CN211673631U - Intelligent dining table - Google Patents

Intelligent dining table Download PDF

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Publication number
CN211673631U
CN211673631U CN201920305215.2U CN201920305215U CN211673631U CN 211673631 U CN211673631 U CN 211673631U CN 201920305215 U CN201920305215 U CN 201920305215U CN 211673631 U CN211673631 U CN 211673631U
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dining
gear
conveying unit
special
bowl
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CN201920305215.2U
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Chinese (zh)
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陆元军
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Abstract

The utility model discloses an intelligent dining table, which comprises a table front plate, special bowls, a table top conveying unit, a variable speed conveying unit and a quick conveying unit which form a linear conveying device, and a linear conjoined dining table formed by combining a plurality of dining positions; the table front plate is arranged between the conjoined dining table and the linear conveying device, the special bowls are conveyed to the position right ahead of each dining position from a kitchen through the rapid conveying unit, the special bowls are conveyed to the table top conveying unit through the variable speed conveying unit, the table top conveying unit is positioned right ahead of the dining positions, and the special bowls are conveyed to the designated dining positions on the linear conjoined dining table through the table top conveying unit. The utility model discloses a straight line conveyor carries special bowl utensil to the corresponding dining position of sharp disjunctor dining table, has realized the function of automatic food serving in the traditional dining room, has reduced the human cost, has realized the unified collection washing after special bowl utensil uses simultaneously, and circulated use avoids the packing box to lose the environmental protection problem that arouses everywhere.

