Modular integrated stove

Through modular design and innovative structure, the integrated stove has been solved by solving the problems of single functions, hot air hot and condensation water, and the diversity and reliability of steaming and baking functions are achieved, improving the user experience.

CN115479287BActive Publication Date: 2025-09-05HANGZHOU DE&E ELECTRICAL CO LTD
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Patent Information

Application Number
CN202211084573.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-06
Publication Date
2025-09-05
Estimated Expiration
2042-09-06

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    Figure CN115479287B_ABST
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Abstract

The present invention relates to a modular integrated stove, belonging to the field of kitchen appliances. The present invention includes a steaming and baking module, a stove module, and a range hood module. The stove module is arranged on the steaming and baking module, and the range hood module is arranged on the stove module. The steaming and baking module includes a cabinet body and a cabinet door. The lower end of the cabinet door is hingedly arranged on the cabinet body. The stove module is arranged on the cabinet body. The range hood module includes an opening and closing panel and a fixed panel. The opening and closing panel cooperates with the fixed panel. The fixed panel is arranged on the stove module. Its structural characteristics are: the steaming and baking module also includes a steamer liner, an oven liner, and an interlocking mechanism. The upper end of the cabinet door cooperates with the cabinet body through the interlocking mechanism. The steamer liner and the oven liner are both arranged on the cabinet body, and the steamer liner and the oven liner each cooperate with a cabinet door. The steaming and baking functions can be achieved simultaneously or individually by the steamer liner and the oven liner in the steaming and baking module, which can meet the various needs of users.
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Description

Technical Field

[0001] The invention relates to a modular integrated stove and belongs to the field of kitchen appliances. Background Art

[0002] At present, the integrated stove cabinets on the market are basically configured as steamers, ovens or steam-bake-in-one machines. When users want to steam and bake at the same time, it cannot be achieved, and the mode is relatively single; at the same time, the heat dissipation system of the oven in the prior art is basically: an exhaust system is installed on the top of the inner tank, and the system includes a circulating fan and its fixing plate, an exhaust hood, a seal, and exhaust holes on the front lining plate connected to the inner tank. When the circulating fan is turned on, the hot air in the inner tank is discharged from the exhaust holes of the front lining plate through the exhaust hood. The hot air discharged through the system directly contacts the oven door, resulting in a high temperature of the oven door. Users feel a noticeable hot feeling when touching the oven door and the oven handle, such as a new oven integrating light wave, steam and electromagnetic heating disclosed in application number 201922174068.2.

[0003] In addition, during the use of the steamer, a large amount of condensed water will be formed in the cavity. The surrounding condensed water will flow into the bottom of the cavity through the cavity wall, and the condensed water on the top will directly drip into the food, affecting the taste of the food. The current method of handling the condensed water in the steamer is: an air duct assembly and a condensation assembly are set on the top of the steamer inner tank, and the inner cavity is connected to the condensation assembly through an exhaust pipe. The condensation assembly is cooled by air supply through the air duct assembly. Part of the condensed water will flow back into the inner tank and evaporated for secondary use. This structure is complex, the material and performance requirements of the components are high, and the manufacturing cost is high; or a heating pipe is set on the upper part of the steamer inner tank cavity, and the upper condensed water is heated and evaporated by the heating pipe. This structure is set inside the cavity, which reduces the effective volume utilization rate of the cavity and may come into contact with food, thereby affecting the taste of food, such as the electric steamer disclosed in application No. 201820112187.8.

[0004] At the same time, in the range hood part of most integrated stoves in the prior art, the movable panel is opened and closed relative to the fixed panel by a cylinder. When the cylinder is used to drive the opening and closing panel, most of them are suitable for a side-suction range hood panel opening and closing mechanism disclosed in application 201920988244.3, in which the upper half of the panel on the front of the range hood is an opening and closing panel. Since the cylinder barrel of the cylinder is installed on the box body, the piston rod of the cylinder is connected to the opening and closing panel, so it occupies a larger space. Summary of the Invention

[0005] The purpose of the present invention is to overcome the above-mentioned deficiencies in the prior art and to provide a modular integrated stove with a reasonable structural design that can realize steaming and baking functions simultaneously or separately.

[0006] The present invention solves the above-mentioned problem by adopting a technical solution: a modular integrated stove comprises a steam-bake module, a cooker module, and a range hood module. The cooker module is mounted on the steam-bake module, and the range hood module is mounted on the cooker module. The steam-bake module comprises a cabinet, the cooker module is mounted on the cabinet, and the range hood module comprises an opening and closing panel and a fixed panel. The opening and closing panel cooperates with the fixed panel, and the fixed panel is mounted on the cooker module. The steam-bake module also comprises a cabinet door, a steamer liner, an oven liner, and an interlocking mechanism. The lower end of the cabinet door is hingedly mounted on the cabinet, and the upper end of the cabinet door cooperates with the cabinet via an interlocking mechanism. The steamer liner and the oven liner are both mounted on the cabinet, and each of the steamer liner and the oven liner cooperates with a cabinet door. The steamer liner and the oven liner in the steam-bake module can simultaneously or independently realize steaming and baking functions, thereby meeting various user needs.

