WO2017084437A1 - 纯蒸炉 - Google Patents

纯蒸炉 Download PDF

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Publication number
WO2017084437A1
WO2017084437A1 PCT/CN2016/100383 CN2016100383W WO2017084437A1 WO 2017084437 A1 WO2017084437 A1 WO 2017084437A1 CN 2016100383 W CN2016100383 W CN 2016100383W WO 2017084437 A1 WO2017084437 A1 WO 2017084437A1
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WO
WIPO (PCT)
Prior art keywords
water
cavity
bottom plate
guiding
partition
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2016/100383
Other languages
English (en)
French (fr)
Inventor
刘辉
黄志飞
邱向阳
王拜军
胡志雄
刘蕾
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Midea Group Co Ltd
Guangdong Midea Kitchen Appliances Manufacturing Co Ltd
Original Assignee
Midea Group Co Ltd
Guangdong Midea Kitchen Appliances Manufacturing Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201520940921.6U external-priority patent/CN205197754U/zh
Priority claimed from CN201520940973.3U external-priority patent/CN205197756U/zh
Priority claimed from CN201510819093.5A external-priority patent/CN105326341B/zh
Priority claimed from CN201510812966.XA external-priority patent/CN105326340B/zh
Application filed by Midea Group Co Ltd, Guangdong Midea Kitchen Appliances Manufacturing Co Ltd filed Critical Midea Group Co Ltd
Publication of WO2017084437A1 publication Critical patent/WO2017084437A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J27/00Cooking-vessels
    • A47J27/04Cooking-vessels for cooking food in steam; Devices for extracting fruit juice by means of steam ; Vacuum cooking vessels
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J36/00Parts, details or accessories of cooking-vessels

Definitions

  • the present invention relates to the field of household appliances, and more particularly to a pure steam furnace.
  • the inner surface of the cavity will form condensed water. If the condensed water accumulated in the cavity is not discharged in time, it will easily flow out from the cavity to the outside of the cavity, and the discharged water is easily spilled into the pure steaming furnace. Internal and / or surrounding, on the one hand, water spilled into the interior of the pure steam furnace will have an adverse effect on the electrical components of the pure steam furnace; on the other hand, the water spilled around the pure steaming furnace will cause a cleaning burden on the user.
  • the present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the invention needs to provide a pure steam furnace.
  • a pure steaming furnace includes a cavity and a water receiving assembly.
  • the cavity includes a bottom plate that defines a floor drain.
  • the water receiving assembly includes a water guiding chamber, a water returning member and a water tank, wherein the water guiding chamber is disposed corresponding to the floor drain port, and communicates with the inside of the cavity through the floor drain port, the water guiding cavity is opened first
  • the water outlet is corresponding to the first water outlet, and the water returning member is provided with a second water outlet, the water tank is provided with a water inlet, and the second water outlet is connected to the water inlet.
  • the pure steam furnace includes a partition and a base disposed between the base and the bottom plate.
  • the water guiding cavity is disposed on the partition plate and located between the partition plate and the bottom plate, the partition plate is provided with a first through hole, the first A through hole communicates with the first water outlet and the water returning member.
  • the water return member and the water tank are disposed on the base.
  • the water return member and the water guiding cavity are both L-shaped.
  • the water tank includes a water receiving portion and a water storage portion, and the water receiving portion is spaced apart from the water storage portion.
  • the water inlet is provided with the water inlet.
  • the pure steam furnace includes a water pump and an evaporator assembly that connects the water storage portion and the evaporator assembly through a water passage for injecting water vapor into the chamber.
  • the water pump is disposed on the baffle and on the same side of the baffle as the water tank.
  • the evaporator assembly includes an evaporator and a connector.
  • the cavity includes a side panel that is coupled to the bottom plate.
  • the evaporator includes an air outlet portion, the connecting member is fixed to the air outlet portion, and the connecting member is provided with an water outlet pipe, and the water outlet pipe is disposed corresponding to the water returning member, and the connecting member abuts on a surface of the side plate.
  • the pure steaming furnace includes a support frame fixed to the side plate and outside the cavity, and the connecting member is embedded on the support frame.
  • the pure steaming furnace includes a water guiding member corresponding to a joint of the bottom plate and the side plate and disposed on the partition, the water guiding member is located at the partition and the bottom plate between.
  • the water guiding member is provided with a water guiding water outlet, and the water guiding water outlet is in communication with the water returning member.
  • the water guiding member has a strip shape, and a length direction of the water guiding member extends along a joint of the bottom plate and the side plate, and a connection between the bottom plate and the side plate is positive on the water guiding member
  • the projection is located in the water guide.
  • the partition includes a flange, and the joint of the bottom plate and the side plate abuts the water guide on the same side of the flange.
  • a pure steaming furnace includes a cavity, the cavity includes a bottom plate, the bottom plate is provided with a bottom plate drain port, and a water receiving assembly, the water receiving assembly includes a water guiding cavity, a water returning member and a water tank.
  • the water guiding chamber is disposed corresponding to the bottom drain port, and communicates with the inside of the cavity through the bottom drain port, the water guiding cavity is connected with the water returning member, and the water returning member is provided with a water return hole, and the water tank is opened a water inlet, the water tank is detachably disposed on the pure steaming furnace; a water valve disposed on the water returning member, the water valve including a sealing member, the sealing member sealing the back when the water tank is in the first position a water hole, when the water tank moves from the first position to the second position, the water tank drives the sealing member to open the sealing member to the water return hole, and the water return hole communicates with the water inlet.
  • the pure steaming furnace includes a partition and a base disposed between the base and the bottom plate; the water guiding cavity is disposed on the partition and located between the partition and the bottom plate a first through hole is opened in the partition, the first water guiding water inlet is connected to the first water guiding water outlet and the water returning piece; the back water is The piece and the water tank are disposed on the base.
  • the water return member and the water guiding cavity are both L-shaped.
  • the water tank includes a water receiving portion and a water storage portion, the water receiving portion is disposed apart from the water storage portion; the water receiving portion is provided with the water inlet; the pure steaming furnace includes a water pump and an evaporator assembly.
  • the water pump connects the water storage portion and the evaporator assembly through a water passage, and the evaporator assembly is for injecting water vapor into the chamber.
  • the water pump is disposed on the baffle and on the same side of the baffle as the water tank.
  • the evaporator assembly includes an evaporator and a connecting member;
  • the cavity includes a side plate connected to the bottom plate;
  • the evaporator includes an air outlet portion, the connecting member is fixed on the air outlet portion, and the connecting member is disposed
  • the pure steaming furnace comprises a supporting frame fixed on the side plate and outside the cavity
  • the connector is embedded on the support frame.
  • the pure steaming furnace includes a water guiding member corresponding to a joint of the bottom plate and the side plate and disposed on the partition, the water guiding member is located at the partition and the bottom plate
  • the water guiding member is provided with a second water guiding water outlet, and the second water guiding water outlet is connected with the water returning member.
  • the water guiding member has a strip shape, and a length direction of the water guiding member extends along a joint of the bottom plate and the side plate, and a connection between the bottom plate and the side plate is positive on the water guiding member
  • the projection is located in the water guide.
  • the partition includes a flange, and the joint of the bottom plate and the side plate abuts the water guide on the same side of the flange.
  • the water valve includes a moving member and an elastic member; the moving member is movably disposed on the water returning member, the sealing member is located in the water returning member; the moving member includes a pushing portion and a first convex portion a column, the water returning member includes a second protrusion, the two ends of the elastic member are respectively sleeved on the first protrusion and the second protrusion; when the water tank moves from the first position to the second position The water tank pushes the moving member to cause the pushing portion to drive the sealing member to open the water return hole, the moving member compresses the elastic member; when the water tank moves from the second position to the first position, the elastic member drives The moving member moves the pushing portion away from the sealing member, and the sealing member seals the water return hole.
  • FIG. 1 is a schematic perspective view of a pure steaming furnace according to a preferred embodiment of the present invention
  • FIG. 2 is another perspective view of a pure steaming furnace according to a preferred embodiment of the present invention.
  • Figure 3 is a schematic cross-sectional view of a pure steaming furnace in accordance with a preferred embodiment of the present invention
  • Figure 4 is an enlarged schematic view of the portion IV of the pure steaming furnace of Figure 3.
  • Figure 5 is another perspective view of a pure steaming furnace in accordance with a preferred embodiment of the present invention.
  • Figure 6 is a further perspective view of a pure steaming furnace in accordance with a preferred embodiment of the present invention.
  • Figure 7 is an enlarged schematic view of the portion of the pure steaming furnace III of Figure 6;
  • Figure 8 is another schematic cross-sectional view of a pure steaming furnace in accordance with a preferred embodiment of the present invention.
  • Figure 9 is an enlarged schematic view of the portion of the pure steam furnace V of Figure 8.
  • first and second are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated.
  • features defining “first” or “second” may include one or more of the described features either explicitly or implicitly.
  • the meaning of "a plurality" is two or more unless specifically and specifically defined otherwise.
  • connection In the description of the present invention, it should be noted that the terms “installation”, “connected”, and “connected” are to be understood broadly, and may be fixed or detachable, for example, unless otherwise explicitly defined and defined. Connected, or integrally connected; may be mechanically connected, or may be electrically connected or may communicate with each other; may be directly connected or indirectly connected through an intermediate medium, may be internal communication of two elements or interaction of two elements relationship. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood on a case-by-case basis.
  • a pure steaming furnace 100 provided by a preferred embodiment of the present invention includes a cavity 102 and a water receiving assembly 104 .
