CN216465005U - Juicing device based on intelligent fish - Google Patents

Juicing device based on intelligent fish Download PDF

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Publication number
CN216465005U
CN216465005U CN202122797101.4U CN202122797101U CN216465005U CN 216465005 U CN216465005 U CN 216465005U CN 202122797101 U CN202122797101 U CN 202122797101U CN 216465005 U CN216465005 U CN 216465005U
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gear
transmission
driving
squeezing
juicing device
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CN202122797101.4U
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Chinese (zh)
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李政辰
孙承峰
罗鹤飞
何乐
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Suzhou University
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Suzhou University
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Abstract

The utility model discloses a fruit juicing device based on a comet fish, which comprises a base, a slicing mechanism for slicing fruits, a squeezing mechanism for squeezing the sliced fruits, and a baffle arranged in front of the slicing mechanism and the squeezing mechanism, wherein the slicing mechanism is arranged above the squeezing mechanism, the slicing mechanism comprises a blanking table, a sliding part which is arranged on the blanking table in a relative motion manner along the front-back direction and is positioned behind the baffle, and a slicing knife which is fixedly arranged at the front part of the sliding part and extends along the front-back direction, the squeezing mechanism comprises a squeezing block which is arranged on the base in a sliding manner along the front-back direction, a squeezing operation area for squeezing the fruits is formed between the squeezing block and the baffle, and the blanking table is positioned right above the squeezing operation area. The juicing device is built by the comet fish model, double functions of slicing and juicing can be realized, the working efficiency is high, and students can clearly know the working principle of the juicing device when the juicing device is used in education and teaching.

