CN111237809A - Combined multi-head gas cooker - Google Patents

Combined multi-head gas cooker Download PDF

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Publication number
CN111237809A
CN111237809A CN202010060301.9A CN202010060301A CN111237809A CN 111237809 A CN111237809 A CN 111237809A CN 202010060301 A CN202010060301 A CN 202010060301A CN 111237809 A CN111237809 A CN 111237809A
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CN
China
Prior art keywords
gas
head
block
groove
pot
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CN202010060301.9A
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Chinese (zh)
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CN111237809B (en
Inventor
郁立平
张利军
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Zhejiang Yushi Kitchenware Manufacturing Co Ltd
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Zhejiang Yushi Kitchenware Manufacturing Co Ltd
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Priority to CN202010060301.9A priority Critical patent/CN111237809B/en
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Publication of CN111237809B publication Critical patent/CN111237809B/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24CDOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
    • F24C3/00Stoves or ranges for gaseous fuels
    • F24C3/008Ranges
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24CDOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
    • F24C15/00Details
    • F24C15/10Tops, e.g. hot plates; Rings
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24CDOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
    • F24C3/00Stoves or ranges for gaseous fuels
    • F24C3/08Arrangement or mounting of burners
    • F24C3/085Arrangement or mounting of burners on ranges

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Commercial Cooking Devices (AREA)

Abstract

The invention relates to the technical field of gas pot small furnaces, in particular to a combined multi-head gas pot small furnace. The invention provides a combined multi-head gas cooker, which aims to solve the problems that the existing cooker in the background art cannot be suitable for various sizes of cookers and has poor heating effect on larger sizes of cookers. The invention discloses a combined multi-head gas pot furnace, which comprises a furnace platform, cooking ranges, a single-head pot rack and a multi-head pot rack, wherein a first groove is formed in the upper surface of the furnace platform, a second groove is formed in the bottom of the first groove, and a plurality of cooking ranges are uniformly distributed in the second groove; the single-head pot rack and the multi-head pot rack are respectively detachably connected with the furnace platform; the cooking range comprises two groups of movable gas groups and four groups of fixed gas groups. The arrangement enables the young stove of a kind of deep pot to heat the young utensils of a kind of deep pot of different sizes, greatly improves the application range of the young stove of a kind of deep pot, improves the practicability, and optimizes the heating effect of the young stove of a kind of deep pot of larger size simultaneously.

Description

Combined multi-head gas cooker
Technical Field
The invention relates to the technical field of gas pot small furnaces, in particular to a combined multi-head gas pot small furnace.
Background
The gas cooking oven is simple to operate, can be used for cooking, boiling, baking, braising and braising simultaneously, has the characteristics of high thermal efficiency, low noise, quick dish discharging and the like, is a main gas device for a kitchen, and is used for cooking, frying and frying various dishes. The gas cooker has small volume, light weight, flexible and free arrangement according to requirements, safe and reasonable integral structure, and is suitable for various gases such as petroleum gas, natural gas, artificial gas and the like.
The existing multi-head small cooking stove comprises a small cooking stove and a small cooking stove, wherein the small cooking stove is used for heating each small cooking utensil through a plurality of cooking ranges, the small cooking stove is used for heating one small cooking utensil through a plurality of cooking ranges simultaneously, in a first small cooking stove, the plurality of cooking ranges are arranged in two rows and three rows, a single-head pot frame is adopted in the small cooking stove, a plurality of first hole areas are arranged in two rows and three rows on the single-head pot frame, and each first hole area is positioned above each cooking range; in a second kind of small cooking stove, a plurality of cooking ranges are distributed in a circular ring shape, the small cooking stove adopts a multi-head pot rack, two hole areas are arranged on the multi-head pot rack, namely, a multi-head pot rack is respectively arranged above each group of cooking ranges distributed in a circular ring shape, and each hole area consists of a first hole area and 3 second hole areas which are distributed on the periphery of the first hole area in a circular shape by taking the center of the first hole area as a reference and are communicated with the first hole area; however, the first kind of young stove of a kind.
Disclosure of Invention
Aiming at the defects of the prior art, the invention aims to provide a combined multi-head gas cooker, which solves the problems that the existing cooker in the background art cannot be suitable for various sizes of cookers and has poor heating effect on larger sizes of cookers.
The technical scheme of the invention is that the combined multi-head gas cooker is a combined type multi-head gas cooker.