  • the cavity 102 includes a bottom plate 106 that defines a floor drain 108.
  • the water receiving assembly 104 includes a water guiding cavity 110, a water returning member 112 and a water tank 114.
  • the water guiding chamber 110 is disposed corresponding to the bottom plate drain port 108, and communicates with the inside of the cavity 102 through the bottom plate drain port 108.
  • the water guiding cavity 110 defines a first water outlet 116, and the water returning member 112 corresponds to The first water outlet 116 is disposed, and the water returning member 112 is provided with a second water outlet 118.
  • the water tank 114 is provided with a water inlet 120, and the second water outlet 118 communicates with the water inlet 120.
  • the bottom plate 106 is a part of the U-shaped plate, and the bottom plate 106 is connected to the other two side plates of the U-shaped plate, such as the left side plate 122 and the right side plate (not shown) constituting the cavity 102. Two side panels.
  • the cavity 102 further includes a front plate 126 and a back plate 128.
  • the front plate 126 is connected to the bottom plate 106, the left side plate 122 and the right side plate.
  • the front plate 126 is provided with a cavity opening 130, and the cavity opening 130 is available for the user to pick and place. Heated food.
  • the back plate 128 is connected to the bottom plate 106, the left side plate 122 and the right side plate, and the back plate 128 can also be understood as the rear side plate of the cavity 102.
  • the pure steam furnace 100 further includes a furnace door (not shown) rotatably disposed on the front plate 126 by two hinges 132 projecting from the front plate 126 and for closing and opening the cavity opening 130 .
  • the water guiding cavity 110 includes a first half 134 and a second half 136 , and the first half 134 and the second half 136 are engaged to form a water guiding cavity.
  • Body 110 The first half 134 defines a first groove 138, and the second half 136 defines a second groove 140.
  • the first groove 138 and the second groove 140 together form an internal space in the water guiding cavity 110.
  • the first half 134 is provided with a water receiving port 142 corresponding to the bottom plate drain port 108.
  • the water on the bottom plate 106 of the cavity 102 can enter the water guiding cavity 110 through the bottom plate drain port 108 and the water receiving port 142.
  • the second half 136 is provided with a first water outlet 116, and the water in the water guiding cavity 110 enters the water returning member 112 through the first water outlet 116.
  • the water return member 112 corresponding to the first water outlet 116 is capable of receiving water flowing out of the water guiding chamber 110 and directing the water to the water tank 114, and finally the water is received by the water tank 114.
  • the water return member 112 and the water guiding cavity 110 are both L-shaped. This makes the internal space configuration of the pure steam furnace 100 more flexible.
  • the second water outlet 118 is opened in the bottom plate of the water returning member 112, so that when the water returning member 112 has water, it can flow out from the second water outlet 118 as quickly as possible.
  • the water inlet 120 of the water tank is larger than the second water outlet 118, so that the water flowing out of the second water outlet 118 can be completely received by the water tank 114, preventing water from leaking.
  • the pure steamer 100 includes a partition 144 and a base 146 (the base in FIG. 2 is omitted), and the partition 144 is disposed on the base 146 and the bottom plate. Between 106.
  • the water guiding cavity 110 is disposed on the partition 144 and located between the partition 144 and the bottom plate 106.
  • the partition 144 defines a first through hole 148, and the first through hole 148 communicates with the first water outlet.
  • the water return member 112 and the water tank 114 are disposed on the base 146.
  • the partition 144 can be fixed to the base 146 by, for example, screwing.
  • the base 146 is provided with a water return bracket 150, and the water return bracket 150 has a positioning post 152, and the water return member 112 is opened.
  • a positioning hole 154 is provided.
  • the water return member 112 is carried on the water return member bracket 150.
  • the positioning post 152 and the positioning hole 154 fix the water return member 112 to the base 146 by an interference fit.
  • the water tank 114 includes a water receiving portion 156 and a water storage portion 158, and the water receiving portion 156 is spaced apart from the water storage portion 158.
  • the water inlet portion 156 defines the water inlet 120.
  • the pure steaming furnace 100 includes a water pump 160 and an evaporator assembly 162.
  • the water pump 160 connects the water storage portion 158 and the evaporator assembly 162 through a water passage, and the evaporator assembly 162 is used to convert liquid water into water. Steam is injected into the cavity 102.
  • the water storage portion 158 can be used to store fresh water, thus avoiding the secondary use of the water returned by the chamber 102 to ensure that the heated food is clean.
  • the water receiving portion 156 has a cover plate 164 having a shape recessed toward the inside of the water receiving portion 156.
  • the cover plate 164 is disposed corresponding to the furnace door, and the cover plate 164 is provided with a through hole 166. Therefore, the condensed water on the surface of the door of the oven door can drip onto the cover 164 and enter the water receiving portion 156 from the through hole 166, preventing the condensed water on the door from being scattered.
  • the through hole 166 is formed at the lowest point of the cover 164, which facilitates collecting all of the water on the cover 164.
  • the cover 164 can be placed, for example, directly on the water receiving portion 156 without being fixed, so that the user can clean the return water in the water receiving portion 156.
  • the water pump 160 is disposed on the partition 144 and is located on the same side of the partition 144 as the water tank 114. Therefore, on the one hand, the heat of the cavity 102 is blocked by the partition 144, so that the heat of the cavity 102 can be prevented from affecting the operation of the water pump 160; on the other hand, it is also convenient to configure the water path between the water pump 160 and the water storage portion 158.
  • the associated waterway can be implemented by a hose.
  • the water storage portion 158 has a water tank water outlet 168
  • the water pump 160 has a water pump water inlet 170 and a water pump water outlet 172
  • the evaporator assembly 162 has an evaporator water inlet 174.
  • the water pump outlet 172 and the evaporator inlet 174 can be connected by a hose.
  • the evaporator assembly 162 includes an evaporator 176 and a connector 178.
  • the evaporator 176 includes an air outlet portion 180.
  • the connecting member 178 is fixed to the air outlet portion 180.
  • the connecting member 178 is provided with an outlet pipe 182.
  • the water outlet pipe 182 is disposed corresponding to the water returning member 112.
  • the connecting member 178 is resisted.
  • the pure steaming furnace 100 includes a support frame 184 fixed to the back plate 128 and located outside the cavity 102.
  • the connecting member 178 is embedded on the support frame 184.
  • the connecting member 178 can be fixed to the air outlet portion 180 by screwing.
  • a joint of the outlet portion 180 and the connecting member 178, and a surface of the connecting member 178 that abuts the surface of the backing plate 128 may be provided with a sealing ring to ensure water tightness.
  • a vent hole (not shown) is opened at a position corresponding to the back plate 128 of the air outlet portion 180 so that water vapor ejected from the air outlet portion 180 can enter the cavity 102.
  • the water outlet pipe 182 on the connecting member 178 can guide the condensed water in the connecting member 178 to the water returning member 112 to enter the water tank 114. Thus, this avoids the condensed water in the connector 178 being brought into the cavity 102 again during the next operation of the evaporator 176.
  • the support frame 184 can be secured to the backing plate 128 by soldering.
  • the support frame 184 is provided with a receiving cavity 188 and an end opening 190, and the receiving cavity 188 is in communication with the end opening 190.
  • the connector 178 When the evaporator assembly 162 is assembled to the pure steaming furnace 100, the connector 178 is pushed from the end opening 190 into the receiving cavity 188 of the support frame 184, which is convenient to assemble.
  • the connecting member 178 and the support frame 184 can be fixed by an interference fit, or the connecting member 178 and the support frame 184 can be fixed by screws.
  • the pure steaming furnace 100 includes a water guiding member 194 corresponding to the joint of the bottom plate 106 and the backing plate 128. 192 is disposed on the partition 144, and the water guiding member 194 is located between the partition 144 and the bottom plate 106.
  • the water guiding member 194 is provided with a water guiding water outlet (not shown), and the water guiding water outlet is in communication with the water returning member 112.
  • the water guiding member 194 has a strip shape, and the length direction of the water guiding member 194 extends along the connection between the bottom plate 106 and the back plate 128, and the connection portion 192 of the bottom plate 106 and the back plate 128 is The orthographic projection on the water guiding member 194 is located in the water guiding member 194. This ensures the water connection efficiency of the water guiding member 194.
  • the water guiding water outlet is opened in the middle of the water guiding member 194.
  • the partition 144 is provided with a second through hole (not shown), and the water can enter the water returning member 112 through the water guiding water outlet and the second through hole, and the water returning member 112 guides the water to the water tank 114.
  • Water receiving portion 156 Water receiving portion 156.
  • the partition 144 in order to facilitate the assembly of the partition 144 with the cavity 102 and the connection of the bottom plate 106 and the back plate 128 to the water guiding member 194, the partition 144 includes a flange 196, the bottom plate 106 and the back The junction 192 of the plate 128 abuts the water guide 194 on the same side of the flange 196.
  • the bottom plate 106 can be abutted only when the joint portion 192 of the bottom plate 106 and the back plate 128 abuts against the same side of the partition plate 144.
  • the connection 192 with the backing plate 128 is aligned with the water guiding member 194, which effectively improves the production efficiency, and at the same time ensures the alignment of the joint 192 of the bottom plate 106 and the backing plate 128 with the water guiding member 194.
  • the water pump 160 draws the water in the water storage portion 158 to the evaporator 176, and the liquid water becomes water vapor in the evaporator 176, and then passes through the air outlet portion 180.
  • the vents on the connector 178 and the backing plate 128 enter the cavity 102.
