CN210006149U - junction transmission device applied to noodle selling machine and noodle selling machine - Google Patents
junction transmission device applied to noodle selling machine and noodle selling machine Download PDFInfo
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- CN210006149U CN210006149U CN201920569060.3U CN201920569060U CN210006149U CN 210006149 U CN210006149 U CN 210006149U CN 201920569060 U CN201920569060 U CN 201920569060U CN 210006149 U CN210006149 U CN 210006149U
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Abstract
A noodle-receiving transmission device for a noodle-selling machine comprises a transmission mechanism and a noodle-receiving box ejector rod, wherein the transmission mechanism comprises a transverse transmission mechanism and a longitudinal transmission mechanism, the initial position of the noodle-receiving box is positioned below a noodle outlet of a noodle-making device, noodles drop into the noodle-receiving box below the noodle-making device after being cut off by a cutter at the noodle outlet, a noodle-receiving box bottom cover is fixed by a retraction spring mechanism, the side of the noodle-receiving box bottom cover extends outwards, the bottom of the noodle-receiving box is sealed under the action of the retraction force of the retraction spring mechanism at ordinary times, after the noodle-receiving box receives the noodles, the noodle-receiving box moves to the position corresponding to a guide groove of a noodle-cooking water tank through the transverse transmission mechanism, then the noodle-receiving box slides downwards through the longitudinal transmission mechanism, when the noodle-receiving box slides downwards to a bottom cover protruding part to touch the ejector rod, the bottom cover of the noodle-receiving box rotates to open the bottom of the noodle-receiving box by taking the retraction spring mechanism as a shaft, and.
Description
Technical Field
The utility model belongs to the technical field of food retail, especially, relate to kinds of being applied to and sell connecting face transmission of face machine and sell face machine.
Background
With the increasing social pace, people have higher and higher requirements on breakfast, dinner and overnight snack in time, at present, patents are provided for vending machines of snacks and beverages, but patents are provided for vending machines of pasta, and the existing noodle vending machines have simple functions and low automation degree of noodle making devices and noodle cooking devices.
SUMMERY OF THE UTILITY MODEL
To the above technical problem, the utility model provides an kinds are applied to and sell face transmission of face machine and sell the face machine, and the face box that connects catches the noodless that the system face device made, convey noodless through transmission and make the face device relevant position and boil the face, improve the work efficiency of selling the face machine, the technical scheme of the utility model as follows:
as an aspect of the utility model discloses an , provide kind be applied to and sell face transmission of face machine, the device includes drive mechanism and the face box that connects, drive mechanism is including being used for the drive connect face box lateral shifting's lateral gearing and be used for the drive connect face box longitudinal shifting's vertical drive mechanism, connect the face box including having upper and lower open-ended connect face box framework and being used for covering connect face box framework lower open-ended connect face box bottom, the device is still including being used for opening or closing connect the subassembly of uncapping of face box bottom.
, the longitudinal transmission mechanism is connected with the junction box to drive the junction box to move longitudinally, and the transverse transmission mechanism is connected with the longitudinal transmission mechanism to drive the longitudinal transmission mechanism and the junction box to move transversely.
, the side of the bottom cover of the noodle receiving box, which is far away from the transmission mechanism, is hinged with the bottom of the noodle receiving box frame through a contraction spring mechanism, the lower opening of the noodle receiving box frame is sealed under the action of contraction force of the contraction spring mechanism, the side of the bottom cover of the noodle receiving box, which is close to the contraction spring mechanism, extends and protrudes outwards to form a protruding part, the cover opening assembly comprises a push rod, and the push rod is positioned below the protruding part and arranged along the transverse moving direction of the noodle receiving box and is used for upwards abutting against the protruding part when the noodle receiving box moves downwards, so that the bottom cover of the noodle receiving box and the protruding part rotate by taking the contraction spring mechanism as a shaft, and the bottom of the noodle receiving box.
