Double-tube microwave rapid oven
By setting a receiving tray mounting groove and a connecting rod locking structure at the bottom of the tray, the problem of difficult cleaning of dripping exudate is solved, and convenient exudate cleaning is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUBEI JUPENG KITCHEN EQUIP CO LTD
- Filing Date
- 2025-04-25
- Publication Date
- 2026-05-08
AI Technical Summary
The trays of existing dual-tube microwave ovens lack a spill containment structure, causing spills to drip directly onto the oven's inner wall, making cleaning difficult.
A receiving tray mounting slot is provided at the bottom of the tray. The receiving tray is movably connected in the slot. The receiving tray can be easily installed and removed through a connecting rod and a locking block structure. The exudate is caught by the receiving tray and can be cleaned separately.
This design prevents effluent from dripping onto the oven's inner wall, and the tray and receiving plate can be easily separated during cleaning, simplifying the cleaning process.
Smart Images

Figure CN224215403U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of ovens, specifically a dual-tube microwave rapid oven. Background Technology
[0002] A dual-tube microwave rapid oven is a kitchen appliance that combines microwave heating with the functions of a traditional oven. It features two heating tubes (usually one at the top and one at the bottom) and uses microwave technology to achieve rapid heating and even cooking.
[0003] In existing technology, dual-tube microwave ovens typically have protrusions on the inner wall of the cooking chamber. These protrusions form guide rails for sliding the tray. When cooking in a dual-tube microwave oven, food is placed on the tray and then placed into the cooking chamber. The tray has numerous small holes. During cooking, some food may exude juices or oil stains after heating. These exudates can drain through the mesh into the tray, preventing the food from soaking in the exudates and affecting its texture.
[0004] However, existing dual-tube microwave ovens lack a structure on the tray inside to collect the spillage. The spillage drips directly onto the inner wall of the oven's cooking chamber through small holes. Due to the limited size of the opening and internal space of the cooking chamber, cleaning up the spillage is very difficult. Utility Model Content
[0005] The purpose of this invention is to provide a dual-tube microwave rapid oven to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a dual-tube microwave rapid oven, comprising: a dual-tube microwave rapid oven, a tray slidably connected to the surface of the dual-tube microwave rapid oven, a plurality of small holes being formed on the surface of the tray, a receiving tray mounting groove being formed at the bottom end of the tray, a receiving tray being movably connected in the receiving tray mounting groove, a connecting hole and a through hole being formed on the surface of the tray, a connecting rod being rotatably inserted into the connecting hole, a locking block being fixed on the body of the connecting rod, and the bottom end of the connecting rod being rotatably connected in the connecting groove, the connecting groove being formed on the surface of the receiving tray.
[0007] Preferably, the connecting rod has a circular rod structure, and the locking block has a wedge-shaped block structure, with the locking block being movably inserted into the through hole.
[0008] Preferably, a connecting plate is fixed to the bottom end of the connecting rod. The connecting plate has a circular plate structure, and its diameter is larger than that of the connecting rod. The connecting plate is rotatably connected in the connecting groove.
[0009] Preferably, a gasket is fixed to the bottom end of the card block, and the gasket has a rectangular plate structure.
[0010] Preferably, a spring groove is formed at the top of the material receiving tray. The spring groove is a circular groove structure, and a spring is fixed in the spring groove. The top of the spring abuts against the inner wall of the material receiving tray installation groove.
[0011] Preferably, a flange is fixed on the surface of the tray. The flange is a "hui" - shaped plate structure.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0013] In the double - tube microwave rapid oven proposed by the present utility model, the exudate of food is caught by the material receiving tray and will no longer drip onto the inner wall of the cooking chamber of the double - tube microwave rapid oven. When cleaning the exudate of food, only need to take out the tray from the double - tube microwave rapid oven, and then quickly remove the material receiving tray from the material receiving tray installation groove. Then, the tray and the material receiving tray can be conveniently cleaned respectively without being affected by the opening and the internal space of the cooking chamber of the double - tube microwave rapid oven, making the cleaning of the exudate more convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 is a schematic structural diagram of the present utility model;
[0015] Figure 2 is a schematic structural diagram of the tray;
[0016] Figure 3 is a schematic cross - sectional structural diagram of the present utility model;
[0017] Figure 4 is Figure 3 an enlarged schematic diagram of the structure at A in
[0018] Figure 5 is a schematic cross - sectional structural diagram of the spring groove.
