Cutting device for operation kit cloth paving machine

By integrating vacuum cleaner components in the cutting equipment for surgical bag production, the problem of dust residue in existing equipment during cutting is solved, and the cleaning of the processing environment and the environmental protection requirements are met.

CN222844198UActive Publication Date: 2025-05-09东莞日富纤维科技有限公司
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Patent Information

Application Number
CN202421786453.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-26
Publication Date
2025-05-09
Estimated Expiration
2034-07-26

AI Technical Summary

Technical Problem

The existing surgical bag production and cutting equipment does not have the effect of dust removal, which makes it difficult to clean up dust and debris generated during the cutting process, affecting the cleanliness of the processing environment and the health of the operator.

Method used

A cutting device for surgical bag laying machines is designed, and a vacuum cleaner assembly is integrated to adsorb debris and dust generated during the cutting process, keeping the processing environment clean.

Benefits of technology

Through the use of vacuum cleaner components, dust debris generated during the cutting process are effectively cleaned, the cleanliness of the processing environment is maintained, the impact on the environment and operators is reduced, and the environmental protection requirements are met.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of operation kit production, in particular to a cutting device for an operation kit cloth paving machine, which comprises a rack, a transmission roller group, a stretching roller group, a flattening component, a driving component, a cutting component and a dust collection component, the machine frame is composed of two supporting frames which are oppositely arranged, a conveying area is arranged between the two supporting frames, the conveying roller set and the stretching roller set are both arranged in the conveying area, the flattening assembly is located above the stretching roller set so as to flatten materials in the conveying process, and the driving assembly is located above the flattening assembly so as to drive the flattening assembly to rotate. And the driving assembly is used for driving the cutting assembly to cut the stretched and flattened materials, and the dust collection assembly is used for adsorbing chippings and dust generated in the cutting process. The dust collection assembly is used for carrying out adsorption treatment on chippings and dust generated in the cutting process, the machining environment can be kept clean, meanwhile, the influence on the environment and operators is reduced, and the environment protection requirement is met.
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Description

Technical Field

[0001] The utility model relates to the technical field of surgical pack production, in particular to a cutting device for a surgical pack spreading machine. Background Art

[0002] A surgical kit is a special package used in the medical field to store and transport surgical instruments, instrument kits, sterile towels and other items. Surgical kits are usually made of sterile materials to ensure the sterility of the items inside, thereby keeping the medical instruments and surgical sites clean and sterile during the operation. Surgical kits are used in surgical operations and operating rooms and are one of the important items that cannot be ignored during hospital operations.

[0003] During the production process of surgical kits, various fabrics need to be sorted and processed. Various equipment needs to be applied in the sorting process. The cloth spreading machine is a kind of equipment used for fabric sorting. Specifically, the fabric is sorted by feeding the fabric through the guide roller. After sorting, it needs to be transferred to the cutting position for cutting. The existing cutting equipment does not have a dust removal effect, and it is easy for dust and debris generated during the cutting process to remain on the material, which is not convenient for subsequent cleaning. Therefore, it is necessary to improve the existing cutting structure. Utility Model Content

[0004] In order to solve the above problems, the utility model uses a dust suction component to absorb the debris and dust generated during the cutting process, which can keep the processing environment clean, while reducing the impact on the environment and operators, and is a cutting device for a surgical pack spreading machine that meets environmental protection requirements.

[0005] The technical solution adopted by the utility model is: a cutting device for a surgical pack spreading machine, comprising a frame, a transmission roller group, a stretching roller group, a flattening component, a driving component, a cutting component and a dust suction component; the frame is composed of two groups of relatively arranged support frames, a transmission area is arranged between the two groups of support frames, the transmission roller group and the stretching roller group are both arranged in the transmission area, the flattening component is located above the stretching roller group to flatten the material during the transmission process, the driving component is located above the flattening component, and is used to drive the cutting component to cut the stretched and flattened material, and the dust suction component is used to absorb the debris and dust generated during the cutting process.

[0006] A further improvement to the above solution is that a transmission platform is provided at the front end of the transmission roller group on the frame, and the transmission platform is used to transport the material toward the transmission roller group.