, the contracting spring mechanism comprises a rotating rod and a torsion spring, the junction box bottom cover is hinged to the junction box frame bottom through the rotating rod, the torsion spring is sleeved on the rotating rod, the end of the torsion spring is connected to the lower surface of the junction box bottom cover in a pressing mode, and the other end of the torsion spring is connected to the outer surface of the junction box frame in a pressing mode.
, the device also comprises a fixed bracket, and the transverse transmission mechanism and the mandril are both fixedly arranged on the bracket.
step by step, transverse transmission mechanism includes motor, horizontal side frame, horizontal screw rod and 0 slide, horizontal screw rod is located in the cavity of horizontal side frame, be provided with the horizontal slide rail along horizontal side frame transverse direction on the horizontal side frame, 1 th slide rail passes through horizontal slide rail with horizontal side frame sliding connection, the 3 th screw hole has been seted up on the 2 th slide, the 4 th slide is still through the th screw hole with horizontal screw rod threaded connection, the end of horizontal screw rod still with the output shaft of th motor, the th motor output shaft rotates and drives the screw rod and rotate, the th screw rod rotates and drives th slide lateral shifting, the th slide still with vertical transmission mechanism connects.
step by step, vertical drive mechanism includes second motor, vertical side frame, vertical screw rod and second slide, vertical screw rod is located in the cavity of vertical side frame, be provided with the vertical slide rail along vertical side frame longitudinal direction on the vertical side frame, the second slide passes through vertical slide rail with vertical side frame sliding connection, the second screw hole has been seted up on the second slide, the second slide still passes through the second screw hole with vertical screw rod threaded connection, the end of vertical screw rod still with the output shaft of second motor, second motor output shaft rotates and drives the second screw rod and rotate, the second screw rod rotates and drives second slide longitudinal movement, the second slide still with the junction face box is connected.
, the longitudinal actuator is removably coupled to the junction box.
step, the interface box also includes the mounting plate, the second mounting plate and the connecting plate, the mounting plate is mounted on the longitudinal transmission mechanism, the second mounting plate is mounted on the interface box frame, the mounting plate and the second mounting plate are both connected with the connecting plate through screws.
, the device further comprises a controller, wherein the motor and the second motor are both electrically connected to the controller.
, a th sensor is arranged on the th sliding base, a second sensor is arranged on the second sliding base, at least sensed parts used for being sensed by the th sensor are arranged on the transverse side frame at intervals along the transverse direction, at least second sensed parts used for being sensed by the second sensor are arranged on the longitudinal side frame at intervals along the longitudinal direction, and the th sensor and the second sensor are both electrically connected with the controller.
As another aspect of the present invention, there are provided kinds of noodle vending machines, which comprise a noodle maker, a noodle maker and a noodle receiving transmission device such as mentioned above, wherein the noodle outlet of the noodle maker is located above the upper opening of the noodle receiving box, and the noodle maker is located below the lower opening of the noodle receiving box.
The utility model has the advantages that:
the utility model provides a system face, boil face and face transmission, the noodless that the system face device produced, give the system face device through connecing face box and drive mechanism and carry, face box initial position is located system face device forming die face mouth below, noodless are in forming die face mouth department by the cutter back of cutting off, fall the face box inner chamber the inside of below under the action of gravity, face box bottom cover is fixed through shrink spring mechanism, bottom limit extends the evagination, seal face box bottom portion under shrink spring mechanism's contractile force effect at ordinary times, face box receives behind the noodless, move the guide way that boils face device's the face basin through horizontal drive mechanism and correspond the position, then slide down through vertical drive mechanism, when face box gliding to bottom bulge meets the ejector pin, under the effort of ejector pin, make the bottom open face box bottom portion for the axle rotation with shrink spring mechanism, thereby make noodless slide into the flourishing face of guide way below the guide way in the face basin along the face of boiling and boil the face.
