WO2019153767A1 - 旋转下粉装置及智能冲奶机 - Google Patents

旋转下粉装置及智能冲奶机 Download PDF

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Publication number
WO2019153767A1
WO2019153767A1 PCT/CN2018/109391 CN2018109391W WO2019153767A1 WO 2019153767 A1 WO2019153767 A1 WO 2019153767A1 CN 2018109391 W CN2018109391 W CN 2018109391W WO 2019153767 A1 WO2019153767 A1 WO 2019153767A1
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WO
WIPO (PCT)
Prior art keywords
powder
rotary
storage box
scraping
rotating
Prior art date
Application number
PCT/CN2018/109391
Other languages
English (en)
French (fr)
Inventor
曹雨生
Original Assignee
深圳前海小智萌品科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳前海小智萌品科技有限公司 filed Critical 深圳前海小智萌品科技有限公司
Publication of WO2019153767A1 publication Critical patent/WO2019153767A1/zh

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/40Beverage-making apparatus with dispensing means for adding a measured quantity of ingredients, e.g. coffee, water, sugar, cocoa, milk, tea
    • A47J31/404Powder dosing devices
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/40Beverage-making apparatus with dispensing means for adding a measured quantity of ingredients, e.g. coffee, water, sugar, cocoa, milk, tea
    • A47J31/407Beverage-making apparatus with dispensing means for adding a measured quantity of ingredients, e.g. coffee, water, sugar, cocoa, milk, tea with ingredient-containing cartridges; Cartridge-perforating means
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/4403Constructional details
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/60Cleaning devices

Definitions

  • the present application relates to the technical field of powdered beverage brewing devices, and more particularly to a rotary powdering device and an intelligent milking machine.
  • the lower powder device used is usually provided with a lower powder mouth at the bottom of the powder storage box, and integrally formed with the lower powder mouth on the outer side of the bottom of the powder storage box.
  • a protruding powder discharging cylinder is formed, and the milk powder in the powder storage box is powdered by the powder discharging cylinder. Due to the viscosity or static electricity of the milk powder itself, the milk powder often sticks to the inner wall of the powder discharging cylinder, which will cause the powder cylinder to be blocked and affect the powder. In addition, the milk powder stuck in the powder discharging cylinder is exposed to the air for a long time. Deterioration, which affects the health and safety of the milk.
  • the powder discharging cylinder and the powder storage box are integrated into one structure.
  • the milk powder in the powder storage box needs to be emptied before the cleaning operation can be performed, which is difficult to clean and affects the normal use of the intelligent milking machine.
  • the main purpose of the present application is to provide a rotary powdering device and an intelligent milking machine, which aim to solve the problem that the powder discharging cylinder in the existing powder discharging device is easily blocked and difficult to clean.
  • the present application provides a rotary powder discharging device, comprising a powder storage box for storing milk powder, the rotary powder discharging device further comprising a rotating powder discharging cylinder, a stator element, a scraping member and a driving element,
  • the bottom of the powder storage box is provided with a lower powder port
  • the rotary powder discharging cylinder is provided with a powder discharging port
  • the rotating powder discharging cylinder and the stator element are detachably mounted outside the bottom of the powder storage box
  • the powder discharging port of the rotary powder discharging cylinder is aligned with the lower powder opening of the powder storage box to serve as a powder discharging passage for storing the milk powder in the powder storage box, and the scraping powder member
  • the scraping member includes a connecting portion connected to the stator member, and a scraping portion connected to the connecting portion and abutting against an inner wall of the rotating powder discharging cylinder, wherein the driving member is configured to drive the rotating portion
  • the powder drum rotates, and the scraping portion of the scraping member is used in the Rotating the drum during the rotation of the powder adhered scraping the powder milk in the rotary cylinder wall
  • the present application further provides an intelligent milking machine comprising a body, a rotary powdering device mounted on the body, a milk powder brewing device, a water tank, a hot water supply device, a control circuit board and a powdering driving device, wherein the hot water supply device and the powdering driving device are electrically connected to the control circuit board;
  • the rotary lowering device comprises a powder storage box for storing milk powder, a rotating powder discharging cylinder, a stator element, a scraping member and a driving element, wherein the bottom of the powder storage box is provided with a lower powder opening, and the rotating powder discharging cylinder a powder outlet is provided, the rotary powder discharge cylinder and the stator element are detachably mounted outside the bottom of the powder storage box, and the stator element is fixed to the powder storage box, and the rotary powder discharge cylinder is relatively Rotating the stator element and restricting axial movement of the rotary powder discharge cylinder through the stator element and the bottom of the powder storage box, the powder discharge port of the rotary powder discharge cylinder and the powder storage box
  • the lower powder port is aligned to serve as a powder discharge passage for storing the milk powder in the powder storage box
  • the scraping member is mounted on the stator element
  • the scraping member includes a connecting portion connected to the stator element, and The connecting portion is connected to the scraping portion that is in
  • the milk powder brewing device is provided with a mixing chamber, a powder inlet, a water supply port and a liquid outlet, and the powder inlet of the milk powder brewing device is connected with the powder outlet of the rotary powder outlet, the water tank and the water tank a water inlet of the hot water supply device is connected, and a water outlet of the hot water supply device is connected to a water supply port of the milk powder brewing device, and the liquid outlet is located outside the machine body
  • the stator element is fixed to the powder storage box
  • the rotary powder discharging cylinder is rotatable relative to the stator element
  • the scraping powder member is mounted on the stator element, so that the milk powder stored in the powder storage box is performed.
  • the rotating powder can rotate against the milk powder passing through the powder outlet to reduce the adhesion, thereby accelerating the leakage of the milk powder to effectively prevent the milk powder from clogging out of the powder cylinder, and at the same time, the powder scraping portion of the scraping powder is
  • the powdered milk adhered to the inner wall of the rotating powder can be degreased during the rotation of the rotating powder cylinder to further reduce the adhesion of the milk powder.
  • the rotary powder discharging cylinder and the stator element are detachably mounted on the outer side of the bottom of the powder storage box, and the rotating powder discharging cylinder and the scraping powder can be quickly removed in the case where the inner wall of the rotating powder discharging cylinder and the scraping powder are adhered to the powdered milk powder. It does not need to empty the milk powder of the powder storage box, it is very convenient to clean, and the spare rotary powder discharging cylinder and the scraping powder can be updated to continue to use, so as not to affect the normal use of the intelligent milking machine.
  • FIG. 1 is a perspective assembled view of an embodiment of a smart flushing machine of the present application.
  • Figure 2 is a cross-sectional view of the intelligent milking machine of Figure 1 taken along line A-A.
  • Figure 3 is a partially exploded perspective view of the intelligent brewing machine of Figure 1 with portions of the intelligent brewing machine not shown.
  • FIG. 4 is an exploded perspective view of the rotary powdering device in the intelligent milking machine shown in FIG. 1.
  • Figure 5 is an assembled cross-sectional view of the rotary lowering device of Figure 4.
  • Fig. 6 is an assembled view of the rotary lowering device of Fig. 5 as viewed from the bottom in a non-sectional view.
  • Figure 7 is a partially exploded view of the rotary lowering device of Figure 6.
  • Figure 8 is an exploded view of the rotary lowering device of Figure 6 taken from another angle.
  • Figure 9 is an enlarged view of the dosing dial in the rotary lowering device of Figure 8.
  • Figure 10 is a schematic view showing the structure of the dosing dial shown in Figure 9 from another angle.
  • Figure 11 is a schematic view showing the structure of the metering dial shown in Figure 9 from the front side.
  • Figure 12 is an enlarged view of the lower nozzle fixing member of the rotary lowering device shown in Figure 8.
  • Figure 13 is a schematic view showing the structure of the lower nozzle fixing member shown in Figure 12 from the front side.
  • Figure 14 is an enlarged view of the mixing rod in the rotary lowering device of Figure 8.
  • Figure 15 is a schematic view showing the structure of the mixing rod shown in Figure 14 from the front side.
  • Figure 16 is an assembled view of the rotary lowering device of Figure 5 as viewed from the top in a non-sectional view, wherein the lid is not shown.
  • Figure 17 is a cross-sectional view of the rotary lowering device of Figure 16 taken along line B-B.
  • Figure 18 is an exploded perspective view of the milk powder brewing device of the intelligent brewing machine shown in Figure 1.
  • Fig. 19 is an exploded perspective view showing the powder feeding driving device in the intelligent milking machine shown in Fig. 1.
  • Figure 20 is an exploded perspective view of the hot water supply device of the intelligent brewing machine shown in Figure 1.
  • the application provides an intelligent milking machine that can be used to brew a formula.
  • the intelligent milking machine includes a body 1, a rotating powder device 2, a milk powder brewing device 3, and a water tank 4 installed on the body 1.
  • the rotary lowering device 2 includes a toner cartridge 21 for storing milk powder, a rotary powder discharging cylinder 22, a stator member 23, a powder scraping member 24, and a driving member 25.
  • the powder storage box 21 has a cylindrical shape, and includes a bottom portion 211 and an annular side wall 212 extending upward from a periphery of the bottom portion 211, and is enclosed by the bottom portion 211 and the annular side wall 212 to form a powder storage space for storing milk powder. 213.
  • the bottom portion 211 of the toner container 21 is provided with a lower powder opening 2111 and a through hole 2110, and the rotating powder discharging cylinder 22 is provided with a powder discharging port 221 .