[0007] A further improvement to the above solution is that the support frame is provided with a stepped portion, and the transmission roller group, the stretching roller group, the flattening assembly and the driving assembly are sequentially arranged on the stepped portion.

[0008] A further improvement to the above scheme is that the transmission roller group is used to transport the material toward the stretching roller group, the stretching roller group includes two groups of oppositely arranged stretching rollers, a cutting groove is provided between the two groups of stretching rollers, the cutting component faces the cutting groove, and the stretching rollers are used for material tension stretching for cutting by the cutting component.

[0009] A further improvement to the above scheme is that the flattening assembly includes a first pressing plate and a second pressing plate, a through groove is arranged between the first pressing plate and the second pressing plate, the two ends of the through groove correspond to the cutting assembly and the cutting groove respectively, and the first pressing plate and the second pressing plate are respectively facing the outer diameters of the two groups of pulling rollers to flatten the material.

[0010] A further improvement to the above scheme is that the driving assembly includes a mounting base and a linear transmission module arranged on the mounting base, the mounting base is arranged between two groups of support frames, and the linear transmission module is used to drive the cutting assembly to reciprocate between the two groups of support frames.

[0011] A further improvement to the above scheme is that the cutting assembly includes a cutting bracket, a cutting pressure plate, a cutting drive module and a cutting wheel, the cutting bracket is arranged on a linear transmission module, the cutting pressure plate is arranged on the cutting bracket, the cutting drive module is installed on the cutting wheel to drive the cutting wheel to rotate and cut the material, and the cutting pressure plate is used for pressing the material.

[0012] A further improvement to the above solution is that a fixing frame is arranged on the upper side of the driving assembly; the fixing frame includes two groups of vertically arranged columns and a top rod arranged between the two groups of columns.

[0013] A further improvement to the above solution is that a dust hood is provided on one side of the cutting bracket, and the dust hood faces one side of the cutting wheel.

[0014] A further improvement to the above scheme is that the dust collection assembly includes a dust collector and a dust collection pipe, the two ends of the dust collection pipe are respectively connected to the dust collector and the dust collection hood, and the fixing frame is used to fix the dust collection pipe.

[0015] The beneficial effects of the utility model are:

[0016] Compared with the existing surgical pack production and cutting, the transmission roller group and the stretching roller group of the utility model are arranged in the transmission area, which can effectively realize the stable transmission and stretching processing of the surgical pack materials, ensuring the smooth progress of the entire processing process. The flattening component is located above the stretching roller group, which can effectively flatten the materials in the transmission process, so that the surgical pack materials remain flat during the processing, which is beneficial to the subsequent cutting processing and product quality. The drive component is located above the flattening component and is used to drive the cutting component to cut the stretched and flattened materials. This design can ensure the accuracy and consistency of the cutting process and improve the processing accuracy and stability of the product. The dust collection component is used to adsorb the debris and dust generated during the cutting process, which can keep the processing environment clean, while reducing the impact on the environment and operators, and meeting environmental protection requirements. The two sets of relatively arranged support frames can provide a stable support structure, ensure the stability and reliability of the equipment operation, and are conducive to long-term continuous operation and maintenance. The utility model has many technical effects such as efficient and stable material transmission, smooth material surface, precise cutting processing, environmentally friendly and efficient dust treatment, fully automated production and reliable equipment structure, etc. It provides a high-quality and high-efficiency solution for the production and processing of surgical packs, and also meets the requirements of environmental protection and safe production. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a three-dimensional schematic diagram of a cutting device for a surgical pack spreading machine of the utility model;

[0018] Figure 2 for Figure 1 A three-dimensional schematic diagram of another perspective of the cutting device for the surgical pack spreading machine;

[0019] Figure 3 for Figure 1 A schematic diagram of the structure of a cutting device for a surgical pack spreading machine;

[0020] Figure 4 for Figure 1 Schematic diagram of the partial structure of the cutting device used in the surgical pack spreading machine.