Drawings
Fig. 1 is a schematic structural diagram of a junction surface transmission device and a surface making device according to an embodiment of the present invention;
fig. 2 is a schematic structural diagram of a transverse transmission mechanism according to an embodiment of the present invention;
fig. 3 is a schematic structural diagram of a longitudinal transmission mechanism according to an embodiment of the present invention;
fig. 4 is a schematic structural diagram of an th sliding seat and a second sliding seat according to an embodiment of the present invention;
fig. 5 is a schematic view illustrating a connection between the interface box and a second slide according to an embodiment of the present invention;
fig. 6 is a schematic view of the internal structure of the noodle vending machine of the present invention;
fig. 7 is a front schematic view of the noodle vending machine of the present invention;
fig. 8 is a perspective view of the internal structure of the noodle vending machine according to the present invention.
In the attached drawings, 1, a noodle making device, 2, a noodle receiving surface transmission device, 3, a noodle boiling device, 4, a noodle placing device, 5, a lunch box transferring and delivering device, 6, a material placing device, 7, a bowl placing device, 8, a water storage tank, 9, a meal taking window, 10, a lunch box, 11, a brake pad, 12, a rack, 13, rollers, 14 and an operation panel;
200. a transverse transmission mechanism 210, a longitudinal transmission mechanism 220, a junction box 230, a push rod 240, a fixing bracket 250, a guide groove 260, a noodle boiling water tank 201, an th motor 202, a th driving transmission wheel 203, a th driven transmission wheel 204, a transverse side frame 205, a th sliding seat 206, a transverse sliding groove 207, a th threaded hole 211, a second motor 212, a second driving transmission wheel 213, a second driven transmission wheel 214, a longitudinal side frame 215, a second sliding seat 216, a longitudinal sliding rail 217, a second threaded hole 221, a junction box frame 222, a bulge 223, a retraction spring mechanism 224, a junction box bottom cover 225, a second mounting plate 226, a , a mounting plate 227 and a connecting plate.
Detailed Description
The technical solution in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only the parts, not all embodiments.
As shown in fig. 1, kinds of junction surface transmission devices applied to a face vending machine provided for an embodiment of the present invention include a transmission mechanism, a junction surface box 220 and a push rod 230, the transmission mechanism includes a transverse transmission mechanism 200 and a longitudinal transmission mechanism 210, the transverse transmission mechanism 200 is connected to the longitudinal transmission mechanism 210 to drive the longitudinal transmission mechanism 210 to move transversely, the longitudinal transmission mechanism 210 is connected to the junction surface box 220 to drive the junction surface box 220 to move longitudinally, the junction surface box 220 includes a junction surface box frame 221 having upper and lower openings and a junction surface box bottom cover 224 for covering the lower opening of the junction surface box frame 221, the junction surface box bottom cover 224 is mounted at the bottom of the junction surface box frame 221 through a retraction spring mechanism 223 at the side of far from the transmission mechanism, the junction surface box 224 is extended and protruded to form a protruding portion 222 near the bottom cover side of the retraction spring mechanism 223, the junction surface box bottom cover 224 and the protruding portion 222 can rotate around the retraction spring mechanism 223, the protruding portion 222 is provided below the protruding portion 220 along the transverse moving direction, the top cover 230 is used for enabling the top cover and the top cover 230 to rotate when the top cover rotates.
In the above embodiment, the initial position of the noodle receiving box 220 is located below the noodle outlet of the molding mold of the noodle making device, the noodles drop into the inner cavity of the noodle receiving box 220 under the action of gravity after being cut by the cutter at the noodle outlet of the molding mold, the bottom cover 224 of the noodle receiving box is fixed by the retraction spring mechanism 223, the edge of the bottom cover extends outwards, the bottom of the noodle receiving box 220 is normally sealed under the action of the retraction force of the retraction spring mechanism 223, the noodle receiving box 220 receives the noodles, the noodles move to the corresponding position of the guide groove 250 through the transverse transmission mechanism 200 and then slide downwards through the longitudinal transmission mechanism 210, when the protruding part 222 of the bottom cover slides downwards to touch the top rod 230, the bottom cover rotates to open the bottom of the noodle receiving box 220 by taking the retraction spring mechanism 223 as a shaft under the action of the top rod 230, so that the noodles slide into the noodle containing bowl below the guide groove 250 along the guide groove 260 of the noodle boiling water tank.