  • Condensed water is formed on the inner surface of the cavity 102, and a portion of the condensed water flows onto the bottom plate 106 of the cavity 102.
  • the portion of the condensed water enters the water guiding cavity 110 through the bottom plate drain port 108 of the bottom plate 106 and the water receiving port 142 of the water guiding cavity 110, and enters the water returning member 112 through the first water outlet 116 of the water guiding cavity 110.
  • the water member 112 directs the water to the water receiving portion 156 of the water tank 114, thereby completing the collection of the condensed water.
  • the other part of the condensed water formed on the inner surface of the cavity enters the water guiding member 194 via the joint 192 of the bottom plate 106 and the back plate 128.
  • the water guiding member 194 guides the water to the water returning member 112, and the water returning member 112 guides the water to the water tank 114.
  • the water receiving portion 156 is used to complete the collection of the condensed water.
  • the inner surface of the connecting member 178 forms condensed water, which is guided to the water returning member 112 via the outlet pipe 182, and the water returning member 112 guides the water to the water receiving portion 156 of the water tank 114, thereby completing the collection of the condensed water. .
  • the above pure steaming furnace 100 by providing the water receiving assembly 104 at the floor drain 108, allows water from the cavity 102 to be discharged from the floor drain 108 and collected into the water tank 114 without water. Sprinkling into the interior and/or around the pure steaming furnace 100 avoids adverse effects on the electrical components and/or imposes a cleaning burden on the user.
  • the above pure steaming furnace 100 can also collect other condensed water of the pure steaming furnace 100, such as condensed water leaking from the joint 178 of the bottom plate 106 and the backing plate 128 and condensed water in the connecting member 178, further reducing the water to pure steaming.
  • condensed water leaking from the joint 178 of the bottom plate 106 and the backing plate 128 and condensed water in the connecting member 178.
  • a pure steaming furnace 300 includes a cavity 302 and a water receiving assembly 304 and a water valve 305.
  • the cavity 302 includes a bottom plate 306 that defines a floor drain 308.
  • the water receiving assembly 304 includes a water guiding cavity 310, a water returning member 312, and a water tank 314.
  • the water guiding cavity 310 is disposed corresponding to the floor drain 308 and passes through the floor drain 308.
  • the water guiding chamber 310 is connected to the water returning member 312.
  • the water returning member 312 is provided with a water return hole 318.
  • the water tank 314 is provided with a water inlet 320.
  • the water tank 314 is detachably disposed on the pure steam furnace 300.
  • the water valve 305 is disposed on the water return member 312, and the water valve 305 includes a sealing member 307 that seals the water return hole 318 when the water tank 314 is in the first position, when the water tank 314 is moved from the first position to the second position.
  • the water tank 314 drives the sealing member 307 to open the sealing member 307 to the water return hole 318, and the water return hole 318 communicates with the water inlet 320.
  • the bottom plate 306 is a part of the U-shaped plate, and the bottom plate 306 is connected to the other two side plates of the U-shaped plate, such as the left side plate 322 and the right side plate (not shown) constituting the cavity 302. Two side panels.
  • the cavity 302 further includes a front plate 326 and a back plate 328.
  • the front plate 326 is connected to the bottom plate 306, the left side plate 322 and the right side plate.
  • the front plate 326 is provided with a cavity opening 330, and the cavity opening 330 is available for the user to pick and place. Heated food.
  • the back plate 328 is connected to the bottom plate 306, the left side plate 322 and the right side plate, and the back plate 328 can also be understood as the rear side plate of the cavity 302.
  • the pure steam furnace 300 further includes a furnace door (not shown) rotatably disposed on the front plate 326 by two hinges 332 protruding from the front plate 326, and for closing and opening the cavity opening 330 .
  • the water guiding cavity 310 includes a first half 334 and a second half 336 .
  • the first half 334 and the second half 336 are engaged to form a water guiding cavity.
  • the first half 334 is open with a first slot 338
  • the second half 336 is provided with a second slot 340.
  • the first slot 338 and the second slot 340 together form a water guiding cavity.
  • the first half 334 is provided with a water receiving port 342 corresponding to the bottom plate drain 308.
  • the water on the bottom plate 306 of the cavity 302 can enter the water guiding cavity 310 through the bottom plate drain 308 and the water receiving port 342.
  • the second half 336 is provided with a first water guiding water outlet 316, and the water in the water guiding cavity 310 enters the water returning member 312 via the first water guiding water outlet 316.
  • the water return member 312 is disposed corresponding to the first water guiding water outlet 316, so that the water return member 312 can receive the water flowing out of the water guiding chamber 310 and direct the water to the water tank 314, and finally the water is received by the water tank 314.
  • the water return member 312 and the water guiding cavity 310 are both L-shaped. This makes the internal space configuration of the pure steam furnace 300 more flexible.
  • the water return hole 318 is opened in the bottom plate of the water return member 312, so that when the water return member 312 has water, it can flow out from the water return hole 318 as quickly as possible.
  • the water inlet 320 of the water tank is larger than the water return hole 318, so that the water flowing out of the water return hole 318 can be completely received by the water tank 314, preventing water from leaking.
  • the water valve 305 includes a moving member 309 and an elastic member 311.
  • the moving member 309 is movably disposed on the water return member 312, and the sealing member 307 is located in the water return member 312 as shown in FIG.
  • the moving member 309 includes a pushing portion 313 and a first protruding post 315.
  • the water returning member 312 includes a second protruding post 317.
  • the two ends of the elastic member 311 are respectively sleeved on the first protruding post 315 and the second protruding post 317.
  • the water tank 314 When the water tank 314 is moved from the first position to the second position, the water tank 314 pushes the moving member 309 to cause the pushing portion 313 to drive the sealing member 307 to open the water return hole 318, and the moving member 309 compresses the elastic member 311.
  • the elastic member 311 drives the moving member 309 to move the pushing portion 313 in a direction away from the sealing member 307, and the sealing member 307 seals the water return hole 318.
  • the portion of the water return member 312 in which the water return hole 318 is opened is elongated, and the moving member 309 is disposed on the elongated portion.
  • the pushing portion 313 is located in the water return member 312 to The driving of the water tank 314 pushes the seal 307 to move.
  • the sealing member 307 is a small ball, and the water return hole 318 has a funnel shape.
  • the seal 307 has a density greater than the density of water.
  • the inner bottom surface 319 of the water return member 312 is a surface that is inclined toward the water return hole 318, and therefore, the seal member 307 always has a tendency to move toward the water return hole 318 under the self-gravity of the seal member 307.
  • the side of the moving member 309 located outside the water returning member 312 is provided with a contact portion 321.
  • the end surface 323 of the water tank 314 abuts the contact portion 321
  • the pushing portion 313 keeps the state in which the sealing member 307 is displaced from the water return hole 318, thereby opening the water return hole 318 while the elastic member 311 is compressed.
  • the water tank 314 is moved away from the water returning member 312, and at the same time, the elastic member 311 drives the moving member 309 to move in the direction of the water tank 314, so that the pushing portion 313 leaves the sealing member. 307.
  • the seal 307 is urged against the push portion 313 by the gravity of itself and moves toward the return hole 318.
  • the seal 307 falls on the water return hole 318 and seals back to the water hole 318, and the pushing portion 313 is separated from the seal 307.
  • the water valve 305 of the present embodiment seals the water return hole 318 by the inclined inner bottom surface 319 of the water return member 312 and the self-gravity of the seal member 307, and drives the seal member 307 to open the water return hole 318 by the movement of the water tank 314.
  • the structure is simple and easy to manufacture.
  • the pure steamer 300 in order to isolate the heat of the cavity 302 during operation, includes a partition 344 and a base 346 (the base in FIG. 6 is omitted), and the partition 344 is disposed on the base 346 and the bottom plate. Between 306.
  • the water guiding cavity 310 is disposed on the partition 344 and located between the partition 344 and the bottom plate 306.
  • the partition 344 defines a first through hole 348, and the first through hole 348 communicates with the first water guiding.
  • the water return member 312 and the water tank 314 are disposed on the base 346.
  • the partition 344 can be fixed to the base 346 by, for example, screwing.
  • the base 346 is provided with a water return bracket 350
  • the water return bracket 350 has a positioning post 352
  • the water return member 312 is provided with a positioning hole 354 .
  • the water return member 312 is carried on the water return member bracket 350, and the positioning post 352 and the positioning hole 354 fix the water return member 312 on the base 346 by an interference fit.
  • the water tank 314 includes a water receiving portion 356 and a water storage portion 358, and the water receiving portion 356 is spaced apart from the water storage portion 358.
  • the water inlet portion 356 is provided with the water inlet 320.
  • the pure steamer 300 includes a water pump 360 and an evaporator assembly 362.
  • the water pump 360 connects the water storage portion 358 and the evaporator assembly 362 by a water passage, and the evaporator assembly 362 is used to convert liquid water into water. Steam is injected into the cavity 302.
  • the water storage portion 358 can be used to store fresh water, thus avoiding the secondary use of the water returned by the cavity 302 to ensure that the heated food is clean.
  • the water receiving portion 356 has a cover plate 364 having a shape recessed toward the inside of the water receiving portion 356.
  • the cover plate 364 is disposed corresponding to the furnace door, and the cover plate 364 is provided with a through hole 366. Therefore, the condensed water on the surface of the door of the oven door can drip onto the cover 364 and enter the water receiving portion 356 from the through hole 366, preventing the condensed water on the door from being scattered.