[0021] Explanation of the reference numerals: frame 1, support frame 11, transmission platform 12, step portion 13, transmission roller group 2, stretching roller group 3, pulling roller 31, cutting groove 32, flattening assembly 4, first pressing plate 41, second pressing plate 42, driving assembly 5, mounting base 51, linear transmission module 52, fixing frame 53, column 531, push rod 532, cutting assembly 6, cutting bracket 61, cutting pressing plate 62, cutting drive module 63, cutting wheel 64, dust collection assembly 7, dust collection hood 71, dust collection duct 72. DETAILED DESCRIPTION

[0022] In order to facilitate the understanding of the present invention, the present invention will be described more fully below with reference to the relevant drawings. The preferred embodiments of the present invention are given in the drawings. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the understanding of the disclosure of the present invention more thorough and comprehensive.

[0023] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly on the other element or there may be an intermediate element. When an element is considered to be "connected to" another element, it may be directly connected to the other element or there may be an intermediate element at the same time.

[0024] Unless otherwise defined, all technical and scientific terms used herein have the same meanings as those commonly understood by those skilled in the art to which the present invention belongs. The terms used in the specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention. Figure 1~Figure 4As shown, in one embodiment of the utility model, a cutting device for a surgical pack spreading machine is involved, including a frame 1, a transmission roller group 2, a stretching roller group 3, a flattening component 4, a driving component 5, a cutting component 6 and a dust collecting component 7; the frame 1 is composed of two groups of support frames 11 arranged opposite to each other, a transmission area is arranged between the two groups of support frames 11, the transmission roller group 2 and the stretching roller group 3 are both arranged in the transmission area, the flattening component 4 is located above the stretching roller group 3 to flatten the material during the transmission process, the driving component 5 is located above the flattening component 4, and is used to drive the cutting component 6 to cut the stretched and flattened material, and the dust collecting component 7 is used to absorb the debris and dust generated during the cutting process. In this embodiment, the transmission roller group 2 and the stretching roller group 3 are arranged in the transmission area, which can effectively realize the stable transmission and stretching processing of the surgical pack material, ensuring the smooth progress of the entire processing process. The flattening component 4 is located above the stretching roller group 3, and can effectively flatten the material during the transmission process, so that the surgical pack material remains flat during the processing, which is beneficial to the subsequent cutting processing and product quality. The driving assembly 5 is located above the flattening assembly 4, and is used to drive the cutting assembly 6 to cut the stretched and flattened material. This design can ensure the accuracy and consistency of the cutting process, and improve the processing accuracy and stability of the product. The dust suction assembly 7 is used to adsorb the debris and dust generated during the cutting process, which can keep the processing environment clean, while reducing the impact on the environment and operators, and meeting environmental protection requirements. It is composed of two groups of relatively arranged support frames 11, which can provide a stable support structure, ensure the stability and reliability of the equipment operation, and facilitate long-term continuous operation and maintenance. The utility model has many technical effects such as efficient and stable material transmission, smooth material surface, precise cutting processing, environmentally friendly and efficient dust treatment, fully automated production and reliable equipment structure, etc., which provides a high-quality and efficient solution for the production and processing of surgical packs, and also meets the requirements of environmental protection and safe production.

[0025] The frame 1 is provided with a transmission platform 12 at the front end of the transmission roller group 2, and the transmission platform 12 is used to transport the material toward the transmission roller group 2. In this embodiment, the loaded material is transported by the transmission platform 12, and guided and transported toward the transmission roller group 2 under the action of the transmission platform 12, and the transmission is stable and reliable.

[0026] The support frame 11 is provided with a stepped portion 13, and the transmission roller group 2, the stretching roller group 3, the flattening assembly 4 and the driving assembly 5 are sequentially arranged on the stepped portion 13. In this embodiment, the stepped portion 13 is designed to be successively higher, so that the stability is good during the transmission process, and it is easy to separate after cutting.