Description

Juicing device based on intelligent fish
Technical Field
The utility model relates to a squeezing device based on a comet.
Background
The effect principle that the various structures can be known more easily to the student in education and teaching is demonstrated to the physical model, and the device of squeezing the juice does not have corresponding physical model as common articles for use in the life in education and teaching. At present, the internal structures of fruit juicing devices sold in the market are all positioned in a shell, and the specific action principle of the fruit juicing devices cannot be directly shown; meanwhile, the existing juicing device does not have the slicing function, needs to be manually sliced and then put into the juicing device, and is troublesome to use.
Disclosure of Invention
The utility model aims to provide a hui fish-based juicing device to solve one or more problems in the prior art.
In order to achieve the purpose, the utility model adopts the technical scheme that:
a fruit juicing device based on a comet fish comprises a base, a slicing mechanism for slicing fruits, a squeezing mechanism for squeezing the sliced fruits, and a baffle arranged in front of the slicing mechanism and the squeezing mechanism,
wherein, the slicing mechanism is located squeeze mechanism's top, the slicing mechanism is including setting up fixedly blanking platform on the base, can locate along fore-and-aft direction relative motion blanking bench and be located the slider of baffle rear, set up fixedly the slider is anterior and follow the slicing knife that the fore-and-aft direction extends, blanking platform has a plurality of blanking holes that set up along fore-and-aft direction interval, squeeze mechanism is including can set up along the fore-and-aft direction sliding squeeze piece on the base, squeeze the piece with form the squeeze operation district that is used for squeezing the operation to fruit between the baffle, blanking platform is located squeeze operation district directly over.
Preferably, the juice extracting device further comprises a first driving assembly for driving the sliding member to move in the front-back direction, the first driving assembly comprises a push rod, a transmission rod, a driving rod and a driving wheel which are sequentially distributed from back to front, wherein the transmission rod is arranged on the base in a relatively sliding manner in the vertical direction, one end of the push rod is rotatably connected to the sliding member around a first rotation center line, the other end of the push rod is rotatably connected to the transmission rod around the axis of the transmission rod, one end of the driving rod is rotatably connected to the transmission rod around the axis of the transmission rod, the other end of the driving rod is rotatably connected to the driving wheel around a second rotation center line, and the first rotation center line, the axis of the transmission rod, the second rotation center line and the axis of the driving wheel all extend in the left-right direction, and the four are parallel to each other.
Preferably, the first driving assembly further comprises a first motor for driving the driving wheel to rotate, and a first transmission assembly arranged between the output end of the first motor and the driving wheel, the first transmission assembly comprises a first chain wheel installed at the output end of the first motor, a second chain wheel connected with the first chain wheel in a chain transmission fit manner, a first transmission shaft with one end connected to the second chain wheel, and a second transmission shaft with one end connected with the other end of the first transmission shaft in a bevel gear transmission manner, and a gear set is further arranged between the second transmission shaft and the driving wheel.
Preferably, the gear set comprises a first gear, a second gear, a third gear and a fourth gear which are sequentially connected in a transmission manner, the first gear is mounted on the second transmission shaft, and the fourth gear is connected with the driving wheel through a third transmission shaft.
Preferably, the baffle is arranged on the base in a manner of relatively sliding along the vertical direction, and the fruit juicing device further comprises a second driving assembly for driving the baffle to move.
Further, the second drive assembly includes the second motor, set up in on the baffle and along the first rack of vertical direction extension, and locate second motor output with second transmission assembly between the first rack, second transmission assembly is including fifth gear, sixth gear, seventh gear, the eighth gear that transmission connects gradually, and through the fourth transmission shaft with the ninth gear that the eighth gear is connected, the fifth gear install in the output of second motor, the ninth gear with first rack drive connects.
Further, the squeezing mechanism further comprises a third driving assembly for driving the squeezing block to move back and forth, and the third driving assembly comprises a lead screw in transmission connection with the squeezing block and a third motor for driving the lead screw to rotate.
Preferably, a partition plate parallel to the baffle plate is further arranged between the baffle plate and the sliding part, a space capable of containing fruits is formed between the partition plate and the baffle plate, and a plurality of groups of grooves for the slicing knives to pass through are formed in the partition plate.