[0007] Furthermore, the cabinet door includes two hinged plates, end covers, an inner glass door, a middle glass door, an outer glass door, an exhaust hole, a shutter and a cavity. The two hinged plates are symmetrically arranged, the end covers are arranged on the top of the hinged plates, the inner glass door is arranged on one side of the hinged plates, and the outer glass door is arranged on the other side of the hinged plates. A cavity is formed between the two hinged plates, the end covers, the inner glass door and the outer glass door, the middle glass door is arranged in the cavity, the exhaust hole is arranged on the end covers, the shutter is arranged on the hinged plates, and the outer glass door is provided with a handle. Heat dissipation holes are arranged on the end covers, and the hot air radiated to the inner glass door can enter the cavity through the heat dissipation holes on the end covers. A middle glass door is added in the middle of the cavity to block the hot air coming out of the heat dissipation holes on the end covers from reaching the outer glass door; shutters are provided on the sides of the hinged plate, and the hot air entering the cavity is radiated to the middle glass door and blocked by the middle glass door. The hot air can then be dissipated through the shutters to achieve the purpose of heat dissipation, which can effectively reduce the temperature of the cabinet door and reduce the hot feeling when the user uses it. The cabinet door can be opened and closed conveniently by providing a handle.

[0008] Furthermore, the steamer liner includes a steamer liner body, a steam generator, and a heating wire. The steam generator is disposed at the bottom of the steamer liner body, and the heating wire is disposed at the top of the steamer liner body. The heating wire covers the entire top of the steamer liner body. When the steamer liner is in operation, the heating wire heats the liner simultaneously, and condensed water on the top of the steamer liner body evaporates under the action of the heating wire. The provision of the heating wire effectively prevents the condensed water on the top from dripping onto the food, and the condensed water will re-form steam after evaporation. The steam generator is disposed at the bottom of the steamer liner body. Condensed water that flows through the cavity wall of the steamer liner body into the bottom of the cavity will flow into the steam generator and can be re-formed into steam by the steam generator.

[0009] Furthermore, the oven liner includes an oven liner body, an exhaust pipe connector, and an exhaust pipe. The exhaust pipe connector is disposed on a side wall of the oven liner body, and the exhaust pipe is connected to the exhaust pipe connector. Exhaust holes are provided on the side of the oven liner body, and the exhaust pipe connector and exhaust pipe are installed. The exhaust pipe is connected to an air duct for natural exhaust, effectively reducing the radiation of heat from the oven cavity onto the cabinet door.

[0010] Furthermore, the cabinet body is provided with a sealing groove, on which a sealing ring is installed, and the lips of the steamer liner and the oven liner are both engaged with the sealing ring. The lips are provided at the front of the steamer liner and the oven liner, and a circular groove is formed at the front of the cabinet body for installing the sealing ring.

[0011] Furthermore, the inner glass door, the middle glass door and the outer glass door are arranged in sequence from the inside to the outside.

[0012] Furthermore, a communication connector and a power connector are provided on the top of the cabinet.

[0013] Furthermore, the rear parts of the steamer inner body and the oven inner body are both provided with thermal insulation cotton to play a role in heat preservation.

[0014] Furthermore, the exhaust pipe is connected to the air duct, which is used for exhaust and can effectively reduce the radiation of the hot air in the cavity to the cabinet door.

[0015] Furthermore, the interlock mechanism includes a No. 1 spring, a door hook, an interlock bracket, a lock core, a No. 2 spring, a driving member, a locking rod and a micro switch, the micro switch is provided with a contact, the lock core and the driving member are both provided on the interlock bracket, the locking rod is provided on the driving member, the door hook cooperates with the contact, the lock core cooperates with the door hook, the locking rod cooperates with the lock core, one end of the door hook is connected to one end of the No. 1 spring, the other end of the No. 1 spring is connected to the cabinet door, the lock core is connected to one end of the No. 2 spring, and the other end of the No. 2 spring is connected to the interlock bracket. When locking, the interlock mechanism can clamp the door hook through the lock core to prevent the door hook from separating from the lock core, making the locking more secure. The No. 1 limit block and the No. 2 limit block can be used to limit the extreme positions of the unlocked state and the locked state of the lock core; when the door hook contact of the door hook is inserted into the interlock bracket through the guide surface, there is a certain height between the door hook contact and the contact, and the door hook can be pulled by the No. 1 spring to make the door hook contact contact with the contact, thereby triggering the micro switch; when unlocking, the lock rod is driven by the driving member to separate the lock rod from the lock core, and the lock core can be reset by the No. 2 spring.

