Microwave deodorization and sterilization system device

By setting up an auxiliary mechanism inside the sterilization device and using exhaust gas wind power to assist the flow of exhaust gas, the problem of exhaust gas not being able to be discharged quickly in the sterilization device is solved, achieving rapid flow and efficient sterilization.

CN121869022APending Publication Date: 2026-04-17JIANGXI SANYU ENVIRONMENTAL PROTECTION & ENERGY SAVING TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
JIANGXI SANYU ENVIRONMENTAL PROTECTION & ENERGY SAVING TECH CO LTD
Filing Date
2023-11-22
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

In existing technologies, sterilization devices cannot utilize the wind generated when waste gas enters to assist in the rapid discharge of waste gas, resulting in the gas not being able to be discharged quickly through the exhaust pipe.

Method used

A microwave deodorization and sterilization system was designed, comprising deodorization equipment and sterilization equipment. The system is connected by pipes and an auxiliary mechanism is set inside the sterilization equipment, including components such as supports, blades, push rods and fan blades. The system utilizes exhaust gas wind power to assist the flow of exhaust gas, ensuring that the exhaust gas can quickly enter and exit the sterilization equipment.

Benefits of technology

It enables rapid flow and discharge of exhaust gas within the sterilization equipment, avoiding gas stagnation and improving sterilization efficiency and deodorization effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

An auxiliary mechanism comprises a support, an upper blade, a rotating shaft, a lower blade and a push rod, the support is mounted on the inner wall of sterilization equipment, the rotating shaft swings at the end, away from the inner wall of the sterilization equipment, of the support, the upper blade and the lower blade swing at the upper end and the lower end of the rotating shaft, and the push rod is located on the side, close to the support, of the upper blade. The distance between one end of the support and the built-in pipe is 2-3 cm, a groove penetrates through the side, away from the inner wall of the sterilization equipment, of the support, the support is arranged on the inner wall of the sterilization equipment, the built-in pipe is arranged in the facing direction, wind power generated when waste gas enters the sterilization equipment is used for assisting the upper blades to swing, and then fan blades are assisted to rotate; rotation of the fan blades can assist waste gas in the sterilization equipment in flowing from top to bottom, the situation that the gas outlet pipe is located at the lower end of the sterilization equipment, and consequently the waste gas cannot quickly enter the gas outlet pipe to be exhausted is avoided, and meanwhile the waste gas is prevented from flowing upwards.
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Description

Technical Field

[0001] This invention relates to the field of food, food or non-alcoholic beverage technology not included in subclasses A21D or A23B to A23J, and particularly to microwave deodorization and sterilization system devices. Background Technology

[0002] Kitchen waste generates waste gas during processing, which needs to be treated by deodorization and sterilization before being emitted. Microwave sterilization devices utilize the combined effects of the thermal and biological effects of electromagnetic fields. The thermal effect of microwaves on bacteria causes protein changes, depriving bacteria of their nutritional, reproductive, and survival conditions, leading to their death. Deodorization of the waste gas requires deodorization equipment, which is an air purification device used to remove odors. The combination of deodorization equipment and microwave sterilization devices forms a microwave deodorization and sterilization system. This paper provides technical inspiration for deodorization and sterilization systems. The research on deodorization and sterilization systems revealed the following problems: After the deodorizing equipment in the deodorizing and sterilizing system deodorizes the exhaust gas, it transmits the exhaust gas to the upper part of the sterilizing device through a pipeline. Since the gas usually flows upward due to inertia, and the exhaust pipe of the sterilizing device is located at the lower end of the sterilizing device, the gas inside the sterilizing device cannot be discharged quickly through the exhaust pipe. As a result, the sterilizing device cannot use the wind generated when the exhaust gas enters to assist the exhaust gas in being discharged. Currently, CN201910929263.3 discloses a microwave sterilization device. The sterilization device is provided with a turning structure inside the box to turn the material. The turning structure includes a turning roller rotatably connected inside the box and a driving structure for driving the turning roller to rotate. The lowermost end of the turning roller is in contact with the conveying structure. The linear velocity direction of the turning roller near the side wall of the conveying structure is opposite to the conveying direction of the conveying structure, which has a more thorough sterilization effect on the material. This invention primarily addresses the problem that sterilization devices cannot utilize the wind generated when waste gas enters to assist in the discharge of waste gas. Summary of the Invention

