CN108030385B - Lifting driving module for lifting chafing dish - Google Patents
Lifting driving module for lifting chafing dish Download PDFInfo
- Publication number
- CN108030385B CN108030385B CN201810032847.6A CN201810032847A CN108030385B CN 108030385 B CN108030385 B CN 108030385B CN 201810032847 A CN201810032847 A CN 201810032847A CN 108030385 B CN108030385 B CN 108030385B
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- telescopic rod
- lifting
- rod
- telescopic
- screw
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47J—KITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
- A47J27/00—Cooking-vessels
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47J—KITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
- A47J36/00—Parts, details or accessories of cooking-vessels
Abstract
The invention relates to a lifting driving module for a lifting hot pot, which comprises a driving part, a telescopic rod, a transmission mechanism and a shell assembly, wherein the telescopic rod and the transmission mechanism are arranged in the shell assembly, the telescopic rod is in telescopic movable fit with the shell assembly and is in transmission connection with the driving part through the transmission mechanism, the lifting driving module also comprises a push rod, the top end of the telescopic rod extends out of the shell assembly, and the push rod is detachably and fixedly connected with the top end of the telescopic rod. The lifting driving module for the lifting chafing dish belongs to an independent module, a transmission part inside the module is not influenced by other structures of the lifting chafing dish, the work is more reliable, the installation is more convenient, in addition, the ejector rod can be detached, and after the ejector rod is detached, the function of the lifting chafing dish matched with the ejector rod can be changed into the traditional heating chafing dish function.
Description
Technical Field
The invention relates to a lifting hot pot, in particular to a lifting driving module for the lifting hot pot.
Background
The traditional hot pot mainly comprises a soup pot and a heating device, wherein the soup pot is placed on the heating device for heating, soup bases and food materials are placed in the soup pot, and after the food materials are cooked, a plurality of dining staff can scoop up the food materials in the soup pot. This is certainly the most convenient one if the eaters each scoop up the food with their own chopsticks, but at the same time it is the least hygienic one. However, if the dining staff uses the public chopsticks and the spoon net to scoop the food, the people are kept in mind and troublesome. In addition, when the traditional hot pot is used for cooking, food materials in the soup pot are easy to be leaked and fished, so that the food materials are wasted.
Therefore, a merchant designs a lifting chafing dish, which is mainly provided with a set of lifting control mechanism and a screen, wherein the screen is movably arranged in the soup pot, and the lifting control mechanism is used for controlling the lifting movement of the screen. By lifting the screen, the food materials in the soup pot can be exposed out of the water surface, so that the food staff can conveniently clamp the soup, and the embarrassing situation that the respective chopsticks of the food staff are soaked in soup is avoided.
However, the current lifting control mechanism has a scattered structure, does not belong to an integral module, brings great inconvenience to installation, and meanwhile, the transmission reliability of the lifting control mechanism is limited.
Disclosure of Invention
The invention aims to provide the lifting driving module for the lifting chafing dish, which has the advantages of simple and reasonable structure, reliable work and convenient installation, and overcomes the defects of the prior art.
The purpose of the invention is realized in the following way:
the utility model provides a lift is lift drive module for chafing dish, including the stockpot, the screen cloth, drive unit, the telescopic link, drive mechanism, electric heater unit and casing subassembly, telescopic link and drive mechanism set up in the casing subassembly, electric heater unit is equipped with the through-hole that runs through its upper and lower both ends, telescopic link and the flexible clearance fit of casing subassembly, and be connected with drive unit transmission through drive mechanism, business turn over through-hole when the telescopic link stretches out and draws back, the screen cloth is established in the stockpot, the corresponding through-hole in stockpot bottom is equipped with the opening, be equipped with the sleeve pipe on the opening, the screen cloth corresponds the sleeve pipe and is equipped with supporting cover, its characterized in that: the telescopic device also comprises a push rod which is arranged in a split manner with the telescopic rod, the top end of the telescopic rod extends out of the shell assembly, the push rod extends into the sleeve from bottom to top and is detachably and fixedly connected with the top end of the telescopic rod, the supporting cover is covered on the sleeve, and when the push rod is lifted along with the telescopic rod, the screen mesh and the push rod are lifted synchronously.
The lifting driving module is arranged for lifting the hot pot, belongs to an independent module and is arranged inside a hot pot shell for use.
The aim of the invention can be also solved by adopting the following technical measures:
as a more specific scheme, the detachable fixed connection of the telescopic rod and the ejector rod is magnetic attraction connection, threaded connection or buckle connection.