[0016] Furthermore, a No. 1 limit block and a No. 2 limit block are provided on the interlocking bracket, and the lock core contacts the No. 1 limit block or the No. 2 limit block. When the lock core contacts the No. 1 limit block, the door hook is in an unlocked state, and when the lock core contacts the No. 2 limit block, the door hook is in a locked state.

[0017] Furthermore, one end of the door hook is rotatably mounted on the cabinet door, and the other end of the door hook is provided with a door hook contact, which contacts the contact point. The door hook contact is arranged in an arc-shaped structure to avoid jamming during locking and unlocking. When the door hook contact contacts the contact point, a signal is transmitted to the computer board via a micro switch, which controls a driving member to drive the lock rod to extend and push the lock cylinder, thereby engaging the lock cylinder with the door hook to achieve the locking function.

[0018] Furthermore, one end of the lock core is rotatably mounted on the interlock bracket, and the other end of the lock core is provided with a lock core slot, which cooperates with the door hook contact, and the outer wall of the lock core slot contacts the lock rod, and the interlock bracket is provided with a guide surface, which cooperates with the door hook contact. By providing the guide surface, when the door body is closed on the cabinet body, it is convenient to snap the door door onto the interlock bracket. In the locked state, the driving member drives the lock rod to tighten the lock core, so that the lock core contacts the No. 1 limit block and then contacts the No. 2 limit block. At the same time, the lock core slot clamps the upper part of the door hook contact to prevent the door hook from separating from the lock core.

[0019] Furthermore, the driving member is a motor.

[0020] Furthermore, the range hood module also includes an opening and closing mechanism, which includes a power assembly, a connecting base, a connecting rod, a stopper, a panel bracket, a slide plate, and a slide. One end of the connecting rod is hinged to the connecting base, and the other end of the connecting rod is hinged to the panel bracket. The stopper and slide plate are both mounted on the panel bracket, and the stopper is provided with a silicone pad. The slide is provided on the slide plate. The power assembly is mounted on the connecting base, and the power assembly cooperates with the slide. The connecting base is connected to the fixed panel, and the panel bracket is connected to the opening and closing panel. This opening and closing mechanism can control the opening and closing of the opening and closing panel through the power assembly, saving installation space and ensuring stable operation.

[0021] Furthermore, the power assembly includes a power bracket, a drive motor, a cantilever, a roller, a first limit rod and a second limit rod, the power bracket is arranged on a connecting base, the drive motor is arranged on the power bracket, one end of the cantilever is connected to the output shaft of the drive motor, the roller is arranged at the other end of the cantilever, and the roller is located in a slide groove, the first limit rod and the second limit rod are both arranged on the power bracket, the cantilever is located between the first limit rod and the second limit rod, when the cantilever contacts the first limit rod, the opening and closing panel is in a closed state, and when the cantilever contacts the second limit rod, the opening and closing panel is in an open state. Driven by the drive motor, the opening and closing panel can be flexibly controlled and operated stably, and the setting of the first limit rod and the second limit rod can realize the limitation of the opening and closing panel in the closed state and the open state.

[0022] Furthermore, the silicone pads are in contact with the fixed panel. Arranging the silicone pads on the stopper allows the silicone pads at both ends of the panel bracket to contact the fixed panel when the opening and closing panel is driven to open by the power assembly, thereby acting as a limiter and ensuring that both ends of the panel bracket are in a horizontal state, thereby ensuring that the opening and closing panel is parallel to the fixed panel when opened.

[0023] Compared with the existing technology, the present invention has the following advantages: the modular integrated stove includes a steaming and baking module, a stove module, and a range hood module. The steaming and baking functions can be realized simultaneously or separately through the steamer inner liner and the oven inner liner in the steaming and baking module, which can meet the various needs of users. By arranging exhaust holes, shutters, cavities and other structures on the cabinet door, the hot air generated during the operation can flow into the cavity through the heat dissipation holes and then be discharged to the outside. This can effectively reduce the temperature of the cabinet door and reduce the hot feeling during use by users.

[0024] The smoke generated in the oven inner body can be discharged through the exhaust pipe to reduce the radiation of the hot air in the cavity of the oven inner body to the cabinet door; a heating wire is arranged at the top outside the cavity of the steamer inner body, which can make the condensed water evaporate under the action of the heating wire to prevent the condensed water from dripping onto the food. The steam generator is arranged at the lowest point at the bottom of the steamer inner body, which can maximize the effective volume utilization rate of the cavity of the steamer inner body.

[0025] Setting the door hook contact of the interlocking mechanism in an arc-shaped structure can avoid jamming during the locking and unlocking process, thereby improving the reliability of the interlocking mechanism. A lock core slot is set at the other end of the lock core. When in the locked state, the door hook contact can be inserted into the lock core slot to avoid unhooking.