  • the through opening 366 is formed at the lowest point of the cover 364, which facilitates collecting all of the water on the cover 364.
  • the cover 364 can be placed, for example, directly on the water receiving portion 356 without fixing, so that the user can clean the return water in the water receiving portion 356.
  • the water pump 360 is disposed on the partition 344 and is located on the same side of the partition 344 as the water tank 314. Therefore, on the one hand, the heat of the cavity 302 is isolated by the partition 344, so that the heat of the cavity 302 can be prevented from affecting the operation of the water pump 360; on the other hand, it is also convenient to configure the water path between the water pump 360 and the water storage portion 358.
  • the associated waterway can be implemented by a hose.
  • the water storage portion 358 has a water tank water outlet 368
  • the water pump 360 has a water pump water inlet 370 and a water pump water outlet 372
  • the evaporator assembly 362 has an evaporator water inlet 374.
  • the water pump outlet 372 and the evaporator water inlet 374 can be connected by a hose.
  • the evaporator assembly 362 includes an evaporator 376 and a connector 378.
  • the evaporator 376 includes an air outlet portion 380.
  • the connecting member 378 is fixed on the air outlet portion 380.
  • the connecting member 378 is provided with an outlet pipe 382.
  • the water outlet pipe 382 is disposed corresponding to the water return member 312.
  • the connecting member 378 is resisted.
  • the pure steaming furnace 300 includes a support frame 384 fixed to the back plate 328 and located outside the cavity 302.
  • the connecting member 378 is embedded on the support frame 384.
  • the connecting member 378 can be fixed to the air outlet portion 380 by screwing.
  • a seal ring may be provided at the junction of the air outlet portion 380 and the connector 378, and the surface of the connector 378 that abuts the surface of the back plate 328 to ensure water tightness.
  • a vent hole (not shown) is provided at a position corresponding to the back plate 328 of the air outlet portion 380 so that water vapor ejected from the air outlet portion 380 can enter the cavity 302.
  • the water outlet pipe 382 on the connecting member 378 can guide the condensed water in the connecting member 378 to the water return member 312 to enter the water tank 314. Thus, this avoids the condensed water in the connector 378 being brought into the cavity 302 again during the next operation of the evaporator 376.
  • the support frame 384 can be secured to the backing plate 328 by soldering.
  • the support frame 384 is provided with a receiving cavity 388 and an end opening 390.
  • the receiving cavity 388 is in communication with the end opening 390.
  • the connector 378 When the evaporator assembly 362 is assembled to the pure steamer 300, the connector 378 is pushed from the end opening 390 into the receiving cavity 388 of the support frame 384, which is convenient to assemble.
  • the connecting member 378 and the support frame 384 can be fixed by an interference fit, or the connecting member 378 and the support frame 384 can be fixed by screws.
  • the pure steaming furnace 300 includes a water guiding member 394 corresponding to the joint of the bottom plate 306 and the backing plate 328.
  • 392 is disposed on the partition 344, and the water guiding member 394 is located between the partition 344 and the bottom plate 306.
  • the water guiding member 394 is provided with a second water guiding water outlet (not shown), and the second water guiding water outlet is in communication with the water returning member 312.
  • the water guiding member 394 is strip-shaped, and the length direction of the water guiding member 394 extends along the connection between the bottom plate 306 and the back plate 328, and the connection portion 392 of the bottom plate 306 and the back plate 328 is The orthographic projection on the water guiding member 394 is located in the water guiding member 394. This can ensure the water receiving efficiency of the water guiding member 394.
  • the second water outlet is opened in the middle of the water guide 394.
  • the partition 344 is provided with a second through hole (not shown), and the water can enter the water returning member 312 through the second water guiding water outlet and the second through hole, and the water returning member 312 will be The water guides the water receiving portion 356 of the water tank 314.
  • the partition 344 in order to facilitate the assembly of the partition 344 with the cavity 302 and the connection 392 of the bottom plate 306 and the back plate 328 with the water guide 394, the partition 344 includes a flange 396, the bottom plate 306 and the back The junction 392 of the plate 328 abuts the water guide 394 on the same side of the flange 396.
  • the bottom plate 306 can be abutted only when the joint 392 of the bottom plate 306 and the backing plate 328 abut against the same side of the partition 344.
  • the connection 392 with the backing plate 328 is aligned with the water guiding member 394, which effectively improves the production efficiency while also ensuring the alignment of the joint 392 of the bottom plate 306 with the backing plate 328 with the water guiding member 394.
  • the water pump 360 draws the water in the water storage portion 358 to the evaporator 376, and the liquid water becomes water vapor in the evaporator 376, and then passes through the air outlet portion 380.
  • the vents on the connector 378 and the backing plate 328 enter the cavity 302.
  • Condensed water is formed on the inner surface of the cavity 302, and a portion of the condensed water flows onto the bottom plate 306 of the cavity 302.
  • the condensed water enters the water guiding cavity 310 through the bottom plate drain 308 of the bottom plate 306 and the water receiving port 342 of the water guiding cavity 310, and enters the water returning member 312 through the first water guiding water outlet 316 of the water guiding cavity 310.
  • the water return member 312 guides the water to the water receiving portion 356 of the water tank 314, thereby completing the collection of the condensed water.
  • the other part of the condensed water formed on the inner surface of the cavity enters the water guiding member 394 via the joint 392 of the bottom plate 306 and the back plate 328.
  • the water guiding member 394 guides the water to the water returning member 312, and the water returning member 312 guides the water to the water tank 314.
  • the water receiving portion 356 is used to complete the collection of the condensed water.
  • the inner surface of the connecting member 378 forms condensed water, which is guided to the water returning member 312 via the outlet pipe 382, and the water returning member 312 guides the water to the water receiving portion 356 of the water tank 314, thereby completing the collection of the condensed water. .
  • the above pure steaming furnace 300 by providing the water receiving assembly 304 at the floor drain 308, allows water from the cavity 302 to be discharged from the floor drain 308 and collected into the water tank 314 while passing through A water valve 305 is disposed on the water return member 312, and the water seal 307 can be controlled to open or seal the water return hole 318 by the water tank 314, so that even if the water tank 314 is taken out from the pure steam furnace 300, water does not spill onto the pure steam furnace 300.
  • Internal and / or surrounding to avoid adverse effects on electrical components, and / or put a burden on the user.
  • the above-mentioned pure steaming furnace 300 can also collect other condensed water of the pure steaming furnace 300, such as condensed water leaked from the joint 378 of the bottom plate 306 and the backing plate 328 and condensed water in the connecting member 378, further reducing the water to pure steaming.
  • the influence of the furnace 300 and the convenience of the user to use the pure steam furnace 300 is not limited.
  • first and second are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated.
  • features defining “first” or “second” may include at least one of the features, either explicitly or implicitly.
  • the meaning of "a plurality” is at least two, such as two, three, etc., unless specifically defined otherwise.

