Medical waste turnover barrel steam cleaning and disinfecting equipment

CN224778900UActive Publication Date: 2026-09-22GUANGDONG LIVING ENVIRONMENTAL HARMLESSNESS TREATMENT CENT
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Patent Information

Application Number
CN202522166742.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-14
Publication Date
2026-09-22
Estimated Expiration
2035-10-14

AI Technical Summary

Technical Problem

目前普遍采用的三工位消毒清洗机主要利用加压消毒水喷射清洗,存在以下突出问题:一是水压低、喷嘴固定导致清洗不彻底,需要人工复检和清洗;二是循环消毒水快速污染,排污量大,增加后续水处理负担;三是清洗后桶底和桶盖周围残留消毒水,腐蚀传输机构,设备故障率高,维护成本大

Benefits of technology

[0017]1.采用高压水射流与饱和蒸汽相结合的多级清洗消毒方式,显著提升了对周转桶表面,特别是缝隙和复杂结构的清洗彻底性,有效避免了人工复检和重复清洗。

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Abstract

The application relates to the technical field of medical waste treatment equipment, in particular to a medical waste turnover barrel steam cleaning and disinfecting equipment which comprises a turnover mechanism, a high-pressure cleaning mechanism, a steam treatment mechanism and an atomization disinfecting mechanism. The turnover mechanism comprises a first turnover mechanism and a second turnover mechanism. The first turnover mechanism is located at one end close to an inlet and is used for making the barrel body barrel opening downward. The second turnover mechanism is located at one end close to an outlet and is used for making the barrel body barrel opening upward. The high-pressure cleaning mechanism is located at the rear side of the first turnover mechanism and is used for high-pressure water jet cleaning of the barrel body with the barrel opening downward. The steam treatment mechanism is located at the rear side of the high-pressure cleaning mechanism and is used for steam injection of the barrel body with the barrel opening downward. The atomization disinfecting mechanism is located at the rear side of the second turnover mechanism and is used for spraying and atomizing a disinfecting agent on the barrel body with the barrel opening upward. The application realizes automatic cleaning and disinfecting of the turnover barrel.
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Description

Technical Field

[0001] This application relates to the field of medical waste treatment equipment technology, and in particular to a steam cleaning and disinfection device for medical waste transfer barrels. Background Technology

[0002] In the process of medical waste disposal, the cleaning and disinfection of transfer containers is a crucial step in ensuring the safe disposal of medical waste. Currently, the commonly used three-station disinfection and cleaning machines mainly utilize pressurized disinfectant spray cleaning, which has the following prominent problems: First, low water pressure and fixed nozzles lead to incomplete cleaning, requiring manual re-inspection and cleaning; second, the circulating disinfectant water is rapidly contaminated, resulting in large discharge volumes and increasing the burden on subsequent water treatment; third, residual disinfectant water on the bottom and around the lid of the container after cleaning corrodes the transmission mechanism, leading to a high equipment failure rate and high maintenance costs. With the increasing proportion of medical waste collected in containers, existing equipment can no longer meet the demands for efficient, thorough, and environmentally friendly cleaning and disinfection.

[0003] Therefore, improvements are needed. Utility Model Content

[0004] In order to overcome the shortcomings of existing technologies and realize the automated cleaning and disinfection of turnover containers while reducing wastewater discharge and equipment corrosion, this application provides a steam cleaning and disinfection device for medical waste turnover containers.

[0005] The above-mentioned objective of this application is achieved through the following technical solution:

[0006] A steam cleaning and disinfection device for medical waste transfer containers includes a tilting mechanism, a high-pressure cleaning mechanism, a steam treatment mechanism, and an atomization disinfection mechanism;

[0007] The flipping mechanism includes a first flipping mechanism and a second flipping mechanism. The first flipping mechanism is located at the end near the inlet and is used to make the barrel opening face downwards. The second flipping mechanism is located at the end near the outlet and is used to make the barrel opening face upwards.

[0008] The high-pressure cleaning mechanism is located behind the first flipping mechanism and is used to perform high-pressure water jet cleaning on the barrel with the opening facing downwards.

[0009] The steam treatment mechanism is located behind the high-pressure cleaning mechanism and is used to spray steam onto the barrel with its opening facing downwards.

[0010] The atomizing disinfection mechanism is located behind the second flipping mechanism and is used to spray atomized disinfectant onto the barrel with its opening facing upwards.

[0011] Optionally, the first flipping mechanism includes a first rotating platform and a first barrel fixing clip. The first barrel fixing clip is installed on the first rotating platform. The first rotating platform drives the barrel to flip so that the barrel opening faces downward. The first barrel fixing clip cooperates to clamp and position the barrel.