[0019] In the figure: double - tube microwave rapid oven 1, tray 2, small hole 3, material receiving tray installation groove 4, material receiving tray 5,
[0020] connection groove 6, connecting plate 7, connecting rod 8, clamping block 9, gasket 10, connection hole 11, through - hole 12, spring groove 13, spring 14, flange 15. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0021] To make the objectives, technical solutions, and advantages of this utility model clear and complete, the embodiments of this utility model will be further described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only some, not all, embodiments of this utility model, and are merely used to explain the embodiments of this utility model. They are not intended to limit the embodiments of this utility model. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0022] Example 1: Please refer to Figures 1-5 This utility model provides a technical solution: a dual-tube microwave rapid oven, comprising: a dual-tube microwave rapid oven 1, a tray 2 slidably connected to the surface of the dual-tube microwave rapid oven 1, a plurality of small holes 3 formed on the surface of the tray 2, a receiving tray mounting groove 4 formed at the bottom end of the tray 2, a receiving tray 5 movably connected in the receiving tray mounting groove 4, a connecting hole 11 and a through hole 12 formed on the surface of the tray 2, a connecting rod 8 rotatably inserted into the connecting hole 11, a locking block 9 fixed on the rod body of the connecting rod 8, the bottom end of the connecting rod 8 rotatably connected in the connecting groove 6, the connecting groove 6 being formed on the surface of the receiving tray 5, the connecting rod 8 having a circular rod structure, the locking block 9 having a wedge-shaped block structure, and the locking block 9 being movably inserted in the through hole 12.
[0023] In actual use, a receiving tray mounting groove 4 is made at the bottom of tray 2, and a receiving tray 5 is installed in the receiving tray mounting groove 4. Food is placed on top of tray 2, and then tray 2 is placed in the cooking chamber of the dual-tube microwave oven 1. The food is cooked using the dual-tube microwave oven 1. When the food leaks juices or oil, these leaks drain from the top of tray 2 through small holes 3 and drip into the receiving tray 5. After cooking, tray 2 is removed from the dual-tube microwave oven 1. Then, the connecting rod 8 is rotated to align the locking block 9 with the through hole 12. Then, tray 2 is lifted upwards, and the locking block 9 passes through the through hole 12, passes through the connecting rod 8, and exits from the connecting hole 11. The receiving tray 5 can then be removed from the receiving tray mounting groove 4 for easy cleaning. After cleaning, place the receiving tray 5 back into the receiving tray mounting slot 4, insert the connecting rod 8 back into the connecting hole 11, and pass the locking block 9 through the through hole 12 again. Then, twist the connecting rod 8 again so that the bottom end of the locking block 9 rests against the top of the tray 2. The receiving tray 5 can then be installed back into the receiving tray mounting slot 4 for the next use. This ensures that the food exudate is caught by the receiving tray 5 and will not drip onto the inner wall of the cooking chamber of the dual-tube microwave oven 1. When cleaning the food exudate, simply remove the tray 2 from the dual-tube microwave oven 1 and quickly remove the receiving tray 5 from the receiving tray mounting slot 4. This allows for convenient cleaning of the tray 2 and the receiving tray 5 separately without being affected by the opening and internal space of the cooking chamber of the dual-tube microwave oven 1, making the cleaning of exudate more convenient.
[0024] Example 2: Based on Example 1, in order to achieve a rotatable connection between the connecting rod 8 and the receiving tray 5, a connecting plate 7 is fixed at the bottom of the connecting rod 8. The connecting plate 7 has a circular plate structure and its diameter is larger than that of the connecting rod 8. The connecting plate 7 is rotatably connected in the connecting groove 6, which is opened on the surface of the receiving tray 5.
[0025] A connecting plate 7 is fixed to the bottom end of the connecting rod 8. The connecting plate 7 is rotatably connected to the larger diameter part of the connecting groove 6. The connecting groove 6 is opened on the surface of the receiving tray 5, thereby realizing the rotatable connection between the connecting rod 8 and the receiving tray 5.
[0026] Example 3: Based on Example 2, in order to increase the damping of the connecting rod 8 when it rotates, a pad 10 is fixed at the bottom of the locking block 9. The pad 10 has a rectangular plate structure. A spring groove 13 is opened at the top of the receiving tray 5. The spring groove 13 has a circular groove structure. A spring 14 is fixed in the spring groove 13. The top of the spring 14 abuts against the inner wall of the receiving tray mounting groove 4.