[0026] The opening and closing mechanism is easy to install and occupies a small space. When the opening and closing panel is driven to rotate, the opening and closing panel is set in the middle position of the fixed panel. The opening or closing of the opening and closing panel is controlled by the driving motor, that is, the pushing and pulling of the opening and closing panel can be achieved through four connecting rods. By setting a No. 1 limit rod, the position of the opening and closing panel can be limited when it is closed, and by setting a No. 2 limit rod, the position of the opening and closing panel can be limited when it is opened. The opening and closing mechanism is simple, easy to maintain, stable in operation, and highly reliable. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 It is a schematic diagram of the three-dimensional structure of a modular integrated stove according to an embodiment of the present invention.

[0028] Figure 2 It is a schematic diagram of the three-dimensional structure of a modular integrated stove according to an embodiment of the present invention.

[0029] Figure 3 It is a schematic diagram of the three-dimensional structure of the steaming and baking module according to an embodiment of the present invention.

[0030] Figure 4 Schematic diagram of the internal structure of the steaming and baking module according to an embodiment of the present invention.

[0031] Figure 5 Schematic diagram of the internal structure of the steaming and baking module according to an embodiment of the present invention.

[0032] Figure 6 It is a schematic diagram of the three-dimensional structure of the cabinet door according to an embodiment of the present invention.

[0033] Figure 7 It is a left-side structural schematic diagram of a cabinet door according to an embodiment of the present invention.

[0034] Figure 8 It is a schematic diagram of the three-dimensional structure of the oven inner container according to an embodiment of the present invention.

[0035] Figure 9 It is a schematic diagram of the three-dimensional structure of the steamer inner container according to an embodiment of the present invention.

[0036] Figure 10 2 is a schematic diagram of the installation structure of the interlocking mechanism according to an embodiment of the present invention.

[0037] Figure 11 2 is a schematic structural diagram of the interlocking mechanism in the unlocked state according to an embodiment of the present invention.

[0038] Figure 12 2 is a schematic structural diagram of the interlocking mechanism in a locked state according to an embodiment of the present invention.

[0039] Figure 13 It is a schematic diagram of the three-dimensional structure of the interlocking mechanism of an embodiment of the present invention.

[0040] Figure 14 It is a schematic diagram of the installation structure of the opening and closing mechanism of an embodiment of the present invention when closed.

[0041] Figure 15 It is a schematic diagram of the three-dimensional structure of the opening and closing mechanism of the embodiment of the present invention when it is closed.

[0042] Figure 16 It is a schematic diagram of the installation structure when the opening and closing mechanism of an embodiment of the present invention is opened.

[0043] Figure 17 It is a schematic diagram of the three-dimensional structure of the opening and closing mechanism of the embodiment of the present invention when it is opened.

[0044] Figure 18 It is a schematic diagram of the three-dimensional structure of the opening and closing mechanism of an embodiment of the present invention.

[0045] Figure 19 It is a schematic diagram of the exploded structure of the opening and closing mechanism of an embodiment of the present invention.

[0046] In the picture: Steaming and baking module A, stove module B, range hood module C,

[0047] Cabinet A1, cabinet door A2, steamer liner A3, oven liner A4, interlocking mechanism A5,

[0048] Sealing groove A11, sealing ring A12, communication connector A13, power connector A14,

[0049] Hinge plate A21, end cover A22, inner glass door A23, middle glass door A24, outer glass door A25, exhaust hole A26, shutter A27, cavity A28, handle A29,

[0050] Steamer liner A31, steam generator A32, heating wire A33,

[0051] Oven inner body A41, exhaust pipe joint A42, exhaust pipe A43,

[0052] No. 1 spring A51, door hook A52, interlock bracket A53, lock core A54, No. 2 spring A55, drive part A56, lock rod A57, micro switch A58, contact A59, No. 1 limit block A510, No. 2 limit block A511, door hook contact A512, lock core slot A513, guide surface A514,

[0053] Opening and closing panel C1, fixed panel C2, opening and closing mechanism C3,

[0054] Power assembly C31, connecting base C32, connecting rod C33, stopper C34, panel bracket C35, slide plate C36, slide C37, power bracket C38, drive motor C39, cantilever C310, roller C311, silicone pad C312, limit rod No. 1 C313, limit rod No. 2 C314. DETAILED DESCRIPTION

[0055] The present invention will be further described in detail below with reference to the accompanying drawings and through examples. The following examples are intended to explain the present invention but the present invention is not limited to the following examples.