  • the rotary powder discharge cylinder 22 and the stator element 23 are detachably mounted outside the bottom portion 211 of the toner container 21, and the stator element 23 is fixed to the powder storage box 21, and the rotary powder discharge cylinder 22 is rotatable relative to the stator element 23 and passes through the stator.
  • the element 23 and the bottom 211 of the toner cartridge 21 restrict the axial movement of the rotating powder drum 22.
  • the powder outlet 221 of the rotary toner bottle 22 is aligned with the lower powder opening 2111 of the toner container 21 to serve as a powder discharge passage for storing the milk powder in the toner container 21.
  • the scraping member 24 is mounted on the stator member 23.
  • the scraping member 24 includes a connecting portion 241 connected to the stator element 23, and a scraping portion 242 that is connected to the connecting portion 241 and is in close contact with the inner wall of the rotating powder tube 22, that is, the connecting portion 241 is bent, and the connecting portion 241 is formed.
  • One end of the connecting portion 241 is connected to the stator element 23, and the other end of the connecting portion 241 is connected to the bottom end of the scraping portion 242 after passing over the bottom end of the rotating powder discharge cylinder 22.
  • the driving member 25 is for driving the rotation of the powder discharge cylinder 22 to rotate.
  • the drive element 25 is drivingly coupled to the powdering drive unit 7 for driving the rotation of the powder discharge cylinder 22.
  • the scraping portion 242 of the scraping member 24 is for scraping off the powdered milk adhered to the inner wall of the rotating powder discharge cylinder 22 during the rotation of the rotary powder discharging cylinder 22.
  • the stator element 23 is fixed to the powder storage box 21
  • the rotary powder discharging cylinder 22 is rotatable relative to the stator element 23, and the scraping member 24 is mounted on the stator element 23, so that the powder storage box 21 is stored therein.
  • the rotating powder discharging cylinder 22 can rotate against the milk powder passing through the powder discharging port 221 to reduce adhesion, thereby accelerating the leakage of the milk powder to effectively prevent the milk powder from clogging and rotating the powder discharging cylinder 22, and at the same time, scraping powder
  • the powder scraping portion 242 of the member 24 can degrease the milk powder adhered to the inner wall of the rotary powder discharging cylinder 22 during the rotation of the rotating powder discharging cylinder 22, thereby further reducing the adhesion of the milk powder.
  • the rotary powder discharge cylinder 22 and the stator member 23 are detachably mounted outside the bottom portion 211 of the powder storage box 21, and in the case where the inner wall of the rotary powder discharge cylinder 22 and the powder scraping member 24 are adhered with milk powder, the rotation can be quickly removed.
  • the powder discharging cylinder 22 and the dusting scraping member 24 do not need to empty the powdered milk powder of the powder storage box 21, which is very convenient to clean, and can be used to update the spare rotary powder discharging cylinder 22 and the scraping powder member 24, so as not to affect the powder. Normal use of the brewing device.
  • the top end of the rotary powder discharging cylinder 22 is inserted into the lower powder opening 2111 of the powder storage box 21, and the top surface of the rotating powder discharging cylinder 22 is flush with the inner surface of the bottom portion 211 of the powder storage box 21, so that The milk powder in the toner container 21 can fall directly into the powder outlet 221 of the rotary powder discharge drum 22.
  • the tip end of the scraping portion 242 of the scraping member 24 is flush with the top surface of the rotating powder drum 22, so that the rotating powder drum 22 rotates once, and the scraping portion 242 of the scraping member 24 can rotate the whole portion out of the powder container 22. The entire inner wall is scraped off.
  • the stator member 23 has a cylindrical shape and is sleeved on the periphery of the rotary powder discharge cylinder 22 and restricts the rotation of the powder discharge cylinder 22 in the axial direction thereof.
  • a pair of blocks 231 are disposed on the outer circumference of the stator element 23.
  • a pair of protrusions 2112 are disposed outside the bottom portion 211 of the powder storage box 21, and a card slot 2113 is disposed on the protrusion 2112.
  • the stator element 23 passes through the block 231 and the card slot 2113.
  • the snap fit is fixedly mounted outside the bottom 211 of the toner cartridge 21.
  • an ear portion 232 is formed on the outer circumference of the stator element 23, and one end of the connecting portion 241 of the scraping member 24 is inserted into the ear portion 232.
  • the ear portion 232 is also used for a rotary operation to mount or detach the stator member 23 from the toner cartridge 21.
  • the outer circumference of the rotary powder discharge cylinder 22 is provided with a driven gear 22 at a position close to the top end thereof, and the drive gear 25 is provided with a drive gear 251, a drive gear 251 of the drive element 25 and a rotary blower 22
  • the driven gear 22 meshes with the transmission to rotate the powder discharge cylinder 22 by the driving member 25.
  • the drive gear 251 of the drive member 25 and the driven gear 22 that rotates the powder discharge cylinder 22 may also be driven by a timing belt.
  • gear transmission may be omitted, and other transmission methods such as pulley transmission may be employed.
  • the rotary lowering device 2 further includes a dosing dial 26, a lower powder fixing member 27, a mixing rod 28, and a lid 29, and the dosing dial 26, the lower powder fixing member 27, and the mixing rod 28 are
  • the lower side is sequentially installed in the powder storage space 213 of the toner container 21, and the lid 29 is placed at the top opening of the powder storage box 21.
  • the top of the driving element 25 is provided with a connecting shaft 252.
  • the connecting shaft 252 passes through the bottom portion 211 of the powder storage box 21, the dosing dial 26 and the lower powder fixing member 27 in sequence, and is fixedly connected with the mixing rod 28, wherein the dosing dial 26 is
  • the connecting shaft 252 is fixedly coupled, and the lower powder fixing member 27 is fixed in the powder storage box 21 and rotatably connected to the connecting shaft 252.
  • the bottom of the driving component 25 is provided with a transmission shaft 253 for driving connection with the powder driving device 7, and the driving device 25 is driven to rotate by the powder driving device 7, and simultaneously drives the quantitative rotating wheel 26, the mixing rod 28 and the rotating powder discharging cylinder. 22 rotation.
  • the top surface of the driving element 25 is convexly formed with a convex ring 250.
  • the convex ring 250 is disposed coaxially with the connecting shaft 252.
  • the dosing dial 26 includes a disk-shaped body 261 having a plurality of powder metering holes 262 extending through the top and bottom surfaces thereof, and a plurality of powder metering holes 262 disposed adjacent the circumference of the body 261 and The bottom surface of the body 261 is evenly spaced at intervals, and the bottom surface of the body 261 (i.e., the side facing the bottom 211 of the toner container 21) is convexly provided with a plurality of scraping strips 263 radially distributed.
  • the friction between the dosing dial 26 and the bottom 211 of the toner cartridge 21 can be reduced, so that the rotation of the dosing dial 26 is smoother.
  • the plurality of scraping strips 263 radially distributed can scrape the milk powder that has penetrated between the bottom 211 of the powder storage box 21 and the metering disc 26 and guide it to the periphery of the dosing dial 26.
  • the powder is discharged through the lower powder opening 2111 of the bottom portion 211 of the toner container 21 to prevent the milk powder from remaining between the bottom portion 211 of the powder storage box 21 and the metering disk 26, thereby further making the metering disk 26 rotate more smoothly and preventing jamming.
  • the bottom of the body 261 is provided with a mounting hole 2610.
  • the bottom surface of the body 261 is formed with a convex ring 2611 around the mounting hole 2610.
  • the inner end of each scraping strip 263 is connected with the convex ring 2611, and the outer end of each scraping strip 263 extends to the body.
  • the number of the powder doping holes 262 is four, the number of the scraping bars 263 is eight, and each of the powder doping holes 262 is sandwiched between the two scraping bars 263, and each of the scraping bars 263 The outer end is disposed adjacent to the corresponding scraping strip 263.
  • the number of powder dosing holes 262 and the number of scraping bars 263 may vary depending on the actual application, and is not limited thereto.
  • a mounting protrusion 2612 is formed on the top surface of the body 261 corresponding to the mounting hole 2610.
  • the mounting protrusion 2612 is provided with a limiting hole 2613, and is formed on the wall surface of the limiting hole 2613 along the circumferential direction of the limiting hole 2613.
  • a plurality of first guiding blocks 2614 are arranged at intervals, and a first limiting groove 2615 is formed between the adjacent two first guiding blocks 2614.
  • the bottom of the first guiding block 2614 is formed with a first guiding surface 2616.
  • the first guiding surface 2616 is a downwardly convex arch shape, and the first guiding surface 2616 is inclined radially outwardly along the limiting hole 2613.
  • the circumferential surface of the connecting shaft 252 of the driving component 25 is correspondingly provided with a second guiding block 254 corresponding to the first limiting slot 2615, and is formed with the first guiding block 2614 between the adjacent two second guiding blocks 254.
  • the second limiting slot 255 has a second guiding surface 256 formed on the top of the second guiding block 254.
  • the second guiding block 254 and the second limiting slot 255 of the driving element 25 can be smoothly and separately with the first of the dosing dial 26 respectively.
  • the limiting slot 2615 and the first guiding block 2614 are docked to avoid the problem that the quantitative dial 26 is slipped during assembly, and the assembly is convenient and the locking is stable.
  • the mounting boss 2612 is stepped, and the top of the mounting boss 2612 is formed with a screwing stop surface 2617.