The combined type multi-head gas pot furnace manufactured by the technical scheme comprises a furnace body, wherein the furnace body comprises a furnace platform positioned above the furnace body, a plurality of cooking ranges are arranged on the furnace platform, the pot furnace also comprises a single-head pot frame and a multi-head pot frame, a first groove is formed in the upper surface of the furnace platform, a second groove is formed in the bottom of the first groove, and the plurality of cooking ranges are uniformly distributed in the second groove; the single-head pot rack and the multi-head pot rack are detachably connected with the furnace platform respectively;
the cooking range comprises two groups of movable gas groups and four groups of fixed gas groups, and the movable gas groups are arranged in the second groove in a sliding manner; when the small pot stove adopts the single-head pot frame, two groups of movable gas groups respectively correspond to two first hole areas positioned in the middle row on the single-head pot frame, and four groups of fixed gas groups respectively correspond to the rest first hole areas on the single-head pot frame one by one; when the young stewing furnace adopts the multi-head pot frame, four groups of fixed gas groups respectively correspond to four second hole regions, close to the edge of the furnace platform, on the multi-head pot frame one by one, and two groups of movable gas groups respectively slide to positions, corresponding to two second hole regions, far away from the edge of the furnace platform, on the multi-head pot frame one by one;
and a support column is also arranged on the second groove.
Two the below of portable gas group is located the tank bottom of second recess is provided with the sliding tray respectively, the sliding tray level sets up just the sliding tray runs through the lower terminal surface of stove top, two the sliding tray uses two the midpoint of portable gas group line is central symmetry as the benchmark, two portable gas group sliding connection respectively is two in the sliding tray.
The movable gas group comprises a gas head, a gas supply pipe and a sliding block, the gas supply pipe is a hollow cylinder, and one end of the gas supply pipe is fixedly connected with the lower end face of the gas head so as to enable the gas supply pipe to be communicated with the gas head; the sliding block is fixedly arranged on the air supply pipe, and the movable gas group is in sliding connection with the sliding groove through the sliding block; the movable gas unit further comprises a gas transmission hose used for transmitting gas to the gas head, and one end of the gas transmission hose is communicated with the gas supply pipe so as to transmit gas to the gas head through the gas supply pipe.
A third groove is further formed in the junction of the side wall of the sliding groove arranged in the length direction and the bottom of the second groove, a dustproof portion is arranged in the third groove and comprises a plurality of dustproof blocks, the dustproof blocks are uniformly distributed on two sides of the sliding groove in the length direction of the sliding groove and symmetrically arranged along the central line of the sliding groove, the adjacent dustproof blocks are mutually abutted, one end, far away from the sliding groove, of each dustproof block is hinged with the bottom of the third groove so that each dustproof block can rotate in the direction vertical to the bottom of the third groove, and a gap for the rotation of the dustproof blocks is further formed between the side wall of the third groove and the dustproof blocks; the air supply pipe is provided with a jacking block for jacking the dustproof block to two sides of the air supply pipe.
The top block is positioned above the sliding block and is a hemisphere with an arc-shaped upper surface; each dustproof block is a cuboid, and guide arc surfaces are arranged at junctions of one end, close to the air supply pipe, of the lower surface of each dustproof block and the left side surface and the right side surface of each dustproof block; the sliding block is in when sliding in the spout, the kicking block makes through with the contact of direction cambered surface the dust proof block rotates to thereby the confession the air supply pipe is in the drive of sliding block is followed down the sliding tray slides.
The lower part of the air supply pipe is located below the furnace platform and is provided with a dust collecting box, the air supply pipe penetrates through the dust collecting box and is fixedly connected with the dust collecting box, and the width of the dust collecting box is not smaller than that of the sliding groove.
The gas supply pipes of the two movable gas groups are respectively provided with a transmission block below the dust collecting box, the two transmission blocks are respectively in threaded connection with two lead screws, the two lead screws are arranged along the length direction of the sliding groove, and the rotating directions of the two lead screws are opposite; connecting blocks are fixedly arranged at two ends of the two lead screws on the lower surface of the furnace platform, and two ends of the two lead screws are respectively and rotatably connected with the two connecting blocks; the two lead screws are also provided with belt pulleys at the same end respectively, the two belt pulleys are rotationally connected through a belt, one of the belt pulleys is driven by a rotary motion output device arranged below the furnace platform.
The single-head pot frame and the multi-head pot frame are respectively erected on the groove bottom of the first groove to support pots with different sizes, and when the small pot stove adopts the single-head pot frame, the supporting columns play an auxiliary supporting role for the single-head pot frame.
