.

[0009] As a preferred implementation, bearings are installed between the fixed clamping ring seat and the movable clamping ring seat and penetrated by the floating dust removal roller at both ends, and the fixed clamping ring seat and the movable clamping ring seat are fixed with connecting plates at both ends in the internal composition and fixed with bolts.

[0010] As a preferred implementation, a groove is arranged between the two groups of placing grooves on the inner lower surface of the through groove and used for floating and hiding the dust cover, a dust suction pipe is arranged on the inner side of the groove, and a dust cover used for assisting dust adsorption is fixedly connected above the dust suction pipe.

[0011] As a preferred implementation, a group of connecting seats are fixedly connected to one end side of the groove center and the lower surfaces of both ends of the dust cover, the two groups of connecting seats are fixed with bolts and make the dust cover float and adjust with the load reduction assembly, the dust cover is connected with the load reduction assembly through the connecting seats, and the dust cover can assist the coiled material dust removal.

[0012] After the above technical scheme is adopted, the beneficial effects of the present application are as follows: the coiled material dust removal mechanism, the load reduction assembly, the movable clamping ring seat and the floating dust removal roller are increased, bearings are installed at both ends of the floating dust removal roller and placed inside the fixed clamping ring seat, the movable clamping ring seat is placed above the bearings outside, the two groups of connecting plates are fixed with bolts, the two groups of load reduction assemblies are fixed in the placing grooves, the damping shock absorber is reduced through the pressing of the floating dust removal roller during the guiding of the coiled material, the coiled material dust removal effect is improved, the coiled material dust removal mechanism and the load reduction assembly are increased, the dust cover is connected with the load reduction assembly through the connecting seats, and the dust cover can assist the coiled material dust removal. BRIEF DESCRIPTION OF DRAWINGS

[0013] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description, obviously, the drawings described in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the premise of the drawings.

[0014] Fig. 1 It is a whole structure schematic view of the present application of a load-reducing stabilizing device with a floating structure.

[0015] Fig. 2 It is a structure schematic view of a coiled material dust removal mechanism in the present application of a load-reducing stabilizing device with a floating structure.

[0016] Fig. 3 It is a structure schematic view of a load-reducing assembly in the present application of a load-reducing stabilizing device with a floating structure.

[0017] Fig. 4 It is a structure schematic view of a movable clamping ring seat in the present application of a load-reducing stabilizing device with a floating structure.

[0018] In the figure, 100-coiled material dust removal mechanism, 101-through slot, 102-fixed dust removal roller, 103-placing groove, 104-mounting groove, 105-guiding sliding groove, 106-groove, 107-dust suction pipe, 108-dust suction cover;

[0019] 200-load-reducing assembly, 201-load-reducing base, 202-mounting block, 203-damping shock absorber, 204-load-reducing upper seat, 205-guiding sliding block, 206-connection seat, 207-fixed clamping ring seat;

[0020] 300-movable clamping ring seat, 301-connection plate;

[0021] 400-floating dust removal roller. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the present application will be described clearly and completely below in combination with the drawings in the embodiments of the present application, obviously, the described embodiments are only some embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative labor are within the protection scope of the present application.

[0023] Please refer to Figs. 1-4The utility model provides a technical scheme: a load reduction stabilizing device with a floating structure, comprising: a coiled material dust removal mechanism 100, a load reduction assembly 200, a movable clamping ring seat 300 and a floating dust removal roller 400, a through slot 101 is formed in the upper end of the rear side surface of the coiled material dust removal mechanism 100;

[0024] Both ends of the lower surface of the inner side of the through slot 101 are provided with placing grooves 103 for installing the load reduction assembly 200, the load reduction assembly 200 for coiled material dust removal floating load reduction is installed in the inner side of the placing groove 103, and the upper end of the internal composition of the load reduction assembly 200 is provided with a fixed clamping ring seat 207;

[0025] The floating dust removal roller 400 for coiled material dust removal is installed above the two groups of load reduction assemblies 200, the movable clamping ring seat 300 is arranged above the fixed clamping ring seat 207, and the fixed dust removal roller 102 is arranged above the floating dust removal roller 400.

[0026] Both ends of the inner side of the placing groove 103 are provided with mounting grooves 104, both ends of the inner side of the placing groove 103 are provided with guide sliding grooves 105, and the lower end of the internal composition of the load reduction assembly 200 is provided with a load reduction base 201.

[0027] The mounting block 202 is fixedly connected to the left and right sides of the load reduction base 201, the mounting block 202 is embedded with the mounting groove 104 and is fixedly connected through bolts, the damping shock absorber 203 is fixedly connected to the upper side of the load reduction base 201, the load reduction assembly 200 is connected with the floating dust removal roller 400, and the load reduction assembly 200 can float and reduce load through the damping shock absorber 203 during coiled material dust removal and guide.

[0028] The load reduction upper seat 204 is fixedly connected to the upper side of the damping shock absorber 203, the guide sliding block 205 is fixedly connected to the front and rear sides of the load reduction upper seat 204, and the guide sliding block 205 is movably embedded with the guide sliding groove 105.

[0029] The bearing is installed between the fixed clamping ring seat 207 and the movable clamping ring seat 300 and is penetrated by the floating dust removal roller 400 at both ends, the front and rear ends of the internal composition of the fixed clamping ring seat 207 and the movable clamping ring seat 300 are provided with the connecting plate 301 and are fixedly connected through bolts, the floating dust removal roller 400 is installed through the fixation of the fixed clamping ring seat 207 and the movable clamping ring seat 300 at both ends, and the floating dust removal roller 400 can be conveniently disassembled and used.