  • the top surface of the body 261 is provided with a first annular groove 264 near the periphery thereof, and the powder quantitative hole 262 divides the first annular groove 264 into a plurality of curved segments, and the width of the first annular groove 264 is smaller than that of the powder quantitative hole 262. width.
  • the top surface of the body 261 is provided with a second ring groove 265 on the inner side of the first ring groove 264.
  • the lower nozzle fixing member 27 includes a blade 271 and a mounting portion 272 connected to the blade 271.
  • the squeegee 271 includes a powder-facing side 2711 for scraping the milk powder on the metering disk 26 and a back powder side 712 opposite to the powder-feeding side, and the bottom surface of the squeegee 271 is recessed inwardly toward the back powder side 712 to form a deformable cavity.
  • a blade 273 is mounted in the deformation chamber 712.
  • the deformation chamber 2713 is opposite to the lower powder opening 2111 on the bottom portion 211 of the powder storage box 21, and the deformation chamber 712 is provided to make the lower powder opening 2111.
  • a void is formed in the upper portion, which facilitates discharge of the milk powder in the powder metering hole 262 of the metering disk 26 through the lower powder port 2111.
  • the deformation chamber 2713 is open at the back powder side 712, so that the dosing dial 26 can take out the milk powder entering the deformation chamber 2713 during the rotation process, thereby preventing the accumulation of powder in the deformation chamber 2713 to form a blockage.
  • the top surface of the squeegee 271 correspondingly forms a projection 2714 corresponding to the deformation cavity 2713.
  • the bottom surface of the squeegee 271 is formed with a powder inlet oblique portion 2715 adjacent to the powder front side 2711, and the powder oblique portion 2715 is opposed to the deformation chamber 712.
  • the bottom surface of the squeegee 271 is adjacent to the powder front side 2711 and further has a powder barrier 716, and the powder barrier 716 is located between the powder oblique portion 713 and the mounting portion 272.
  • the bottom surface of the squeegee 271 is further provided with a powder dispersing portion 2717, and the powder dispersing portion 2717 is located between the powder oblique portion 2715 and the deformation chamber 2713, and is disposed near the deformation chamber 2713.
  • the blade 273 is disposed adjacent to the powder dispersing portion 2717.
  • the outer side surface of the squeegee 271 (ie, the side away from the mounting portion 272) is convexly provided with a positioning block 2718, and the inner surface of the annular side wall 212 of the powder storage box 21 is formed with a positioning groove 2121 corresponding to the positioning block 2718 (as shown in FIG. 17). ).
  • the blade 273 is opposed to the positioning block 2718. During installation, the positioning block 2718 is inserted into the positioning groove 2121 of the toner container 21 to prevent the lower powder fixing member 27 from rotating relative to the toner container 21.
  • the mounting portion 272 is provided with a stepped sleeve hole 2721 for fitting with the mounting boss 2612 of the dosing dial 26.
  • a positioning sleeve 722 is protruded from the top surface of the mounting portion 272 corresponding to the sleeve hole 2721.
  • the mixing bar 28 includes a central portion 281, a plurality of mixing arms 282 extending outwardly from the central portion 281, and a connection between adjacent two mixing arms 282.
  • the connecting arm 283 is provided with a scraping portion 284 for scraping the milk powder on the inner surface of the annular side wall 212 of the powder storage box 21, preventing the milk powder in the powder storage box 21 from agglomerating on the inner surface of the annular side wall 212. Avoid affecting the rotation of the mixing rod 28 and the dosing wheel 26.
  • the scraping portion 284 is made of soft rubber, and the connecting arm 82 is provided with an ear portion 821, and the scraping portion 284 is on the ear portion 821.
  • the powder storage box 21 is made of a transparent material, and the outer side of the powder storage box 21 is provided with a photoelectric sensor (not shown) at a height corresponding to the powder scraping portion 284, for example, a reflective photoelectric
  • the sensor and the photoelectric sensor are used to detect whether the height of the milk powder in the toner container 21 is lower than a set height.
  • the dusting portion 284 can scrape off the powder of the corresponding height on the inner surface of the annular side wall 212 of the powder storage box 21 to avoid the annular side wall. The effect of the adhesion of milk powder on the inner surface of 212 on the detection results of photoelectric sensors.
  • a first powder dispersing portion 281 and a second powder dispersing portion 822 are protruded from a bottom surface of the mixing powder arm 282.
  • the first powder dispersing portion 281 is disposed near the center portion 281, and the second powder dispersing portion 822 is disposed away from the center portion 281.
  • the protruding height of the second powder dispersing portion 822 is smaller than the protruding height of the first powder dispersing portion 281, so that when the mixing arm 282 is rotated, the second powder dispersing portion 822 can be broken to lower the powder opening
  • the powdered milk on the projections 2714 of the fixing member 27 does not interfere with the projections 2714 of the lower powder holder 27.
  • a third powder dispersing portion 2821 is protruded from the bottom surface of the connecting arm 283 for dispersing the milk powder in the position of the toner container 21 near the annular side wall 212.
  • the first powder dispersing portion 281, the second powder dispersing portion 822, and the third powder dispersing portion 2821 are both V-shaped.
  • the bottom surface of the central portion 281 is provided with a screw hole 2811, and the top of the connecting shaft 252 of the driving member 25 is correspondingly provided with an external thread.
  • the connecting shaft 252 at the top of the driving member 25 passes upwardly from the bottom of the toner container 21 through the through hole 2110 on the bottom 211 of the toner cartridge 21, and then the dosing dial 26 is placed to make the dosing dial
  • the first limiting slot 2615 and the first guiding block 2614 of the 26 are respectively abutted with the second guiding block 254 and the second limiting slot 255 of the driving component 25, and the dosing dial 26 is sleeved on the connecting shaft 252, and then placed.
  • the powder port fixing member 27 is such that the positioning block 2718 of the lower powder port fixing member 27 is aligned with the positioning groove 2121 of the annular side wall 212 of the powder storage box 21, and then the mounting portion 272 of the lower powder port fixing member 27 is sleeved on the metering table.
  • the mounting protrusion 2612 of the 26 fixes the lower powder fixing member 27 relative to the powder storage box 21, and rotates the dosing dial 26 relative to the lower powder fixing member 27, and finally places the mixing rod 28 to the top of the driving member 25.
  • the external thread of the connecting shaft 252 is screwed with the screw hole 2811 at the bottom surface of the central portion 281 of the powder mixing rod 28, and the mixing rod 28 is fixedly coupled to the connecting shaft 252 of the driving member 25, and the connecting shaft 252 of the driving member 25 is
  • the top surface is higher than the top end of the mounting portion 272 of the lower powder holder 27, that is, by tightening the stop
  • the face 2617 stops the mounting of the mixing bar 28 such that the mixing bar 28 can also be rotated relative to the lower nozzle holder 27.
  • the first ring groove 264 passes through the blade 273 and the powder dispersing portion 2717 of the lower nozzle fixing member 27.
  • the rotary powder discharge cylinder 22 and the stator member 23 are made of a plastic material, and the scraping member 24 is made of a metal material, so that the powder scraping member 24 has sufficient strength, and the scraping member 24 has a rod shape.
  • the scraping member 24 can also be configured in a sheet shape.
  • the milk powder brewing apparatus 3 is provided with a mixing chamber 300, a powder inlet 301, a water supply port 302, and a liquid outlet 304.
  • the powder inlet 301 of the milk powder brewing device 3 communicates with the powder outlet 231 of the rotary powder discharge cylinder, and the water tank 4 communicates with the water inlet 501 of the hot water supply device 5, and the water outlet 502 of the hot water supply device 5 and the milk powder brewing device
  • the water supply port 302 of 3 is connected, and the liquid outlet 304 is located outside the body 1 for discharging the milk water mixed solution obtained by mixing the milk powder and the water.
  • the milk powder brewing device 3 is further provided with a steam exhaust port 303 which communicates with the outside of the body 1 with the mixing chamber 300 to discharge the steam generated in the mixing chamber 300 to the outside of the body 1.
  • the milk powder brewing device 3 includes a punching funnel bracket 31, a brewing funnel 32 and a funnel cover 33.
  • the steam exhaust port 303 is disposed on the punching funnel bracket 31, and the water supply port 302 and the liquid outlet 304 are provided at On the hopper 32, the powder inlet 301 is provided on the funnel cover 33.
  • the hopper cover 33 is further provided with a steam outlet 332 through which the steam is guided to the exhaust port 303 and discharged to the outside of the body 1.
  • the automatic powder supply is performed by rotating the powder discharging device 2, and the hot water supply device 5 realizes the immediate use of hot water, which can save electric energy and prevent the water in the water tank 4 from being repeatedly heated repeatedly.
  • the water quality deteriorates, and the milk powder concentration can be automatically adjusted by controlling the amount of powder and the amount of hot water supplied.
  • the steam generated in the mixing chamber 300 during the brewing can be discharged out of the body 1 through the steam exhaust port 303, so that the powder outlet 231 at the bottom of the milk powder box 23 is prevented from being agglomerated by moisture.
  • the body 1 includes a base 11, a main body 12 and a head 13.
  • the main body 12 is disposed on the base 11.
  • the head 13 is disposed on the main body 12, and the head 13 is disposed.
  • the intelligent milking machine further includes a tray 8 for placing a milk container, the tray 8 being detachably mounted on the outside of the body 1 and having a height adjustable.