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Abstract

一种纯蒸炉(100),其包括腔体(102)及接水组件(104)。该腔体(102)包括底板(106),该底板(106)开设有底板排水口(108)。该接水组件(104)包括导水腔体(110)、回水件(112)及水箱(114),该导水腔体(110)对应于该底板排水口(108)设置,并通过该底板排水口(108)连通该腔体(102)内部,该导水腔体(110)开设有第一出水口(116),该回水件(112)对应于该第一出水口(116)设置,该回水件(112)开设有第二出水口(118),该水箱(114)开设有进水口(120),该第二出水口(118)与该进水口(120)相通。上述纯蒸炉(100),通过在底板排水口(108)处设置接水组件(104),使得从腔体内的水能够从底板排水口(108)排出并被收集至水箱(114)中,腔体(102)内的水不会洒落到纯蒸炉(100)的内部及/或周围,避免了对电气件造成不良影响,及/或对用户造成清洁上的负担。

Description

纯蒸炉
优先权信息
本申请请求2015年11月20日向中国国家知识产权局提交的、专利申请号为201520940973.3、201510819093.5、201510812966.X及201520940921.6的专利申请的优先权和权益,并且通过参照将其全文并入此处。
技术领域
本发明涉及于家用电器领域,更具体而言,涉及一种纯蒸炉。
背景技术
目前,为满足人们生活所需,家用电器的种类越来越多,其中一种是纯蒸炉,纯蒸炉利用水蒸汽对位于纯蒸炉的腔体内食物进行加热。
在纯蒸炉工作过程中,腔体的内表面会形成冷凝水,若腔体内积聚的冷凝水不及时排走的话,容易从腔体内向腔体外流出,流出的水容易洒落到纯蒸炉的内部及/或周围,一方面,洒落到纯蒸炉内部的水会对纯蒸炉的电气件造成不良影响;另一方面,洒落到纯蒸炉周围的水会对用户造成清洁上的负担。
发明内容
本发明旨在至少解决现有技术中存在的技术问题之一。为此,本发明需要提供一种纯蒸炉。
本发明实施方式的一种纯蒸炉,包括腔体及接水组件。该腔体包括底板,该底板开设有底板排水口。该接水组件包括导水腔体、回水件及水箱,该导水腔体对应于该底板排水口设置,并通过该底板排水口连通该腔体内部,该导水腔体开设有第一出水口,该回水件对应于该第一出水口设置,该回水件开设有第二出水口,该水箱开设有进水口,该第二出水口与该进水口相通。
上述纯蒸炉,通过在底板排水口处设置接水组件,使得从腔体内的水能够从底板排水口排出并被收集至水箱中,腔体内的水不会洒落到纯蒸炉的内部及/或周围,避免了对电气件造成不良影响,及/或对用户造成清洁上的负担。
在一个实施方式中,该纯蒸炉包括隔板及底座,该隔板设置在该底座与该底板之间。该导水腔体设置在该隔板上且位于该隔板与该底板之间,该隔板开设有第一过孔,该第 一过孔连通该第一出水口及该回水件。该回水件及该水箱设置在该底座上。
在一个实施方式中,该回水件及该导水腔体均呈L型。
在一个实施方式中,该水箱包括接水部与储水部,该接水部与该储水部分隔设置。该接水部开设有该进水口。该纯蒸炉包括水泵及蒸发器组件,该水泵通过水路连接该储水部及该蒸发器组件,该蒸发器组件用于将水蒸汽喷射至该腔体内。
在一个实施方式中,该水泵设置在该隔板上且与该水箱位于该隔板的同一侧。
在一个实施方式中,该蒸发器组件包括蒸发器及连接件。该腔体包括与该底板连接的侧板。该蒸发器包括出气部,该连接件固定在该出气部上,该连接件设置有出水管,该出水管对应于该回水件设置,该连接件抵持在该侧板的表面。该纯蒸炉包括支撑架,该支撑架固定在该侧板上且位于该腔体外,该连接件嵌设在该支撑架上。
在一个实施方式中,该纯蒸炉包括导水件,该导水件对应于该底板与该侧板的连接处并设置在该隔板上,该导水件位于该隔板与该底板之间。该导水件开设有导水出水口,该导水出水口与该回水件连通。
在一个实施方式中,该导水件呈条状,该导水件的长度方向沿该底板与该侧板的连接处延伸,该底板与该侧板的连接处在该导水件上的正投影位于该导水件内。
在一个实施方式中,该隔板包括翻边,该底板与该侧板的连接处与该导水件抵靠在该翻边的同一侧。
本发明实施方式的一种纯蒸炉,包括:腔体,该腔体包括底板,该底板开设有底板排水口;接水组件,该接水组件包括导水腔体、回水件及水箱,该导水腔体对应于该底板排水口设置,并通过该底板排水口连通该腔体内部,该导水腔体与该回水件连通,该回水件开设有回水孔,该水箱开设有进水口,该水箱可拆卸地设置在该纯蒸炉上;设置在该回水件上的水阀,该水阀包括密封件,当该水箱位于第一位置时,该密封件密封该回水孔,当该水箱从该第一位置移动至第二位置时,该水箱带动该密封件以使该密封件开放该回水孔,该回水孔与该进水口相通。
上述纯蒸炉,通过在底板排水口处设置接水组件,使得从腔体内的水能够从底板排水口排出并被收集至水箱中,同时通过在回水件上设置水阀,并可由水箱控制密封件开放或密封回水孔,使得即使水箱从纯蒸炉中取出时,水也不会洒落到纯蒸炉的内部及/或周围,避免了对电气件造成不良影响,及/或对用户造成清洁上的负担。
在一个实施方式中,该纯蒸炉包括隔板及底座,该隔板设置在该底座与该底板之间;该导水腔体设置在该隔板上且位于该隔板与该底板之间,该隔板开设有第一过孔,该导水腔体开设有第一导水出水口,该第一过孔连通该第一导水出水口及该回水件;该回水 件及该水箱设置在该底座上。
在一个实施方式中,该回水件及该导水腔体均呈L型。
在一个实施方式中,该水箱包括接水部与储水部,该接水部与该储水部分隔设置;该接水部开设有该进水口;该纯蒸炉包括水泵及蒸发器组件,该水泵通过水路连接该储水部及该蒸发器组件,该蒸发器组件用于将水蒸汽喷射至该腔体内。
在一个实施方式中,该水泵设置在该隔板上且与该水箱位于该隔板的同一侧。
在一个实施方式中,该蒸发器组件包括蒸发器及连接件;该腔体包括与该底板连接的侧板;该蒸发器包括出气部,该连接件固定在该出气部上,该连接件设置有出水管,该出水管对应于该回水件设置,该连接件抵持在该侧板的表面;该纯蒸炉包括支撑架,该支撑架固定在该侧板上且位于该腔体外,该连接件嵌设在该支撑架上。
在一个实施方式中,该纯蒸炉包括导水件,该导水件对应于该底板与该侧板的连接处并设置在该隔板上,该导水件位于该隔板与该底板之间;该导水件开设有第二导水出水口,该第二导水出水口与该回水件连通。
在一个实施方式中,该导水件呈条状,该导水件的长度方向沿该底板与该侧板的连接处延伸,该底板与该侧板的连接处在该导水件上的正投影位于该导水件内。
在一个实施方式中,该隔板包括翻边,该底板与该侧板的连接处与该导水件抵靠在该翻边的同一侧。
在一个实施方式中,该水阀包括移动件及弹性件;该移动件能够移动地设置在该回水件上,该密封件位于该回水件中;该移动件包括推动部及第一凸柱,该回水件包括第二凸柱,该弹性件的两端分别套设在该第一凸柱及该第二凸柱上;当该水箱从该第一位置移动至该第二位置时,该水箱推动该移动件以使该推动部带动该密封件开放该回水孔,该移动件压缩该弹性件;当该水箱从该第二位置移动至该第一位置时,该弹性件驱动该移动件以使该推动部向远离该密封件的方向移动,该密封件密封该回水孔。
本发明的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本发明的实践了解到。
附图说明
本发明的上述和/或附加的方面和优点从结合下面附图对实施方式的描述中将变得明显和容易理解,其中:
图1是本发明较佳实施方式的纯蒸炉的立体示意图;
图2是本发明较佳实施方式的纯蒸炉的另一立体示意图;
图3是本发明较佳实施方式的纯蒸炉的剖面示意图;
图4是图3中的纯蒸炉IV部分的放大示意图。
图5是本发明较佳实施方式的纯蒸炉的又一立体示意图;
图6是本发明较佳实施方式的纯蒸炉的再一立体示意图;
图7是图6中的纯蒸炉III部分的放大示意图;
图8是本发明较佳实施方式的纯蒸炉的另一剖面示意图;
图9是图8中的纯蒸炉V部分的放大示意图。
具体实施方式
下面详细描述本发明的实施方式,所述实施方式的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施方式是示例性的,仅用于解释本发明,而不能理解为对本发明的限制。
在本发明的描述中,需要理解的是,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个所述特征。在本发明的描述中,“多个”的含义是两个或两个以上,除非另有明确具体的限定。
在本发明的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接或可以相互通信;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本发明中的具体含义。
下文的公开提供了许多不同的实施方式或例子用来实现本发明的不同结构。为了简化本发明的公开,下文中对特定例子的部件和设定进行描述。当然,它们仅仅为示例,并且目的不在于限制本发明。此外,本发明可以在不同例子中重复参考数字和/或参考字母,这种重复是为了简化和清楚的目的,其本身不指示所讨论各种实施方式和/或设定之间的关系。此外,本发明提供了的各种特定的工艺和材料的例子,但是本领域普通技术人员可以意识到其他工艺的应用和/或其他材料的使用。
请参图1,本发明较佳实施方式提供的一种纯蒸炉100包括腔体102及接水组件104。该腔体102包括底板106,该底板106开设有底板排水口108。
请参图2、图3及图4,该接水组件104包括导水腔体110、回水件112及水箱114, 该导水腔体110对应于该底板排水口108设置,并通过该底板排水口108连通该腔体102内部,该导水腔体110开设有第一出水口116,该回水件112对应于该第一出水口116设置,该回水件112开设有第二出水口118,该水箱114开设有进水口120,该第二出水口118与该进水口120相通。
具体地,本实施方式中,底板106为U型板的一部分,底板106连接U型板的另外两个侧板,如构成腔体102的左侧板122及右侧板(图未示)的两个侧板。另外,腔体102还包括前板126及背板128,前板126连接底板106、左侧板122及右侧板,前板126开设有腔体开口130,腔体开口130可供用户取放被加热的食物。
背板128连接底板106、左侧板122及右侧板,背板128也可理解为腔体102的后侧板。纯蒸炉100还包括炉门(图未示),该炉门可通过凸设在前板126上的两个铰链132能够转动地设置在前板126上,并用于关闭及开启腔体开口130。