[0003] To address the aforementioned technical problems, the present invention provides a microwave deodorization and sterilization system device to solve the problems described in the background section.

[0004] The purpose and efficacy of the microwave deodorization and sterilization system device of the present invention are achieved by the following specific technical means: The microwave deodorization and sterilization system device includes a deodorization device and a sterilization device. One end of the deodorization device is connected to a pipe, and the deodorization device is connected to one end of the sterilization device through the pipe. An air inlet pipe is connected to the other side of the deodorization device. An air outlet pipe is connected to the lower end of the sterilization device. A sealing cover is installed on the upper end of the sterilization device by bolts. A microwave generator is installed inside the sealing cover.

[0005] Furthermore, the deodorization equipment is equipped with an ultraviolet lamp, which is connected to the power circuit via a power cord. Exhaust gas enters the interior of the deodorization equipment through an air inlet pipe, and the end of the air inlet pipe furthest from the deodorization equipment is connected to the fan.

[0006] Furthermore, the sterilization device is a microwave sterilization device, which is arranged vertically, with one end of the pipe located above the side of the sterilization device, and an auxiliary mechanism provided on the side of the sterilization device near the pipe.

[0007] Furthermore, the microwave generator is connected to the power circuit via a power cord.

[0008] Furthermore, a flow guide funnel is installed inside the end of the pipe near the sterilization equipment, and an internal pipe runs through the end of the flow guide funnel near the sterilization equipment.

[0009] Furthermore, the flow-guiding funnel is in the shape of a horizontal funnel, and the built-in tube extends into the interior of the sterilization equipment. The diameter of the built-in tube is 5-10 cm smaller than the diameter of the pipe, and the built-in tube is matched with the flow-guiding funnel.

[0010] Furthermore, the auxiliary mechanism includes a support, an upper blade, a rotating shaft, a lower blade, and a push rod. The support is installed on the inner wall of the sterilization equipment, the rotating shaft swings at the end of the support away from the inner wall of the sterilization equipment, the upper blade and the lower blade swing at the upper and lower ends of the rotating shaft, and the push rod is located on the side of the upper blade close to the support.

[0011] Furthermore, one end of the bracket is spaced 2-3 cm from the built-in tube, and a groove runs through the side of the bracket away from the inner wall of the sterilization device. The bracket is located on the inner wall of the sterilization device.

[0012] Furthermore, the upper blade is horizontally aligned with the inner tube, and both the upper and lower blades are tilted at 5-35° via a rotating shaft. The lower blade weighs 2-3g more than the upper blade, and both the lower and upper blades weigh less than 5g.

[0013] Furthermore, the push rod is positioned above the bracket, with the push rod set at a horizontal angle, and the push rod is located at the end of the upper blade away from the built-in tube.

[0014] Furthermore, the auxiliary mechanism also includes a retaining ring, a connecting rod, a fan blade, and a chuck. The retaining ring is located inside the bracket, the connecting rod rotates inside the retaining ring, the fan blade swings at the lower end of the connecting rod, and the chuck is located at the upper end of the connecting rod.

[0015] Furthermore, the retaining ring is semi-circular with an angle of 90°, the chuck rotates at the upper end of the retaining ring, and the retaining ring is located on both sides of the connecting rod.

[0016] Furthermore, one side of the upper end of the connecting rod is connected to the push rod, and the lower end of the connecting rod extends to the lower end of the bracket. When the push rod slides horizontally in a reciprocating tilt, the connecting rod rotates synchronously in a reciprocating motion.