  • the panel 14 is provided with a first indicator light 141 for indicating whether the milk powder brewing device 3 is assembled in position, a second indicator light 142 for indicating whether the rotary powder discharging device 2 is assembled, and a first indicator for indicating whether the water tank 4 is assembled in position.
  • the positions of the first indicator 141, the second indicator 142, the third indicator 143, and the fourth indicator 144 of the panel 14 are respectively indicated by corresponding indication symbols.
  • the panel 14 may also be a display display, such as an LCD display, through which a corresponding indicator is displayed for indication.
  • the powder driving device 7 includes a motor 71, a Hall sensor plate 72, a metering dial 73, a magnet 74, and a coupling 75.
  • the rotating shaft 710 of the motor 71 is connected to the coupling 75.
  • the magnets 74 are disposed on the measuring turntable 73.
  • the number and positional distribution of the magnets 74 correspond to the number and position distribution of the powder metering holes 262 of the dosing dial 26, and the Hall sensor board 72 is electrically connected to the control circuit board 6 and is magnetized. 74 to sense.
  • the number of turns of the metering turntable 73 of the powdering drive device 7 is fed back to the main control chip of the control circuit board 6 in real time, and the number of cells of the metering turntable 73 is controlled by adjusting the main control chip of the control circuit board 6, thereby controlling the powder.
  • Grams. A sleeve 76 is attached to the top end of the motor 71, and the metering dial 73 coupling 75 is covered.
  • the top end of the coupling 75 is drivingly coupled to the driving element 25 of the rotary lowering device 2, and the bottom end of the coupling 75 is fixedly coupled to the motor shaft 710 of the motor 71, and the top end of the coupling 75 is provided.
  • Guide position 751 is provided for connection to the drive shaft 253 of the drive element 25.
  • the bottom end of the coupling 75 is provided with a first guiding position 751, and the driving shaft 253 of the driving element 25 is provided with a second guiding position 2531 which cooperates with the first guiding position 751 and performs automatic alignment.
  • the hot water supply device 5 includes a heater 51, a water pump 52, and a check valve 53 connected in series in the water path, and the water path is respectively provided on the water inlet side and the water outlet side of the heater 51.
  • a water inlet temperature sensor 54 and an outlet water temperature sensor 55.
  • the surface of the heater 51 is provided with a temperature fuse 56.
  • the heater 51, the water pump 52, the check valve 53, the water inlet temperature sensor 54, and the outlet water temperature sensor 55 are electrically connected to the control circuit board 6. connection.
  • the heater 51 includes a water pipe and a heat pipe.
  • the water pipe and the heat pipe are spirally arranged in parallel, and the outer pipe of the water pipe and the heat pipe is die-cast together.
  • the hot water supply device 5 further includes a power board 57.
  • the power supply plate 57 is electrically connected, and the cold water in the water tank 4 flows in from the water pipe inlet of the heater 51, and is heated by the heat pipe of the heater 51, and then the water temperature reaches the set temperature when the water outlet of the heater 51 flows out.
  • the body 1 is provided with a separate photoelectric liquid level sensor 101 for detecting the water level.
  • the water tank 4 is provided with a light guiding cone 41 at a corresponding position, and the separated photoelectric liquid level sensor 101 is electrically connected to the control circuit board 6.
  • the light guiding cone 41 is fed back to the separate photoelectric level sensor 101 by water wave refraction, so that the water level is correctly determined.
  • the body 1 is provided with a photoelectric sensor switch 102 for detecting a milk container, the photoelectric sensor switch 102 includes an infrared light emitter 1021 and an infrared light receiver 1022, and the infrared light emitter 1021 and the infrared light receiver 1022 are black bubbles.
  • the cotton 103 is isolated, and the photoelectric sensor switch 102 is electrically connected to the control circuit board 6.
  • the body 1 can also be provided with a micro switch for detecting whether the milk powder brewing device 3 is installed in position, and the micro switch is electrically connected to the control circuit board 6.