The side wall of the supporting column is also provided with a plurality of air outlets which are uniformly distributed along the circumferential direction by taking the axis of the supporting column as a reference; the lower end of the supporting column penetrates through the furnace platform, a through hole is formed in the lower end face of the supporting column and is communicated with each air outlet, and the lower end of the through hole is communicated with an air blower through an air supply pipe.
The dust prevention device is characterized in that two side walls of the third groove arranged along the length direction are respectively provided with a fourth groove, a plurality of push blocks are arranged in the two fourth grooves in a sliding manner, the number of the push blocks in any one fourth groove is equal to that of the dust prevention blocks, the width of each push block is equal to that of each dust prevention block, a guide groove is further formed in the lower side wall of the fourth groove and is positioned below each push block, the length direction of the guide groove is equal to that of the dust prevention blocks, guide blocks are arranged in each guide groove in a sliding manner, and the upper end of each guide block is fixedly connected with each push block; an elastic element is further arranged in the guide groove and arranged on one side, back to the dustproof block, of the guide block.
By adopting the technical scheme, the invention has the following beneficial effects:
the combined multi-head gas cooker has two use modes, when a single-head cooker frame is used, the small cooker can be heated, and at most 6 small cookers can be heated; when using bull pot frame, this a kind of deep pot stove can heat the great a kind of deep pot utensil of size to can heat 2 great a kind of deep pot utensils of size at most simultaneously, such setting up makes this a kind of deep pot stove can heat the not unidimensional a kind of deep pot utensil, has improved the application scope of this a kind of deep pot stove greatly, has improved the practicality. And when the multi-head pot frame is used for heating a large pot, two groups of fixed gas groups and one group of movable gas group simultaneously heat one pot, so that the heating effect of the small pot furnace on the large pot is optimized to the great extent.
Drawings
FIG. 1 is a schematic structural diagram of a combined multi-head gas cooker of the invention;
FIG. 2 is a schematic sectional view of a combined multi-head gas cooking oven according to the present invention;
FIG. 3 is a schematic top view of a combined multi-head gas cooker burner of the present invention in a first heating state;
FIG. 4 is a schematic structural view of the combined multi-head gas cooker burner in a second heating state;
FIG. 5 is a schematic cross-sectional view of the hearth of the present invention;
FIG. 6 is a schematic sectional view of a combined multi-head gas cooker.
In the figure, 1, a furnace body; 2. a furnace platform; 3. a cooking range; 5. a first groove; 6. a second groove; 7. a mobile gas group; 8. a fixed gas group; 9. a support pillar; 10. a sliding groove; 11. a gas head; 12. a gas supply pipe; 13. a slider; 14. a gas hose; 15. a third groove; 16. a dust-proof portion; 17. a dust-proof block; 18. a top block; 19. a dust collecting box; 20. a transmission block; 21. a lead screw; 22. connecting blocks; 23. a belt pulley; 24. a belt; 25. a rotational motion follower; 26. a single-ended pan rack; 27. a multi-head pot rack; 28. an air outlet; 29. a through hole; 30. an air supply pipe; 31. a blower; 32. a fourth groove; 33. a push block; 34. a guide groove; 35. a guide block; 36. an elastic element; 37. a first hole region; 38. a second hole region.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and examples. In which like parts are designated by like reference numerals. It should be noted that as used in the following description, the terms "front," "back," "left," "right," "upper," and "lower" refer to directions in the drawings, and the terms "bottom" and "top," "inner," and "outer" refer to directions toward and away from, respectively, the geometric center of a particular component.
As shown in fig. 1, the combined multi-head gas pot furnace comprises a furnace body 1, wherein the furnace body 1 comprises a furnace platform 2 located above the furnace body 1, a plurality of cooking ranges 3 are arranged on the furnace platform 2, and the pot furnace further comprises a single-head pot frame 26 and a multi-head pot frame 27.