As a further scheme, the telescopic rod top is provided with an iron block, the lower end of the ejector rod is provided with a magnetic block, and the iron block is magnetically connected with the magnetic block. The top end of the telescopic rod is matched with the ejector rod through magnetic attraction, so the top end surface of the telescopic rod can be designed into a plane.
Or the top end of the telescopic rod is provided with a connector, and the top surface of the connector is provided with a connecting screw hole; the lower end of the ejector rod is provided with a connecting screw head, and the connecting screw head is in threaded connection with the connecting screw hole.
As a further scheme, the transmission mechanism comprises a speed reduction transmission device and a screw rod, the screw rod is in transmission connection with the driving part through the speed reduction transmission device, and the telescopic rod is matched with the screw rod and the screw rod; the driving part is a motor or a hand-operated mechanism.
The inner end of the telescopic rod is provided with a nut which is in threaded connection with the screw rod, a channel is arranged in the telescopic rod corresponding to the screw rod, the channel is communicated with a screw hole of the nut, and the screw rod stretches into the channel of the telescopic rod; the nut and/or the telescopic rod are in linear sliding fit with the shell assembly.
The speed reduction transmission device comprises a turbine and a worm, the turbine, the screw, the nut, the telescopic rod and the ejector rod are coaxially arranged, the worm is meshed with the turbine, the worm is connected with a motor in a transmission manner, and the motor is arranged outside the shell assembly. The turbine, the screw rod, the nut, the telescopic rod and the ejector rod are coaxially arranged, so that the whole acting force of the telescopic rod is improved, and abrasion is reduced.
The shell assembly comprises a reduction gearbox lower cover, a reduction gearbox upper cover and a telescopic rod outer cover, wherein a reduction transmission device is arranged in an inner cavity surrounded by the reduction gearbox lower cover and the reduction gearbox upper cover, the telescopic rod outer cover is arranged at the top of the reduction gearbox upper cover, a screw rod and a telescopic rod are arranged in the telescopic rod outer cover, and a yielding hole is formed in the top of the telescopic rod outer cover corresponding to the top of the telescopic rod.
The periphery at the top of the abdication hole is provided with a convex ring, and the convex ring is favorable for being matched with other parts for positioning, sealing and the like.
As a more specific alternative, the screw, nut and telescopic rod are made of non-magnetically conductive material, suitable for use on chafing dish by electromagnetic heating.
As a more specific scheme, the telescopic rod is a rack, and the transmission mechanism comprises a speed reduction transmission device and a driving gear, wherein the driving gear is meshed with the rack and is in transmission connection with the motor through the speed reduction transmission device.
The beneficial effects of the invention are as follows:
(1) The lifting driving module for the lifting chafing dish belongs to an independent module, the transmission parts inside the module are not influenced by other structures of the lifting chafing dish, the operation is more reliable, the installation is more convenient, in addition, the ejector rod can be disassembled, and the function of the lifting chafing dish matched with the ejector rod can be changed into the traditional heating chafing dish function after the ejector rod is disassembled;
(2) The ejector rod of the lifting driving module for the lifting chafing dish is detachably and fixedly connected with the top end of the telescopic rod, namely, after the ejector rod is connected with the telescopic rod, the ejector rod and the telescopic rod are fixedly connected together, the ejector rod and the telescopic rod cannot be separated under normal use, and when the ejector rod is not needed, the ejector rod and the telescopic rod can be separated through simple operation, so that the action of the lifting driving module can be changed rapidly;
(3) The travel of the telescopic rod of the lifting driving module for the lifting chafing dish is controlled by the motor driving circuit, so that the internal structure of the lifting driving module is simplified, and the cost is reduced.
Drawings
FIG. 1 is an exploded view of an embodiment of the present invention.
Fig. 2 is a schematic perspective view of the assembled structure of the present invention.
Fig. 3 is a schematic diagram of the front view structure of fig. 2.
Fig. 4 is a schematic view of the section A-A and enlarged structure of fig. 3.
FIG. 5 is a schematic cross-sectional view of a use state of the present invention.
Fig. 6 is a schematic view of the lifting chafing dish of fig. 5 after placing a vessel.
FIG. 7 is a schematic cross-sectional view of another embodiment of the present invention.
Fig. 8 is a schematic cross-sectional view of another embodiment of the present invention after being matched with an embedded lifting chafing dish.