  • the body 1 can also be provided with a tact switch for detecting whether the cover 29 is mounted in position, and the tact switch is electrically connected to the control circuit board 6.
  • the body 1 is provided with a micro switch 105 for detecting whether the water tank 4 is mounted in position, and the micro switch 105 of the water tank 4 is electrically connected to the control circuit board 6.
  • the micro switch 105 When the water tank 4 is installed under the position pressure, the micro switch 105 is turned on, the control circuit board 6 notifies the buzzer that the buzzer sounds, the micro switch 105 is disconnected after the water tank 4 is removed, and the control circuit board 6 passes the third indicator light on the panel 14. 143 tips.
  • the intelligent milking machine can be used in conjunction with the control terminal and the cloud milk powder database when in use.
  • the control terminal may be a mobile terminal such as a mobile phone or a tablet computer.
  • An APP application for controlling milking is installed in the control terminal.
  • the cloud milk powder database stores the matching information of different grades of the branded milk powder, and the ratio information includes the correspondence between the amount of milk powder used and the amount of water, and may also include water temperature information.
  • the APP application on the control terminal can access the cloud milk powder database through networking.
  • the control circuit board 6 is provided with a communication module, a microcontroller and a memory for communication connection with the control terminal.
  • the powder storage box 21 of the rotary milking device 2 of the intelligent milking machine stores milk powder, opens the APP application on the control terminal, and scans the milk powder barcode on the milk powder package corresponding to the milk powder stored in the powder storage box 21.
  • the matching information of the cloud milk powder database is obtained and sent to the smart milking machine, and the matching information is stored by controlling the memory of the circuit board 6.
  • the corresponding concentration adjustment button on the panel 14 can be directly adjusted to the corresponding concentration ratio and stored in the memory of the control circuit board 6.
  • the manually entered concentration ratio information can also be fed back to the cloud milk powder database to supplement the milk powder data information.
  • the microcontroller on the control circuit board 6 controls the amount of powder to be rotated by the powder device 2, the amount of water supplied by the hot water supply device 5, and the temperature according to the ratio information in the memory, and a specific amount of milk powder and a specific volume of water are After mixing in the milk powder brewing device 3, a mixed solution is formed and output.

Abstract

本申请公开一种旋转下粉装置及智能冲奶机。旋转下粉装置包括用于储存奶粉的储粉盒,其特征在于,所述旋转下粉装置还包括旋转出粉筒、定子元件、刮粉件及驱动元件,所述储粉盒的底部设有下粉口,所述旋转出粉筒设有出粉口,所述旋转出粉筒和定子元件可拆卸地安装在所述储粉盒的底部外侧,所述定子元件与所述储粉盒相固定,所述旋转出粉筒可相对于所述定子元件转动,并通过所述定子元件和所述储粉盒的底部限制所述旋转出粉筒的轴向移动,所述旋转出粉筒的出粉口与所述储粉盒的下粉口对齐以作为所述储粉盒中储存奶粉的出粉通道,所述刮粉件安装在所述定子元件上,所述刮粉件包括与所述定子元件连接的连接部、及与所述连接部相连接并与所述旋转出粉筒内壁紧贴的刮粉部,所述驱动元件用于驱动所述旋转出粉筒旋转,所述刮粉件的刮粉部用于在所述旋转出粉筒旋转过程中刮除粘附在所述旋转出粉筒内壁上的奶粉。本申请能够有效解决现有下粉装置中出粉筒容易被堵塞并且不易清洁的问题。

Description

旋转下粉装置及智能冲奶机
本申请要求于2018年02月10日提交中国专利局,申请号为201810137769.6、发明名称为“旋转下粉装置及粉末冲泡装置”的中国专利申请的优先权,并要求于2018年05月29日提交中国专利局,申请号为201810533720.2、发明名称为“旋转下粉装置及粉末冲泡装置”的中国专利申请的优先权,该两件中国专利申请的全部内容通过引用结合在本申请中。
技术领域
本申请涉及粉状饮料冲泡装置技术领域,尤其涉及一种旋转下粉装置及智能冲奶机。
背景技术
在现有的智能冲奶机在冲泡配方奶粉时,其所使用的下粉装置通常在储粉盒的底部设有下粉口,并于储粉盒的底部外侧对应该下粉口一体成型形成有凸出的出粉筒,储粉盒中的奶粉由该出粉筒进行出粉。由于奶粉本身的粘性或静电原因,常常会导致奶粉粘在出粉筒的内壁,这样会造成出粉筒被堵塞影响出粉,另外,粘在出粉筒内的奶粉长时间暴露在空气中容易变质,而影响冲调奶水的卫生安全。另外,出粉筒与储粉盒为一体结构,对出粉筒进行清洗时,需要先清空储粉盒中的奶粉才能够进行清洗操作,不易清洁且影响智能冲奶机的正常使用。
发明内容
本申请的主要目的在于提供一种旋转下粉装置及智能冲奶机,旨在解决现有下粉装置中出粉筒容易被堵塞并且不易清洁的问题。
为了实现上述目的,本申请提供一种旋转下粉装置,包括用于储存奶粉的储粉盒,所述旋转下粉装置还包括旋转出粉筒、定子元件、刮粉件及驱动元件,所述储粉盒的底部设有下粉口,所述旋转出粉筒设有出粉口,所述旋转出粉筒和定子元件可拆卸地安装在所述储粉盒的底部外侧,所述定子元件与所述储粉盒相固定,所述旋转出粉筒可相对于所述定子元件转动,并通过所述定子元件和所述储粉盒的底部限制所述旋转出粉筒的轴向移动,所述旋转出粉筒的出粉口与所述储粉盒的下粉口对齐以作为所述储粉盒中储存奶粉的出粉通道,所述刮粉件安装在所述定子元件上,所述刮粉件包括与所述定子元件连接的连接部、及与所述连接部相连接并与所述旋转出粉筒内壁紧贴的刮粉部,所述驱动元件用于驱动所述旋转出粉筒旋转,所述刮粉件的刮粉部用于在所述旋转出粉筒旋转过程中刮除粘附在所述旋转出粉筒内壁上的奶粉
为了实现上述目的,本申请还提供一种智能冲奶机,所述智能冲奶机包括机体、以及安装在所述机体上的旋转下粉装置、奶粉冲调装置、水箱、热水供给装置、控制电路板和投粉驱动装置,所述热水供给装置和投粉驱动装置均与所述控制电路板电性连接;