[0012] The second flipping mechanism includes a second rotating platform and a second barrel fixing clip. The second barrel fixing clip is installed on the second rotating platform. The second rotating platform drives the barrel to flip so that the barrel opening faces upward. The second barrel fixing clip cooperates to clamp and position the barrel.

[0013] Optionally, the high-pressure cleaning mechanism includes a first lifting device and a high-pressure water rotating nozzle. The high-pressure water rotating nozzle is mounted on the top of the first lifting device, and the first lifting device is used to drive the high-pressure water rotating nozzle to move in the vertical direction.

[0014] Optionally, the steam treatment mechanism includes a guide rod robotic arm and a steam nozzle assembly, wherein the steam nozzle assembly is mounted at the end of the guide rod robotic arm, and the guide rod robotic arm is used to drive the steam nozzle assembly to move in three-dimensional space.

[0015] Optionally, the atomizing disinfection mechanism includes a second lifting device and a dual-fluid nozzle. The dual-fluid nozzle is installed on the top of the second lifting device, and the second lifting device is used to drive the dual-fluid nozzle to move in the vertical direction.

[0016] In summary, this application includes at least one of the following beneficial technical effects:

[0017] 1. The multi-stage cleaning and disinfection method, which combines high-pressure water jet and saturated steam, significantly improves the thoroughness of cleaning the surface of the turnover drum, especially the gaps and complex structures, and effectively avoids manual re-inspection and repeated cleaning.

[0018] 2. Using high-temperature saturated steam for cleaning and drying not only effectively kills pathogenic microorganisms and achieves high-temperature disinfection, but also completely removes residual moisture from the surface of the tank, fundamentally preventing the corrosion of subsequent transmission mechanisms by disinfectant residue, extending the service life of the equipment, and reducing maintenance costs.

[0019] 3. High-pressure atomization disinfection technology can achieve uniform coverage and effective disinfection with a very small amount of disinfectant, reducing the amount of chemical agents used, lowering operating costs and environmental impact.

[0020] 4. The overall process is fully automated, with each mechanism working together to complete the flipping, high-pressure cleaning, steam treatment and atomization disinfection in sequence, which greatly improves the processing efficiency and meets the needs of large-scale and high-efficiency cleaning and disinfection of medical waste bins. Attached Figure Description

[0021] Figure 1 A structural diagram without a turnover drum;

[0022] Figure 2 A structural diagram with a turnover drum.

[0023] Among them, 1. Tilting mechanism; 11. First tilting mechanism; 111. First rotating platform; 112. First barrel fixing clip; 12. Second tilting mechanism; 121. Second rotating platform; 122. Second barrel fixing clip; 2. High-pressure cleaning mechanism; 21. First lifting device; 22. High-pressure water rotating nozzle; 3. Steam treatment mechanism; 31. Guide rod type robotic arm; 32. Steam nozzle group; 4. Atomizing disinfection mechanism; 41. Second lifting device; 42. Dual-fluid nozzle. Detailed Implementation

[0024] The following is in conjunction with the appendix Figure 1-2 This application will be described in further detail.

[0025] This application discloses a steam cleaning and disinfection device for medical waste transfer containers.

[0026] Reference Figure 1 and Figure 2 A steam cleaning and disinfection device for medical waste transfer containers includes a flipping mechanism 1, a high-pressure cleaning mechanism 2, a steam treatment mechanism 3, and an atomizing disinfection mechanism 4.

[0027] The flipping mechanism 1 includes a first flipping mechanism 11 and a second flipping mechanism 12. The first flipping mechanism 11 is located at the end near the inlet and is used to make the barrel opening face downwards. The second flipping mechanism 12 is located at the end near the outlet and is used to make the barrel opening face upwards.

[0028] The high-pressure cleaning mechanism 2 is located behind the first flipping mechanism 11 and is used to perform high-pressure water jet cleaning on the barrel with the opening facing downwards.

[0029] The steam treatment mechanism 3 is located behind the high-pressure cleaning mechanism 2 and is used to spray steam onto the barrel with the opening facing downwards.

[0030] The atomizing disinfection mechanism 4 is located behind the second flipping mechanism 12 and is used to spray atomized disinfectant onto the barrel with its opening facing upwards.

[0031] Furthermore, the first flipping mechanism 11 includes a first rotating platform 111 and a first barrel fixing clip 112. The first barrel fixing clip 112 is installed on the first rotating platform 111. The first rotating platform 111 drives the barrel to flip so that the barrel opening faces downward. The first barrel fixing clip 112 cooperates to clamp and position the barrel.

[0032] The second flipping mechanism 12 includes a second rotating platform 121 and a second barrel fixing clip 122. The second barrel fixing clip 122 is installed on the second rotating platform 121. The second rotating platform 121 drives the barrel to flip so that the barrel opening faces upward. The second barrel fixing clip 122 cooperates to clamp and position the barrel.