Detailed Description
The invention is further described below with reference to the drawings and examples.
Referring to fig. 1 to 4, an elevating driving module 10 for elevating chafing dish includes a motor 1, a telescopic rod 5, a transmission mechanism and a housing assembly, wherein the telescopic rod 5 and the transmission mechanism are arranged in the housing assembly, and the telescopic rod 5 is in telescopic movable fit with the housing assembly and is in transmission connection with the motor 1 through the transmission mechanism; the telescopic rod also comprises a push rod 101 (shown in fig. 6), the top end of the telescopic rod 5 extends out of the shell assembly, and the push rod 101 is detachably and fixedly connected with the outer end of the telescopic rod 5.
The detachable fixed connection of the telescopic rod 5 and the ejector rod 101 is threaded connection. The outer end of the telescopic rod 5 is provided with a connector 6, and the top surface of the connector 6 is provided with a connecting screw hole 61; the lower end of the ejector rod 101 is provided with a connecting screw head which is in threaded connection with the connecting screw hole 61.
The detachable fixed connection of the telescopic rod 5 and the ejector rod 101 is a turnbuckle connection.
The transmission mechanism comprises a speed reduction transmission device and a screw rod 3, the screw rod 3 is in transmission connection with the motor 1 through the speed reduction transmission device, and the telescopic rod 5 is matched with the screw rod 3 in a screw rod mode.
The inner end of the telescopic rod 5 is provided with a nut 4, the nut 4 is in threaded connection with the screw rod 3, a channel 51 is arranged in the telescopic rod 5 corresponding to the screw rod 3, the channel 51 is communicated with the screw hole 42 of the nut 4, and the screw rod 3 stretches into the channel 51 of the telescopic rod 5. The periphery of the nut 4 is provided with a guide convex rib 41 along the axial direction of the telescopic rod 5, the inner wall of the telescopic rod outer cover 7 is correspondingly provided with a guide groove 73, and the guide convex rib 41 is in linear sliding fit with the guide groove 73.
The speed reduction transmission device comprises a turbine 23 and a worm 21, wherein the turbine 23, a screw 3, a nut 4, a telescopic rod 5 and a push rod 101 are coaxially arranged, the worm 21 is meshed with the turbine 23, the worm 21 is in transmission connection with a motor 1, and the motor 1 is arranged outside a lower gearbox cover 22 and an upper gearbox cover 24.
The shell assembly comprises a reduction gearbox lower cover 22, a reduction gearbox upper cover 24 and a telescopic rod outer cover 7, a reduction transmission device is arranged in an inner cavity surrounded by the reduction gearbox lower cover 22 and the reduction gearbox upper cover 24, the telescopic rod outer cover 7 is arranged at the top of the reduction gearbox upper cover 24, the screw 3 and the telescopic rod 5 are arranged in the telescopic rod outer cover 7, and a yielding hole 721 is formed in the top end of the telescopic rod outer cover 7 corresponding to the outer end of the telescopic rod 5.
The top periphery of the relief hole 721 is provided with a collar 72.
Referring to fig. 5, the lifting hot pot 8 is an embedded lifting hot pot, and comprises an electric heating device 84 and a shell assembly, wherein the electric heating device 84 is provided with through holes penetrating through the upper end and the lower end of the electric heating device, and the telescopic rod 5 of the lifting driving module 10 extends out of the through holes and points to the through holes from bottom to top.
The shell assembly comprises an outer pot body 82 and a lower cover 81, an electric heating device 84 is arranged in the outer pot body 82, an opening is formed in the bottom of the outer pot body 82, the lower cover 81 is respectively arranged on the upper side and the lower side of the opening, and the lifting driving module 10 is arranged on the lower cover 81. The electric heating device 84 is an infrared heating module or an electromagnetic heating module, the electric heating device 84 is provided with a micro-crystal plate 85, the micro-crystal plate 85 is provided with a hole site corresponding to the through hole of the electric heating device 84, the periphery of the micro-crystal plate 85 is provided with a frame 83, the micro-crystal plate 85 is supported on the frame 83, and the periphery of the frame 83 is provided with an external supporting flanging. When the embedded lifting hot pot 8 is installed, a concave cavity is formed in the top surface of the table top, the embedded lifting hot pot 8 is arranged in the concave cavity, and the outer supporting flanging of the frame 83 is placed on the edge of the top of the concave cavity. Wherein, the structure shown in fig. 5 is that the ejector rod is taken down, and the normal function of the table matched with the embedded lifting chafing dish 8 is not affected. When the electric heating device 84 is an electromagnetic heating module, the screw 3, the nut 4 and the telescopic rod 5 are made of a non-magnetically conductive material (the non-magnetically conductive material is plastic, stainless steel, copper, aluminum, ceramic, etc.).