[0027] When the material receiving tray 5 is installed in the material receiving tray installation slot 4, in order to prevent the vibration during the operation of the double-barrel microwave rapid oven 1 from being transmitted to the connecting rod 8, and then the connecting rod 8 rotates by itself under the influence of vibration to align the clamping block 9 with the through hole 12, resulting in the accidental dropping of the material receiving tray 5. A gasket 10 is fixed at the bottom end of the clamping block 9. The gasket 10 is made of rubber material with a rough surface and high temperature resistance. The rough surface makes the friction between the gasket 10 and the tray 2 relatively large. At the same time, the spring 14 in the spring groove 13 in a compressed state generates a pair of opposite and equal-sized thrusts on the tray 2 and the material receiving tray 5 respectively under its own elastic force. This pair of thrusts presses the clamping block 9 and the gasket 10 tightly on the surface of the tray 2, increasing the friction between the clamping block 9 and the tray 2 and between the gasket 10 and the tray 2, increasing the friction force, making the damping force on the connecting rod 8 larger when it rotates, and thus preventing the connecting rod 8 from rotating by itself under the influence of vibration.
[0028] Embodiment 4: On the basis of Embodiment 3, in order to prevent the situation that the material receiving tray 5 is stuck in the material receiving tray installation slot 4 due to the influence of viscous exudates, a spring groove 13 is opened at the top end of the material receiving tray 5. The spring groove 13 is a circular groove structure, and a spring 14 is fixed in the spring groove 13. The top end of the spring 14 abuts against the inner wall of the material receiving tray installation slot 4.
[0029] When the exudates of food stain the contact surface between the inner wall of the material receiving tray installation slot 4 and the material receiving tray 5, it will generate viscosity on both the inner wall of the material receiving tray installation slot 4 and the material receiving tray 5. When the clamping block 9 is aligned with the through hole 12 and then the tray 2 is lifted upward, this viscosity easily causes the material receiving tray 5 to be stuck and move upward with the tray 2, so that it cannot smoothly exit from the material receiving tray installation slot 4. Therefore, a spring groove 13 is opened at the top end of the material receiving tray 5. When the material receiving tray 5 is installed in the material receiving tray installation slot 4, the spring 14 fixed in the spring groove 13 is in a compressed state. The compressed spring 14 applies a pair of opposite and equal-sized thrusts to the tray 2 and the material receiving tray 5 respectively. When the clamping block 9 is aligned with the through hole 12 and the tray 2 is lifted upward, under the combined action of the self-weight of the material receiving tray 5 and the thrust of the spring 14, the adsorption force brought by the viscosity of the exudates can be overcome, and the material receiving tray 5 can be withdrawn from the material receiving tray installation slot 4.
[0030] Embodiment 5: On the basis of Embodiment 4, in order to prevent the exudates from discharging from the side of the tray 2 and bypassing the material receiving tray 5, a flange 15 is fixed on the surface of the tray 2. The flange 15 is a "hui"-shaped plate structure.
[0031] A flange 15 is fixed at the top of the tray 2. When food exudate is pressed against the top of the tray 2 and spreads along the tray 2, the flange 15 can prevent the exudate from spreading further to the side of the tray 2, thereby preventing the food exudate from being discharged from the side of the tray 2.
[0032] In actual use, a receiving tray mounting groove 4 is opened at the bottom of the tray 2, and a receiving tray 5 is installed in the receiving tray mounting groove 4. Food is placed on top of the tray 2, and then the tray 2 is placed in the cooking chamber of the dual-tube microwave rapid oven 1. The food is cooked using the dual-tube microwave rapid oven 1. When the food oozes juices or oil, these oozes are discharged through the small hole 3 from the top of the tray 2 and drip into the receiving tray 5. After cooking, the tray 2 is removed from the dual-tube microwave rapid oven 1. Then, the connecting rod 8 is rotated so that the locking block 9 is aligned with the through hole 12. Then, the tray 2 is lifted upwards, and the locking block 9 passes through the through hole 12, passes through the connecting rod 8, and also exits from the connecting hole 11. The receiving tray 5 can then be removed from the oven. The receiving tray 5 can be easily removed from the mounting slot 4 for cleaning. After cleaning, the receiving tray 5 is placed back into the mounting slot 4. The connecting rod 8 is reinserted into the connecting hole 11, and the locking block 9 is passed through the through hole 12 again. Then, the connecting rod 8 is screwed on again so that the bottom end of the locking block 9 rests against the top of the tray 2. The receiving tray 5 can then be installed back into the mounting slot 4 for future use. This ensures that food exudates are caught by the receiving tray 5 and do not drip onto the inner wall of the cooking chamber of the dual-tube microwave oven 1. To clean food exudates, simply remove the tray 2 from the dual-tube microwave oven 1 and quickly remove the receiving tray 5 from the mounting slot 4. The tray 2 and the