Description

Intelligent dining table
Technical Field
The utility model relates to an automatic change food and beverage equipment technical field, in particular to intelligence dining table.
Background
At present, the unmanned powder face of cooking in the street is sold quick-wittedly more and more, and this kind of machine of selling has solved the human cost problem in traditional dining room, but its splendid attire that adopts disposable plastic bowl, wax-coated paper bowl etc. in a large number boils high temperature food at present, and unfavorable person is healthy, can not unify the collection processing after disposable plastic bowl, the wax-coated paper bowl use simultaneously, appears packing box phenomenon of littering everywhere very easily, seriously influences urban environment.
SUMMERY OF THE UTILITY MODEL
In view of the above problems, the utility model discloses a traditional dining room or automatic dining room provide an intelligent dining table.
The utility model discloses the technical scheme who uses is: the intelligent dining table comprises a table front plate, special bowls, a table top conveying unit, a variable-speed conveying unit and a quick conveying unit which form a linear conveying device, and a linear connected dining table formed by combining a plurality of dining positions; the quick conveying unit is used for conveying the special bowls from a kitchen to the position right in front of each dining position, and the variable-speed conveying unit is used for conveying the special bowls to the table top conveying unit; the table front plate is arranged between the conjoined dining table and the linear conveying device, and the table top conveying unit is positioned right in front of the dining position and used for conveying the special bowls to the appointed dining position from the linear conveying device. A plurality of dining positions are combined and spliced into a linear connected dining table, a linear conveying device parallel to the dining table is arranged right in front of the connected dining table top, and the linear conveying device is formed by splicing a plurality of quick conveying units, variable-speed conveying units and table top conveying units. The special bowls are conveyed to the positions right in front of the dining positions from the kitchen by the rapid conveying unit on the linear conveying device, the running speed of the special bowls is reduced by the variable-speed conveying unit in the speed reduction mode and the special bowls are conveyed to the tabletop conveying unit, and the tabletop conveying unit conveys the special bowls to the designated dining positions on the tabletop from the linear conveying device.
In order to meet the attractive effect of a restaurant, a table front plate is arranged between the linear conveying device and the connected dining table, and a product outlet with a door opening and closing device is designed at the position, corresponding to each dining position, of the table top conveying unit of the table front plate, so that the table top conveying unit can convey bowls to the specified dining positions of the table top from the linear conveying device.
In order to realize that the special bowls can reach each dining position of the conjoined dining table and simultaneously shorten the transmission time of the dining positions far away from the kitchen, the gear shaft rotating speed of the variable speed transmission unit and the desktop transmission unit also has a rapid linear transmission mode, namely, after the dining positions far away from the kitchen are placed, when the dining positions need to pass through the variable speed transmission unit and the desktop transmission unit which are close to the kitchen, the rapid linear transmission mode can be operated by the variable speed transmission unit and the desktop transmission unit corresponding to the close dining positions.
Preferably, the smart dining table comprises: the dining table comprises a set of linear connected dining table, a table front plate with a product outlet, a table top conveying unit, a variable speed conveying unit and a display screen, wherein the table top conveying unit and the variable speed conveying unit are configured for each dining position, a plurality of sets of special bowls and quick conveying units are arranged, and a kitchen partition, a dining table support, a dining table bottom partition plate, a conveying line support and the like are arranged on the table front plate.
The table front plate includes: the device comprises a baffle, a power motor for opening and closing a door, a pair of opening and closing door plates, a positive screw nut pushing handle, a screw rod, a product outlet, a screw rod bearing, an inductive switch, a reverse screw nut pushing handle and a sliding chute. One end of the screw rod is a forward wire, and the other end of the screw rod is a reverse wire; the positive screw nut pushing handle and the negative screw nut pushing handle are respectively arranged on the two opening and closing door plates, and the opening and closing door plates are opened and closed by rotating the screw rod through the opening and closing door power motor.
The desktop transfer unit includes: first motor power, first fast gear train, first tooth axle bearing, first tooth axle, toothed belt drive gear train, toothed belt wheel bearing, toothed belt wheel axle, toothed belt motor power, toothed belt support, first base, first direction pinion rack, limit switch. The rotating speed of the first gear shaft is divided into two modes of rapid linear relay transmission and desktop transmission, and the two modes are realized by the arrangement of a controller of a first power motor. In a desktop transmission mode, after the special bowl is obtained through the limit switch and reaches a set position, the first gear shaft is controlled to stop working, the gear belt is started to work, and the special bowl is transmitted to a designated dining position of the dining desktop. The surface of the toothed belt is provided with teeth, and the teeth are installed in gaps of the parallel first toothed shafts in a staggered mode through toothed belt wheel shafts.