In order to ensure that the push rod 230 can touch the protrusion 222 when the flour receiving box 220 moves longitudinally, the flour receiving box bottom cover 224 rotates around the retraction spring mechanism 223 as an axis, so as to open the bottom of the flour receiving box 220, and the maximum distance of the longitudinal movement of the flour receiving box 220 is larger than the maximum distance between the protrusion 222 and the push rod 230.
Preferably, the contracting spring mechanism 223 includes a rotating rod and a torsion spring, the interface box bottom cover 224 is hinged to the side of the bottom of the interface box frame 221, which is far away from the transverse transmission mechanism 200, through the rotating rod, the torsion spring is sleeved on the rotating rod, the end of the torsion spring is pressed on the lower surface of the interface box bottom cover 224, and the other end of the torsion spring is pressed on the outer surface of the interface box frame 221.
In the above embodiment, the cartridge bottom cover 224 seals the bottom of the cartridge 220 under the torsion force of the torsion spring.
Preferably, the device further comprises a fixed bracket 240, and the transverse transmission mechanism 200 and the top bar 230 are both fixedly mounted on the bracket.
In the above embodiment, the positions of the traverse actuator 200 and the jack 230 are fixed by the fixing bracket 240.
As shown in fig. 2 and 4, as another embodiment of the present invention, the transverse transmission mechanism 200 includes a motor 201, a transverse side frame 204, a transverse screw rod and a 0 th sliding seat 205, the transverse screw rod is located in a cavity of the transverse side frame 204, a transverse sliding rail 206 along a transverse direction of the transverse side frame 204 is provided on the transverse side frame 204, the 1 th sliding seat 205 is slidably connected to the transverse side frame 204 through the transverse sliding rail 206, a 3 th threaded hole 207 is formed on the 2 th sliding seat 205, the 4 th sliding seat 205 is further connected to the transverse screw rod through the th threaded hole 207, an end of the transverse screw rod is further connected to an output shaft of the th motor 201, an output shaft of the th motor 201 rotates to drive a th screw rod, an output shaft of the th screw rod rotates to drive a th sliding seat 205 to move transversely, and the th sliding seat 205 is further connected to the longitudinal transmission mechanism 210.
Preferably, the transverse transmission mechanism 200 further comprises an th driving transmission wheel 202 and an th driven transmission wheel 203, an output shaft of the th motor 201 is connected with the th driving transmission wheel 202, the th driving transmission wheel 202 is connected with the th driven transmission wheel 203 through transmission belt, and the th motor 201 is connected with the transverse screw rod through the th driven transmission wheel 203.
In the above embodiment, the th motor 201 drives the th driving transmission wheel 202 to rotate through the output shaft, the th driving transmission wheel 202 rotates to drive the th driven transmission wheel 203 to rotate, the th driven transmission wheel 203 rotates to drive the th screw to rotate, and the th screw rotates to drive the th sliding seat 205 to move laterally.
As shown in fig. 3, the longitudinal transmission mechanism 210 includes a second motor 211, a longitudinal side frame 214, a longitudinal screw, and a second sliding seat 215, the longitudinal screw is located in a cavity of the longitudinal side frame 214, a longitudinal sliding rail 216 along a longitudinal direction of the longitudinal side frame 214 is disposed on the longitudinal side frame 214, the second sliding seat 215 is slidably connected to the longitudinal side frame 214 through the longitudinal sliding rail 216, a second threaded hole 217 is formed on the second sliding seat 215, the second sliding seat 215 is further connected to the longitudinal screw through the second threaded hole 217, an end of the longitudinal screw is further connected to an output shaft of the second motor 211, the output shaft of the second motor 211 rotates to drive the second screw to rotate, the second screw rotates to drive the second sliding seat 215 to longitudinally move, the second sliding seat 215 is further connected to the interface box 220, and the sliding seat 205 is connected to the longitudinal side frame 214 of the longitudinal transmission mechanism 210 through a screw.