Referring to the attached drawings 1 to 4, a first groove 5 is formed in the upper surface of a furnace platform 2, a second groove 6 is formed in the bottom of the first groove 5, and a plurality of cooking ranges 3 are uniformly distributed in the second groove 6; the single-head pot frame 26 and the multi-head pot frame 27 are respectively detachably connected with the furnace platform 2; the cooking range 3 comprises two groups of movable gas groups 7 and four groups of fixed gas groups 8, and the movable gas groups 7 are arranged in the second groove 6 in a sliding manner; when the young stove adopts the single-head pot frame 26, the two groups of movable gas groups 7 respectively correspond to the two first hole areas 37 positioned in the middle row on the single-head pot frame 26, and the four groups of fixed gas groups 8 respectively correspond to the rest first hole areas 37 on the single-head pot frame 26 one by one; when the young stewing furnace adopts the multi-head pot frame 27, the four groups of fixed gas groups 8 respectively correspond to the four second hole regions 38, close to the edge of the furnace platform 2, on the multi-head pot frame 27 one by one, and the two groups of movable gas groups 7 respectively slide to the positions, corresponding to the two second hole regions 38, far away from the edge of the furnace platform 2, on the multi-head pot frame 27 one by one; a support column 9 is also arranged on the second groove 6. In this scheme, fixed gas group 8 can be for the gas device that uses in the young stove of current a kind of deep pot to communicate with outside gas feeding device, the edge support of single-end pot frame 26 or bull pot frame 27 is in the tank bottom of first recess 5 and the distance of single-end pot frame 26 or bull pot frame 27 top and the 6 tank bottoms of second recess is not less than portable gas group 7 top and the distance of fixed gas group 8 top and the 6 tank bottoms of second recess. The scheme can respectively heat the pot with smaller size and the pot with larger size; when the single-head wok stand 26 is used, the fixed gas groups 8 and the movable gas groups 7 are arranged in two rows and three columns on the stove table 2 and respectively correspond to the first hole regions 37 on the single-head wok stand 26 one by one, the distance between the adjacent fixed gas groups 8 and the movable gas groups 7 are the same, at the moment, the small-size pot can be heated by the small-size pot furnace, at most 6 small-size pots can be heated, and the transverse size of a single pot which can be heated by the small-size pot furnace is not more than the distance between the two adjacent fixed gas groups 8; when the multi-head pot frame 27 is used, the two groups of movable gas groups 7 slide, the two groups of movable gas groups 7 and the four groups of fixed gas groups 8 are arranged on the furnace platform 2 into two symmetrically arranged equilateral triangles and respectively correspond to the second hole regions 38 on the multi-head pot frame 27 one by one, the small pot furnace can heat a large-size pot tool and can heat 2 large-size pot tools at most, at the moment, the transverse size of a single pot tool which can be heated by the small pot furnace is not larger than the distance between the centers of the two equilateral triangles, namely, the movable gas group 7 and the fixed gas group 8 in any one equilateral triangle heat one large-size pot tool together. The arrangement enables the young stove of a kind of deep pot to heat the young utensil of a kind of deep pot of different sizes, greatly improves the application scope of the young stove of a kind of deep pot, has improved the practicality.
Referring to fig. 1 to 6, sliding grooves 10 are respectively formed in the bottoms of the second grooves 6 below the two movable gas groups 7, the sliding grooves 10 are horizontally arranged, the sliding grooves 10 penetrate through the lower end surface of the furnace platform 2, the two sliding grooves 10 are centrosymmetric with respect to the midpoint of the connecting line of the two movable gas groups 7, and the two movable gas groups 7 are respectively slidably connected in the two sliding grooves 10. The movable gas group 7 is connected to the furnace platform 2 in a sliding manner, and when the small cooking stove needs to be switched from a state of heating a plurality of small cooking utensils by using the single-head pot frame 26 to a state of heating 2 large cooking utensils by using the multi-head pot frame 27, the movable gas group 7 can be switched by sliding on the furnace platform 2 along the sliding groove 10. The arrangement is convenient for the operation of the operators when the young stove of this kind of deep pot is used to heat the different sizes of deep pots.
Referring to fig. 2, 3, 4 and 6, the movable gas group 7 includes a gas head 11, a gas supply pipe 12 and a sliding block 13, the gas supply pipe 12 is a hollow cylinder, and one end of the gas supply pipe 12 is fixedly connected to a lower end surface of the gas head 11 so as to communicate the gas supply pipe 12 with the gas head 11; the sliding block 13 is fixedly arranged on the air supply pipe 12, and the movable gas group 7 is in sliding connection with the sliding groove 10 through the sliding block 13; the movable gas group 7 further comprises a gas delivery hose 14 for delivering gas to the gas head 11, and one end of the gas delivery hose 14 is communicated with the gas supply pipe 12 to deliver gas to the gas head 11 through the gas supply pipe 12. The mobile gas group 7 is communicated with an external gas supply device through a gas transmission hose 14. In operation, gas in the gas supply device flows into the gas supply pipe 12 through the gas hose 14, and finally flows out of the gas head 11 to be ignited and heat the cooker. The arrangement of the hose ensures that the mobile gas group 7 can freely slide along the sliding groove 10.