[0056] Example

[0057] See also Figures 1 to 19As shown, it should be noted that the structures, proportions, sizes, etc. illustrated in the drawings of this specification are only used to match the contents disclosed in the specification for people familiar with this technology to understand and read, and are not used to limit the limiting conditions for the implementation of the present invention. Therefore, they have no substantial technical significance. Any modification of the structure, change in the proportional relationship or adjustment of the size should still fall within the scope of the technical content disclosed by the present invention without affecting the efficacy and purpose that can be achieved by the present invention. At the same time, if there are references to terms such as "upper", "lower", "left", "right", "middle" and "one" in this specification, they are only for the convenience of description and are not used to limit the scope of the implementation of the present invention. Changes or adjustments in their relative relationships should also be regarded as the scope of the implementation of the present invention without substantially changing the technical content.

[0058] The modular integrated stove in this embodiment includes a steam-bake module A, a cooker module B, and a range hood module C. Cooker module B is mounted on steam-bake module A, while range hood module C is mounted on cooker module B. Steam-bake module A can be configured to perform independent steaming and baking functions, or simultaneously, depending on user needs, through the steamer liner A3 and oven liner A4. The maximum capacity of the steamer liner A3 and oven liner A4 is 96L.

[0059] The steaming and baking module A in this embodiment includes a cabinet A1, a cabinet door A2, a steamer liner A3, an oven liner A4 and an interlocking mechanism A5. The lower end of the cabinet door A2 is hingedly set on the cabinet A1, and the upper end of the cabinet door A2 is coordinated with the cabinet A1 through the interlocking mechanism A5. The steamer liner A3 and the oven liner A4 are both set on the cabinet A1, and the steamer liner A3 and the oven liner A4 are each coordinated with a cabinet door A2. The stove module B is set on the cabinet A1.

[0060] The range hood module C in this embodiment includes an opening and closing panel C1, a fixed panel C2 and an opening and closing mechanism C3. The opening and closing panel C1 cooperates with the fixed panel C2 through the opening and closing mechanism C3. The fixed panel C2 is set on the stove module B.

[0061] The cabinet door A2 in this embodiment includes two hinged plates A21, an end cover A22, an inner glass door A23, a middle glass door A24, an outer glass door A25, an exhaust hole A26, a shutter A27 and a cavity A28. The two hinged plates A21 are symmetrically arranged, the end cover A22 is arranged on the top of the hinged plate A21, the inner glass door A23 is arranged on one side of the hinged plate A21, and the outer glass door A25 is arranged on the other side of the hinged plate A21.

[0062] In this embodiment, a cavity A28 is formed between the two hinged plates A21, the end cover A22, the inner glass door A23 and the outer glass door A25. The middle glass door A24 is arranged in the cavity A28. The inner glass door A23, the middle glass door A24 and the outer glass door A25 are arranged in sequence from the inside to the outside. The exhaust hole A26 is provided on the end cover A22, the shutter A27 is provided on the hinged plate A21, and the outer glass door A25 is provided with a handle A29.

[0063] Exhaust holes A26 are arranged on the end cover A22. When the hot air radiated onto the inner glass door A23 flows upward, it can enter the cavity A28 through the exhaust holes A26. A middle glass door A24 is added in the middle of the cavity A28 to block the hot air discharged from the exhaust holes A26 of the end cover A22 from reaching the outer glass door A25. Shutters A27 are provided on the side of the hinged plate A21. The hot air entering the cavity A28 can be discharged to the outside through the shutters A27, effectively reducing the temperature of the cabinet door A2 and reducing the hot feeling when the user uses it.

[0064] The steamer liner A3 in this embodiment includes a steamer liner body A31, a steam generator A32 and a heating wire A33. The steam generator A32 is arranged at the bottom of the steamer liner body A31, and the heating wire A33 is arranged at the top of the steamer liner body A31.

[0065] A heating wire A33 is provided on the top of the steamer inner body A31, covering the entire top of the steamer inner body A31. When the steamer inner body A31 is working, the heating wire A33 is heated at the same time, and the condensed water on the top of the cavity of the steamer inner body A31 evaporates under the action of the heating wire A33. The provision of the heating wire A33 can effectively prevent the condensed water on the top from dripping into the food. After the condensed water evaporates, it will form steam again.

[0066] A steam generator A32 is arranged at the bottom of the steamer inner body A31. Condensed water flowing into the bottom of the cavity of the steamer inner body A31 through the side wall of the cavity of the steamer inner body A31 will flow into the steam generator A32, and can be converted into steam again by the steam generator A32, so as to effectively treat the condensed water generated during the use of the steamer inner body A31 and can be reused, fully saving energy, and being safe and reliable. The heating wire A33 is arranged at the top of the outer side of the cavity of the steamer inner body A31, and the steam generator A32 is arranged at the lowest point of the bottom of the steamer inner body A31, so as to maximize the effective volume utilization rate of the cavity of the steamer inner body A31.