[0017] Furthermore, the fan blades are wrapped around the lower end of the connecting rod, and the fan blades are tilted downwards at 15-25°. When the connecting rod rotates, the fan blades rotate synchronously.

[0018] Beneficial effects: 1. After deodorization, the exhaust gas enters the inside of the pipeline, and then enters the inside of the guide funnel and the built-in pipe. The exhaust gas inside the built-in pipe can enter the inside of the sterilization equipment. Since the guide funnel is a horizontal funnel, it can help the exhaust gas inside the pipeline to enter the inside of the built-in pipe, and then be discharged into the inside of the sterilization equipment through the built-in pipe. 2. Since a fan is connected to one end of the air inlet pipe, the fan can assist the flow of exhaust gas. When the exhaust gas enters the sterilization equipment, it can generate wind. With the upper blades and the inner pipe being horizontally aligned, when the exhaust gas flows through the inner pipe into the sterilization equipment, the upper blades can be tilted and swung by the airflow of the exhaust gas through the rotating shaft. The upper blades can drive the lower blades to tilt and swing upwards through the rotating shaft. When the upper blades are tilted and swinging, the push rod can slide horizontally. 3. Since the lower blade weighs 2-3g more than the upper blade, when the lower blade tilts upward, it can quickly return to its original position by its own weight. Then, the lower blade can drive the upper blade to return to its original position through the rotating shaft. At this time, the upper blade can swing back to the side of the inner tube. Repeating the above steps, the upper blade can tilt and reciprocate at the upper end of the rotating shaft, and the push rod can form a horizontal tilting reciprocating slide, so that the push rod can use the weight difference between the upper and lower blades to form a reciprocating slide. 4. When the push rod slides horizontally in a reciprocating tilt, the connecting rod rotates synchronously in a reciprocating motion. The rotation angle of the connecting rod is less than 90°. Since the fan blades are tilted downwards at 15-25°, the rotation of the fan blades can help the exhaust gas inside the sterilization equipment flow downwards. 5. Since the support frame surrounds the inner wall of the sterilization equipment, and the upper blades, rotating shaft, lower blades, push rod, retaining ring, connecting rod, fan blades, and chuck are all matched with the support frame, the internal pipes can be arranged in the direction of the airflow. The airflow when the exhaust gas enters the sterilization equipment can be used to assist the upper blades in swinging, which in turn assists the fan blades in rotating. The rotation of the fan blades can help the exhaust gas inside the sterilization equipment flow from top to bottom, avoiding the situation where the exhaust pipe is located at the bottom of the sterilization equipment, which would prevent the exhaust gas from quickly entering the exhaust pipe and being discharged. At the same time, it also prevents the exhaust gas from flowing upward. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of the present invention.

[0020] Figure 2This is a partial structural diagram of the sterilization device of the present invention.

[0021] Figure 3 For the present invention Figure 2 Mid-top view.

[0022] Figure 4 This is a schematic diagram of the sealing cap structure of the present invention.

[0023] Figure 5 This is a schematic diagram of a partial structure of the pipeline of the present invention.

[0024] Figure 6 This is a schematic diagram of the built-in tube structure of the present invention.

[0025] Figure 7 This is a schematic diagram of the support assembly structure of the present invention.

[0026] Figure 8 This is a schematic diagram of the blade oscillation in this invention.

[0027] Figure 9 This is a schematic diagram of the linkage assembly structure of the present invention.