Referring to fig. 3 to 6, a third groove 15 is further provided at a boundary between a side wall of the sliding groove 10 arranged along the length direction and a bottom of the second groove 6, a dust-proof portion 16 is provided in the third groove 15, the dust-proof portion 16 includes a plurality of dust-proof blocks 17, the dust-proof blocks 17 are uniformly distributed on two sides of the sliding groove 10 along the length direction of the sliding groove 10 and symmetrically arranged along a central line of the sliding groove 10, adjacent dust-proof blocks 17 are abutted against each other, one end of each dust-proof block 17 far away from the sliding groove 10 is hinged to the bottom of the third groove 15 so that each dust-proof block 17 rotates along a direction perpendicular to the bottom of the third groove 15, and a gap for the dust-proof block 17 to rotate is further provided between the side wall of the third groove 15 and the dust-proof; the air supply pipe 12 is provided with a jacking block 18 for jacking the dust-proof block 17 to both sides of the air supply pipe 12. The third recess 15 sets up in the top of second recess 6 and the width of third recess 15 is greater than the width of second recess 6, dustproof piece 17 sets up to two symmetrical rows in the both sides of sliding tray 10 respectively along the length direction of sliding tray 10, and the relative face butt between adjacent each dustproof piece 17, in order to form dustproof portion 16 above second recess 6, the setting of kicking block 18 can make portable gas group 7 when needs slide along sliding tray 10, can utilize the kicking block 18 to push up the dustproof piece 17 that keeps off on the moving path to portable gas group 7 both sides so that pass through. The arrangement of the dustproof part 16 plays a role in shielding the sliding groove 10, so that combustion residues and the like generated during combustion are prevented from falling into the lower part of the furnace platform 2 from the sliding groove 10 to generate adverse effects on the gas conveying hose 14 and the gas supply pipe 12 below the furnace platform 2 or a gas supply device, the safety of the young stewing furnace during use is guaranteed, and potential safety hazards are reduced.
Referring to fig. 6, the top block 18 is located above the sliding block 13, and the top block 18 is a hemisphere with an arc-shaped upper surface; each dustproof block 17 is a cuboid, and guide arc surfaces are arranged at the junctions of one end of the lower surface of the dustproof block 17, which is close to the air supply pipe 12, and the left side surface and the right side surface of the dustproof block 17; when the sliding block 13 slides in the sliding groove, the top block 18 makes the dust-proof block 17 rotate to two sides of the air supply pipe 12 by contacting with the guiding cambered surface, so that the air supply pipe 12 slides along the sliding groove 10 under the driving of the sliding block 13. Through the contact between the hemispherical top block 18 and the guide arc surface on the lower end surface of the dustproof block 17, when the movable gas group 7 passes through the sliding groove 10 with the dustproof block 17 arranged above, the resistance received by the movable gas group is small, and the movable gas group can slide along the sliding groove 10 more smoothly.
Referring to fig. 2 and 6, a dust box 19 is disposed below the furnace platform 2 at the lower part of the air supply pipe 12, the air supply pipe 12 penetrates the dust box 19 and is fixedly connected with the dust box 19, and the width of the dust box 19 is not less than the width of the sliding groove 10. The ash collecting box 19 is arranged to collect dust and combustion residues entering the lower part of the furnace platform 2 through the dust-proof part 16, so that the cleanness and tidiness of the environment below the furnace platform 2 are further guaranteed, the harmful effects of the combustion residues on the gas transmission hose 14 and the gas supply pipe 12 or a gas supply device are reduced, the safety of the cooker during use is guaranteed, and the potential safety hazard is reduced.