[0067] The oven liner A4 in this embodiment includes an oven liner body A41, an exhaust pipe joint A42 and an exhaust pipe A43. The exhaust pipe joint A42 is arranged on the side wall of the oven liner body A41, the exhaust pipe A43 is connected to the exhaust pipe joint A42, and the exhaust pipe A43 is connected to the air duct. The rear of the steamer liner body A31 and the oven liner body A41 are both provided with thermal insulation cotton.

[0068] An exhaust hole is opened on the side wall of the oven inner body A41, and an exhaust pipe joint A42 and an exhaust pipe A43 are installed. The exhaust pipe A43 is connected to the air duct to achieve natural exhaust of hot air, which can effectively reduce the radiation of hot air in the cavity of the oven inner body A41 to the cabinet door A2.

[0069] In this embodiment, the cabinet A1 is provided with a sealing groove A11, on which a sealing ring A12 is installed. The lips of the steamer liner A3 and the oven liner A4 both cooperate with the sealing ring A12. The top of the cabinet A1 is provided with a communication connector A13 and a power connector A14.

[0070] The steaming and baking module A can be connected to other stove modules B and the range hood module C through the communication connector A13 and the power connector A14. The steamer liner A3 and the oven liner A4 are laser welded. The steamer liner A3 and the oven liner A4 are installed on the cabinet A1, and the front of the steamer liner A3 and the oven liner A4 are set towards the cabinet door A2, and the cabinet door A2 is hinged on the cabinet A1; the front of the steamer liner A3 and the oven liner A4 are provided with a lip, and a sealing groove A11 is provided on the front of the cabinet A1. A sealing ring A12 is provided in the sealing groove A11, and the sealing ring A12 seals the lip and the sealing groove A11.

[0071] The interlocking mechanism A5 in this embodiment includes a No. 1 spring A51, a door hook A52, an interlocking bracket A53, a lock core A54, a No. 2 spring A55, a driving member A56, a locking rod A57 and a micro switch A58. The micro switch A58 is provided with a contact A59. The lock core A54 and the driving member A56 are both provided on the interlocking bracket A53. The locking rod A57 is provided on the driving member A56. The driving member A56 is a motor.

[0072] In this embodiment, the door hook A52 cooperates with the contact A59, the lock core A54 cooperates with the door hook A52, the lock rod A57 cooperates with the lock core A54, one end of the door hook A52 is connected to one end of the No. 1 spring A51, the other end of the No. 1 spring A51 is connected to the cabinet door A2, the lock core A54 is connected to one end of the No. 2 spring A55, and the other end of the No. 2 spring A55 is connected to the interlocking bracket A53.

[0073] The interlocking bracket A53 in this embodiment is provided with a No. 1 limit block A510 and a No. 2 limit block A511, and the lock core A54 is in contact with the No. 1 limit block A510 or the No. 2 limit block A511. When the lock core A54 is in contact with the No. 1 limit block A510, the door hook A52 is in an unlocked state; when the lock core A54 is in contact with the No. 2 limit block A511, the door hook A52 is in a locked state.

[0074] In this embodiment, one end of the door hook A52 is rotatably set on the cabinet door A2, and the other end of the door hook A52 is provided with a door hook contact A512, which contacts the contact A59. One end of the lock core A54 is rotatably set on the interlock bracket A53, and the other end of the lock core A54 is provided with a lock core slot A513, which cooperates with the door hook contact A512. The outer wall of the lock core slot A513 contacts the lock rod A57, and a guide surface A514 is provided on the interlock bracket A53, which cooperates with the door hook contact A512.

[0075] The door hook A52 and the first spring A51 in the interlocking mechanism A5 are installed on the cabinet door A2, the lock core A54, the driving member A56, and the micro switch A58 are installed on the interlocking bracket A53, and the second spring A55 is installed on the lock core A54 and the interlocking bracket A53. The second spring A55 is used to pull the lock core A54 to contact the first limit block A510. The interlocking bracket A53 is installed on the cabinet body A1. The cabinet door A2 is connected to the cabinet body A1 for opening and closing. When the cabinet door A2 is closed, Door hook A52 enters interlock bracket A53. Spring A51 pulls door hook A52 back to its original position, contacting contact A59 on microswitch A58, triggering the closing signal for cabinet door A2. Driver A56 activates, and locking rod A57 extends, driving lock cylinder A54 to contact stopper A511, locking cabinet door A2 to cabinet body A1. Driver A56 is de-energized, locking rod A57 resets, and lock cylinder A54 rotates with spring A55 and contacts stopper A510, unlocking door hook A52. Microswitch A58 is KW3A, and the computer board and motor are both existing technology.