所述旋转下粉装置包括用于储存奶粉的储粉盒、旋转出粉筒、定子元件、刮粉件及驱动元件,所述储粉盒的底部设有下粉口,所述旋转出粉筒设有出粉口,所述旋转出粉筒和定子元件可拆卸地安装在所述储粉盒的底部外侧,所述定子元件与所述储粉盒相固定,所述旋转出粉筒可相对于所述定子元件转动,并通过所述定子元件和所述储粉盒的底部限制所述旋转出粉筒的轴向移动,所述旋转出粉筒的出粉口与所述储粉盒的下粉口对齐以作为所述储粉盒中储存奶粉的出粉通道,所述刮粉件安装在所述定子元件上,所述刮粉件包括与所述定子元件连接的连接部、及与所述连接部相连接并与所述旋转出粉筒内壁紧贴的刮粉部,所述驱动元件与所述投粉驱动装置传动连接,用于驱动所述旋转出粉筒旋转,所述刮粉件的刮粉部用于在所述旋转出粉筒旋转过程中刮除粘附在所述旋转出粉筒内壁上的奶粉;
所述奶粉冲调装置设有混合仓、进粉口、供水口和出液口,所述奶粉冲调装置的进粉口与所述旋转出粉筒的出粉口连通,所述水箱与所述热水供给装置的入水口连通,所述热水供给装置的出水口与所述奶粉冲调装置的供水口连通,所述出液口位于所述机体外
本申请的旋转下粉装置中,定子元件与储粉盒相固定,旋转出粉筒可相对于所述定子元件转动,刮粉件安装在定子元件上,这样,储粉盒内储存的奶粉进行出粉操作时,旋转出粉筒可以相对经过其出粉口的奶粉旋转而减少粘附,从而加速奶粉的下漏以有效避免奶粉堵塞旋转出粉筒,同时,刮粉件的刮粉部在旋转出粉筒的旋转过程中可以将粘附在旋转出粉筒内壁上的奶粉进行除粘,进一步减少奶粉的粘附。旋转出粉筒和定子元件可拆卸地安装在储粉盒的底部外侧,在旋转出粉筒内壁和刮粉件上存在粘附奶粉的情况下,可以快速地拆下旋转出粉筒和刮粉件,而不需要清空储粉盒的奶粉,清洁起来非常之方便,并可更新备用的旋转出粉筒和刮粉件继续进行使用,从而不影响智能冲奶机的正常使用。
附图说明
图1为本申请智能冲奶机一实施例的立体组装图。
图2为图1所示智能冲奶机沿A-A线的剖视图。
图3为图1所示智能冲奶机中的部分分解示意图,其中智能冲奶机的部分组件未示出。
图4为图1所示智能冲奶机中旋转下粉装置的分解示意图。
图5为图4所示旋转下粉装置的组装剖视图。
图6为图5所示旋转下粉装置在非剖视状态下由底部所视的组装图。
图7为图6所示旋转下粉装置的部分分解图。
图8为图6所示旋转下粉装置由另一角度所示的分解图。
图9为图8所示旋转下粉装置中定量转盘的放大图。
图10为图9所示定量转盘由另一角度所示的结构示意图。
图11为图9所示定量转盘由正面所示的结构示意图。
图12为图8所示旋转下粉装置中下粉口固定件的放大图。
图13为图12所示下粉口固定件由正面所示的结构示意图。
图14为图8所示旋转下粉装置中拌粉杆的放大图。
图15为图14所示拌粉杆由正面所示的结构示意图。
图16为图5所示旋转下粉装置在非剖视状态下由顶部所视的组装图,其中未示出盒盖。
图17为图16所示旋转下粉装置沿B-B线的剖视图。
图18为图1所示智能冲奶机中奶粉冲调装置的分解示意图。
图19为图1所示智能冲奶机中投粉驱动装置的分解示意图。
图20为图1所示智能冲奶机中热水供给装置的分解示意图。
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施方式仅仅用以解释本申请,并不用于限定本申请。
本申请提供一种智能冲奶机,所述智能冲奶机可以用于冲泡配方奶粉。如图1至图20所示,在本申请的一实施例中,智能冲奶机包括机体1、以及安装在所述机体1上的旋转下粉装置2、奶粉冲调装置3、水箱4、热水供给装置5、控制电路板6和投粉驱动装置7,所述热水供给装置5和投粉驱动装置7均与所述控制电路板6电性连接。
参照图4至图17,在本实施例中,旋转下粉装置2包括用于储存奶粉的储粉盒21、旋转出粉筒22、定子元件23、刮粉件24及驱动元件25。
所述储粉盒21呈筒状,包括底部211及由所述底部211周缘向上延伸的环形侧壁212,并由所述底部211和环形侧壁212围合形成用于存储奶粉的储粉空间213。
储粉盒21的底部211设有下粉口2111和通孔2110,旋转出粉筒22设有出粉口221。旋转出粉筒22和定子元件23可拆卸地安装在储粉盒21的底部211外侧,定子元件23与储粉盒21相固定,旋转出粉筒22可相对于定子元件23转动,并通过定子元件23和储粉盒21的底部211限制旋转出粉筒22的轴向移动。旋转出粉筒22的出粉口221与储粉盒21的下粉口2111对齐以作为储粉盒21中储存奶粉的出粉通道。刮粉件24安装在定子元件23上。刮粉件24包括与定子元件23连接的连接部241、及与连接部241相连接并与旋转出粉筒22内壁紧贴的刮粉部242,即连接部241呈弯折状,连接部241的一端与定子元件23连接,连接部241另一端越过旋转出粉筒22的底端后与刮粉部242的底端连接。驱动元件25用于驱动旋转出粉筒22旋转。在本实施例中,驱动元件25与投粉驱动装置7传动连接,用于驱动旋转出粉筒22旋转。刮粉件24的刮粉部242用于在旋转出粉筒22旋转过程中刮除粘附在旋转出粉筒22内壁上的奶粉。
旋转下粉装置2中,定子元件23与储粉盒21相固定,旋转出粉筒22可相对于定子元件23转动,刮粉件24安装在定子元件23上,这样,储粉盒21内储存的奶粉进行出粉操作时,旋转出粉筒22可以相对经过其出粉口221的奶粉旋转而减少粘附,从而加速奶粉的下漏以有效避免奶粉堵塞旋转出粉筒22,同时,刮粉件24的刮粉部242在旋转出粉筒22的旋转过程中可以将粘附在旋转出粉筒22内壁上的奶粉进行除粘,进一步减少奶粉的粘附。旋转出粉筒22和定子元件23可拆卸地安装在储粉盒21的底部211外侧,在旋转出粉筒22内壁和刮粉件24上存在粘附奶粉的情况下,可以快速地拆下旋转出粉筒22和刮粉件24,而不需要清空储粉盒21的奶粉,清洁起来非常之方便,并可更新备用的旋转出粉筒22和刮粉件24继续进行使用,从而不影响粉末冲泡装置的正常使用。
在本实施例中,旋转出粉筒22的顶端插设于储粉盒21的下粉口2111中,旋转出粉筒22的顶面与储粉盒21的底部211内表面平齐,这样,储粉盒21中的奶粉可以直接落入旋转出粉筒22的出粉口221中。刮粉件24的刮粉部242的顶端与旋转出粉筒22的顶面平齐,这样,旋转出粉筒22旋转一周,刮粉件24的刮粉部242可以将整体旋转出粉筒22的整个内壁进行刮除。
在本实施例中,定子元件23呈筒状,套设在旋转出粉筒22的外围并限制旋转出粉筒22沿其轴向移动。定子元件23的外周上设有一对卡块231,储粉盒21的底部211外侧设有一对凸块2112,凸块2112上设有卡槽2113,定子元件23通过卡块231与卡槽2113的卡合固定安装在储粉盒21的底部211外侧。
进一步地,定子元件23的外周形成有耳部232,刮粉件24的连接部241的一端插设于耳部232内。该耳部232还用于旋转操作,以将定子元件23安装在储粉盒21上或从储粉盒21上拆卸下来。
在本实施例中,旋转出粉筒22的外周于靠近其顶端的位置设有从动齿轮22,驱动元件25上设有主动齿轮251,驱动元件25的主动齿轮251与旋转出粉筒22的从动齿轮22啮合传动,以通过驱动元件25带动旋转出粉筒22旋转。在其它实施例中,驱动元件25的主动齿轮251与旋转出粉筒22的从动齿轮22之间还可以是通过同步带传动。另外,驱动元件25与旋转出粉筒22之间也可以是不采用齿轮传动,而采用其它传动方式,例如皮带轮传动。
在本实施例中,旋转下粉装置2还包括定量转盘26、下粉口固定件27及拌粉杆28、及盒盖29,定量转盘26、下粉口固定件27及拌粉杆28由下自上依次安装在储粉盒21的储粉空间213内,盒盖29盖设在储粉盒21的顶部开口处。驱动元件25的顶部设有连接轴252,连接轴252依次穿过储粉盒21的底部211、定量转盘26和下粉口固定件27后与拌粉杆28固定连接,其中,定量转盘26与连接轴252固定连接,下粉口固定件27固定在储粉盒21内并与连接轴252可转动连接。驱动元件25的底部设有传动轴253,用于与投粉驱动装置7传动连接连接,通过投粉驱动装置7驱动驱动元件25旋转,同时带动定 量转盘26、拌粉杆28及旋转出粉筒22旋转。
驱动元件25的顶面凸出形成有凸环250,凸环250与连接轴252呈同轴设置,通过设置凸环250,能够减少驱动元件25与储粉盒21的底部211之间的摩擦,使得驱动元件25的转动更加顺畅,可节省驱动力。
参照图7至图11,定量转盘26包括圆盘状的本体261,本体261上设有贯穿其顶面和底面的多个粉末定量孔262,多个粉末定量孔262靠近本体261的周缘设置并沿本体261的圆周方向呈间隔均匀排列,本体261的底面(即朝向储粉盒21的底部211的那一面)凸出设有呈放射状分布的多根刮粉条263。通过设置呈放射状分布的多根刮粉条263,在定量转盘26的旋转过程中,一方面,可以减少定量转盘26与储粉盒21的底部211之间的摩擦,使得定量转盘26的转动更加顺畅,避免卡死,另一方面,呈放射状分布的多根刮粉条263能够将渗入到储粉盒21的底部211与定量转盘26之间的奶粉进行刮除并向定量转盘26的周边导引,经储粉盒21的底部211的下粉口2111排出,防止储粉盒21的底部211与定量转盘26之间残留奶粉,进一步使得定量转盘26转动更加顺畅,防止卡死。
本体261的中部设有安装孔2610,本体261的底面于安装孔2610周边形成有凸环2611,每一刮粉条263的内端与凸环2611连接,每一刮粉条263的外端延伸至本体261的外周缘。通过设置凸环2611,可以防止奶粉进入到本体261的安装孔2610中。凸环2611的凸出高度与刮粉条263的凸出高度相同。
在本实施例中,粉末定量孔262的数量为四个,刮粉条263的数量为八根,每一个粉末定量孔262被夹设在两根刮粉条263之间,且每一根刮粉条263的外端靠近与之对应的刮粉条263设置。在其它实施例中,粉末定量孔262的数量和刮粉条263的数量可以根据实际应用进行变化,并不局限如此。
本体261的顶面中部对应安装孔2610向上凸出形成有安装凸起2612,安装凸起2612设有限位孔2613,并于限位孔2613的壁面上形成有沿限位孔2613的周向呈间隔排列的多个第一导向块2614,相邻的两个第一导向块2614之间形成第一限位槽2615。第一导向块2614的底部形成有第一导引面2616,第一导引面2616为向下凸的拱形,且第一导引面2616沿限位孔2613径向向外朝下倾斜。
驱动元件25的连接轴252的周面对应第一限位槽2615相应设有第二导向块254,并于相邻的两个第二导向块254之间形成有与第一导向块2614配合的第二限位槽255,第二导向块254的顶部形成有第二导引面256。
组装时,通过第一导引面2616和第二导引面256的双向导引,驱动元件25的第二导向块254和第二限位槽255能够非常顺利地分别与定量转盘26的第一限位槽2615和第一导向块2614进行对接,避免定量转盘26在组装时出现打滑的问题,组装方便且卡合稳定。
在本实施例中,安装凸起2612为台阶状,安装凸起2612的顶部形成有旋紧止位面2617。