[0028] Figure 1-9 In the diagram, the correspondence between component names and drawing numbers is as follows: 1-Deodorization equipment, 101-Pipe, 102-Sterilization equipment, 103-Inlet pipe, 104-Outlet pipe, 105-Sealing cover, 106-Microwave generator, 2-Built-in pipe, 201-Flow guide funnel, 3-Support, 301-Upper blade, 302-Rotating shaft, 303-Lower blade, 304-Push rod, 4-Snap ring, 401-Connecting rod, 402-Fan blade, 403-Chuck. Implementation

[0029] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention. Example

[0030] As attached Figure 1 To be continued Figure 9 As shown: Example 1: A microwave deodorization and sterilization system device includes a deodorization device 1 and a sterilization device 102. One end of the deodorization device 1 is connected to a pipe 101, and the deodorization device 1 is connected to one end of the sterilization device 102 through the pipe 101. An air inlet pipe 103 is connected to the other side of the deodorization device 1. An air outlet pipe 104 is connected to the lower end of the sterilization device 102. A sealing cover 105 is installed on the upper end of the sterilization device 102 by bolts. A microwave generator 106 is provided inside the sealing cover 105. Among them: deodorization device 1 and air inlet pipe 103. The deodorization device 1 is equipped with an ultraviolet lamp. The ultraviolet lamp is connected to the power circuit through a power cord. The exhaust gas enters the interior of the deodorization device 1 through the air inlet pipe 103, and the end of the air inlet pipe 103 away from the deodorization device 1 is connected to the fan. The deodorization device 1 uses a specially designed high-energy, high-ozone UV light beam to irradiate and break down odorous gases. The end of the air inlet pipe 103 furthest from the deodorization device 1 is connected to the fan, and the fan can drive the exhaust gas into the interior of the air inlet pipe 103, the deodorization device 1, the pipe 101 and the sterilization device 102 in sequence. The sterilization device 102 and the pipeline 101 are microwave sterilization devices. The sterilization device 102 is arranged vertically. One end of the pipeline 101 is located above the side of the sterilization device 102. An auxiliary mechanism is provided on the side of the sterilization device 102 near the pipeline 101. The sealing cover 105 and the microwave generator 106 are connected to the power circuit via a power cord. Wherein: the end of the air inlet pipe 103 away from the deodorization device 1 is connected to the fan. The fan can drive the exhaust gas into the interior of the air inlet pipe 103, the deodorization device 1, the pipe 101 and the sterilization device 102 in sequence. The ultraviolet lamp inside the deodorization device 1 uses a specially made high-energy high-ozone UV ultraviolet light beam to irradiate the malodorous gas and break it down. Then the microwave generator 106 generates microwaves. The sterilization device 102 can utilize the combined effect of the thermal effect and biological effect of the electromagnetic field. The thermal effect of microwaves on bacteria causes protein changes, depriving bacteria of the conditions for nutrition, reproduction and survival, thus killing them and achieving the effects of deodorization and microwave sterilization. Example 2: Refer to the attached instruction manual Figure 1-6 It can be seen that the difference between Example 2 and Example 1 is that a flow guide funnel 201 is installed inside the end of the pipe 101 near the sterilization device 102, and an internal pipe 2 is passed through the end of the flow guide funnel 201 near the sterilization device 102. Among them: the flow guide funnel 201 and the built-in tube 2, the flow guide funnel 201 is in the shape of a horizontal funnel, the built-in tube 2 extends into the interior of the sterilization equipment 102, the diameter of the built-in tube 2 is 5-10cm smaller than the diameter of the pipe 101, and the built-in tube 2 is matched with the flow guide funnel 201. The guide funnel 201 is in the shape of a horizontal funnel, so the guide funnel 201 can help the exhaust gas inside the pipe 101 to enter the interior of the built-in pipe 2, and then be discharged into the interior of the sterilization device 102 through the built-in pipe 2. Wherein: After the exhaust gas is deodorized, it enters the interior of the pipe 101, and then the exhaust gas enters the interior of the guide funnel 201 and the built-in pipe 2. The exhaust gas inside the built-in pipe 2 can enter the interior of the sterilization device 1. Since the guide funnel 201 is in the shape of a horizontal funnel, the guide funnel 201 can assist the exhaust gas inside the pipe 101 to enter the interior of the built-in pipe 2, and then discharge it into the interior of the sterilization device 102 through the built-in pipe 2. Example 3: Refer to the appendix of the instruction manual Figure 3 , 7 As can be seen from Figure 8, the difference between Embodiment 3 and Embodiments 1 and 2 is that the auxiliary mechanism includes a support 3, an upper blade 301, a rotating shaft 302, a lower blade 303, and a push rod 304. The support 3 is installed on the inner wall of the sterilization device 102, the rotating shaft 302 swings at the end of the support 3 away from the inner wall of the sterilization device 102, the upper blade 301 and the lower blade 303 swing at the upper and lower ends of the rotating shaft 302, and the push rod 304 is located on the side of the upper blade 301 close to the support 3. Among them: support 3, one end of support 3 is spaced 2-3cm apart from the built-in tube 2, and the side of support 3 away from the inner wall of sterilization equipment 102 has a groove through it, and support 3 is set on the inner wall of sterilization equipment 102; One end of the bracket 3 is spaced 2-3cm from the inner tube 2 to facilitate the rapid blowing of exhaust gas from inside the inner tube 2 to the upper end of the bracket 3. Please refer to the instruction manual for details. Figure 3 As shown; Upper blade 301 