Preferably, the longitudinal transmission mechanism 210 further includes a second driving transmission wheel 212 and a second driven transmission wheel 213, an output shaft of the second motor 211 is fixedly connected with the second driving transmission wheel 212, a surface of the second driving transmission wheel 212 is connected with the second driven transmission wheel 213 through a transmission belt, and the second motor 211 is connected with the longitudinal screw through the second driven transmission wheel 213.
In the above embodiment, the second motor 211 drives the second driving transmission wheel 212 to rotate through the output shaft, the second driving transmission wheel 212 drives the second driven transmission wheel 213 to rotate, the second driven transmission wheel 213 drives the second screw to rotate, and the second screw rotates to drive the second sliding seat 215 to move longitudinally.
As shown in fig. 5, the longitudinal driving mechanism 210 is detachably connected to the interface box 220 to facilitate cleaning of the interface box 220.
Preferably, the interface box 220 further includes th mounting plates 226, a second mounting plate 225 and a connecting plate 227, the th mounting plate 226 is mounted on the longitudinal transmission mechanism 210, the second mounting plate 225 is mounted on the interface box frame 221, and the th mounting plate 226 and the second mounting plate 225 are both connected to the connecting plate 227 by screws.
The th mounting plate 226 is mounted on the longitudinal transmission mechanism 210 by screws, the second mounting plate 225 is mounted on the interface box frame 221 by screws, and the th mounting plate 226 and the second mounting plate 225 are detachably connected by the connecting plate 227.
Preferably, the device further comprises a controller, and the th motor 201 and the second motor 211 are both electrically connected with the controller.
Preferably, a th sensor is arranged on the th sliding seat, a second sensor is arranged on the second sliding seat, at least th sensed parts used for being sensed by a th sensor are arranged on the transverse side frame at intervals along the transverse direction, at least second sensed parts used for being sensed by the second sensor are arranged on the longitudinal side frame at intervals along the longitudinal direction, and both the th sensor and the second sensor are electrically connected with the controller.
In the above embodiment, the th motor 201 and the second motor 211 are controlled by the controller to operate, for example, by setting the operation time of the th motor 201 and the second motor 211, so as to control the distance of the transversal or longitudinal movement of the noodle receiving box, when someone buys noodles, the controller receives a corresponding signal, the th motor 201 is controlled to operate, the noodle receiving box 220 is sent to the upper side of the guide slot 250 of the noodle boiling water tank 260, then the th motor 201 is controlled to operate, so that the noodle receiving box 220 moves downwards, when the noodle receiving box 220 slides downwards until the bottom cover projection 222 meets the push rod 230, under the action of the push rod 230, the bottom cover rotates around the retraction spring mechanism 223 to open the bottom of the noodle receiving box 220, so that the noodles slide into the noodle containing bowl below the guide slot 250 along the guide slot 250 in the noodle boiling water tank 260 for noodle boiling.
In addition, more accurate control can be performed by arranging a sensor and a sensed part matched with the sensor, th sensed parts are arranged at each position where the -th sliding seat needs to be stopped on the transverse side frame, second sensed parts are arranged at each position where the second sliding seat needs to be stopped on the longitudinal side frame, for example, corresponding to the condition of a plurality of guide grooves 250, when a noodle bowl below an -th guide groove 250 needs to be boiled, a -th motor 201 controls a 35 sliding seat 205 to move to a position corresponding to a -th guide groove 250, after the -th sensor senses that a surface of the induction part reaches the corresponding position, a second motor 211 is controlled to work, and the second motor 211 controls the noodle receiving box 220 to move downwards.