本体261的顶面于靠近其周缘的位置设有第一环槽264,粉末定量孔262将第一环槽264分隔成多个弧形段,第一环槽264的宽度小于粉末定量孔262的宽度。本体261的顶面于第一环槽264的内侧设有第二环槽265,通过设置第二环槽265,可以大大减轻定量转盘26的重量,以节省驱动定量转盘26转动的动力。
参照图7、8、图12和图13,下粉口固定件27包括刮板271及与刮板271连接的安装部272。刮板271包括用于刮平定量转盘26上奶粉的一迎粉侧2711和与迎粉侧相对的一背粉侧712,刮板271的底面靠近背粉侧712向内凹进形成有形变腔2713,形变腔712内安装有刮片273。
将下粉口固定件27固定安装至储粉盒21内时,形变腔2713与储粉盒21上的底部211上的下粉口2111相正对,通过设置形变腔712,使下粉口2111上方形成空隙,这样可便于定量转盘26的粉末定量孔262中的奶粉经下粉口2111排出。进一步地,形变腔2713 在背粉侧712处为敞开,使得定量转盘26在转动过程中能够将进入形变腔2713的奶粉带出,避免形变腔2713内积粉形成堵塞。
刮板271的顶面对应形变腔2713相应地形成凸出部2714。刮板271的底面靠近迎粉前侧2711形成有进粉斜口部2715,进粉斜口部2715与形变腔712相正对。通过设置进粉斜口部713,可以使刮板271刮平定量转盘26上奶粉时更加平缓,从而提高下粉精度。
刮板271的底面靠近迎粉前侧2711还设有挡粉条716,挡粉条716位于进粉斜口部713与安装部272之间。通过设置挡粉条716,在定量转盘26转动过程中,对定量转盘26上的奶粉进行阻挡,仅允许粉末定量孔262内的奶粉经下粉口2111排出,避免定量转盘26上其他位置的奶粉进入到形变腔2713内。
进一步地,刮板271的底面还凸设有粉末打散部2717,粉末打散部2717位于进粉斜口部2715与形变腔2713之间,并靠近形变腔2713设置。刮片273靠近粉末打散部2717设置。
刮板271的外侧面(即远离安装部272的一侧)凸设有定位块2718,储粉盒21的环形侧壁212的内表面对应定位块2718形成有定位槽2121(如图17所示)。刮片273与定位块2718相正对。安装时,定位块2718插入于储粉盒21的定位槽2121内,防止下粉口固定件27相对储粉盒21发生转动。
安装部272设有台阶状的套孔2721,用于与定量转盘26的安装凸起2612套接。安装部272的顶面对应套孔2721凸设有定位套722。
参照图7、8、图14和图15,拌粉杆28包括中心部281、由中心部281向外延伸的多个拌粉臂282、以及连接在相邻两个拌粉臂282之间的连接臂283,连接臂283上设有用于刮除储粉盒21的环形侧壁212内表面上的奶粉的刮粉部284,防止储粉盒21内的奶粉在环形侧壁212内表面结块,避免影响拌粉杆28和定量转盘26转动。
刮粉部284由软胶制成,连接臂82上设有耳部821,刮粉部284在耳部821上。
作为进一步改进,在本实施例中,储粉盒21采用透明材料制成,储粉盒21的外侧于对应刮粉部284的高度设置有光电传感器(图中未示出),例如反射型光电传感器,光电传感器用于检测储粉盒21内的奶粉高度是否低于设定高度。当储粉盒21内的奶粉高度低于刮粉部284的高度时,通刮粉部284可以将储粉盒21的环形侧壁212内表面上对应高度的奶粉刮除干净,避免环形侧壁212内表面附着奶粉对光电传感器检测结果的影响。
拌粉臂282的底面凸设有第一粉末打散部281和第二粉末打散部822,第一粉末打散部281靠近中心部281设置,第二粉末打散部822远离中心部281设置,且第二粉末打散部822的凸出高度小于第一粉末打散部281的凸出高度,这样,拌粉臂282在转动时,第二粉末打散部822可以打散将下粉口固定件27的凸出部2714上的奶粉,并且不会与下粉口固定件27的凸出部2714产生干涉。
进一步地,连接臂283的底面凸设有第三粉末打散部2821,用于打散储粉盒21内靠近环形侧壁212位置的奶粉。
在本实施例中,第一粉末打散部281、第二粉末打散部822和第三粉末打散部2821均为呈V形。
在本实施例中,中心部281的底面设有螺孔2811,驱动元件25的连接轴252的顶部相应地设有外螺纹。
参照图16和图17,组装时,驱动元件25顶部的连接轴252由储粉盒21的底部向上穿过储粉盒21的底部211上的通孔2110,然后放置定量转盘26,使定量转盘26的第一限位槽2615和第一导向块2614分别与驱动元件25的第二导向块254和第二限位槽255进行对接,将定量转盘26套接在连接轴252上,再放置下粉口固定件27,使下粉口固定件27的定位块2718对准储粉盒21的环形侧壁212的定位槽2121,然后将下粉口固定件27的安装部272套设在定量转盘26的安装凸起2612上,使下粉口固定件27相对储粉盒21 固定,并使定量转盘26可相对于下粉口固定件27转动,最后放置拌粉杆28,使驱动元件25顶部的连接轴252的外螺纹与拌粉杆28的中心部281的底面设有螺孔2811螺合,将拌粉杆28与驱动元件25的连接轴252连接固定,驱动元件25的连接轴252的顶面高于下粉口固定件27的安装部272的顶端,即通过旋紧止位面2617对拌粉杆28的安装进行止位,这样使得拌粉杆28同样可以相对于下粉口固定件27转动。
定量转盘26转动时,第一环槽264供下粉口固定件27的刮片273和粉末打散部2717通过。
在本实施例中,旋转出粉筒22和定子元件23由塑料材料制成,刮粉件24由金属材料制成,使得刮粉件24具有足够的强度,刮粉件24为杆状。在其它实施例中,刮粉件24还可以是设置为片状。
如图1至3及图18至20所示,奶粉冲调装置3设有混合仓300、进粉口301、供水口302和出液口304。奶粉冲调装置3的进粉口301与旋转出粉筒的出粉口231连通,水箱4与热水供给装置5的入水口501连通,热水供给装置5的出水口502与奶粉冲调装置3的供水口302连通,出液口304位于机体1外,以供将奶粉和水混而成的奶水混合溶液排出。
奶粉冲调装置3还设置有排蒸汽口303,排蒸汽口303将与混合仓300与机体1的外部连通,以将混合仓300内产生的蒸汽排出到机体1的外部。
在本实施例中,奶粉冲调装置3包含冲调漏斗支架31、冲调漏斗32及漏斗盖33,排蒸汽口303设于冲调漏斗支架31上,供水口302和出液口304设于冲调漏斗32上,进粉口301设于漏斗盖33上,漏斗盖33还设有蒸汽出口332,通过蒸汽出口332将蒸汽导引至排蒸汽口303排出至机体1的外部。
智能冲奶机中,通过旋转下粉装置2进行下粉量的自动供给,通过热水供给装置5实现热水的即用即热,可以节约电能且避免水箱4内的水因多次反复加热而导致水质变坏,并且通过控制下粉量和热水供应量可自动调节奶粉浓度。另外,通过排蒸汽口303可以将冲调时混合仓300内产生的水蒸汽排出机体1外,避免奶粉盒23底部的出粉口231受潮结块。
如图1至图3所示,在本实施例中,机体1包括底座11、主体12及头部13,主体12设于底座11上,头部13设于主体12上,头部13上设有面板14。
智能冲奶机还包括用于放置盛奶容器的托盘8,托盘8可拆卸地安装在机体1的外侧并且安装高度可调节。
面板14上设有用于指示奶粉冲调装置3是否装配到位的第一指示灯141、用于指示旋转下粉装置2是否装配到位的第二指示灯142、用于指示水箱4是否装配到位的第三指示灯143、以及用于指示托盘8上是否放置有容器的第四指示灯144。其中,面板14于第一指示灯141、第二指示灯142、第三指示灯143、第四指示灯144的位置分别采用相应的指示符号进行指示。在其它实施例中,面板14还可以是设置显示屏,例如LCD显示屏,通过显示屏来显示相应的指示符号进行指示。
如图19所示,在本实施例中,投粉驱动装置7包括电机71、霍尔感应板72、计量转盘73、磁铁74及连轴器75,电机71的转轴710与连轴器75连接,磁铁74设于计量转盘73上,磁铁74的数量及位置分布与定量转盘26的粉末定量孔262的数量及位置分布相对应,霍尔感应板72与控制电路板6电性连接并对磁铁74进行感应。投粉驱动装置7的计量转盘73转的格数实时反馈到控制电路板6的主控芯片,通过调节控制电路板6的主控芯片来控制计量转盘73转的格数,进而控制下粉的克数。所述电机71的顶端连接有轴套76,将计量转盘73连轴器75罩盖于内。
在本实施例中,连轴器75的顶端与旋转下粉装置2的驱动元件25传动连接,连轴器 75的底端与电机71的电机轴710固定连接,连轴器75的顶端设有导向位751,以便于与所述驱动元件25的传动轴253连接。连轴器75的底端设有第一导向位751,驱动元件25的传动轴253设有与第一导向位751相配合并进行自动对位的第二导向位2531。
如图20所示,在本实施例中,热水供给装置5包括串联于水路中的加热器51、水泵52和单向阀53,水路中于加热器51的进水侧和出水侧分别设有入水温度传感器54和出水温度传感器55,加热器51表面设有温度保险丝56,加热器51、水泵52、单向阀53、入水温度传感器54和出水温度传感器55均与控制电路板6电性连接。
加热器51包括水管和发热管,水管和发热管均呈螺旋状且并行排列,水管和发热管的外面包覆铸铝压铸在一起,热水供给装置5还包括电源板57,发热管两端与电源板57电性连接,水箱4中的冷水从加热器51的水管入口流入,通过加热器51的发热管进行加热后,由加热器51的水管出口流出时水温就达到设定的温度。
作为进一步改进,机体1设有用于检测水位的分离式光电液位传感器101,水箱4上对应位置设有导光锥41,分离式光电液位传感器101与控制电路板6电性连接。导光锥41运用水波折射反馈到分离式光电液位传感器101,使其正确判断水位高低。
作为进一步改进,机体1设有用于检测盛奶容器的光电感应开关102,光电感应开关102包含红外光发射器1021和红外光接收器1022,红外光发射器1021和红外光接收器1022用黑色泡棉103隔离开,光电感应开关102与控制电路板6电性连接。另外,机体1还可以设置用于检测奶粉冲调装置3是否安装到位的微动开关,且微动开关与控制电路板6电性连接。
机体1还可以设置用于检测盒盖29是否安装到位的轻触开关,且轻触开关与控制电路板6电性连接。
作为进一步改进,机体1设有用于检测水箱4是否安装到位的微动开关105,水箱4的微动开关105与控制电路板6电性连接。水箱4安装到位压下微动开关105导通,控制电路板6通知蜂鸣器提示嘀声响,水箱4拿开后微动开关105断开,控制电路板6通过面板14上的第三指示灯143提示。