[0030] Please refer to Figs. 1-4, as the first embodiment of the utility model: first, the user installs the bearing of both ends of the floating dust removal roller 400 with sleeve and makes the bearing in the fixed clamping ring seat 207, then the movable clamping ring seat 300 is placed on the outer side of the bearing upper, and the two groups of connecting plates 301 are fixed by bolt connection, second, the user fixes two groups of load reduction assembly 200 in the placing groove 103, and makes the mounting block 202 and the mounting groove 104 embedded and fixed, in the winding material guide, the damping shock absorber 203 is up and down floating by pressing the floating dust removal roller 400 to realize load reduction, and the linear guide is realized by the movable embedding of the guide sliding block 205 and the guide sliding groove 105, so that the winding material dust removal effect can be improved.

[0031] The recess 106 is arranged on the lower surface of the through groove 101 between the two groups of placing grooves 103 and is used for floating hiding of the dust suction cover 108, the dust suction pipe 107 is arranged in the recess 106, and the dust suction cover 108 used for assisting dust adsorption is fixedly connected above the dust suction pipe 107.

[0032] The load reduction upper seat 204 is fixedly connected with a group of connecting seats 206 on one end side surface close to the center of the recess 106 and lower surfaces of the left and right ends of the dust suction cover 108, the two groups of connecting seats 206 are fixed by bolt connection and make the dust suction cover 108 float with the load reduction assembly 200, the dust suction cover 108 is connected with the load reduction assembly 200 through the connecting seat 206, and the dust suction cover 108 floats up and down with the load reduction assembly 200.

[0033] Please refer to Figs. 1-2 , as the second embodiment of the utility model: based on the above first embodiment, the user connects the dust suction cover 108 with the load reduction assembly 200 through the connecting seat 206, the load reduction assembly 200 can make the dust suction cover 108 float up and down with the load reduction assembly 200 in the floating load reduction use, the dust suction cover 108 generates negative pressure suction force through the connection of the dust suction pipe 107 and the dust suction equipment, dust on the outer side of the floating dust removal roller 400 is adsorbed, and the winding material dust removal use can be assisted.

[0034] The above only describes the preferred embodiment of the utility model and does not limit the utility model, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model shall be included in the protection scope of the utility model.

Claims

1. A load alleviating stabilizing device having a floating structure, comprising: The application discloses a coiled material dust removal mechanism (100), a load reduction assembly (200), a movable clamping ring seat (300) and a floating dust removal roller (400), characterized in that a through groove (101) is formed in the upper end of the rear side of the coiled material dust removal mechanism (100). The inner side of the through groove (101) is provided with a placing groove (103) for mounting the load reduction assembly (200) at the left and right ends of the lower surface of the through groove (101), and the load reduction assembly (200) for coiled material dust removal floating load reduction is mounted in the placing groove (103). The upper part of the two groups of load reduction assemblies (200) is provided with the floating dust removal roller (400) for coiled material dust removal, the upper part of the fixed clamping ring seat (207) is provided with the movable clamping ring seat (300), and the upper part of the floating dust removal roller (400) is provided with the fixed dust removal roller (102).

2. A weight-reducing stabilizer with a floating structure according to claim 1, characterized in that: The inner side of the placing groove (103) is provided with a mounting groove (104) at the left and right ends, and the inner side of the placing groove (103) is provided with a guide sliding groove (105) at the front and rear ends.

3. A weight-reducing stabilizer with a floating structure according to claim 2, characterized in that: The left and right sides of the load reduction base (201) are fixedly connected with mounting blocks (202), the mounting blocks (202) and the mounting grooves (104) are mutually embedded and fixedly connected through bolts, and the upper part of the load reduction base (201) is fixedly connected with a damping shock absorber (203).

4. A negative stability device with a floating structure according to claim 3, characterized in that: The upper part of the damping shock absorber (203) is fixedly connected with a load reduction upper seat (204), the front and rear sides of the load reduction upper seat (204) are fixedly connected with guide sliding blocks (205), and the guide sliding blocks (205) and the guide sliding grooves (105) are mutually movably embedded.

5. A weight-reducing stabilizer with a floating structure according to claim 4, characterized in that: Bearing is mounted between the fixed clamping ring seat (207) and the movable clamping ring seat (300) and penetrated by the two ends of the floating dust removal roller (400), and the front and rear ends of the fixed clamping ring seat (207) and the movable clamping ring seat (300) are provided with connecting plates (301) and fixedly connected through bolts.

6. A weight-reducing stabilizer with a floating structure according to claim 4, characterized in that: The inner side of the lower surface of the through groove (101) is further provided with a groove (106) for floating hiding of a dust suction cover (108) between the two groups of placing grooves (103), the inner side of the groove (106) is provided with a dust suction pipe (107), and the upper part of the dust suction pipe (107) is fixedly connected with the dust suction cover (108) for assisting dust adsorption.

7. A negative stability device with a floating structure according to claim 6, characterized in that: The load reduction upper seat (204) is fixedly connected with a group of connecting seats (206) on one end side of the center of the groove (106) and the lower surfaces of the left and right ends of the dust suction cover (108), the two groups of connecting seats (206) are fixedly connected through bolts and make the dust suction cover (108) follow the floating adjustment of the load reduction assembly (200).