本实施方式中,请参图3及图4,导水腔体110包括第一半部134及第二半部136,第一半部134与第二半部136卡合而共同形成导水腔体110。第一半部134开设有第一槽138,第二半部136开设有第二槽140,第一槽138与第二槽140共同形成导水腔体110内的内部空间。
第一半部134开设有对应于底板排水口108的接水口142,腔体102内底板106上的水可通过底板排水口108及接水口142进入导水腔体110内。第二半部136开设有第一出水口116,导水腔体110内的水经第一出水口116进入回水件112。
对应于第一出水口116设置的回水件112能够接收由导水腔体110流出的水,并将水导向水箱114,最后水由水箱114接收。本实施方式中,该回水件112及该导水腔体110均呈L型。这样能够使纯蒸炉100的内部空间配置更加灵活。
本实施方式中,第二出水口118开设在回水件112的底板中,这样使回水件112有水时,能够尽快地从第二出水口118流出。水箱的进水口120较第二出水口118大,这样保证了第二出水口118流出的水能够全部被水箱114接收,防止了水的洒漏。
较佳地,为了隔绝腔体102在工作过程中的热量,该纯蒸炉100包括隔板144及底座146(图2中的底座省略掉),该隔板144设置在该底座146与该底板106之间。
该导水腔体110设置在该隔板144上且位于该隔板144与该底板106之间,该隔板144开设有第一过孔148,该第一过孔148连通该第一出水口116及该回水件112。该回水件112及该水箱114设置在该底座146上。
具体地,隔板144例如可通过螺丝固定的方式固定在底座146上。在图4所示的示例中,底座146设有回水件支架150,回水件支架150具有定位柱152,回水件112开 设有定位孔154。回水件112承载在回水件支架150上,定位柱152与定位孔154通过过盈配合而将回水件112固定在底座146上。
进一步地,为实现纯蒸炉100的蒸汽的产生,该水箱114包括接水部156与储水部158,该接水部156与该储水部158分隔设置。
该接水部156开设有该进水口120。请参图2,该纯蒸炉100包括水泵160及蒸发器组件162,该水泵160通过水路连接该储水部158及该蒸发器组件162,该蒸发器组件162用于将液态水转变为水蒸汽,并喷射至该腔体102内。
具体地,储水部158可用于存放新鲜的水,这样避免用腔体102回流的水作二次使用,保证被加热的食物干净。接水部156具有盖板164,盖板164呈向接水部156内部凹陷的形状,盖板164对应于炉门设置,盖板164开设有通孔166。因此,炉门的门体表面上的冷凝水能够滴落在盖板164上,并从通孔166进入接水部156,避免了炉门上的冷凝水洒落四处。
较佳地,通孔166开设在盖板164的最低处,这样有利于收集盖板164上所有的水。盖板164例如可直接放置在接水部156上,而不需要固定,这样方便用户清理接水部156内的回流水。
该水泵160设置在该隔板144上且与该水箱114位于该隔板144的同一侧。因此,一方面腔体102的热量被隔板144隔绝,这样可避免腔体102的热量影响水泵160的工作;另一方面,这样也方便配置水泵160与储水部158之间的水路。
可以理解,相关水路可由软管实现。例如,储水部158具有水箱出水口168,水泵160具有水泵进水口170及水泵出水口172,蒸发器组件162具有蒸发器进水口174。水箱出水口168与水泵进水口170之间,水泵出水口172与蒸发器进水口174之间均可通过软管连接。
请参图2,该蒸发器组件162包括蒸发器176及连接件178。该蒸发器176包括出气部180,该连接件178固定在该出气部180上,该连接件178设置有出水管182,该出水管182对应于该回水件112设置,该连接件178抵持在背板128的表面。该纯蒸炉100包括支撑架184,该支撑架184固定在该背板128上且位于该腔体102外,该连接件178嵌设在该支撑架184上。
具体地,连接件178可通过螺丝固定的方式固定在出气部180上。出气部180与连接件178的连接处,以及抵持在背板128表面的连接件178表面可设置密封圈以保证水的密封性。对应于出气部180的背板128的位置开设有通气孔(图未示),以使出气部180喷出的水蒸汽能够进入腔体102内。
连接件178上的出水管182能够将连接件178内的冷凝水导向回水件112,进而进入水箱114中。因此,这样避免了在下一次蒸发器176工作时,连接件178内的冷凝水被再次带入腔体102内。支撑架184可通过焊接的方式固定在背板128上。支撑架184开设有收容腔188及端开口190,收容腔188与端开口190相通。
组装蒸发器组件162至纯蒸炉100时,将连接件178从端开口190推进支撑架184的收容腔188内,这样的组装十分便利。连接件178与支撑架184之间可通过过盈配合固定,或连接件178与支撑架184之间可通过螺丝固定。
较佳地,为了收集从底板106与背板128的连接处192泄漏的水,该纯蒸炉100包括导水件194,该导水件194对应于该底板106与该背板128的连接处192并设置在该隔板144上,该导水件194位于该隔板144与该底板106之间。
该导水件194开设有导水出水口(图未示),该导水出水口与该回水件112连通。
本实施方式中,该导水件194呈条状,该导水件194的长度方向沿该底板106与该背板128的连接处延伸,该底板106与该背板128的连接处192在该导水件194上的正投影位于该导水件194内。这种可保证导水件194的接水效率。导水出水口开设在导水件194的中间位置。
对应于导水出水口,隔板144开设有第二过孔(图未示),水可通过导水出水口及第二过孔进入回水件112,回水件112再将水导向水箱114的接水部156。
较佳地,为了便于隔板144与腔体102的组装及底板106与背板128的连接处192与导水件194的对位,该隔板144包括翻边196,该底板106与该背板128的连接处192与该导水件194抵靠在该翻边196的同一侧。
具体地,由于导水件194抵靠在隔板144的一侧,在组装时,只需将底板106与背板128的连接处192抵靠在隔板144的同一侧,即可将底板106与背板128的连接处192与导水件194对准,有效地提升了生产效率,同时也能保证底板106与背板128的连接处192与导水件194的对位。
纯蒸炉100工作时,蒸发器176通电加热到一定温度后,水泵160将储水部158内的水抽至蒸发器176,液态水在蒸发器176内变成水蒸汽,之后通过出气部180、连接件178及背板128上的通气孔进入腔体102内。
腔体102的内表面会形成冷凝水,一部分冷凝水会流到腔体102的底板106上。这部分冷凝水经底板106的底板排水口108和导水腔体110的接水口142进入导水腔体110内,并经导水腔体110的第一出水口116进入回水件112,回水件112将水导向水箱114的接水部156,以此完成这部分冷凝水的收集。
腔体的内表面形成的冷凝水,另一部分经底板106与背板128的连接处192进入导水件194,导水件194将水导向回水件112,回水件112将水导向水箱114的接水部156,以此完成这部分冷凝水的收集。
连接件178的内表面会形成冷凝水,这部分冷凝水经出水管182被导向回水件112,回水件112将水导向水箱114的接水部156,以此完成这部分冷凝水的收集。
综上所述,上述纯蒸炉100,通过在底板排水口108处设置接水组件104,使得从腔体102内的水能够从底板排水口108排出并被收集至水箱114中,水不会洒落到纯蒸炉100的内部及/或周围,避免了对电气件造成不良影响,及/或对用户造成清洁上的负担。
同时,上述纯蒸炉100也能够收集纯蒸炉100其它的冷凝水,如底板106与背板128的连接处178泄漏的冷凝水及连接件178内的冷凝水,进一步地减少水对纯蒸炉100的影响,及保证用户使用纯蒸炉100的便利性。
请参图5、图6及图7,本发明较佳实施方式提供的一种纯蒸炉300包括腔体302及接水组件304及水阀305。该腔体302包括底板306,该底板306开设有底板排水口308。
请参图6~图9,该接水组件304包括导水腔体310、回水件312及水箱314,该导水腔体310对应于该底板排水口308设置,并通过该底板排水口308连通该腔体302内部,该导水腔体310与回水件312连通,该回水件312开设有回水孔318,该水箱314开设有进水口320。该水箱314可拆卸地设置在该纯蒸炉300上。
水阀305设置在回水件312上,水阀305包括密封件307,当水箱314位于第一位置时,密封件307密封回水孔318,当水箱314从第一位置移动至第二位置时,水箱314带动密封件307以使密封件307开放回水孔318,回水孔318与进水口320相通。
具体地,本实施方式中,底板306为U型板的一部分,底板306连接U型板的另外两个侧板,如构成腔体302的左侧板322及右侧板(图未示)的两个侧板。
另外,腔体302还包括前板326及背板328,前板326连接底板306、左侧板322及右侧板,前板326开设有腔体开口330,腔体开口330可供用户取放被加热的食物。
背板328连接底板306、左侧板322及右侧板,背板328也可理解为腔体302的后侧板。纯蒸炉300还包括炉门(图未示),该炉门可通过凸设在前板326上的两个铰链332能够转动地设置在前板326上,并用于关闭及开启腔体开口330。
本实施方式中,请参图8及图9,导水腔体310包括第一半部334及第二半部336,第一半部334与第二半部336卡合而共同形成导水腔体310。第一半部334开设有第一槽338,第二半部336开设有第二槽340,第一槽338与第二槽340共同形成导水腔体 310内的内部空间。
第一半部334开设有对应于底板排水口308的接水口342,腔体302内底板306上的水可通过底板排水口308及接水口342进入导水腔体310内。第二半部336开设有第一导水出水口316,导水腔体310内的水经第一导水出水口316进入回水件312。
回水件312对应第一导水出水口316设置,因此回水件312能够接收由导水腔体310流出的水,并将水导向水箱314,最后水由水箱314接收。本实施方式中,该回水件312及该导水腔体310均呈L型。这样能够使纯蒸炉300的内部空间配置更加灵活。
本实施方式中,回水孔318开设在回水件312的底板中,这样使回水件312有水时,能够尽快地从回水孔318流出。水箱的进水口320较回水孔318大,这样保证了回水孔318流出的水能够全部被水箱314接收,防止了水的洒漏。