所述智能冲奶机在使用时,可以配合控制终端和云端奶粉数据库进行使用。所述控制终端可以是手机、平板电脑等移动终端。控制终端中安装有用于控制冲奶的APP应用程序。云端奶粉数据库中储存有已收录的品牌奶粉不同段位的配比信息,配比信息包括奶粉使用量与水量的对应关系,还可以包括水温信息。控制终端上的APP应用程序通过连网可以访问云端奶粉数据库。控制电路板6上设有通信模块、微控制器和存储器,用于与控制终端进行通信连接。使用时,智能冲奶机的旋转下粉装置2的储粉盒21中储存有奶粉,打开控制终端上的APP应用程序,扫描储粉盒21中所储存奶粉对应的奶粉包装上的奶粉条形码,以获取云端奶粉数据库的配比信息,并发送给智能冲奶机,通过控制电路板6的存储器来储存配比信息。当用户知道储粉盒21中所储存奶粉的配比信息时,也可以直接通过面板14上对应的浓度调节按键调到对应的浓度配比并保存在控制电路板6的存储器中。手动输入的浓度配比信息也可以反馈到云端奶粉数据库,对奶粉数据信息进行补充。
控制电路板6上的微控制器根据存储器中的配比信息,控制旋转下粉装置2的下粉量、热水供给装置5供应的水量及温度,将特定量的奶粉与特定体积的水在奶粉冲调装置3中混合后形成混合溶液并输出。
本申请并不局限于以上实施方式,在上述实施方式公开的技术内容下,还可以进行各种变化。凡是利用本申请说明书及附图内容所作的等效结构变换,或直接或间接运用在其他相关的技术领域,均同理包括在本申请的专利保护范围内。

Claims (20)

  1. 一种旋转下粉装置,包括用于储存奶粉的储粉盒,其特征在于,所述旋转下粉装置还包括旋转出粉筒、定子元件、刮粉件及驱动元件,所述储粉盒的底部设有下粉口,所述旋转出粉筒设有出粉口,所述旋转出粉筒和定子元件可拆卸地安装在所述储粉盒的底部外侧,所述定子元件与所述储粉盒相固定,所述旋转出粉筒可相对于所述定子元件转动,并通过所述定子元件和所述储粉盒的底部限制所述旋转出粉筒的轴向移动,所述旋转出粉筒的出粉口与所述储粉盒的下粉口对齐以作为所述储粉盒中储存奶粉的出粉通道,所述刮粉件安装在所述定子元件上,所述刮粉件包括与所述定子元件连接的连接部、及与所述连接部相连接并与所述旋转出粉筒内壁紧贴的刮粉部,所述驱动元件用于驱动所述旋转出粉筒旋转,所述刮粉件的刮粉部用于在所述旋转出粉筒旋转过程中刮除粘附在所述旋转出粉筒内壁上的奶粉。
  2. 如权利要求1所述的旋转下粉装置,其特征在于,所述旋转出粉筒的顶端插设于所述储粉盒的下粉口中;
    所述旋转出粉筒的顶面与所述储粉盒的底部内表面平齐,和/或所述刮粉件的刮粉部的顶端与所述旋转出粉筒的顶面平齐。
  3. 如权利要求1所述的旋转下粉装置,其特征在于,所述定子元件呈筒状,套设在所述旋转出粉筒的外围并限制所述旋转出粉筒沿其轴向移动。
  4. 如权利要求3所述的旋转下粉装置,其特征在于,所述定子元件的外周上设有卡块,所述储粉盒的底部外侧设有凸块,所述凸块上设有卡槽,所述定子元件通过所述卡块与卡槽的卡合固定安装在所述储粉盒的底部外侧。
  5. 如权利要求4所述的旋转下粉装置,其特征在于,所述定子元件的外周形成有耳部,所述刮粉件的连接部的一端插设于所述耳部内。
  6. 如权利要求1所述的旋转下粉装置,其特征在于,所述旋转出粉筒的外周于靠近其顶端的位置设有从动齿轮,所述驱动元件上设有主动齿轮,所述驱动元件的主动齿轮与所述旋转出粉筒的从动齿轮啮合或者通过同步带传动,以通过驱动元件带动所述旋转出粉筒旋转。
  7. 如权利要求1所述的旋转下粉装置,其特征在于,所述旋转下粉装置还包括定量转盘、下粉口固定件及拌粉杆,所述定量转盘、下粉口固定件及拌粉杆由下自上依次安装在所述储粉盒内,所述驱动元件的顶部设有连接轴,所述连接轴依次穿过所述储粉盒的底部、定量转盘和下粉口固定件后与所述拌粉杆固定连接,所述驱动元件的底部设有传动轴,用于与投粉驱动装置连接,通过所述投粉驱动装置驱动所述驱动元件旋转,同时带动定量转盘、拌粉杆及旋转出粉筒旋转。
  8. 如权利要求1所述的旋转下粉装置,其特征在于,所述旋转出粉筒和定子元件由塑料材料制成,所述刮粉件由金属材料制成,所述刮粉件为杆状或片状。
  9. 一种智能冲奶机,其特征在于,所述智能冲奶机包括机体、以及安装在所述机体上的旋转下粉装置、奶粉冲调装置、水箱、热水供给装置、控制电路板和投粉驱动装置,所述热水供给装置和投粉驱动装置均与所述控制电路板电性连接;
    所述旋转下粉装置包括用于储存奶粉的储粉盒、旋转出粉筒、定子元件、刮粉件及驱动元件,所述储粉盒的底部设有下粉口,所述旋转出粉筒设有出粉口,所述旋转出粉筒和定子元件可拆卸地安装在所述储粉盒的底部外侧,所述定子元件与所述储粉盒相固定,所述旋转出粉筒可相对于所述定子元件转动,并通过所述定子元件和所述储粉盒的底部限制所述旋转出粉筒的轴向移动,所述旋转出粉筒的出粉口与所述储粉盒的下粉口对齐以作为所述储粉盒中储存奶粉的出粉通道,所述刮粉件安装在所述定子元件上,所述刮粉件包括与所述定子元件连接的连接部、及与所述连接部相连接并与所述旋转出粉筒内壁紧贴的刮 粉部,所述驱动元件与所述投粉驱动装置传动连接,用于驱动所述旋转出粉筒旋转,所述刮粉件的刮粉部用于在所述旋转出粉筒旋转过程中刮除粘附在所述旋转出粉筒内壁上的奶粉;
    所述奶粉冲调装置设有混合仓、进粉口、供水口和出液口,所述奶粉冲调装置的进粉口与所述旋转出粉筒的出粉口连通,所述水箱与所述热水供给装置的入水口连通,所述热水供给装置的出水口与所述奶粉冲调装置的供水口连通,所述出液口位于所述机体外。
  10. 如权利要求9所述的智能冲奶机,其特征在于,所述旋转出粉筒的顶端插设于所述储粉盒的下粉口中;
    所述旋转出粉筒的顶面与所述储粉盒的底部内表面平齐,和/或所述刮粉件的刮粉部的顶端与所述旋转出粉筒的顶面平齐。
  11. 如权利要求9所述的智能冲奶机,其特征在于,所述定子元件呈筒状,套设在所述旋转出粉筒的外围并限制所述旋转出粉筒沿其轴向移动,所述定子元件的外周上设有卡块,所述储粉盒的底部外侧设有凸块,所述凸块上设有卡槽,所述定子元件通过所述卡块与卡槽的卡合固定安装在所述储粉盒的底部外侧,所述定子元件的外周形成有耳部,所述刮粉件的连接部的一端插设于所述耳部内,所述旋转出粉筒和定子元件由塑料材料制成,所述刮粉件由金属材料制成,所述刮粉件为杆状或片状。
  12. 如权利要求9所述的智能冲奶机,其特征在于,所述旋转出粉筒的外周于靠近其顶端的位置设有从动齿轮,所述驱动元件上设有主动齿轮,所述驱动元件的主动齿轮与所述旋转出粉筒的从动齿轮啮合或者通过同步带传动,以通过驱动元件带动所述旋转出粉筒旋转。
  13. 如权利要求9所述的智能冲奶机,其特征在于,所述旋转下粉装置还包括定量转盘、下粉口固定件及拌粉杆,所述定量转盘、下粉口固定件及拌粉杆由下自上依次安装在所述储粉盒内,所述驱动元件的顶部设有连接轴,所述连接轴依次穿过所述储粉盒的底部、定量转盘和下粉口固定件后与所述拌粉杆固定连接,所述驱动元件的底部设有传动轴,用于与投粉驱动装置连接,通过所述投粉驱动装置驱动所述驱动元件旋转,同时带动定量转盘、拌粉杆及旋转出粉筒旋转。
  14. 如权利要求13所述的智能冲奶机,其特征在于,所述定量转盘包括圆盘状的本体,所述本体上设有贯穿其顶面和底面的多个粉末定量孔,所述多个粉末定量孔靠近本体的周缘设置并沿本体的圆周方向呈间隔均匀排列,所述本体的底面凸出设有呈放射状分布的多根刮粉条,所述本体的中部设有安装孔,所述本体的底面于所述安装孔周边形成有凸环,每一刮粉条的内端与所述凸环连接,每一刮粉条的外端延伸至所述本体的外周缘。
  15. 如权利要求13所述的智能冲奶机,其特征在于,所述下粉口固定件包括刮板及与所述刮板连接的安装部,所述刮板包括用于刮平定量转盘上奶粉的一迎粉侧和与所述迎粉侧相对的一背粉侧,所述刮板的底面靠近所述背粉侧向内凹进形成有形变腔,所述形变腔内安装有刮片,所述形变腔在所述背粉侧处为敞开,所述刮板的顶面对应所述形变腔相应地形成凸出部,所述刮板的底面靠近所述迎粉前侧形成有进粉斜口部,所述进粉斜口部与所述形变腔相正对,所述刮板的底面靠近所述迎粉前侧还设有挡粉条,所述挡粉条位于所述进粉斜口部与安装部之间,所述刮板的底面还凸设有粉末打散部,所述粉末打散部位于所述进粉斜口部与所述形变腔之间。
  16. 如权利要求13所述的智能冲奶机,其特征在于,所述拌粉杆包括中心部、由所述中心部向外延伸的多个拌粉臂、以及连接在相邻两个拌粉臂之间的连接臂,所述连接臂上设有用于刮除储粉盒的环形侧壁内表面上的奶粉的刮粉部,所述连接臂上设有耳部,所述刮粉部在所述耳部上,所述拌粉臂的底面凸设有第一粉末打散部和第二粉末打散部,所述第一粉末打散部靠近所述中心部设置,所述第二粉末打散部远离所述中心部设置,且所述第二粉末打散部的凸出高度小于所述第一粉末打散部的凸出高度,所述连接臂的底面凸 设有第三粉末打散部。
  17. 如权利要求14所述的智能冲奶机,其特征在于,所述投粉驱动装置包括电机、霍尔感应板、计量转盘、磁铁、连轴器,所述电机的转轴与所述连轴器连接,所述磁铁设于所述计量转盘上,所述磁铁的数量及位置分布与所述定量转盘的粉末定量孔的数量及位置分布相对应,所述霍尔感应板与所述控制电路板电性连接并对所述磁铁进行感应,所述连轴器的顶端与所述旋转下粉装置的驱动元件传动连接,所述连轴器的底端设有第一导向位,所述投粉驱动装置设于所述奶粉盒的下侧,所述投粉驱动装置的顶端设有与所述第一导向位相配合并进行自动对位的第二导向位,所述投粉驱动装置的计量转盘转的格数实时反馈到控制电路板的主控芯片,通过调节控制电路板的主控芯片来控制计量转盘转的格数,进而控制下粉的克数。
  18. 如权利要求9所述的智能冲奶机,其特征在于,所述奶粉冲调装置包含冲调漏斗支架、冲调漏斗及漏斗盖,所述冲调漏斗支架上设有排蒸汽口,所述排蒸汽口将与所述混合仓与所述机体的外部连通以将所述混合仓内产生的蒸汽排出到机体的外部,所述供水口和出液口设于所述冲调漏斗上,所述进粉口设于所述漏斗盖上,所述漏斗盖还设有蒸汽出口,并通过所述蒸汽出口将蒸汽导引至排蒸汽口排出至机体的外部。
  19. 如权利要求9所述的智能冲奶机,其特征在于,所述热水供给装置包括串联于水路中的加热器、水泵和单向阀,所述水路中于所述加热器的进水侧和出水侧分别设有入水温度传感器和出水温度传感器,所述加热器表面设有温度保险丝,所述加热器、水泵、单向阀、入水温度传感器和出水温度传感器均与所述控制电路板电性连接,所述热水供给装置还包括电源板,所述发热管两端与所述电源板电性连接。
  20. 如权利要求9所述的智能冲奶机,其特征在于,所述机体包括底座、主体及头部,所述主体设于底座上,所述头部设于主体上,所述头部上设有面板,所述智能冲奶机还包括用于放置盛奶容器的托盘,所述面板上设有用于指示奶粉冲调装置是否装配到位的第一指示灯、用于指示旋转下粉装置是否装配到位的第二指示灯、用于指示水箱是否装配到位的第三指示灯、以及用于指示托盘上是否放置有容器的第四指示灯。
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