and lower blade 303, upper blade 301 is horizontally aligned with the built-in tube 2, upper blade 301 and lower blade 303 are both inclined at 5-35° through the rotating shaft 302, lower blade 303 weighs 2-3g more than upper blade 301, and lower blade 303 and upper blade 301 weigh less than 5g. Since a fan is connected to one end of the air inlet pipe 103, the fan can assist the flow of exhaust gas. Utilizing the horizontal alignment of the upper blades 301 with the internal pipe 2, when the exhaust gas flows through the internal pipe 2 into the sterilization device 102, the upper blades 301 can tilt and swing via the rotating shaft 302, propelled by the exhaust gas. (Refer to the attached instruction manual.) Figure 8 As shown; The lower blade 303 weighs 2-3g more than the upper blade 301. When the lower blade 303 tilts upwards and swings, it can quickly swing downwards using its own weight. In this way, the lower blade 303 can drive the upper blade 301 to swing back to its original position through the rotating shaft 302. Both the lower blade 303 and the upper blade 301 weigh less than 5g, which makes it easy for the exhaust gas to enter the sterilization equipment 102. The wind force generated when the exhaust gas enters can quickly drive the upper blade 301 to swing. Push rod 304 is located above bracket 3. Push rod 304 is set horizontally at an angle and is located at the end of upper blade 301 away from the inner tube 2. The push rod 304 is horizontally inclined. When the upper blade 301 tilts and swings, the push rod 304 can slide horizontally. Please refer to the instruction manual appendix. Figure 8 As shown; Wherein: Since a fan is connected to one end of the air inlet pipe 103, the fan can assist the flow of exhaust gas. When the exhaust gas enters the sterilization equipment 1, it can generate wind. When the exhaust gas flows through the internal pipe 2 to the inside of the sterilization equipment 102, the upper blade 301 can be tilted and swung by the air blown by the exhaust gas through the rotating shaft 302. The upper blade 301 can drive the lower blade 303 to tilt and swung upward through the rotating shaft 302. When the upper blade 301 tilts and swung, the push rod 304 can slide horizontally. Since the lower blade 303 weighs 2-3g more than the upper blade 301, when the lower blade 303 tilts upward, it can quickly return to its original position by its own weight. Then, the lower blade 303 can drive the upper blade 301 to return to its original position through the rotating shaft 302. At this time, the upper blade 301 can swing back to the side of the inner tube 2. Repeating the above steps, the upper blade 301 can tilt and reciprocate at the upper end of the rotating shaft 302, and the push rod 304 can form a horizontal tilting reciprocating slide, so that the push rod 304 can form a reciprocating slide by utilizing the weight difference between the upper blade 301 and the lower blade 303. Example 4: Refer to the appendix of the instruction manual Figure 7-9 It can be seen that the difference between Embodiment 4 and Embodiments 1-3 is that the auxiliary mechanism also includes a retaining ring 4, a connecting rod 401, a fan blade 402 and a chuck 403. The retaining ring 4 is located inside the bracket 3, the connecting rod 401 rotates inside the retaining ring 4, the fan blade 402 swings at the lower end of the connecting rod 401, and the chuck 403 is located at the upper end of the connecting rod 401. Wherein: 4 is a retaining ring and 403 is a chuck. The retaining ring 4 is semi-circular and the angle of the semi-circular ring is 90°. The chuck 403 rotates at the upper end of the retaining ring 4. The retaining ring 4 is located on both sides of the connecting rod 401. The chuck 403 rotates at the upper end of the retaining ring 4. The chuck 403 is designed to prevent the connecting rod 401 from falling downwards inside the retaining ring 4. The retaining ring 4 is semi-circular with a 90° angle. The retaining ring 4 can be used to wrap and limit the outer side of the connecting rod 401. Link 401, one side of the upper end of link 401 is connected to push rod 304, and the lower end of link 401 extends to the lower end of bracket 3. When push rod 304 slides horizontally in a reciprocating tilt, link 401 rotates synchronously in a reciprocating manner. When push rod 304 slides horizontally in a reciprocating tilt, connecting rod 401 rotates synchronously in a reciprocating manner, and the rotation angle of connecting rod 401 is less than 90°. Fan blade 402 is wrapped around the lower end of connecting rod 401. Fan blade 402 is tilted downward at 15-25°. When connecting rod 401 rotates, fan blade 402 rotates synchronously. The fan blade 402 is tilted downwards at 15-25°, so when the fan blade 402 rotates, it can help the exhaust gas inside the sterilization equipment 102 to flow downwards; When the push rod 304 slides horizontally in a reciprocating tilt, the connecting rod 401 rotates synchronously in a reciprocating manner. The rotation angle of the connecting rod 401 is less than 90°. Since the fan blade 402 is tilted downward at 15-25°, the rotation of the fan blade 402 can assist the exhaust gas inside the sterilization equipment 102 to flow downward. Since the bracket 3 surrounds the inner wall of the sterilization device 102, and the upper blade 301, rotating shaft 302, lower blade 303, push rod 304, retaining ring 4, connecting rod 401, fan blade 402 and chuck 403 are all matched with the bracket 3, the upper blade 301 can be swung by utilizing the orientation of the built-in pipe 2 and the wind force when the exhaust gas enters the sterilization device 102 to assist the fan blade 402 in rotating. The rotation of the fan blade 402 can assist the exhaust gas inside the sterilization device 102 to flow from top to bottom, avoiding the situation where the exhaust pipe 104 is located at the lower end of the sterilization device 102, which would prevent the exhaust gas from quickly entering the exhaust pipe 104 for discharge, and also prevent the exhaust gas from flowing upward.