[0076] The opening and closing mechanism C3 in this embodiment includes a power component C31, a connecting base C32, a connecting rod C33, a stopper C34, a panel bracket C35, a slide plate C36 and a slide C37. One end of the connecting rod C33 is hinged to the connecting base C32, and the other end of the connecting rod C33 is hinged to the panel bracket C35. The stopper C34 and the slide plate C36 are both arranged on the panel bracket C35. A silicone pad C312 is provided on the stopper C34, and the silicone pad C312 is in contact with the fixed panel C2. The slide C37 is provided on the slide plate C36. The power component C31 is provided on the connecting base C32, and the power component C31 cooperates with the slide C37. The connecting base C32 is connected to the fixed panel C2, and the panel bracket C35 is connected to the opening and closing panel C1.

[0077] The power assembly C31 in this embodiment includes a power bracket C38, a drive motor C39, a cantilever C310, a roller C311, a first limit rod C313 and a second limit rod C314. The power bracket C38 is arranged on the connecting base C32, the drive motor C39 is arranged on the power bracket C38, one end of the cantilever C310 is connected to the output shaft of the drive motor C39, the roller C311 is arranged at the other end of the cantilever C310, and the roller C311 is located in the slide groove C37, the first limit rod C313 and the second limit rod C314 are both arranged on the power bracket C38, the cantilever C310 is located between the first limit rod C313 and the second limit rod C314, when the cantilever C310 contacts the first limit rod C313, the opening and closing panel C1 is in a closed state, and when the cantilever C310 contacts the second limit rod C314, the opening and closing panel C1 is in an open state. Among them, the drive motor C39 is existing technology.

[0078] The four connecting rods C33 are connected to the connecting base C32 through sleeves and screws. After the connection, the connecting rods C33 can rotate. The slide plate C36 is connected to the panel bracket C35 with screws, and then the panel bracket C35 is connected to the connecting rods C33 through the shaft sleeve, the block C34 and the screws, so as to realize the translational movement of the panel bracket C35. The power component C31 is installed on the connecting base C32, and the roller C311 is inserted into the slide C37 with a waist-shaped structure on the slide plate C36.

[0079] The opening and closing panel C1 is made of glass or stainless steel. The panel bracket C35 is pasted or welded to the back of the opening and closing panel C1. When the drive motor C39 rotates, the cantilever C310 rotates to the second limit rod C314, and drives the slide plate C36 through the roller C311 to move the opening and closing panel C1 forward relative to the fixed panel C2. The block C34 ensures the flatness of the opening and closing panel C1 after opening. The cantilever C310 rotates to the first limit rod C313, and drives the slide plate C36 through the roller C311 to move the opening and closing panel C1 backward, thereby closing the opening and closing panel C1.

[0080] In addition, it should be noted that the shapes and names of the parts and components of the specific embodiments described in this specification may be different, and the above content described in this specification is only an example of the structure of the present invention. Any equivalent changes or simple changes made based on the structure, features and principles described in the patent concept of the present invention are included in the protection scope of the patent of the present invention. Those skilled in the art of the technology to which the present invention belongs can make various modifications or additions to the specific embodiments described or replace them in a similar manner. As long as they do not deviate from the structure of the present invention or exceed the scope defined by the claims, they should all fall within the protection scope of the present invention.

Claims

1. A modular integrated stove, comprising a steam-bake module (A), a stove module (B), and a range hood module (C), wherein the stove module (B) is arranged on the steam-bake module (A), and the range hood module (C) is arranged on the stove module (B), wherein the steam-bake module (A) comprises a cabinet (A1), and the stove module (B) is arranged on the cabinet (A1), and the range hood module (C) comprises an opening and closing panel (C1) and a fixed panel (C2), wherein the opening and closing panel (C1) cooperates with the fixed panel (C2), and the fixed panel (C2) is arranged on the stove module (B), characterized in that: The steaming and baking module (A) further comprises a cabinet door (A2), a steamer liner (A3), an oven liner (A4) and an interlocking mechanism (A5); the lower end of the cabinet door (A2) is hingedly arranged on the cabinet body (A1); the upper end of the cabinet door (A2) cooperates with the cabinet body (A1) via the interlocking mechanism (A5); the steamer liner (A3) and the oven liner (A4) are both arranged on the cabinet body (A1), and the steamer liner (A3) and the oven liner (A4) are each cooperated with one cabinet door (A2); the steamer liner (A3) comprises a steamer liner body (A31), a steam generator (A32) and a heating wire (A33), wherein the steam generator (A32) is arranged at the bottom of the steamer inner body (A31), and the heating wire (A33) is arranged at the top of the steamer inner body (A31); the oven inner body (A4) comprises an oven inner body (A41), an exhaust pipe joint (A42) and an exhaust pipe (A43), wherein the exhaust pipe joint (A42) is arranged on the side wall of the oven inner body (A41), and the exhaust pipe (A43) is connected to the exhaust pipe joint (A42); The interlocking mechanism (A5) includes a No. 1 spring (A51), a door hook (A52), an interlocking bracket (A53), a lock core (A54), a No. 2 spring (A55), a driving member (A56), a locking rod (A57) and a micro switch (A58). The micro switch (A58) is provided with a contact (A59). The lock core (A54) and the driving member (A56) are both provided on the interlocking bracket (A53). The locking rod (A57) is provided on the driving member (A56). The door hook (A52) cooperates with the contact (A59), the lock core (A54) cooperates with the door hook (A52), the lock rod (A57) cooperates with the lock core (A54), one end of the door hook (A52) is connected to one end of the No. 1 spring (A51), the other end of the No. 1 spring (A51) is connected to the cabinet door (A2), the lock core (A54) is connected to one end of the No. 2 spring (A55), and the other end of the No. 2 spring (A55) is connected to the interlocking bracket (A53); One end of the lock core (A54) is rotatably arranged on the interlock bracket (A53), and the other end of the lock core (A54) is provided with a lock core slot (A513), and the lock core slot (A513) cooperates with the door hook contact (A512). The outer wall of the lock core slot (A513) contacts the lock rod (A57), and the interlock bracket (A53) is provided with a guide surface (A514), and the guide surface (A514) cooperates with the door hook contact (A512).