Preferably, the base has two sets of lateral walls that set up at an interval, every group the upper end of lateral wall is provided with the second rack that extends along the fore-and-aft direction, the left and right sides portion of slider has two sets of walking gears that arrange along the fore-and-aft direction respectively, all walking gear can connect with rotating around the rotation center line that extends along the left and right directions on the slider, be located the slider homonymy walking gear with transmission fit between the second rack.
Preferably, a collector for collecting juice is further provided below the pressing operation zone.
Due to the application of the technical scheme, compared with the prior art, the utility model has the following advantages: the juicing device provided by the utility model can slice fruits through the slicing mechanism, can squeeze the sliced fruits through the juicing mechanism, can automatically realize the whole process, has high efficiency, and can enable students to know the working principle of the juicing device, the motion characteristics of various mechanisms and the matching relation among various structures when being used for teaching.
Drawings
FIG. 1 is a schematic perspective view of a juicer according to the present invention;
FIG. 2 is an enlarged view of a portion of FIG. 1 at A;
FIG. 3 is an enlarged view of a portion of FIG. 1 at B;
FIG. 4 is a schematic view of a portion of the juicer of the present invention;
wherein:
1. a base; 11. a side wall; 12. a second rack;
2. a slicing mechanism; 21. a blanking table; 211. a cross bar; 22. a slider; 221. a traveling gear;
3. a squeezing mechanism; 31. pressing the blocks;
4. a first drive assembly; 41. a push rod; 42. a transmission rod; 43. a drive rod; 44. a drive wheel; 45. a first transmission assembly; 451. a first sprocket; 452. a second sprocket; 453. a first drive shaft; 454. a second drive shaft; 455. a gear assembly; 4551. a first gear; 4552. a second gear; 4553. a third gear; 4554. a fourth gear; 46. a first motor;
5. a second drive assembly; 51. a second motor; 52. a second transmission assembly; 521. a fifth gear; 522. a sixth gear; 523. a seventh gear; 524. an eighth gear; 525. a ninth gear;
6. a third drive assembly; 61. driving a lead screw; 62. a third motor;
7. and a baffle plate.
Detailed Description
The technical solution of the present invention is further explained with reference to the drawings and the specific embodiments.
Referring to the drawings, the fruit juicing device based on the comet fish comprises a base 1, a slicing mechanism 2 for slicing the fruit, a squeezing mechanism 3 for squeezing the sliced fruit, and a baffle 7 arranged in front of the slicing mechanism 2 and the squeezing mechanism 3. Wherein, slicing mechanism 2 is located the top of squeezing mechanism 3, slicing mechanism 2 includes blanking platform 21 that sets up on base 1 fixedly, can locate blanking platform 21 along fore-and-aft direction relative motion and be located the slider 22 of baffle 7 rear, set up at slider 22 front portion fixedly and along the slicing knife (not shown in the figure) of fore-and-aft direction extension, blanking platform 21 has a plurality of blanking holes that set up along left and right direction interval, squeezing mechanism 3 includes can set up the piece 31 of squeezing on base 1 along fore-and-aft direction with sliding, it is used for carrying out the squeezing operation district that squeezes the fruit to form between piece 31 and the baffle 7 to squeeze, blanking platform 21 is located and squeezes the operation district directly over, it still is provided with the collector (not shown in the figure) that is used for collecting the fruit juice to be located to squeeze the operation district below.
Referring to fig. 1 and 2, the juice extracting apparatus further includes a first driving assembly 4 for driving the sliding member 22 to move in the front-rear direction, the first driving assembly 4 including a push rod 41, a transmission rod 42, a driving rod 43, and a driving wheel 44, which are sequentially arranged from back to front, wherein the transmission rod 42 is slidably disposed on the base 1 in the vertical direction, one end of the push rod 41 is rotatably connected to the sliding member 22 around a first rotation center line, the other end of the push rod 41 is rotatably connected to the transmission rod 42 around an axis of the transmission rod 42, one end of the driving rod 43 is rotatably connected to the transmission rod 42 around an axis of the transmission rod 42, the other end of the driving rod 43 is rotatably connected to the driving wheel 44 around a second rotation center line, the first rotation center line, the axis of the transmission rod 42, the second rotation center line, and the axis of the driving wheel 44 all extend in the left-right direction, and the four are parallel to each other. When the driving wheel 44 rotates, the driving rod 43 is driven to move, and the driving rod 43 drives the transmission rod 42 to move up and down relative to the base 1, so that the push rod 41 drives the sliding member 22 to move in the front-back direction.
The first driving assembly 4 further includes a first motor 46 for driving the driving wheel 44 to rotate, and a first transmission assembly 45 disposed between an output end of the first motor 46 and the driving wheel 44, wherein the first transmission assembly 45 includes a first chain wheel 451 mounted at an output end of the first motor 46, a second chain wheel 452 cooperatively connected with the first chain wheel 451 through a chain drive, a first transmission shaft 453 having one end connected to the second chain wheel 452, and a second transmission shaft 454 having one end connected to the other end of the first transmission shaft 453 through a bevel gear transmission, and a gear assembly 455 is further disposed between the second transmission shaft 454 and the driving wheel 44. Wherein, the gear assembly 455 comprises a first gear 4551, a second gear 4552, a third gear 4553 and a fourth gear 4554 which are in transmission connection with each other in sequence, the first gear 4551 is mounted on the second transmission shaft 454, and the fourth gear 4554 and the driving wheel 44 are connected through the third transmission shaft (not shown in the figure). The chain transmission, the bevel gear transmission and the meshing transmission of a plurality of gears are adopted, so that students can know the characteristics of various transmissions and the connection relation among the various transmissions more intuitively in education and teaching.
