Cutting device for thermal insulation material processing

By adjusting the coordination of the components and the limiting plate, the misalignment problem caused by the rotational force of the blade during the cutting of thermal insulation materials was solved, achieving precise cutting and improved safety.

CN223998555UActive Publication Date: 2026-03-17SHANDONG TONGQIANG AEROSPACE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

When cutting thermal insulation materials, the material is easily displaced by the rotational force of the blade, causing the cutting trajectory to deviate, affecting product quality, and the impact force when cutting hard materials may endanger personal safety.

Method used

The blade height is adjusted using an adjustment component, and the heat insulation material is fixed by a limiting plate. The material is prevented from shifting by the cooperation of springs and telescopic columns, and the material position is stabilized by the conveying component.

Benefits of technology

This ensures that the insulation material does not shift due to the impact of the rotating blade during the cutting process, achieving precise cutting and improving safety and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a thermal insulation material processing and cutting device, a limiting mechanism comprises four connecting columns, a push plate, four telescopic columns, four springs and a limiting plate, the four connecting columns are symmetrically arranged on the bottom wall of an adjusting assembly, and the push plate is connected with the other ends of the four connecting columns; the four telescopic columns are symmetrically arranged on the bottom wall of the push plate, and the limiting plate is connected with the other ends of the four telescopic columns; the four springs are respectively arranged outside the corresponding telescopic columns in a sleeving manner; the conveying assembly is arranged at the bottom of the supporting frame. According to the thermal insulation material machining and cutting device, the height of the blade can be adjusted through the adjusting assembly, meanwhile, the limiting plate is pushed to fix the thermal insulation material, and therefore it is guaranteed that in the cutting process, the thermal insulation material cannot be dislocated due to impact force caused by rotation of the blade in the process that the blade makes contact with the thermal insulation material; and cutting according to the planned position is determined.
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Description

Technical Field

[0001] This utility model relates to the technical field of thermal insulation material processing, and in particular to a thermal insulation material processing and cutting device. Background Technology

[0002] Thermal insulation materials are materials that can impede heat transfer; they are also called thermal insulation materials. They effectively reduce heat transfer between objects, thus maintaining temperature stability. Thermal insulation materials can be divided into three categories: porous materials, heat-reflective materials, and vacuum materials. Common thermal insulation materials include fiberglass, mineral wool, cellulose, foam materials, polyurethane, natural fibers, reflective or radiation barrier systems, polyisocyanurate, cement foam, and phenolic foam. During processing, they often need to be cut according to their application and the device being processed, usually requiring the aid of cutting equipment.

[0003] When cutting insulation materials using a cutting device, the material is easily displaced the moment the high-speed rotating blade contacts it due to the blade's powerful rotational force. This displacement causes the actual cutting trajectory to deviate from the pre-planned path, affecting the quality of the finished product. To address this issue, manual fixing is commonly used. However, this method struggles to ensure the material remains perfectly still throughout the cutting process. Furthermore, when cutting harder insulation materials, the moment the material contacts the blade, a powerful impact force is generated, potentially causing the material to suddenly fly off, posing a significant risk of injury to workers and seriously threatening their safety. This also introduces numerous instabilities into the production process. Utility Model Content

[0004] This utility model aims to at least partially solve one of the technical problems in the above-mentioned technologies.

[0005] Therefore, one objective of this utility model is to provide a heat insulation material processing and cutting device. When using the cutting device to cut heat insulation material, the height of the blade can be adjusted by adjusting the component while the limiting plate is pushed to fix the heat insulation material. This ensures that the heat insulation material will not be misaligned due to the impact force caused by the rotation of the blade during the cutting process, thus ensuring that the cutting is carried out according to the planned position.

[0006] To achieve the above objectives, the first aspect of this utility model provides a heat insulation material processing and cutting device, comprising: a support frame, an adjustment assembly, a cutting assembly, a limiting mechanism, and a conveying assembly. The adjustment assembly is mounted on the support frame; the cutting assembly is mounted on the adjustment assembly; the limiting mechanism is mounted on the bottom plate of the adjustment assembly; the limiting mechanism includes four connecting columns, a push plate, four telescopic columns, four springs, and a limiting plate. The four connecting columns are symmetrically arranged on the bottom wall of the adjustment assembly, and the push plate is connected to the other end of the four connecting columns; the four telescopic columns are symmetrically arranged on the bottom wall of the push plate, and the limiting plate is connected to the other end of the four telescopic columns; the four springs are respectively sleeved on the outside of their corresponding telescopic columns, with one end of each spring connected to the bottom wall of the push plate and the other end connected to the upper wall of the limiting plate; the conveying assembly is located at the bottom of the support frame.