2. The modular integrated stove according to claim 1, characterized in that: The cabinet door (A2) comprises two hinged plates (A21), an end cover (A22), an inner glass door (A23), a middle glass door (A24), an outer glass door (A25), an exhaust hole (A26), a shutter (A27) and a cavity (A28). The two hinged plates (A21) are symmetrically arranged, the end cover (A22) is arranged on the top of the hinged plate (A21), the inner glass door (A23) is arranged on one side of the hinged plate (A21), and the outer glass door (A25) is arranged on the other side of the hinged plate (A21). ) is arranged on the other side of the hinged plate (A21), a cavity (A28) is formed between the two hinged plates (A21), the end cover (A22), the inner glass door (A23) and the outer glass door (A25), the middle glass door (A24) is arranged in the cavity (A28), the exhaust hole (A26) is arranged on the end cover (A22), the shutter (A27) is arranged on the hinged plate (A21), and the outer glass door (A25) is provided with a handle (A29).

3. The modular integrated stove according to claim 1, characterized in that: The cabinet (A1) is provided with a sealing groove (A11), a sealing ring (A12) is installed on the sealing groove (A11), the lips of the steamer liner (A3) and the oven liner (A4) are both matched with the sealing ring (A12), and the top of the cabinet (A1) is provided with a communication connector (A13) and a power connector (A14).

4. The modular integrated stove according to claim 2, characterized in that: The inner glass door (A23), the middle glass door (A24) and the outer glass door (A25) are arranged in sequence from the inside to the outside.

5. The modular integrated stove according to claim 1, characterized in that: A first limiting block (A510) and a second limiting block (A511) are provided on the interlocking bracket (A53), and the lock core (A54) contacts the first limiting block (A510) or the second limiting block (A511).

6. The modular integrated stove according to claim 1, characterized in that: One end of the door hook (A52) is rotatably arranged on the cabinet door (A2), and the other end of the door hook (A52) is provided with a door hook contact (A512), and the door hook contact (A512) is in contact with the contact point (A59).

7. The modular integrated stove according to claim 1, characterized in that: The range hood module (C) further comprises an opening and closing mechanism (C3), the opening and closing mechanism (C3) comprising a power assembly (C31), a connecting base (C32), a connecting rod (C33), a stopper (C34), a panel bracket (C35), a slide plate (C36) and a slide (C37), one end of the connecting rod (C33) being hinged to the connecting base (C32), the other end of the connecting rod (C33) being hinged to the panel bracket (C35), the stopper (C34) and the slide plate (C36) being hinged to the panel bracket (C35), The groove plates (C36) are all arranged on the panel bracket (C35), the stop block (C34) is provided with a silicone pad (C312), the slide groove (C37) is arranged on the slide groove plate (C36), the power component (C31) is arranged on the connecting base (C32), and the power component (C31) cooperates with the slide groove (C37), the connecting base (C32) is connected to the fixed panel (C2), and the panel bracket (C35) is connected to the opening and closing panel (C1).

8. The modular integrated stove according to claim 7, characterized in that: The power assembly (C31) includes a power bracket (C38), a drive motor (C39), a cantilever (C310), a roller (C311), a first limit rod (C313) and a second limit rod (C314). The power bracket (C38) is arranged on the connecting base (C32), the drive motor (C39) is arranged on the power bracket (C38), one end of the cantilever (C310) is connected to the output shaft of the drive motor (C39), the roller (C311) is arranged at the other end of the cantilever (C310), and the roller (C311) is located in the slide groove (C37). The first limit rod (C313) and the second limit rod (C314) are both arranged on the power bracket (C38), and the cantilever (C310) is located between the first limit rod (C313) and the second limit rod (C314).

Citation Information

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