As shown in fig. 6 to 8, as a second aspect of the present invention, kinds of noodle vending machines are provided, which comprises a noodle making device 1, a noodle boiling device 3 and a noodle receiving transmission device such as any of the aforementioned , wherein a noodle outlet of the noodle making device 1 is located above an opening of the noodle receiving box 220, and the noodle boiling device is located below a lower opening of the noodle receiving box 220, noodles produced by the noodle making device 1 are delivered to the noodle boiling device 3 through the noodle receiving box and the transmission mechanism, and after the noodles are boiled by the noodle boiling device 3, the cooked noodles are loaded into bowls and ingredients through other devices.
As shown in fig. 6 to 8, the four corners of the bottom end of the noodle vending machine are provided with rollers 13, the specific position of the noodle vending machine is adjusted through the rollers 13, when the position is determined, the brake pads 11 are put down to clamp the rollers 13, so as to position the noodle vending machine, a consumer selects the type and the number of the noodles required to be purchased according to the patterns or characters on the operation panel 15, such as hot dry noodles or soup noodles, the controller is started after receiving a purchase instruction, the noodle making device 1 fixedly mounted on the rack 12 is started and makes dough into extruded noodles and make equal-portion noodles to the noodle receiving surface transmission device 2, the noodle receiving surface transmission device 2 conveys equal-portion noodles to the noodle making device 3 for noodle making, hot water in the noodle making device 3 boils the noodles, when the water in the noodle making device is insufficient, water can be added through the water storage tank 8, after time period, the noodle placing device 4 lifts the cooked noodles from the noodle making device 3 to the empty lunch box 10 and pours the cooked noodles into the empty lunch box 10, wherein the bowl placing device 7 places the noodle box 10 on the tray of the meal box transfer device 5, and the meal box can be controlled by controlling the noodle placing device (if the noodle box 10 is moved to the meal box 9), and the meal box controlled by the meal box transfer device controlling the meal box control device 5).
The above description is only for the preferred embodiment of the present invention, and is not intended to limit the present invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included within the protection scope of the present invention.
Claims (10)
- A junction surface transmission device for a noodle selling machine, wherein the device comprises a transmission mechanism and a junction surface box, the transmission mechanism comprises a transverse transmission mechanism for driving the junction surface box to move transversely and a longitudinal transmission mechanism for driving the junction surface box to move longitudinally, the junction surface box comprises a junction surface box frame body with an upper opening and a lower opening and a junction surface box bottom cover for covering the lower opening of the junction surface box frame body, and the device further comprises a cover opening assembly for opening or closing the junction surface box bottom cover.
- 2. A junction surface driving device for a noodle vending machine as claimed in claim 1, wherein the longitudinal driving mechanism is connected to the junction box to drive the junction box to move longitudinally, and the lateral driving mechanism is connected to the longitudinal driving mechanism to drive the longitudinal driving mechanism and the junction box to move laterally integrally.
- 3. A junction surface driving device for a noodle vending machine as claimed in claim 1, wherein the side of the junction surface box bottom cover far from the driving mechanism is hinged with the bottom of the junction surface box frame through a retraction spring mechanism, the lower opening of the junction surface box frame is sealed under the retraction force of the retraction spring mechanism, the junction surface box bottom cover extends to protrude to form a protruding part near the side of the retraction spring mechanism, the cover opening assembly comprises a top bar, and the top bar is arranged below the protruding part and along the transverse moving direction of the junction surface box.
- 4. A junction surface transmission device applied to a surface vending machine as claimed in claim 3, wherein the contracting spring mechanism comprises a rotating rod and a torsion spring, the junction surface box bottom cover is hinged with the junction surface box frame bottom through the rotating rod, the torsion spring is sleeved on the rotating rod, the end of the torsion spring is pressed on the lower surface of the junction surface box bottom cover, and the other end of the torsion spring is pressed on the outer surface of the junction surface box frame.