The special bowl utensil includes: a bowl bottom tooth nail and a bowl body. The bowl bottom tooth nail formed by criss-cross grooves is arranged at the bowl bottom of the special bowl, and the cross section of the groove is matched with the tooth of the tooth shaft and the tooth belt, so that the effectiveness of synchronous movement of the bowl and the tooth shaft or the tooth belt is achieved.
The rapid transfer unit includes: third driving motor, third constant speed gear train, third pinion bearing, third direction pinion rack, third base. The third guide toothed plate is arranged between the parallel toothed shafts and plays a transitional role; the top surface of the special bowl is provided with teeth which are consistent with the movement direction of the special bowl so as to control the movement direction of the special bowl not to deviate.
The variable speed conveying unit is arranged on the kitchen side of the tabletop conveying unit, and the assembly comprises: second motor power, clutch, reduction gear group, second with fast gear train, second tooth axle bearing, second tooth axle, second guide toothed plate, second base. The rotating speed of the second gear shaft is divided into a fast mode and a deceleration mode, and the clutches arranged at two ends of the second gear shaft are used for controlling different gear sets at two ends of the second gear shaft to work in a staggered mode.
Furthermore, the system also comprises a main control system so as to ensure the smooth operation of the technical scheme.
The utility model has the advantages that: the utility model can provide an intelligent dining table for the traditional dining room or the automatic dining room, realize the functions of self-service ordering, self-service payment and automatic food serving in the traditional dining room, and solve the problem of labor cost of the traditional dining room; meanwhile, the disposable plastic bowls are prevented from being collected and cleaned uniformly after being used, the disposable plastic bowls are recycled, and the environmental protection problem caused by random loss of the packing box is avoided.
Drawings
Fig. 1 is a schematic view of the overall structure of the two dining positions of the utility model.
Fig. 2 is a schematic view of the front board structure of the desk of the present invention.
Fig. 3 is a schematic view of the structure of the tabletop transport unit of the present invention.
Fig. 4 is a schematic view of the bowl bottom structure of the present invention.
Fig. 5 is a schematic structural view of the variable speed transfer unit of the present invention.
Fig. 6 is a schematic diagram of the structure of the rapid transfer unit of the present invention.
Reference numerals
In fig. 1: 101-table front plate, 102-table top transmission unit, 103-special bowl, 104-variable transmission unit, 105-rapid transmission unit, 106-display screen, 107-dining table, 108-kitchen partition, 109-dining table support, 110-dining table bottom partition and 111-conveyor line support;
in fig. 2: 201-a baffle, 202-a power motor for opening and closing a door, 203-an opening and closing door plate, 204-a positive screw nut push handle, 205-a screw rod, 206-a product outlet, 207-a screw rod bearing, 208-an inductive switch, 209-a reverse screw nut push handle and 210-a chute;
in fig. 3: 301-a first power motor, 302-a first synchronous gear set, 303-a first gear shaft bearing, 304-a first gear shaft, 305-a gear belt, 306-a gear belt transmission gear set, 307-a gear belt wheel bearing, 308-a gear belt wheel shaft, 309-a gear belt power motor, 310-a gear belt bracket, 311-a first base, 312-a first guide toothed plate and 313-a limit switch;
in fig. 4: 401-bowl bottom tooth nail, 402-bowl body;
in fig. 5: 501-a second power motor, 502-a clutch, 503-a speed reduction gear set, 504-a second gear shaft bearing, 505-a second gear shaft, 506-a second same-speed gear set, 507-a second guide toothed plate and 508-a second base;
in fig. 6: 601-a third power motor, 602-a third same-speed gear set, 603-a third gear shaft, 604-a third gear shaft bearing, 605-a third guide toothed plate and 606-a third base.
Detailed Description
The present invention will be further described with reference to specific embodiments, which are mainly used to explain the present invention, but not to limit the present invention.
Referring to fig. 1, a schematic diagram of an overall structure of an embodiment of the present invention is shown. The embodiment provides an intelligent dining table, which comprises a table front plate 101, a table top conveying unit 102, special bowls 103, a variable speed conveying unit 104, a quick conveying unit 105, a display screen 106, a linear conjoined dining table 107 formed by combining a plurality of dining positions, a kitchen partition 108, a dining table support 109, a dining table bottom partition plate 110 and a conveying line support 111. A linear conveying device parallel to the siamesed dining table 107 is arranged in the conveying area and comprises a table top conveying unit 102, a variable speed conveying unit 104 and a quick conveying unit 105, and the special bowls 103 are placed on the linear conveying device for conveying. The table front 101 is installed between the conjoined dining table 107 and the linear conveyor to separate the dining area from the conveying area. After the meal is placed at a meal position far away from a kitchen, a quick conveying unit 105 is arranged at a position far away from the meal position on a conveying line from the kitchen to the meal position, so that the conveying time of the special bowls 103 is shortened; when the special bowl 103 is close to a dining position, the variable-speed conveying unit 104 is arranged, the variable-speed conveying unit 104 reduces the running speed of the special bowl 103 in a speed reduction mode and conveys the special bowl 103 to the tabletop conveying unit 102, and the tabletop conveying unit 102 is positioned right in front of the dining position and is used for conveying the special bowl 103 to a designated dining position on the tabletop from the linear conveying device.