Claims

1. A microwave deodorization and sterilization system device comprising a deodorization device (1) and a sterilization device (102), characterized by: One end of the deodorizing device (1) is connected to a pipe (101), and the deodorizing device (1) is connected to one end of the sterilizing device (102) through the pipe (101). The other side of the deodorizing device (1) is connected to an air inlet pipe (103). The lower end of the sterilizing device (102) is connected to an air outlet pipe (104). The upper end of the sterilizing device (102) is fitted with a sealing cover (105) by bolts. The interior of the sealing cover (105) is equipped with a microwave generator (106). The deodorization device (1) and the air inlet pipe (103) are provided. The deodorization device (1) is equipped with an ultraviolet lamp. The ultraviolet lamp is connected to the power circuit through a power cord. The exhaust gas enters the interior of the deodorization device (1) through the air inlet pipe (103). The end of the air inlet pipe (103) away from the deodorization device (1) is connected to the fan. The sterilization device (102) and the pipeline (101) are microwave sterilization devices. The sterilization device (102) is arranged vertically. One end of the pipeline (101) is located above the side of the sterilization device (102). An auxiliary mechanism is provided on the side of the sterilization device (102) near the pipeline (101). A sealing cover (105) and a microwave generator (106) are provided, with the microwave generator (106) connected to the power circuit via a power cord. The pipe (101) has a flow guide funnel (201) installed inside the end near the sterilization device (102), and the flow guide funnel (201) has an internal pipe (2) running through the end near the sterilization device (102).