Referring to fig. 6, the ejector rod 101 is screwed into the upper end of the telescopic rod 5 of the lifting driving module 10, so that the soup pot 20 and the screen 30 can be matched for use, the soup pot 20 is arranged on the micro-crystal plate 85, an opening is arranged at the bottom of the soup pot 20 corresponding to the hole position of the micro-crystal plate 85, a sleeve 201 is arranged on the opening, the upper end and the lower end of the sleeve 201 are opened, and the ejector rod 101 extends into the sleeve 201 from bottom to top; the screen 30 is arranged in the soup pot 20 and sleeved outside the sleeve 201, the screen 30 is provided with a supporting cover 301 corresponding to the sleeve 201, and the supporting cover 301 is covered on the sleeve 201. The ejector rod 101 stretches into the sleeve 201, and when the ejector rod 101 moves upwards, the upper end of the ejector rod 101 contacts with the inner top surface of the supporting cover 301, so that the supporting cover 301 and the screen 30 connected with the supporting cover are lifted, and food in the soup pot can be exposed out of the water surface.
Referring to fig. 7, the lifting hot pot is a table-type lifting hot pot 9, which comprises an electric heating device 92 and a shell component, wherein the electric heating device 92 is arranged on the shell component, the electric heating device 92 is provided with a through hole penetrating through the upper end and the lower end of the electric heating device, the shell component is provided with a heat insulation cavity 98 corresponding to the lifting driving module 10, the lifting driving module 10 is arranged in the heat insulation cavity 98, the heat insulation cavity 98 is provided with a hole site corresponding to the through hole, and the telescopic rod 5 extends out of the through hole and points to the through hole from bottom to top.
The shell assembly comprises an outer pot body 91, an upper cover 96 and a lower cover 95, the outer pot body is disc-shaped, the electric heating device 92 is arranged in the outer pot body 91, an opening is formed in the bottom of the outer pot body 91, the upper cover 96 and the lower cover 95 are respectively arranged on the upper side and the lower side of the opening, and the upper cover 96, the lower cover 95 and the bottom of the outer pot body 91 jointly enclose the heat insulation cavity 98.
The motor 1 of the elevation driving module 10 is located in the lower housing 95.
The outer pot body 91 is also provided with a supporting frame 93, and the electric heating device 92 is arranged on the supporting frame 93. The electric heating device 92 is an electric heating plate. The bottom of the outer pot body 91 is also provided with supporting feet 94, and one side of the outer pot body 91 is provided with a control panel 97.
The push rod 101 is screwed into the upper end of the telescopic rod 5 of the lifting driving module 10, so that the telescopic rod can be matched with the soup pot 20 and the screen 30 for use, the soup pot 20 is arranged on the electric heating device 92, an opening is formed in the bottom of the soup pot 20 corresponding to a through hole of the electric heating device 92, a sleeve is arranged on the opening, the upper end and the lower end of the sleeve 201 are opened, and the push rod 101 extends into the sleeve from bottom to top; the screen 30 is arranged in the soup pot 20 and sleeved outside the sleeve, the screen 30 is provided with a supporting cover corresponding to the sleeve, and the supporting cover is arranged on the sleeve. The ejector rod 101 stretches into the sleeve, and when the ejector rod 101 moves upwards, the upper end of the ejector rod 101 contacts with the inner top surface of the supporting cover, so that the supporting cover and the screen 30 connected with the supporting cover are lifted, and food in the soup pot can be exposed out of the water surface.
The second embodiment differs from the first embodiment in that: referring to fig. 8, the detachable fixed connection between the telescopic rod 5 and the ejector rod 101 is a magnetic connection. The outer end of the telescopic rod 5 is provided with an iron block 62, the lower end of the ejector rod 101 is provided with a magnetic block 102, and the iron block 62 is in magnetic attraction connection with the magnetic block 102. In this embodiment, the lifting chafing dish is an embedded lifting chafing dish 8, which is embedded on the desktop, because the telescopic rod 5 is magnetically attracted and connected with the ejector rod 101, the top end surface of the telescopic rod can be designed into a plane, the magnetic block 102 at the lower end of the ejector rod 101 can be a strong magnet, and when the ejector rod 101 is taken away, the position on the desktop corresponding to the outer end of the telescopic rod 5 is in a plane shape, so that the influence on the appearance of the desktop is reduced.