receiving tray 5 can be easily cleaned separately without being affected by the opening and internal space of the cooking chamber of the dual-tube microwave rapid oven 1, making the cleaning of exudates more convenient. A connecting plate 7 is fixed to the bottom end of the connecting rod 8, and the connecting plate 7 is rotatably connected to the larger diameter part of the connecting groove 6. The connecting groove 6 is formed on the surface of the receiving tray 5, thus achieving a rotatable connection between the connecting rod 8 and the receiving tray 5. When the receiving tray 5 is installed in the receiving tray mounting groove 4, to prevent the vibration of the dual-tube microwave rapid oven 1 from being transmitted to the connecting rod 8, the connecting rod 8 will rotate under the influence of vibration until the locking block 9 aligns with the through hole 12, thus preventing the receiving tray 5 from accidentally falling off. A pad 10 is fixed at the bottom of the locking block 9. The pad 10 is made of a rough and high-temperature resistant rubber material. The rough surface makes the friction between the pad 10 and the tray 2 greater. At the same time, the spring 14 in the spring groove 13 is in a compressed state. Under its own elasticity, it generates a pair of opposite and equal thrusts on the tray 2 and the receiving tray 5 respectively. This pair of thrusts makes the locking block 9 and the pad 10 pressed tightly on the surface of the tray 2, which increases the friction between the locking block 9 and the tray 2 and between the pad 10 and the tray 2. This increases the friction, which increases the damping when the connecting rod 8 rotates, thereby preventing the connecting rod 8 from rotating on its own under the influence of vibration.When food exudate adheres to the contact surface between the inner wall of the receiving tray mounting groove 4 and the receiving tray 5, it creates stickiness on both. When the locking block 9 aligns with the through hole 12 and the tray 2 is pulled upwards, this stickiness can cause the receiving tray 5 to become stuck and move upwards with the tray 2, preventing it from smoothly exiting the receiving tray mounting groove 4. Therefore, a spring groove 13 is provided at the top of the receiving tray 5. When the receiving tray 5 is installed in the receiving tray mounting groove 4, the spring 14 fixed in the spring groove 13 is in a compressed state. The compressed spring 14 exerts pressure on the tray... The tray 2 and the receiving tray 5 are each subjected to a pair of opposing but equal thrusts. When the locking block 9 aligns with the through hole 12 and the tray 2 is pulled upwards, the combined action of the weight of the receiving tray 5 itself and the thrust of the spring 14 overcomes the adhesive force caused by the stickiness of the exudate, allowing the receiving tray 5 to exit from the receiving tray mounting groove 4. A flange 15 is fixed at the top of the tray 2. When food exudate abuts against the top of the tray 2 and spreads along the tray 2, the flange 15 prevents the exudate from spreading further to the sides of the tray 2, thus preventing food exudate from being discharged from the sides of the tray 2.
[0033] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. Dual-tube microwave rapid oven, including: Double-tube microwave rapid oven (1), a tray (2) is slidably connected to the surface of the double-tube microwave rapid oven (1), and a number of groups of small holes (3) are formed on the surface of the tray (2). It is characterized in that: a receiving tray installation groove (4) is formed at the bottom end of the tray (2), and a receiving tray (5) is movably connected in the receiving tray installation groove (4). A connecting hole (1 connection hole (11) and a through hole (12) are formed on the surface of the tray (2). A connecting rod (8) is rotatably inserted into the connection hole (11). A clamping block (9) is fixed on the rod body of the connecting rod (8). The bottom end of the connecting rod (8) is rotatably connected in a connection groove (6), and the connection groove (6) is formed on the surface of the receiving tray (5).
2. The dual-tube microwave rapid oven according to claim 1, characterized in that: The connecting rod (8) has a circular rod structure, and the clamping block (9) has a wedge-shaped block structure. The clamping block (9) is movably inserted into the through hole (12).
3. The dual-tube microwave rapid oven according to claim 1, characterized in that: A connecting plate (7) is fixed at the bottom end of the connecting rod (8). The connecting plate (7) has a circular plate structure. The diameter of the connecting plate (7) is larger than the diameter of the connecting rod (8). The connecting plate (7) is rotatably connected in the connection groove (6).
4. The dual-tube microwave rapid oven according to claim 1, characterized in that: A gasket (10) is fixed at the bottom end of the clamping block (9). The gasket (10) has a rectangular plate structure.
5. The dual-tube microwave rapid oven according to claim 1, characterized in that: A spring groove (13) is formed at the top end of the receiving tray (5). The spring groove (13) has a circular groove structure. A spring (14) is fixed in the spring groove (13). The top end of the spring (14) abuts against the inner wall of the receiving tray installation groove (4).
6. The dual-tube microwave rapid oven according to claim 1, characterized in that: A flange (15) is fixed on the surface of the tray (2). The flange (15) has a "return" - shaped plate structure.