[0007] In addition, the heat insulation material processing and cutting device proposed above according to this utility model may also have the following additional technical features:

[0008] Specifically, the adjustment assembly includes two pushers, a support plate, an adjustment component, and a first mounting bracket. The two pushers are symmetrically arranged on the support bracket, and the output shafts of the two pushers pass through the upper wall of the support bracket. The support plate is connected to the output shafts of the two pushers. The adjustment component is located on the upper wall of the support plate. The first mounting bracket is connected to the slider of the adjustment component.

[0009] Specifically, the cutting assembly includes a first drive member and a blade, wherein the first drive member is disposed on the bottom wall of the first mounting bracket; the blade is connected to the rotating shaft of the first drive member.

[0010] Specifically, mounting blocks are symmetrically arranged on the bottom wall of the limiting plate; rubber pads are installed on the outside of the two mounting blocks.

[0011] Specifically, the conveying assembly includes two side plates, multiple bearings, multiple pressure rollers, two conveyor belts, and a drive assembly. The two side plates are respectively mounted on the bottom wall of the support frame; the multiple bearings are equidistantly distributed on the side walls of the two side plates; the outer walls of the two ends of the multiple pressure rollers are respectively connected to the inner walls of the corresponding bearings; the two conveyor belts are respectively mounted on the outside of the corresponding pressure rollers; and the drive assembly is mounted on the bottom wall of one of the two side plates.

[0012] Specifically, the drive assembly includes a second mounting bracket, a second drive member, two limiting discs, and a belt. The second mounting bracket is mounted on the bottom wall of the mounting block; the second drive member is mounted on the second mounting bracket; one of the two limiting discs is connected to the rotating shaft of the second drive member, and the other of the two limiting discs is located at the end of the pressure roller closest to the second drive member; the belt is wound around the outside of the two limiting discs.

[0013] Specifically, the bottom walls of the two side panels are provided with support legs at equal intervals.

[0014] Compared with the prior art, the present invention has the following beneficial effects: When the heat insulation material processing and cutting device of the present invention is used to cut the heat insulation material, the height of the blade can be adjusted by adjusting the component while the limiting plate is pushed to fix the heat insulation material. This ensures that the heat insulation material will not be misaligned due to the impact force caused by the rotation of the blade during the cutting process, thus ensuring that the cutting is carried out according to the planned position.

[0015] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0016] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the following description of the embodiments taken in conjunction with the accompanying drawings, in which:

[0017] Figure 1 This is a schematic diagram of a heat insulation material processing and cutting device according to an embodiment of the present invention;

[0018] Figure 2 This is a schematic diagram of the adjustment component structure of a heat insulation material processing and cutting device according to an embodiment of the present invention;

[0019] Figure 3 This is a schematic diagram of the limiting mechanism of a heat insulation material processing and cutting device according to an embodiment of the present invention;

[0020] Figure 4 This is a schematic diagram of the conveying component of a heat insulation material processing and cutting device according to an embodiment of the present invention.

[0021] Reference numerals: 1. Support frame; 2. Adjustment component; 21. Pushing component; 22. Support plate; 23. Adjustment component; 24. First mounting frame; 3. Cutting component; 31. First driving component; 32. Blade; 4. Limiting mechanism; 41. Connecting column; 42. Push plate; 43. Telescopic column; 44. Spring; 45. Limiting plate; 51. Mounting block; 52. Rubber pad; 6. Conveying component; 61. Side plate; 62. Bearing; 63. Pressure roller; 64. Conveyor belt; 65. Drive component; 651. Second mounting frame; 652. Second driving component; 653. Limiting plate; 654. Belt; 7. Support leg. Detailed Implementation

[0022] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.

[0023] The following describes an embodiment of the heat insulation material processing and cutting device of this utility model with reference to the accompanying drawings.

[0024] like Figures 1-4 As shown, the heat insulation material processing and cutting device of this utility model embodiment includes: a support frame 1, an adjustment component 2, a cutting component 3, a limiting mechanism 4, and a conveying component 6.

[0025] The adjustment component 2 is mounted on the support frame 1, the cutting component 3 is mounted on the adjustment component 2, and the limiting mechanism 4 is mounted on the base plate of the adjustment component 2.

[0026] The limiting mechanism 4 includes four connecting columns 41, a push plate 42, four telescopic columns 43, four springs 44, and a limiting plate 45.