较佳地,为利用较简单的结构实现水阀305的功能,在本实施方式中,请参图7,水阀305包括移动件309及弹性件311。移动件309能够移动地设置在回水件312上,密封件307位于回水件312中,如图9所示。
移动件309包括推动部313及第一凸柱315,回水件312包括第二凸柱317,弹性件311的两端分别套设在第一凸柱315及第二凸柱317上。
当水箱314从第一位置移动至第二位置时,水箱314推动移动件309以使推动部313带动密封件307开放回水孔318,移动件309压缩弹性件311。当水箱314从第二位置移动至第一位置时,弹性件311驱动移动件309以使推动部313向远离密封件307的方向移动,密封件307密封回水孔318。
具体地,开设有回水孔318的回水件312的部位呈长条状,移动件309设置在长条状的部位上,请参图9,推动部313位于回水件312内,以在水箱314的驱动下推动密封件307移动。
本实施方式中,密封件307为小球,回水孔318呈漏斗状。密封件307的密度比水的密度大。回水件312的内底面319是呈向回水孔318倾斜的表面,因此,在密封件307的自身重力作用下,密封件307始终具有向回水孔318移动的趋势。
位于回水件312外的移动件309的侧边设置有接触部321,当水箱314放好在纯蒸炉300内时(水箱314位于第二位置),水箱314的端面323抵持接触部321,使得推动部313保持密封件307从回水孔318偏移的状态,进而开放了回水孔318,同时弹性件311被压缩。
在水箱314从纯蒸炉300内取出的过程中,水箱314向远离回水件312的方向移动,同时,弹性件311驱动移动件309向水箱314的方向移动,使得推动部313离开密封件 307。密封件307在自身重力的作用下,靠在推动部313上并向回水孔318移动。当水箱314移动至第一位置时,密封件307落在回水孔318上并再次密封回水孔318,推动部313与密封件307分隔。
因此,本实施方式的水阀305,通过回水件312的倾斜的内底面319及密封件307的自身重力密封回水孔318,以及通过水箱314的移动驱动密封件307开放回水孔318,结构简单,易于制造。
较佳地,为了隔绝腔体302在工作过程中的热量,该纯蒸炉300包括隔板344及底座346(图6中的底座省略掉),该隔板344设置在该底座346与该底板306之间。
该导水腔体310设置在该隔板344上且位于该隔板344与该底板306之间,该隔板344开设有第一过孔348,该第一过孔348连通第一导水出水口316及该回水件312。
该回水件312及该水箱314设置在该底座346上。
具体地,隔板344例如可通过螺丝固定的方式固定在底座346上。在图9所示的示例中,底座346设有回水件支架350,回水件支架350具有定位柱352,回水件312开设有定位孔354。回水件312承载在回水件支架350上,定位柱352与定位孔354通过过盈配合而将回水件312固定在底座346上。
进一步地,为实现纯蒸炉300的蒸汽的产生,该水箱314包括接水部356与储水部358,该接水部356与该储水部358分隔设置。
该接水部356开设有该进水口320。请参图6,该纯蒸炉300包括水泵360及蒸发器组件362,该水泵360通过水路连接该储水部358及该蒸发器组件362,该蒸发器组件362用于将液态水转变为水蒸汽,并喷射至该腔体302内。
具体地,储水部358可用于存放新鲜的水,这样避免用腔体302回流的水作二次使用,保证被加热的食物干净。接水部356具有盖板364,盖板364呈向接水部356内部凹陷的形状,盖板364对应于炉门设置,盖板364开设有通孔366。因此,炉门的门体表面上的冷凝水能够滴落在盖板364上,并从通孔366进入接水部356,避免了炉门上的冷凝水洒落四处。
较佳地,通孔366开设在盖板364的最低处,这样有利于收集盖板364上所有的水。盖板364例如可直接放置在接水部356上,而不需要固定,这样方便用户清理接水部356内的回流水。
该水泵360设置在该隔板344上且与该水箱314位于该隔板344的同一侧。因此,一方面,腔体302的热量被隔板344隔绝,这样可避免腔体302的热量影响水泵360的工作;另一方面,这样也方便配置水泵360与储水部358之间的水路。
可以理解,相关水路可由软管实现。例如,储水部358具有水箱出水口368,水泵360具有水泵进水口370及水泵出水口372,蒸发器组件362具有蒸发器进水口374。水箱出水口368与水泵进水口370之间,水泵出水口372与蒸发器进水口374之间均可通过软管连接。
请参图6,该蒸发器组件362包括蒸发器376及连接件378。该蒸发器376包括出气部380,该连接件378固定在该出气部380上,该连接件378设置有出水管382,该出水管382对应于该回水件312设置,该连接件378抵持在背板328的表面。
该纯蒸炉300包括支撑架384,该支撑架384固定在该背板328上且位于该腔体302外,该连接件378嵌设在该支撑架384上。
具体地,连接件378可通过螺丝固定的方式固定在出气部380上。出气部380与连接件378的连接处,以及抵持在背板328表面的连接件378表面可设置密封圈以保证水的密封性。
对应于出气部380的背板328的位置开设有通气孔(图未示),以使出气部380喷出的水蒸汽能够进入腔体302内。连接件378上的出水管382能够将连接件378内的冷凝水导向回水件312,进而进入水箱314中。因此,这样避免了在下一次蒸发器376工作时,连接件378内的冷凝水被再次带入腔体302内。
支撑架384可通过焊接的方式固定在背板328上。支撑架384开设有收容腔388及端开口390,收容腔388与端开口390相通。
组装蒸发器组件362至纯蒸炉300时,将连接件378从端开口390推进支撑架384的收容腔388内,这样的组装十分便利。连接件378与支撑架384之间可通过过盈配合固定,或连接件378与支撑架384之间可通过螺丝固定。
较佳地,为了收集从底板306与背板328的连接处392泄漏的水,该纯蒸炉300包括导水件394,该导水件394对应于该底板306与该背板328的连接处392并设置在该隔板344上,该导水件394位于该隔板344与该底板306之间。该导水件394开设有第二导水出水口(图未示),该第二导水出水口与该回水件312连通。
本实施方式中,该导水件394呈条状,该导水件394的长度方向沿该底板306与该背板328的连接处延伸,该底板306与该背板328的连接处392在该导水件394上的正投影位于该导水件394内。这种可保证导水件394的接水效率。
第二导水出水口开设在导水件394的中间位置。对应于第二导水出水口,隔板344开设有第二过孔(图未示),水可通过第二导水出水口及第二过孔进入回水件312,回水件312再将水导向水箱314的接水部356。
较佳地,为了便于隔板344与腔体302的组装及底板306与背板328的连接处392与导水件394的对位,该隔板344包括翻边396,该底板306与该背板328的连接处392与该导水件394抵靠在该翻边396的同一侧。
具体地,由于导水件394抵靠在隔板344的一侧,在组装时,只需将底板306与背板328的连接处392抵靠在隔板344的同一侧,即可将底板306与背板328的连接处392与导水件394对准,有效地提升了生产效率,同时也能保证底板306与背板328的连接处392与导水件394的对位。
纯蒸炉300工作时,蒸发器376通电加热到一定温度后,水泵360将储水部358内的水抽至蒸发器376,液态水在蒸发器376内变成水蒸汽,之后通过出气部380、连接件378及背板328上的通气孔进入腔体302内。
腔体302的内表面会形成冷凝水,一部分冷凝水会流到腔体302的底板306上。这部分冷凝水经底板306的底板排水口308和导水腔体310的接水口342进入导水腔体310内,并经导水腔体310的第一导水出水口316进入回水件312,回水件312将水导向水箱314的接水部356,以此完成这部分冷凝水的收集。
腔体的内表面形成的冷凝水,另一部分经底板306与背板328的连接处392进入导水件394,导水件394将水导向回水件312,回水件312将水导向水箱314的接水部356,以此完成这部分冷凝水的收集。
连接件378的内表面会形成冷凝水,这部分冷凝水经出水管382被导向回水件312,回水件312将水导向水箱314的接水部356,以此完成这部分冷凝水的收集。
综上所述,上述纯蒸炉300,通过在底板排水口308处设置接水组件304,使得从腔体302内的水能够从底板排水口308排出并被收集至水箱314中,同时通过在回水件312上设置水阀305,并可由水箱314控制密封件307开放或密封回水孔318,使得即使水箱314从纯蒸炉300中取出时,水也不会洒落到纯蒸炉300的内部及/或周围,避免了对电气件造成不良影响,及/或对用户造成清洁上的负担。
同时,上述纯蒸炉300也能够收集纯蒸炉300其它的冷凝水,如底板306与背板328的连接处378泄漏的冷凝水及连接件378内的冷凝水,进一步地减少水对纯蒸炉300的影响,及保证用户使用纯蒸炉300的便利性。
在本说明书的描述中,参考术语“一个实施方式”、“一些实施方式”、“示意性实施方式”、“示例”、“具体示例”、或“一些示例”等的描述意指结合所述实施方式或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施方式或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施方式或示例。 而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施方式或示例中以合适的方式结合。
此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。在本发明的描述中,“多个”的含义是至少两个,例如两个,三个等,除非另有明确具体的限定。
尽管上面已经示出和描述了本发明的实施方式,可以理解的是,上述实施方式是示例性的,不能理解为对本发明的限制,本领域的普通技术人员在本发明的范围内可以对上述实施方式进行变化、修改、替换和变型。

Claims (19)

  1. 一种纯蒸炉,其特征在于,包括:
    腔体,该腔体包括底板,该底板开设有底板排水口;
    接水组件,该接水组件包括导水腔体、回水件及水箱,该导水腔体对应于该底板排水口设置,并通过该底板排水口连通该腔体内部,该导水腔体开设有第一出水口,该回水件对应于该第一出水口设置,该回水件开设有第二出水口,该水箱开设有进水口,该第二出水口与该进水口相通。