[0027] The transmission roller group 2 is used to convey the material toward the stretching roller group 3. The stretching roller group 3 includes two groups of relatively arranged pulling rollers 31. A slot 32 is arranged between the two groups of pulling rollers 31. The cutting assembly 6 faces the slot 32. The pulling roller 31 is used for tension stretching of the material for cutting by the cutting assembly 6. In this embodiment, the transmission roller group 2 can convey the material toward the stretching roller group 3, and the stretching roller group 3 can effectively achieve tension stretching of the material through the design of two groups of relatively arranged pulling rollers 31 and the slot 32. Such a design enables the material to be fully stretched during the processing process, which is conducive to the subsequent cutting process. Since the cutting assembly 6 faces the slot 32, the setting of the stretching roller group 3 can provide stable cutting positioning, ensuring the accuracy and consistency during the cutting process. This design can effectively avoid the offset or instability of the cutting position, and improve the processing quality and consistency of the product. Through the tension stretching of the material by the stretching roller group 3, the cutting assembly 6 can cut the material more easily and achieve an optimized cutting effect. The stretching treatment can make the surface of the material smoother, which is conducive to the cutting process, and can avoid burrs and debris generated by cutting. Through effective material transportation, stable stretching and precise cutting positioning, the above structure in the cutting device for the surgical pack spreading machine can improve production efficiency, reduce human intervention in the processing process, reduce processing costs, and improve product production speed and consistency.

[0028] The flattening assembly 4 includes a first pressing plate 41 and a second pressing plate 42, a through slot 43 is arranged between the first pressing plate 41 and the second pressing plate 42, the two ends of the through slot 43 correspond to the cutting assembly 6 and the cutting slot 32 respectively, the first pressing plate 41 and the second pressing plate 42 are respectively oriented toward the outer diameters of the two groups of pull rollers 31 to flatten the material. Specifically, the driving assembly 5 includes a mounting base 51 and a linear transmission module 52 arranged on the mounting base 51, the mounting base 51 is arranged between the two groups of support frames 11, and the linear transmission module 52 is used to drive the cutting assembly 6 to reciprocate between the two groups of support frames 11. In this embodiment, by setting the through slot 43 and making the first pressing plate 41 and the second pressing plate 42 respectively oriented toward the outer diameters of the two groups of pull rollers 31, effective flattening of the material is achieved. This design can ensure that the surface of the material is flat during the processing, which is beneficial to the subsequent cutting processing and product quality. The two ends of the through slot 43 correspond to the cutting assembly 6 and the cutting slot 32 respectively. Through this design, stable cutting positioning can be provided to ensure the accuracy and consistency during the cutting process. This design makes the cutting process more stable, avoids cutting position deviation or instability, and improves the processing quality and consistency of the product.

[0029] The cutting assembly 6 includes a cutting bracket 61, a cutting pressing plate 62, a cutting drive module 63 and a cutting wheel 64. The cutting bracket 61 is arranged on the linear transmission module 52, the cutting pressing plate 62 is arranged on the cutting bracket 61, and the cutting drive module 63 is installed on the cutting wheel 64 to drive the cutting wheel 64 to rotate and cut the material. The cutting pressing plate 62 is used to press the material. In this embodiment, the cutting pressing plate 62 in the cutting assembly 6 can stably press the material, ensure the stability and consistency of the material during the cutting process, thereby improving the precision and quality of the cutting. The cutting drive module 63 is installed on the cutting wheel 64, and can accurately drive the cutting wheel 64 to rotate to achieve accurate cutting of the material. This design ensures the stability and reliability of the cutting process, and also improves the precision and efficiency of the cutting. The cutting bracket 61 is arranged on the linear transmission module 52. This design makes the movement of the cutting process more stable and smooth, which is conducive to improving the consistency and precision of the cutting, and can avoid the cutting quality problems caused by unstable movement.

[0030] A fixing frame 53 is provided on the upper side of the driving assembly 5; the fixing frame 53 includes two groups of vertically arranged columns 531 and a top rod 532 arranged between the two groups of columns 531. A dust hood 71 is provided on one side of the cutting bracket 61, facing the side of the cutting wheel 64. Specifically, the dust collection assembly 7 includes a dust collector and a dust collection pipe 72, and the two ends of the dust collection pipe 72 are respectively connected to the dust collector and the dust collection hood 71, and the fixing frame 53 is used to fix the dust collection pipe 72. In this embodiment, the fixing frame 53 includes two groups of vertically arranged columns 531 and a top rod 532 arranged between the two groups of columns 531, which can provide a stable support structure, ensure the stability and reliability of the equipment operation, and facilitate long-term continuous operation and maintenance. A dust hood 71 is provided on one side of the cutting bracket 61, and the dust hood 71 faces the side of the cutting wheel 64, and the dust collection assembly 7 includes a dust collector and a dust collection pipe 72. This design can effectively absorb the debris and dust generated during the cutting process, keep the processing environment clean, and reduce the impact on the environment and operators, meeting environmental protection requirements. Due to the provision of the dust hood 71 and the dust collection duct 72, the dust concentration at the processing site can be effectively reduced, the operating environment is improved, and it is beneficial to the health and safety of the operators.