[0027] Four connecting columns 41 are symmetrically arranged on the bottom wall of the adjusting component 2. The push plate 42 is connected to the other end of the four connecting columns 41. Four telescopic columns 43 are symmetrically arranged on the bottom wall of the push plate 42. The limiting plate 45 is connected to the other end of the four telescopic columns 43. Four springs 44 are respectively sleeved on the outside of the corresponding telescopic columns 43. One end of the four springs 44 is connected to the bottom wall of the push plate 42, and the other end of the four springs 44 is connected to the upper wall of the limiting plate 45. The conveying component 6 is arranged at the bottom of the support frame 1.

[0028] Specifically, when it is necessary to cut the insulation material, the insulation material is first placed on the conveying component 6, then conveyed forward through the conveying component 6, then the adjusting component 2 is activated to adjust the cutting component 3 and the limiting mechanism 4 to the appropriate position, the insulation material is fixed by the limiting mechanism 4, and then the cutting component 3 is activated to cut it.

[0029] When limiting the heat insulation material, the push plate 42 is first moved up and down by the connecting column 41 through the adjusting component 2. When the limiting plate 45 contacts the heat insulation material, the limiting plate 45 will apply a pushing force to the four springs 44. At this time, the four springs 44 store and compress. During the process of the four springs 44 storing and compressing, the telescopic column 43 can limit its movement trajectory, thereby preventing the large pushing force of the push plate 42 from damaging the heat insulation material. At the same time, it can make the heat insulation material more stable during the process of being clamped by the limiting plate 45 and the conveying component 6, so that the heat insulation material can be limited to the current position.

[0030] like Figure 1 , Figure 2 and Figure 3 As shown, the heat insulation material processing and cutting device of this utility model includes an adjustment component 2 comprising two pushers 21, a support plate 22, an adjustment component 23, and a first mounting bracket 24.

[0031] Two pushers 21 are symmetrically arranged on the support frame 1, and the output shafts of the two pushers 21 pass through the upper wall of the support frame 1. The support plate 22 is connected to the output shafts of the two pushers 21. The adjusting member 23 is arranged on the upper wall of the support plate 22. The first mounting bracket 24 is connected to the slider of the adjusting member 23.

[0032] It should be noted that the two pushers 21 described in this embodiment are electric push rods, and the adjusting member 23 described is an electric slide.

[0033] Specifically, when it is necessary to adjust the position of the cutting component 3 and the limiting mechanism 4, the two pushers 21 are first activated by the external control device. At this time, the two pushers 21 will push the support plate 22 to move downward, thereby driving the cutting component 3 and the limiting mechanism 4 on the support plate 22 to move up and down. When it is necessary to adjust the position of the cutting component 3 horizontally, the relevant personnel can activate the adjusting component 23 by the external control device, thereby driving the cutting component 3 to move horizontally to cut the heat insulation material through the first mounting bracket 24 on the slider of the adjusting component 23.

[0034] like Figures 1-2 As shown in the figure, the heat insulation material processing and cutting device of this utility model includes a first driving member 31 and a blade 32 in the cutting component 3.

[0035] The first driving component 31 is disposed on the bottom wall of the first mounting bracket 24, and the blade 32 is connected to the rotating shaft of the first driving component 31.

[0036] It should be noted that the first driving component 31 described in this embodiment is a drive motor.

[0037] Specifically, when it is necessary to cut the insulation material, the relevant personnel can activate the first drive component 31 through the external control device, thereby driving the blade 32 to rotate, and then cooperate with the adjustment component 2 to cut it.

[0038] like Figure 3 As shown, in the heat insulation material processing and cutting device of this utility model embodiment, mounting blocks 51 are symmetrically arranged on the bottom wall of the limiting plate 45, and rubber pads 52 are installed on the outside of the two mounting blocks 51.

[0039] The rubber pad 52 installed on the outside of the mounting block 51 can increase the friction between the heat insulation material and the limiting plate 45, thereby making it more stable.

[0040] like Figure 1 and Figure 4 As shown, the heat insulation material processing and cutting device of this utility model includes a conveying component 6 comprising two side plates 61, multiple bearings 62, multiple pressure rollers 63, two conveyor belts 64, and a drive component 65.

[0041] Two side plates 61 are respectively set on the bottom wall of the support frame 1, multiple bearings 62 are equidistantly distributed on the side walls of the two side plates 61, the outer walls of the two ends of multiple pressure rollers 63 are respectively connected to the inner walls of the corresponding bearings 62, two conveyor belts 64 are respectively set on the outside of the corresponding pressure rollers 63, and the drive assembly 65 is set on the bottom wall of one of the two side plates 61.

[0042] The drive assembly 65 includes a second mounting bracket 651, a second drive component 652, two limit discs 653, and a belt 654.