Referring to fig. 2, 5 and 6, the gas supply pipes 12 of the two sets of mobile gas combustion groups 7 are provided with transmission blocks 20 below the dust collecting box 19, the two transmission blocks 20 are respectively screwed with two lead screws 21, the two lead screws 21 are both arranged along the length direction of the sliding groove 10, and the rotation directions of the two lead screws 21 are opposite; connecting blocks 22 are fixedly arranged at two ends of the two lead screws 21 on the lower surface of the furnace platform 2, and two ends of the two lead screws 21 are respectively in rotating connection with the two connecting blocks 22; the same ends of the two screw rods 21 are also respectively provided with belt pulleys 23, the two belt pulleys 23 are rotationally connected through a belt 24, and one of the belt pulleys 23 is driven by a rotary motion output device 25 arranged below the furnace platform 2. The rotational movement outputter 25 may be a structure having a rotational movement output function such as a motor. When the cooker is in a state that a single-head cooker frame 26 is used for heating a plurality of small-sized cookers, the two groups of movable gas groups 7 are respectively positioned at the positions with the farthest distance on the two lead screws 21. When a multi-head pot frame 27 is needed to heat 2 pots with large sizes, the motor works to drive one of the screw rods 21 to rotate, the screw rod 21 drives the other screw rod 21 to synchronously rotate through the belt 24 and the belt pulley 23 when rotating, the rotating speeds of the two screw rods 21 are the same, and the two sets of movable gas sets 7 are driven to relatively move in the sliding groove 10 at the same speed through the two transmission blocks 20 respectively. The setting of motor makes operating personnel can change the position of portable gas group 7 through control motor work, has reduced the possibility that is scalded when operating personnel direct contact portable gas group 7, and it is more convenient to operate simultaneously.
Referring to fig. 1, a single-head wok stand 26 and a multi-head wok stand 27 are respectively erected on the bottoms of the first grooves 5 to support different sizes of pots, and when the single-head wok stand 26 is adopted in the small pot stove, the supporting column 9 plays an auxiliary supporting role for the single-head wok stand 26. When the small cooking oven is needed to heat a plurality of small cooking devices, the single-head pot frame 26 is adopted to support the cooking devices; when the small pot furnace is needed to heat a large pot, the multi-head pot frame 27 is adopted to replace the single-head pot frame 26, so that the large pot is supported.
Referring to fig. 1, 2, 4 and 6, the side wall of the supporting column 9 is further provided with a plurality of air outlets 28, and the plurality of air outlets 28 are uniformly distributed along the circumferential direction by taking the axis of the supporting column 9 as a reference; the lower end of the supporting column 9 penetrates through the furnace platform 2, a through hole 29 is formed in the lower end face of the supporting column 9, the through hole 29 is communicated with each air outlet 28, and the lower end of the through hole 29 is communicated with an air blower 31 through an air supply pipe 30. Due to the arrangement, when the small cooking stove heats the cooking tool, the air blower 31 can provide sufficient air for combustion to each cooking range 3 above the cooking bench 2 through the air supply pipe 30 and the air outlet 28, and the heating effect of the small cooking stove is guaranteed.
Referring to fig. 2 and 6, the two side walls of the third groove 15 arranged along the length direction are both provided with a fourth groove 32, a plurality of pushing blocks 33 are arranged in the two fourth grooves 32 in a sliding manner, the number of the pushing blocks 33 in any one fourth groove 32 is the same as that of the dust-proof blocks 17, the width of each pushing block 33 is the same as that of each dust-proof block 17, a guide groove 34 is further arranged on the lower side wall of the fourth groove 32 below each pushing block 33, the length direction of the guide groove 34 is the same as that of the dust-proof blocks 17, a guide block 35 is arranged in each guide groove 34 in a sliding manner, and the upper end of each guide block 35 is fixedly connected with each pushing block 33; an elastic element 36 is also arranged in the guide groove 34, and the elastic element 36 is arranged on the side of the guide block 35 facing away from the dust-proof block 17. The elastic element 36 may be a spring. Because need leave the clearance between the articulated one end of dust proof block 17 and the lateral wall of third recess 15 and rotate for dust proof block 17, this part clearance has been filled in the setting of ejector pad 33 for when dust proof block 17 was in the horizontality ejector pad 33 and dust proof block 17 kept away from the one end butt of air supply pipe 12, thereby prevent that dust and burning residue from getting into the clearance and hindering dust proof block 17's rotation. When the dust-proof block 17 rotates, the pushing block 33 is pushed, so that the pushing block 33 compresses the elastic element 36 in the guide groove 34 through the guide block 35 and slides into the fourth groove 32.
The working principle is as follows:
the scheme can respectively heat the pot with smaller size and the pot with larger size; when the small pot furnace needs to heat a plurality of small pots by using the single-head pot frame 26, the motor is enabled to work, the motor drives the two lead screws 21 to rotate, the transmission block 20 drives the movable gas group 7 to move along the sliding groove 10 under the rotation of the lead screws 21 so that the fixed gas group 8 and the movable gas group 7 are arranged in two rows and three rows on the furnace platform 2 to form a first heating state, and at the moment, the small pot furnace can heat the small pots and can heat 6 small pots at most; when the young stove of this a kind of deep pot needs to use bull pot frame 27 to heat 2 great pots of utensil of size, motor work drives portable gas group 7 and removes for a plurality of portable gas group 7 and a plurality of fixed gas group 8 are arranged into two equilateral triangles that the symmetry set up on stove platform 2 in order to form the second heating state, it has two fixed gas group 8 and a portable gas group 7 to equally distribute in every equilateral triangle this moment, heat a kind of deep pot utensil on each equilateral triangle, make this young stove of a kind of deep pot can heat the great pot of utensil of size, and can heat the great pot of utensil of a plurality of sizes at most simultaneously.