[0031] The above embodiments only express several implementation methods of the utility model, and the descriptions are relatively specific and detailed, but they cannot be understood as limiting the scope of the utility model patent. It should be pointed out that for ordinary technicians in this field, several modifications and improvements can be made without departing from the concept of the utility model, which all belong to the protection scope of the utility model. Therefore, the protection scope of the utility model patent shall be based on the attached claims.

Claims

1. A cutting device for a surgical pack spreading machine, characterized in that: It includes a frame, a transmission roller group, a stretching roller group, a flattening component, a driving component, a cutting component and a dust collection component; the frame is composed of two groups of supporting frames arranged opposite to each other, a transmission area is arranged between the two groups of supporting frames, the transmission roller group and the stretching roller group are both arranged in the transmission area, the flattening component is located above the stretching roller group to flatten the material during the transmission process, the driving component is located above the flattening component and is used to drive the cutting component to cut the stretched and flattened material, and the dust collection component is used to absorb the debris and dust generated during the cutting process.

2. The cutting device for a surgical pack spreading machine according to claim 1, characterized in that: The frame is provided with a transmission platform at the front end of the transmission roller group, and the transmission platform is used to transport the material toward the transmission roller group.

3. The cutting device for a surgical pack spreading machine according to claim 1, characterized in that: The support frame is provided with a stepped portion, and the transmission roller group, the stretching roller group, the flattening assembly and the driving assembly are sequentially arranged on the stepped portion.

4. The cutting device for a surgical pack spreading machine according to claim 1, characterized in that: The transmission roller group is used to transport the material toward the stretching roller group. The stretching roller group includes two groups of stretching rollers arranged opposite to each other. A cutting groove is arranged between the two groups of stretching rollers. The cutting component faces the cutting groove. The stretching rollers are used to stretch the material for cutting by the cutting component.

5. The cutting device for a surgical pack spreading machine according to claim 4, characterized in that: The flattening assembly includes a first pressing plate and a second pressing plate, a through groove is arranged between the first pressing plate and the second pressing plate, the two ends of the through groove correspond to the cutting assembly and the cutting groove respectively, and the first pressing plate and the second pressing plate are respectively facing the outer diameters of the two groups of pulling rollers to flatten the material.

6. The cutting device for a surgical pack spreading machine according to claim 1, characterized in that: The driving assembly includes a mounting base and a linear transmission module arranged on the mounting base. The mounting base is arranged between two groups of support frames. The linear transmission module is used to drive the cutting assembly to reciprocate between the two groups of support frames.

7. The cutting device for a surgical pack spreading machine according to claim 1, characterized in that: The cutting assembly includes a cutting bracket, a cutting pressure plate, a cutting drive module and a cutting wheel. The cutting bracket is arranged on a linear transmission module, the cutting pressure plate is arranged on the cutting bracket, the cutting drive module is installed on the cutting wheel to drive the cutting wheel to rotate and cut the material, and the cutting pressure plate is used for pressing the material.

8. The cutting device for a surgical pack spreading machine according to claim 7, characterized in that: A fixing frame is arranged on the upper side of the driving assembly; the fixing frame comprises two groups of vertically arranged columns and a top rod arranged between the two groups of columns.

9. The cutting device for a surgical pack spreading machine according to claim 8, characterized in that: A dust cover is arranged on one side of the cutting bracket, and the dust cover faces one side of the cutting wheel.

10. The cutting device for a surgical pack spreading machine according to claim 9, characterized in that: The dust collection assembly comprises a dust collector and a dust collection pipe, two ends of the dust collection pipe are respectively connected to the dust collector and the dust collection cover, and the fixing frame is used for fixing the dust collection pipe.