- 5. A face transmission as claimed in claim 3, wherein the apparatus further comprises a fixed bracket, and the transverse transmission mechanism and the push rod are both fixedly mounted to the bracket.
- 6. A junction surface transmission device applied to a noodle selling machine according to claim 1, wherein the transverse transmission mechanism comprises an th motor, a transverse side frame, a transverse screw and a th sliding seat, the transverse screw is located in a cavity of the transverse side frame, the transverse side frame is provided with a transverse sliding rail along the transverse direction of the transverse side frame, the 0 th sliding seat is connected with the transverse side frame in a sliding manner through the transverse sliding rail, the 1 th sliding seat is provided with a 2 th threaded hole, the 3 th sliding seat is further connected with the transverse screw in a threaded manner through a th threaded hole, the end of the transverse screw is further connected with an output shaft of the th motor, an output shaft of the th motor rotates to drive the th screw to rotate, the th screw rotates to drive the to move transversely, and the th sliding seat is further connected with the longitudinal transmission mechanism.
- 7. A junction surface transmission device applied to a noodle selling machine according to claim 6, wherein the longitudinal transmission mechanism comprises a second motor, a longitudinal side frame, a longitudinal screw rod and a second sliding seat, the longitudinal screw rod is located in a cavity of the longitudinal side frame, a longitudinal sliding rail along the longitudinal direction of the longitudinal side frame is arranged on the longitudinal side frame, the second sliding seat is connected with the longitudinal side frame in a sliding manner through the longitudinal sliding rail, a second threaded hole is formed in the second sliding seat, the second sliding seat is further connected with the longitudinal screw rod in a threaded manner through the second threaded hole, the end of the longitudinal screw rod is further connected with an output shaft of the second motor, the output shaft of the second motor rotates to drive the second screw rod to rotate, the second screw rod rotates to drive the second sliding seat to move longitudinally, and the second sliding seat is further connected with the junction surface box.
- 8. A junction surface drive assembly as claimed in claim 1, wherein said junction box further comprises th mounting plate, a second mounting plate and a connecting plate, wherein said th mounting plate is mounted to said longitudinal drive mechanism, said second mounting plate is mounted to said junction box frame, and wherein each of said th mounting plate and said second mounting plate are connected to said connecting plate by screws.
- 9. A face transmission for a noodle vending machine as claimed in claim 7, wherein the apparatus further comprises a controller, the th slide is provided with a th sensor, the second slide is provided with a second sensor, the transverse side frame is provided with at least sensed parts at intervals along the transverse direction for sensing by the th sensor, the longitudinal side frame is provided with at least second sensed parts at intervals along the longitudinal direction for sensing by the second sensor, and the controller, the th sensor and the second sensor are all electrically connected with the controller.
- A noodle vending machine of , comprising a noodle maker, and a noodle interface actuator of any one of claims 1-9 through , wherein the noodle outlet of the noodle maker is located above the upper opening of the noodle box, and the noodle maker is located below the lower opening of the noodle box.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920569060.3U CN210006149U (en) | 2019-04-24 | 2019-04-24 | junction transmission device applied to noodle selling machine and noodle selling machine |
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CN201920569060.3U CN210006149U (en) | 2019-04-24 | 2019-04-24 | junction transmission device applied to noodle selling machine and noodle selling machine |
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CN210006149U true CN210006149U (en) | 2020-01-31 |
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CN201920569060.3U Expired - Fee Related CN210006149U (en) | 2019-04-24 | 2019-04-24 | junction transmission device applied to noodle selling machine and noodle selling machine |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110120130A (en) * | 2019-04-24 | 2019-08-13 | 余凤秀 | A kind of junction transmission device and vending machine for noodles applied to vending machine for noodles |
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2019
- 2019-04-24 CN CN201920569060.3U patent/CN210006149U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110120130A (en) * | 2019-04-24 | 2019-08-13 | 余凤秀 | A kind of junction transmission device and vending machine for noodles applied to vending machine for noodles |
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