  2. 如权利要求1所述的纯蒸炉,其特征在于,该纯蒸炉包括隔板及底座,该隔板设置在该底座与该底板之间;
    该导水腔体设置在该隔板上且位于该隔板与该底板之间,该隔板开设有第一过孔,该第一过孔连通该第一出水口及该回水件;该回水件及该水箱设置在该底座上。
  3. 如权利要求1所述的纯蒸炉,其特征在于,该回水件及该导水腔体均呈L型。
  4. 如权利要求2所述的纯蒸炉,其特征在于,该水箱包括接水部与储水部,该接水部与该储水部分隔设置;该接水部开设有该进水口;该纯蒸炉包括水泵及蒸发器组件,该水泵通过水路连接该储水部及该蒸发器组件,该蒸发器组件用于将水蒸汽喷射至该腔体内。
  5. 如权利要求4所述的纯蒸炉,其特征在于,该水泵设置在该隔板上且与该水箱位于该隔板的同一侧。
  6. 如权利要求4所述的纯蒸炉,其特征在于,该蒸发器组件包括蒸发器及连接件;
    该腔体包括与该底板连接的侧板;该蒸发器包括出气部,该连接件固定在该出气部上,该连接件设置有出水管,该出水管对应于该回水件设置,该连接件抵持在该侧板的表面;该纯蒸炉包括支撑架,该支撑架固定在该侧板上且位于该腔体外,该连接件嵌设在该支撑架上。
  7. 如权利要求6所述的纯蒸炉,其特征在于,该纯蒸炉包括导水件,该导水件对应于该底板与该侧板的连接处并设置在该隔板上,该导水件位于该隔板与该底板之间;
    该导水件开设有导水出水口,该导水出水口与该回水件连通。
  8. 如权利要求7所述的纯蒸炉,其特征在于,该导水件呈条状,该导水件的长度方向沿该底板与该侧板的连接处延伸,该底板与该侧板的连接处在该导水件上的正投影位于该导水件内。
  9. 如权利要求7所述的纯蒸炉,其特征在于,该隔板包括翻边,该底板与该侧板的连接处与该导水件抵靠在该翻边的同一侧。
  10. 一种纯蒸炉,其特征在于,包括:
    腔体,该腔体包括底板,该底板开设有底板排水口;
    接水组件,该接水组件包括导水腔体、回水件及水箱,该导水腔体对应于该底板排水口设置,并通过该底板排水口连通该腔体内部,该导水腔体与该回水件连通,该回水件开设有回水孔,该水箱开设有进水口,该水箱可拆卸地设置在该纯蒸炉上;
    设置在该回水件上的水阀,该水阀包括密封件,当该水箱位于第一位置时,该密封件密封该回水孔,当该水箱从该第一位置移动至第二位置时,该水箱带动该密封件以使该密封件开放该回水孔,该回水孔与该进水口相通。
  11. 如权利要求10所述的纯蒸炉,其特征在于,该纯蒸炉包括隔板及底座,该隔板设置在该底座与该底板之间;该导水腔体设置在该隔板上且位于该隔板与该底板之间,该隔板开设有第一过孔,该导水腔体开设有第一导水出水口,该第一过孔连通该第一导水出水口及该回水件;该回水件及该水箱设置在该底座上。
  12. 如权利要求10所述的纯蒸炉,其特征在于,该回水件及该导水腔体均呈L型。
  13. 如权利要求11所述的纯蒸炉,其特征在于,该水箱包括接水部与储水部,该接水部与该储水部分隔设置;该接水部开设有该进水口;
    该纯蒸炉包括水泵及蒸发器组件,该水泵通过水路连接该储水部及该蒸发器组件,该蒸发器组件用于将水蒸汽喷射至该腔体内。
  14. 如权利要求13所述的纯蒸炉,其特征在于,该水泵设置在该隔板上且与该水箱位于该隔板的同一侧。
  15. 如权利要求13所述的纯蒸炉,其特征在于,该蒸发器组件包括蒸发器及连接件;该腔体包括与该底板连接的侧板;该蒸发器包括出气部,该连接件固定在该出气部上,该连接件设置有出水管,该出水管对应于该回水件设置,该连接件抵持在该侧板的表面;该纯蒸炉包括支撑架,该支撑架固定在该侧板上且位于该腔体外,该连接件嵌设在该支撑架上。
  16. 如权利要求15所述的纯蒸炉,其特征在于,该纯蒸炉包括导水件,该导水件对应于该底板与该侧板的连接处并设置在该隔板上,该导水件位于该隔板与该底板之间;该导水件开设有第二导水出水口,该第二导水出水口与该回水件连通。
  17. 如权利要求16所述的纯蒸炉,其特征在于,该导水件呈条状,该导水件的长度方向沿该底板与该侧板的连接处延伸,该底板与该侧板的连接处在该导水件上的正投影位于该导水件内。
  18. 如权利要求16所述的纯蒸炉,其特征在于,该隔板包括翻边,该底板与该侧 板的连接处与该导水件抵靠在该翻边的同一侧。
  19. 如权利要求10所述的纯蒸炉,其特征在于,该水阀包括移动件及弹性件;
    该移动件能够移动地设置在该回水件上,该密封件位于该回水件中;
    该移动件包括推动部及第一凸柱,该回水件包括第二凸柱,该弹性件的两端分别套设在该第一凸柱及该第二凸柱上;
    当该水箱从该第一位置移动至该第二位置时,该水箱推动该移动件以使该推动部带动该密封件开放该回水孔,该移动件压缩该弹性件;
    当该水箱从该第二位置移动至该第一位置时,该弹性件驱动该移动件以使该推动部向远离该密封件的方向移动,该密封件密封该回水孔。
PCT/CN2016/100383 2015-11-20 2016-09-27 纯蒸炉 Ceased WO2017084437A1 (zh)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113576279A (zh) * 2021-09-07 2021-11-02 广东美的厨房电器制造有限公司 导流组件及烹饪装置

Citations (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH05293036A (ja) * 1992-04-17 1993-11-09 Rinnai Corp 炊飯器の水量設定装置
CN201767782U (zh) * 2010-07-23 2011-03-23 宁波方太厨具有限公司 一种嵌入式电蒸箱的冷凝水回流装置
US20130019762A1 (en) * 2011-07-21 2013-01-24 Kim Jeongkil Condensate guiding system and steam cooker including the same
CN203633976U (zh) * 2013-12-06 2014-06-11 宁波方太厨具有限公司 一种蒸箱微波炉一体机
CN104799684A (zh) * 2015-05-20 2015-07-29 广东美的厨房电器制造有限公司 电蒸炉
CN104799683A (zh) * 2015-05-18 2015-07-29 广东美的厨房电器制造有限公司 电蒸炉
CN105326339A (zh) * 2015-11-20 2016-02-17 广东美的厨房电器制造有限公司 纯蒸炉
CN105326340A (zh) * 2015-11-20 2016-02-17 广东美的厨房电器制造有限公司 纯蒸炉
CN105326341A (zh) * 2015-11-20 2016-02-17 广东美的厨房电器制造有限公司 纯蒸炉
CN105342371A (zh) * 2015-11-20 2016-02-24 广东美的厨房电器制造有限公司 纯蒸炉
CN205197754U (zh) * 2015-11-20 2016-05-04 广东美的厨房电器制造有限公司 纯蒸炉
CN205197752U (zh) * 2015-11-20 2016-05-04 广东美的厨房电器制造有限公司 纯蒸炉
CN205197747U (zh) * 2015-11-20 2016-05-04 广东美的厨房电器制造有限公司 纯蒸炉
CN205197756U (zh) * 2015-11-20 2016-05-04 广东美的厨房电器制造有限公司 纯蒸炉
CN205197751U (zh) * 2015-11-20 2016-05-04 广东美的厨房电器制造有限公司 纯蒸炉

Patent Citations (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH05293036A (ja) * 1992-04-17 1993-11-09 Rinnai Corp 炊飯器の水量設定装置
CN201767782U (zh) * 2010-07-23 2011-03-23 宁波方太厨具有限公司 一种嵌入式电蒸箱的冷凝水回流装置
US20130019762A1 (en) * 2011-07-21 2013-01-24 Kim Jeongkil Condensate guiding system and steam cooker including the same
CN203633976U (zh) * 2013-12-06 2014-06-11 宁波方太厨具有限公司 一种蒸箱微波炉一体机
CN104799683A (zh) * 2015-05-18 2015-07-29 广东美的厨房电器制造有限公司 电蒸炉
CN104799684A (zh) * 2015-05-20 2015-07-29 广东美的厨房电器制造有限公司 电蒸炉
CN105326339A (zh) * 2015-11-20 2016-02-17 广东美的厨房电器制造有限公司 纯蒸炉
CN105326340A (zh) * 2015-11-20 2016-02-17 广东美的厨房电器制造有限公司 纯蒸炉
CN105326341A (zh) * 2015-11-20 2016-02-17 广东美的厨房电器制造有限公司 纯蒸炉
CN105342371A (zh) * 2015-11-20 2016-02-24 广东美的厨房电器制造有限公司 纯蒸炉
CN205197754U (zh) * 2015-11-20 2016-05-04 广东美的厨房电器制造有限公司 纯蒸炉
CN205197752U (zh) * 2015-11-20 2016-05-04 广东美的厨房电器制造有限公司 纯蒸炉
CN205197747U (zh) * 2015-11-20 2016-05-04 广东美的厨房电器制造有限公司 纯蒸炉
CN205197756U (zh) * 2015-11-20 2016-05-04 广东美的厨房电器制造有限公司 纯蒸炉
CN205197751U (zh) * 2015-11-20 2016-05-04 广东美的厨房电器制造有限公司 纯蒸炉

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113576279A (zh) * 2021-09-07 2021-11-02 广东美的厨房电器制造有限公司 导流组件及烹饪装置

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