The technical solutions described above only represent the preferred technical solutions of the present invention, and some possible modifications to some parts of the technical solutions by those skilled in the art all represent the principles of the present invention, and fall within the protection scope of the present invention.

Claims (10)

1. The utility model provides a modular young stove of bull gas a kind of deep pot, includes furnace body (1), furnace body (1) is including being located hearth (2) of furnace body (1) top, be provided with a plurality of kitchen ranges (3) on hearth (2), this young stove of a kind of deep pot still includes single-end pot frame (26) and bull pot frame (27), its characterized in that: a first groove (5) is formed in the upper surface of the furnace platform (2), a second groove (6) is formed in the bottom of the first groove (5), and a plurality of cooking ranges (3) are uniformly distributed in the second groove (6); the single-head pot rack (26) and the multi-head pot rack (27) are detachably connected with the furnace platform (2) respectively.
The cooking range (3) comprises two groups of movable gas groups (7) and four groups of fixed gas groups (8), and the movable gas groups (7) are arranged in the second grooves (6) in a sliding manner; when the young stove of this a kind of deep pot adopts the single-end wok stand (26), two groups of said portable gas group (7) correspond to two first hole areas (37) located in the middle row on the said single-end wok stand (26) separately, four groups of fixed gas groups (8) correspond to the remaining first hole area (37) on the said single-end wok stand (26) one-to-one separately; when the young stove of this a kind of deep pot adopts bull pot frame (27), four groups of said fixed gas group (8) correspond to four second hole areas (38) close to the edge of said stove top (2) on the said bull pot frame (27) one-to-one separately, two groups of portable gas groups (7) correspond to two second hole areas (38) far away from the edge of said stove top (2) on the said bull pot frame (27) one-to-one separately;
and a support column (9) is also arranged on the second groove (6).
2. The combined multi-head gas cooking oven according to claim 1, characterized in that: two the below of portable gas group (7) is located the tank bottom of second recess (6) is provided with sliding tray (10) respectively, sliding tray (10) level sets up just sliding tray (10) run through the lower terminal surface of stove platform (2), two sliding tray (10) use two the mid point of portable gas group (7) line is central symmetry, two portable gas group (7) sliding connection respectively is two in sliding tray (10).
3. The combined multi-head gas cooking oven according to claim 2, characterized in that: the movable gas group (7) comprises a gas head (11), a gas supply pipe (12) and a sliding block (13), the gas supply pipe (12) is a hollow cylinder, and one end of the gas supply pipe (12) is fixedly connected with the lower end face of the gas head (11) so that the gas supply pipe (12) is communicated with the gas head (11); the sliding block (13) is fixedly arranged on the air supply pipe (12), and the movable gas group (7) is in sliding connection with the sliding groove (10) through the sliding block (13); the mobile gas group (7) further comprises a gas transmission hose (14) used for transmitting gas to the gas head (11), one end of the gas transmission hose (14) is communicated with the gas supply pipe (12) to transmit gas to the gas head (11) through the gas supply pipe (12).
4. The combined multi-head gas cooking oven according to claim 3, characterized in that: a third groove (15) is also arranged at the junction of the side wall of the sliding groove (10) arranged along the length direction and the bottom of the second groove (6), be provided with dust-proof portion (16) in third recess (15), dust-proof portion (16) include a plurality of dust proof block (17), and is a plurality of dust proof block (17) are followed the length direction of sliding tray (10) is in the both sides equipartition of sliding tray (10) and with the central line symmetry of sliding tray (10) sets up, and is adjacent mutual butt between dust proof block (17), each dust proof block (17) are kept away from the one end of sliding tray (10) with the tank bottom of third recess (15) is articulated so that each dust proof block (17) are along perpendicular the direction of third recess (15) bottom surface is rotated, a gap for rotating the dustproof block (17) is also arranged between the side wall of the third groove (15) and the dustproof block (17); the air supply pipe (12) is provided with a jacking block (18) used for jacking the dustproof block (17) to two sides of the air supply pipe (12).