Claims (10)
1. The utility model provides a lift is lift drive module for chafing dish, including the stockpot, the screen cloth, drive unit, the telescopic link, drive mechanism, electric heater unit and casing subassembly, telescopic link and drive mechanism set up in the casing subassembly, electric heater unit is equipped with the through-hole that runs through its upper and lower both ends, telescopic link and the flexible clearance fit of casing subassembly, and be connected with drive unit transmission through drive mechanism, business turn over through-hole when the telescopic link stretches out and draws back, the screen cloth is established in the stockpot, the corresponding through-hole in stockpot bottom is equipped with the opening, be equipped with the sleeve pipe on the opening, the screen cloth corresponds the sleeve pipe and is equipped with supporting cover, its characterized in that: the telescopic device also comprises a push rod which is arranged in a split manner with the telescopic rod, the top end of the telescopic rod extends out of the shell assembly, the push rod extends into the sleeve from bottom to top and is detachably and fixedly connected with the top end of the telescopic rod, the supporting cover is covered on the sleeve, and when the push rod is lifted along with the telescopic rod, the screen mesh and the push rod are lifted synchronously.
2. The lifting drive module for lifting hotpot of claim 1, wherein: the detachable fixed connection of the telescopic rod and the ejector rod is magnetic connection, threaded connection or buckle connection.
3. The lifting drive module for lifting hotpot of claim 2, wherein: the top end of the telescopic rod is provided with an iron block, the lower end of the ejector rod is provided with a magnetic block, and the iron block is in magnetic attraction connection with the magnetic block.
4. The lifting drive module for lifting hotpot of claim 2, wherein: the top end of the telescopic rod is provided with a connector, and the top surface of the connector is provided with a connecting screw hole; the lower end of the ejector rod is provided with a connecting screw head, and the connecting screw head is in threaded connection with the connecting screw hole.
5. The lifting drive module for lifting hotpot of claim 1, wherein: the transmission mechanism comprises a speed reduction transmission device and a screw rod, the screw rod is in transmission connection with the driving part through the speed reduction transmission device, and the telescopic rod is matched with the screw rod; the driving part is a motor or a hand-operated mechanism.
6. The lifting drive module for lifting hotpot of claim 5, wherein: the inner end of the telescopic rod is provided with a nut which is in threaded connection with the screw rod, a channel is arranged in the telescopic rod corresponding to the screw rod, the channel is communicated with a screw hole of the nut, and the screw rod stretches into the channel of the telescopic rod; the nut and/or the telescopic rod are in linear sliding fit with the shell assembly.
7. The lifting drive module for lifting hotpot of claim 6, wherein: the speed reduction transmission device comprises a turbine and a worm, the turbine, the screw, the nut, the telescopic rod and the ejector rod are coaxially arranged, the worm is meshed with the turbine, the worm is connected with a motor in a transmission manner, and the motor is arranged outside the shell assembly.
8. The lifting drive module for lifting hotpot of claim 5, wherein: the shell assembly comprises a reduction gearbox lower cover, a reduction gearbox upper cover and a telescopic rod outer cover, wherein a reduction transmission device is arranged in an inner cavity surrounded by the reduction gearbox lower cover and the reduction gearbox upper cover, the telescopic rod outer cover is arranged at the top of the reduction gearbox upper cover, a screw rod and a telescopic rod are arranged in the telescopic rod outer cover, and a yielding hole is formed in the top of the telescopic rod outer cover corresponding to the top of the telescopic rod.
9. The lifting drive module for lifting hotpot of claim 8, wherein: and a convex ring is arranged on the periphery of the top of the abdication hole.
10. The lifting drive module for lifting hotpot of claim 6, wherein: the screw, the nut and the telescopic rod are made of non-magnetic materials.
Priority Applications (1)
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CN201810032847.6A CN108030385B (en) | 2018-01-13 | 2018-01-13 | Lifting driving module for lifting chafing dish |
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CN201810032847.6A CN108030385B (en) | 2018-01-13 | 2018-01-13 | Lifting driving module for lifting chafing dish |
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CN108030385B true CN108030385B (en) | 2023-04-28 |
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CN108903588A (en) * | 2018-06-12 | 2018-11-30 | 广西科技大学鹿山学院 | Obstructiveless adds soup of fire pot |
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