Referring to fig. 2, a schematic view of the configuration of the table front 101 in the present embodiment is shown. The desk front plate 101 comprises a baffle 201, a door opening and closing power motor 202, an opening and closing door plate 203, a positive screw nut push handle 204, a screw 205, a product outlet 206, a screw shaft bearing 207, an inductive switch 208, a reverse screw nut push handle 209 and a chute 210. One door plate of the opening and closing door plate 203 is provided with a positive screw nut pushing handle 204, the other door plate is provided with a negative screw nut pushing handle 209, one end of a screw rod 205 is provided with a positive screw, the other end of the screw rod 205 is provided with a negative screw, the two pushing handles are correspondingly connected with the positive screw part and the negative screw part of the screw rod 205, a power motor 202 of the opening and closing door rotates the screw rod 205 to open and close the opening and closing door plate 203, and then a product outlet 206 is opened and closed.
Referring to fig. 3, a schematic diagram of the configuration of the desktop transfer unit 102 in the present embodiment is shown. The tabletop transport unit 102 includes a first power motor 301, a first constant speed gear set 302, a first gear shaft bearing 303, a first gear shaft 304, a gear belt 305, a gear belt transmission gear set 306, a gear belt wheel bearing 307, a gear belt wheel shaft 308, a gear belt power motor 309, a gear belt bracket 310, a first base 311, a first guide toothed plate 312, and a limit switch 313. The toothed belt 305 is provided with teeth on the surface and is installed in the gap of the first gear shaft 304 through a gear shaft 308. The rotation state of the first gear shaft 304 is divided into two modes of quick linear relay transmission and table top transmission, and is controlled by a controller of the first power motor 301, under the table top transmission mode, whether the special bowl 103 reaches a set position is detected through a limit switch 313, after the special bowl 103 is conveyed to the set position on the first guide toothed plate 312, the first power motor 301 controls the first gear shaft 304 to stop working, the toothed belt power motor 309 controls the starting toothed belt 305 to work, and the special bowl 103 is transmitted to a specified dining position of the table top through the toothed belt 305.
Referring to fig. 4, a bowl bottom structure of the special bowl 103 of the present embodiment is schematically shown. The bowl bottom of the special bowl 103 is provided with criss-cross grooves to form bowl bottom teeth nails, and the cross sections of the grooves are matched with teeth of the tooth shafts and the tooth belts, so that the bowl bottom can be correspondingly meshed with the tooth shafts and the tooth belts, and the synchronous motion of the special bowl 103 and the tooth shafts or the tooth belts is realized.
Referring to fig. 5, a schematic diagram of the configuration of the shift conveying unit 104 in the present embodiment is shown. The variable-speed conveying unit 104 is installed on one side of the tabletop conveying unit 102 close to the kitchen, and includes a second power motor 501, a clutch 502, a reduction gear set 503, a second gear shaft bearing 504, a second gear shaft 505, a second constant-speed gear set 506, a second guide toothed plate 507, and a second base 508. The rotation state of the second gear shaft 505 is divided into a fast mode and a deceleration mode, the clutch 502 is installed at two ends of the second gear shaft 505, and controls the second gear shaft 505 directly connected with the clutch to run in different modes, and the operation is realized by the staggered work of different gear sets at two ends of the second gear shaft.
Referring to fig. 6, a schematic view of the construction of the rapid transfer unit 105 in the present embodiment is shown. The fast transmission unit 105 comprises a third power motor 601, a third constant speed gear set 602, a third gear shaft 603, a third gear shaft bearing 604, a third guide toothed plate 605 and a third base 606. The third guiding toothed plate 605 is installed between the third parallel toothed shafts 603, and the top surface is provided with teeth consistent with the movement direction of the special bowl 103, so as to control the movement direction of the special bowl 103 not to deviate.
As shown in fig. 1 to 6: when the customer orders and pays successfully on a certain meal position display screen 106, the variable-speed transmission unit 104 on the linear conveying device in front of the meal position is adjusted to be in a deceleration mode, the tabletop transmission unit 102 of the meal position enters a tabletop transmission mode, and the limit switch 313 of the meal position is electrified to enter a working mode. After the kitchen is ready to put the food into the special bowl 103, the special bowl 103 is driven to the restaurant by the kitchen belt through the rotation of the gear shaft of each transmission unit on the linear conveying device. When the meal position is about to be reached, the variable speed transmission unit 104 on the linear conveyor slowly pushes the special bowl 103 to the tabletop transmission unit 102 in a speed reduction mode. The desktop conveying unit 102 continues to push up slowly and forwards in the desktop conveying mode, when the special bowl 103 touches the limit switch 313 of the meal position, the first power motor 301 of the desktop conveying unit 102 is stopped, the toothed belt power motor 309 and the opening and closing door power motor 202 on the desktop front plate 101 are started, the screw rod 205 is rotated, the opening and closing door plate 203 is opened through the positive screw nut push handle 204 and the negative screw nut push handle 209, the special bowl 103 reaches the specified meal position under the driving of the toothed belt, and after the special bowl 103 is opened by a customer, the induction switch 208 senses feedback information, the opening and closing door driving motor 202 is started, and the opening and closing door plate 203 is closed.