[0043] The second mounting bracket 651 is mounted on the bottom wall of the mounting block 51, the second drive member 652 is mounted on the second mounting bracket 651, one of the two limiting discs 653 is connected to the rotating shaft of the second drive member 652, the other of the two limiting discs 653 is located at one end of the pressure roller 63 closest to the second drive member 652, and the belt 654 is wound around the outside of the two limiting discs 653.

[0044] It should be noted that the second driving component 652 described in this embodiment is a drive motor, and there is a gap between the two conveyor belts 64, so that the blade will not damage the conveyor belts 64 during the cutting process, and the second conveyor belt 64 does not need to move forward when the heat insulation material is transported from the first conveyor belt 64 to the second conveyor belt 64.

[0045] Specifically, when it is necessary to transport the insulation material, the second drive unit 652 on the second mounting bracket 651 is first activated. At this time, the second mounting bracket 24 will drive the belt 654 to rotate through the limiting plate 653 at its front end. Then the belt 654 drives the pressure roller 63 to rotate. Next, the conveyor belt 64 rotates. At this time, all the pressure rollers 63 in contact with the conveyor belt 64 will rotate, thereby transporting the insulation component of the conveyor belt 64 forward.

[0046] In summary, the heat insulation material processing and cutting device of this utility model can fix the heat insulation material by adjusting the height of the blade through the adjusting component and pushing the limiting plate to fix the heat insulation material during the cutting process. This ensures that the heat insulation material will not be misaligned due to the impact force caused by the rotation of the blade during the contact process with the blade, thus ensuring that the cutting is carried out in the planned position.

[0047] In the description of this specification, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this utility model, "a plurality of" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0048] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0049] Although embodiments of the present invention have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present invention.

Claims

1. A thermal insulation material processing cutting apparatus characterized by comprising: 1) a thermal insulation material processing cutting device, The utility model relates to a cutting device for cutting the cutting device is composed of support frame, adjusting assembly, cutting assembly, limiting mechanism and conveying assembly, wherein, The adjusting assembly is arranged on the support frame; The cutting assembly is arranged on the adjusting assembly; The limiting mechanism is arranged on the bottom plate of the adjusting assembly; The limiting mechanism comprises four connecting columns, a push plate, four telescopic columns, four springs and a limiting plate, wherein, Four connecting columns are symmetrically arranged on the bottom wall of the adjusting assembly, and the other end of the push plate is connected with the four connecting columns; Four telescopic columns are symmetrically arranged on the bottom wall of the push plate, and the limiting plate is connected with the other end of the four telescopic columns; Four springs are respectively sleeved outside the corresponding telescopic columns, one end of the four springs is connected with the bottom wall of the push plate, and the other end of the four springs is connected with the upper wall of the limiting plate; The conveying assembly is arranged at the bottom of the support frame; The adjusting assembly comprises two pushers, a support plate, an adjusting part, and a first mounting frame, wherein, Two pushers are symmetrically arranged on the support frame, and the output shafts of the two pushers penetrate the upper wall of the support frame; The support plate is connected with the output shafts of the two pushers; The adjusting part is arranged on the upper wall of the support plate; The first mounting frame is connected with the sliding block of the adjusting part. The cutting assembly comprises a first driving part and a blade, wherein, 2. The apparatus of claim 1, wherein, The first driving part is arranged on the bottom wall of the first mounting frame; The blade is connected with the rotating shaft of the first driving part. The bottom wall of the limiting plate is symmetrically provided with mounting blocks; 3. The apparatus of claim 2, wherein, Rubber pads are mounted on the outer portions of the two mounting blocks. The conveying assembly comprises two side plates, a plurality of bearings, a plurality of compression rollers, two conveying belts, and a driving assembly, wherein, 4. The apparatus of claim 3, wherein, Two side plates are respectively arranged on the bottom wall of the support frame; A plurality of bearings are equidistantly distributed on the side walls of the two side plates; The outer walls of both ends of a plurality of compression rollers are respectively connected with the inner walls of corresponding bearings; Two conveying belts are respectively arranged outside corresponding compression rollers; The driving assembly is arranged on the bottom wall of one of the two side plates. The driving assembly comprises a second mounting frame, a second driving part, two limiting discs, and a belt, wherein the second mounting frame is mounted on the bottom wall of the mounting block; 5. The apparatus of claim 4, wherein, The second driving part is arranged on the second mounting frame; One of the two limiting discs is connected with the rotating shaft of the second driving part, and the other limiting disc is arranged on one end of the compression roller closest to the second driving part; The belt is wound outside the two limiting discs. The bottom walls of the two side plates are equidistantly provided with supporting legs.

6. The apparatus of claim 4, wherein the cutting device is a hot wire cutter. ​