2. The microwave deodorization and sterilization system device according to claim 1, characterized in that: The flow guide funnel (201) is in the shape of a horizontal funnel, and the built-in tube (2) extends into the interior of the sterilization device (102). The diameter of the built-in tube (2) is 5-10cm smaller than the diameter of the pipe (101). The built-in tube (2) is matched with the flow guide funnel (201).

3. The microwave deodorization and sterilization system device according to claim 1, characterized in that: The auxiliary mechanism includes a support (3), an upper blade (301), a rotating shaft (302), a lower blade (303), and a push rod (304). The support (3) is installed on the inner wall of the sterilization device (102). The rotating shaft (302) swings at one end of the support (3) away from the inner wall of the sterilization device (102). The upper blade (301) and the lower blade (303) swing at the upper and lower ends of the rotating shaft (302). The push rod (304) is located on the side of the upper blade (301) close to the support (3).

4. The microwave deodorization and sterilization system device according to claim 3, characterized in that: One end of the bracket (3) is spaced 2-3cm from the built-in tube (2). The bracket (3) has a groove on the side away from the inner wall of the sterilization device (102). The bracket (3) is located on the inner wall of the sterilization device (102).

5. The microwave deodorization and sterilization system device according to claim 3, characterized in that: The upper blade (301) is horizontally aligned with the inner tube (2). Both the upper blade (301) and the lower blade (303) are inclined at 5-35° via a rotating shaft (302). The weight of the lower blade (303) is 2-3g greater than that of the upper blade (301), and the weights of both the lower blade (303) and the upper blade (301) are less than 5g.

6. The microwave deodorization and sterilization system device according to claim 3, characterized in that: The push rod (304) is located above the bracket (3), and the push rod (304) is set horizontally and inclined. The push rod (304) is located at the end of the upper blade (301) away from the built-in tube (2).

7. The microwave deodorization and sterilization system device according to claim 1, characterized in that: The auxiliary mechanism also includes a retaining ring (4), a connecting rod (401), a fan blade (402), and a chuck (403). The retaining ring (4) is located inside the bracket (3), the connecting rod (401) rotates inside the retaining ring (4), the fan blade (402) swings at the lower end of the connecting rod (401), and the chuck (403) is located at the upper end of the connecting rod (401).

8. The microwave deodorization and sterilization system device according to claim 7, characterized in that: The retaining ring (4) is semi-circular with a semi-circular angle of 90°. The chuck (403) rotates at the upper end of the retaining ring (4), and the retaining ring (4) is located on both sides of the connecting rod (401).

9. The microwave deodorization and sterilization system device according to claim 7, characterized in that: One side of the upper end of the connecting rod (401) is connected to the push rod (304), and the lower end of the connecting rod (401) extends to the lower end of the bracket (3). When the push rod (304) slides horizontally in a reciprocating tilt, the connecting rod (401) rotates synchronously.

10. The microwave deodorization and sterilization system device according to claim 7, characterized in that: The fan blade (402) is wrapped around the lower end of the connecting rod (401). The fan blade (402) is tilted downward at 15-25°. When the connecting rod (401) rotates, the fan blade (402) rotates synchronously.

Citation Information

Patent Citations

  • Microwave sterilization apparatus

    CN110637964A