Claims (6)

1. An intelligent dining table is characterized by comprising a table front plate (101), special bowls (103), a table top conveying unit (102), a variable speed conveying unit (104) and a quick conveying unit (105) which form a linear conveying device, and a linear connected dining table (107) formed by combining a plurality of dining positions; the table front plate (101) is arranged between the conjoined dining table (107) and the linear conveying device, the rapid conveying unit (105) is used for conveying the special bowls (103) from a kitchen to the front of each dining position, the variable speed conveying unit (104) is used for conveying the special bowls (103) to the table top conveying unit (102), and the table top conveying unit (102) is located at the front of the dining positions and used for conveying the special bowls (103) from the linear conveying device to the appointed dining positions.
2. The smart dining table of claim 1, wherein the table front (101) comprises: the device comprises a baffle (201), a power motor (202) for opening and closing a door, an opening and closing door panel (203), a positive screw nut push handle (204), a screw rod (205), a product outlet (206), a screw rod bearing (207), an induction switch (208), a reverse screw nut push handle (209) and a chute (210); one end of the screw rod (205) is a forward wire, and the other end of the screw rod is a reverse wire; the positive screw nut pushing handle (204) and the negative screw nut pushing handle (209) are respectively arranged on the two opening and closing door panels (203), and the opening and closing door panels are opened and closed by rotating the screw rod (205) through the opening and closing door power motor (202).
3. The intelligent dining table according to claim 1, wherein the bowl bottom of the special bowl (103) is provided with bowl bottom teethed nails formed by criss-cross grooves, the cross sections of the grooves are matched with the teeth of the toothed shaft and the toothed belt, so that the effect of synchronous movement of the bowl and the toothed shaft or the toothed belt is achieved.
4. The smart dining table of claim 1, wherein the table top transfer unit (102) comprises: the gear transmission mechanism comprises a first power motor (301), a first constant-speed gear set (302), a first gear shaft bearing (303), a first gear shaft (304), a gear belt (305), a gear belt transmission gear set (306), a gear belt wheel bearing (307), a gear belt wheel shaft (308), a gear belt power motor (309), a gear belt support (310), a first base (311), a first guide toothed plate (312) and a limit switch (313); the rotating speed of the first gear shaft (304) is divided into two modes of rapid linear relay transmission and desktop transmission, and the two modes are realized by the setting of a controller of a first power motor (301); in a desktop transmission mode, after the special bowl (103) is acquired through a limit switch (313) and reaches a set position, a first gear shaft is controlled to stop working, a gear belt is started to work, and the special bowl (103) is transmitted to a specified dining position of a dining desktop; the toothed belt (305) is provided with teeth on the surface and is installed in the gap of the parallel first toothed shafts (304) in a staggered mode through toothed belt wheel shafts.
5. The smart dining table of claim 1, wherein the variable speed conveyor unit (104), mounted immediately adjacent to the cook side of the table top conveyor unit (102), comprises: the gear transmission mechanism comprises a second power motor (501), a clutch (502), a reduction gear set (503), a second gear shaft bearing (504), a second gear shaft (505), a second same-speed gear set (506), a second guide toothed plate (507) and a second base (508); the rotating speed of the second gear shaft (505) is divided into a fast mode and a deceleration mode, and the clutch (502) arranged at the two ends of the second gear shaft (505) controls different gear sets at the two ends of the second gear shaft to work alternately.
6. The intelligent dining table according to claim 1, wherein the fast transfer unit (105) comprises: a third power motor (601), a third same-speed gear set (602), a third gear shaft (603), a third gear shaft bearing (604), a third guide toothed plate (605) and a third base (606); the third guide toothed plate (605) is arranged between third tooth shafts (603) which are arranged in parallel, and teeth which are consistent with the movement direction of the special bowl (103) are arranged on the top surface of the third guide toothed plate so as to control the movement direction of the special bowl (103) not to deviate.
CN201920305215.2U 2019-03-08 2019-03-08 Intelligent dining table Active CN211673631U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920305215.2U CN211673631U (en) 2019-03-08 2019-03-08 Intelligent dining table

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920305215.2U CN211673631U (en) 2019-03-08 2019-03-08 Intelligent dining table

Publications (1)

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CN211673631U true CN211673631U (en) 2020-10-16

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Application Number Title Priority Date Filing Date
CN201920305215.2U Active CN211673631U (en) 2019-03-08 2019-03-08 Intelligent dining table

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CN (1) CN211673631U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112938437A (en) * 2021-02-10 2021-06-11 廖启棠 Assembly line type meal delivery device and control method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112938437A (en) * 2021-02-10 2021-06-11 廖启棠 Assembly line type meal delivery device and control method thereof

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