[0033] Furthermore, the high-pressure cleaning mechanism 2 includes a first lifting device 21 and a high-pressure water rotary nozzle 22. The high-pressure water rotary nozzle 22 is mounted on the top of the first lifting device 21, and the first lifting device 21 is used to drive the high-pressure water rotary nozzle 22 to move in the vertical direction.

[0034] Furthermore, the steam treatment mechanism 3 includes a guide rod type robotic arm 31 and a steam nozzle assembly 32. The steam nozzle assembly 32 is installed at the end of the guide rod type robotic arm 31, and the guide rod type robotic arm 31 is used to drive the steam nozzle assembly 32 to move in three-dimensional space.

[0035] Furthermore, the atomizing disinfection mechanism 4 includes a second lifting device 41 and a dual-fluid nozzle 42. The dual-fluid nozzle 42 is installed on the top of the second lifting device 41, and the second lifting device 41 is used to drive the dual-fluid nozzle 42 to move in the vertical direction.

[0036] The implementation principle of the steam cleaning and disinfection equipment for medical waste turnover containers in this application embodiment is as follows: The turnover container enters the equipment, and the first flipping mechanism 11 first flips the container body and fixes it in the position of the container opening facing downwards; then, the high-pressure cleaning mechanism 2 performs high-pressure water jet rinsing on the outside of the container to remove most of the residual dirt; the cleaned container body enters the steam treatment mechanism 3, which uses high-temperature saturated steam for thorough cleaning, rapid drying and preliminary disinfection; thereafter, the second flipping mechanism 12 flips the container body to the position of the container opening facing upwards and conveys it to the atomizing disinfection mechanism 4, which uses dual-fluid nozzles 42 to evenly spray the atomized disinfectant on the outer surface of the container to complete the final disinfection; after treatment, the turnover container is sent out from the outlet, completing the fully automated cleaning and disinfection process.

[0037] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A steam cleaning and disinfection device for medical waste transfer containers, characterized in that, It includes a flipping mechanism (1), a high-pressure cleaning mechanism (2), a steam treatment mechanism (3), and an atomizing disinfection mechanism (4); The flipping mechanism (1) includes a first flipping mechanism (11) and a second flipping mechanism (12). The first flipping mechanism (11) is located at the end near the inlet and is used to make the barrel opening face downwards. The second flipping mechanism (12) is located at the end near the outlet and is used to make the barrel opening face upwards. The high-pressure cleaning mechanism (2) is located behind the first flipping mechanism (11) and is used to perform high-pressure water jet cleaning on the barrel with the opening facing downward. The steam treatment mechanism (3) is located behind the high-pressure cleaning mechanism (2) and is used to spray steam onto the barrel with the opening facing downward. The atomizing disinfection mechanism (4) is located behind the second flipping mechanism (12) and is used to spray atomizing disinfectant onto the barrel with the opening facing upward.

2. The steam cleaning and disinfection equipment for medical waste transfer containers according to claim 1, characterized in that, The first flipping mechanism (11) includes a first rotating platform (111) and a first barrel fixing clip (112). The first barrel fixing clip (112) is installed on the first rotating platform (111). The first rotating platform (111) drives the barrel to flip so that the barrel opening faces downward. The first barrel fixing clip (112) cooperates to clamp and position the barrel.

3. The steam cleaning and disinfection equipment for medical waste transfer containers according to claim 1, characterized in that, The second flipping mechanism (12) includes a second rotating platform (121) and a second barrel fixing clip (122). The second barrel fixing clip (122) is installed on the second rotating platform (121). The second rotating platform (121) drives the barrel to flip so that the barrel opening faces upward. The second barrel fixing clip (122) cooperates to clamp and position the barrel.

4. The steam cleaning and disinfection equipment for medical waste transfer containers according to claim 1, characterized in that, The high-pressure cleaning mechanism (2) includes a first lifting device (21) and a high-pressure water rotating nozzle (22). The high-pressure water rotating nozzle (22) is installed on the top of the first lifting device (21). The first lifting device (21) is used to drive the high-pressure water rotating nozzle (22) to move in the vertical direction.

5. The steam cleaning and disinfection equipment for medical waste transfer containers according to claim 1, characterized in that, The steam treatment mechanism (3) includes a guide rod type robotic arm (31) and a steam nozzle assembly (32). The steam nozzle assembly (32) is installed at the end of the guide rod type robotic arm (31). The guide rod type robotic arm (31) is used to drive the steam nozzle assembly (32) to move in three-dimensional space.

6. The steam cleaning and disinfection equipment for medical waste transfer containers according to claim 1, characterized in that, The atomizing disinfection mechanism (4) includes a second lifting device (41) and a dual-fluid nozzle (42). The dual-fluid nozzle (42) is installed on the top of the second lifting device (41), and the second lifting device (41) is used to drive the dual-fluid nozzle (42) to move in the vertical direction.