5. The combined multi-head gas cooking oven according to claim 4, wherein: the top block (18) is positioned above the sliding block (13), and the top block (18) is a hemisphere of which the upper surface is an arc surface; each dust-proof block (17) is a cuboid, and guide arc surfaces are arranged at junctions of one end, close to the air supply pipe (12), of the lower surface of each dust-proof block (17) and the left side surface and the right side surface of each dust-proof block (17); when sliding block (13) slided in the spout, kicking block (18) through with the direction cambered surface contact makes dust proof block (17) rotate to the both sides of air supply pipe (12) thereby supply air supply pipe (12) are in the drive of sliding block (13) is followed sliding tray (10) slide.
6. The combined multi-head gas cooking oven according to claim 3, characterized in that: the lower part of the air supply pipe (12) is located ash collecting box (19) is arranged below the furnace platform (2), the air supply pipe (12) penetrates through the ash collecting box (19) and is fixedly connected with the ash collecting box (19), and the width of the ash collecting box (19) is not smaller than that of the sliding groove (10).
7. The combined multi-head gas cooking oven according to claim 6, characterized in that: the gas supply pipes (12) of the two groups of mobile gas groups (7) are respectively provided with a transmission block (20) below the ash collecting box (19), the two transmission blocks (20) are respectively in threaded connection with two lead screws (21), the two lead screws (21) are respectively arranged along the length direction of the sliding groove (10), and the rotating directions of the two lead screws (21) are opposite; connecting blocks (22) are fixedly arranged at two ends of the two lead screws (21) on the lower surface of the furnace platform (2), and two ends of the two lead screws (21) are respectively in rotating connection with the two connecting blocks (22); the same end of each of the two lead screws (21) is also provided with a belt pulley (23), the two belt pulleys (23) are rotationally connected through a belt (24), and one belt pulley (23) is driven through a rotary motion output device (25) arranged below the furnace platform (2); when the heating device is in the first heating state or the second heating state, the two transmission blocks (20) are respectively positioned at one ends, far away from each other, of the two lead screws (21).
8. The combined multi-head gas cooking oven according to claim 1, characterized in that: the single-head pot frame (26) and the multi-head pot frame (27) are erected on the bottom of the first groove (5) respectively to support pot tools of different sizes, and when the single-head pot frame (26) is adopted by the small pot furnace, the supporting column (9) plays an auxiliary supporting role for the single-head pot frame (26).
9. The combined multi-head gas cooking oven according to claim 1, characterized in that: a plurality of air outlets (28) are further formed in the side wall of the supporting column (9), and the air outlets (28) are uniformly distributed along the circumferential direction by taking the axis of the supporting column (9) as a reference; the lower end of the supporting column (9) penetrates through the furnace platform (2), a through hole (29) is formed in the lower end face of the supporting column (9), the through hole (29) is communicated with each air outlet (28), and the lower end of the through hole (29) is communicated with an air blower (31) through an air supply pipe (30).
10. The combined multi-head gas cooking oven according to claim 4, wherein: the dust prevention device is characterized in that two side walls of the third groove (15) arranged along the length direction are respectively provided with a fourth groove (32), a plurality of push blocks (33) are arranged in the two fourth grooves (32) in a sliding manner, the number of the push blocks (33) in any one of the fourth grooves (32) is equal to the number of the dust prevention blocks (17), the width of each push block (33) is equal to the width of each dust prevention block (17), a guide groove (34) is further formed in the lower side wall of the fourth groove (32) and located below each push block (33), the length direction of the guide groove (34) is equal to the length direction of the dust prevention blocks (17), a guide block (35) is arranged in each guide groove (34) in a sliding manner, and the upper end of each guide block (35) is fixedly connected with each push block (33); an elastic element (36) is further arranged in the guide groove (34), and the elastic element (36) is arranged on one side, back to the dustproof block (17), of the guide block (35).
CN202010060301.9A 2020-01-19 2020-01-19 Combined multi-head gas cooker Active CN111237809B (en)

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WO2005028961A1 (en) * 2003-09-23 2005-03-31 Marcello Nocera Cooking method and apparatus
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Publication number Priority date Publication date Assignee Title
CN113081835A (en) * 2021-04-13 2021-07-09 成都中医药大学附属医院 Plaster decocting device
CN113081835B (en) * 2021-04-13 2022-06-03 成都中医药大学附属医院 Plaster decocting device

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