Referring to figure 1, the baffle 7 is vertically slidably mounted on the base 1, and the fruit juicer further comprises a second drive assembly 5 for driving the baffle 7. Specifically, the second driving assembly 5 includes a second motor 51, a first rack (not shown in the figure) disposed on the baffle 7 and extending in the vertical direction, and a second transmission assembly 52 disposed between an output end of the second motor 51 and the first rack, the second transmission assembly 52 includes a fifth gear 521, a sixth gear 522, a seventh gear 523, an eighth gear 524, and a ninth gear 525 connected through a fourth transmission shaft (not shown in the figure) and the eighth gear 524, the fifth gear 521 is mounted at the output end of the second motor 51, and the ninth gear 525 is in transmission connection with the first rack. When the slicing mechanism 2 slices the fruits, the baffle 7 can resist the fruits and prevent the fruits from moving in the front-back direction; meanwhile, the baffle 7 can move in the vertical direction, if a user only needs to slice the fruit, when the fruit slices fall into the squeezing operation area, the user can lift the baffle 7 in the vertical direction and take out the slices; after the slices are squeezed again, the baffle 7 is lifted, and the squeezed fruit residues can be taken out.
In this embodiment, a partition (not shown in the figure) parallel to the baffle 7 is further disposed between the baffle 7 and the sliding member 22, the partition is fixedly disposed relative to the base 1, a space capable of accommodating fruits is formed between the partition and the baffle 7, and a plurality of groups of grooves through which the slicing knives can pass are disposed on the partition. When slider 22 moves forward, slider 22 moves towards the baffle, and the slicing knife passes the groove on the baffle to slice fruit, and after the action of slicing, slider 22 moves backward, and the baffle can prevent that the fruit section from gluing in slicing knife surface, guarantees that all fruit sections homoenergetic fall into and squeezes the operation area.
Referring to fig. 1, the press mechanism 3 further includes a third driving assembly 6 for driving the press block 31 to move back and forth, and the third driving assembly 6 includes a lead screw 61 in transmission connection with the press block 31, and a third motor 62 for driving the lead screw 61 to rotate.
The base 1 has two sets of side walls 11 arranged at intervals, the upper end of each set of side walls 11 is provided with a second rack 12 extending along the front-back direction, the left and right sides of the sliding part 22 are respectively provided with two sets of walking gears 221 arranged along the front-back direction, all the walking gears 221 can be rotatably connected to the sliding part 22 around the rotation center line extending along the left-right direction, and the walking gears 221 and the second racks 12 positioned on the same side of the sliding part 22 are in transmission fit. Thus, when the sliding member 22 moves in the front-rear direction, the sliding member 22 can be restricted from moving in the left-right direction by the engagement between the traveling gear 221 and the second rack 12, and the movement stability can be ensured.
Referring to fig. 4, in this embodiment, the blanking table 21 includes a plurality of sets of cross bars 211 arranged at intervals in the front-back direction, all the cross bars 211 are parallel to each other, each set of cross bars 211 extends in the left-right direction, and a gap formed between two adjacent sets of cross bars 211 is a blanking hole. When fruit is placed on the blanking table 21, the fruit is supported on the cross bars 211, and after the fruit is sliced, the fruit slices can fall into the juicing operation area from the gap between the two adjacent groups of cross bars 211.
In conclusion, the juicing device of the embodiment is built through the comet fish model, the slicing mechanism 2 can slice fruits, the squeezing mechanism 3 can squeeze the sliced fruits, and students can clearly know the working principle of the juicing device in education and teaching; meanwhile, the first driving component 4, the second driving component 5 and the third driving component 6 can enable students to clearly and intuitively connect the transmission modes of various transmission parts and the connection methods among the various transmission parts.
The above embodiments are merely illustrative of the technical ideas and features of the present invention, and the purpose thereof is to enable those skilled in the art to understand the contents of the present invention and implement the present invention, and not to limit the protection scope of the present invention. All equivalent changes and modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.

Claims (10)

1. The utility model provides a fruit juicing device based on intelligent fish which characterized in that: the juicing device comprises a base, a slicing mechanism for slicing the fruit, a squeezing mechanism for squeezing the sliced fruit, and a baffle arranged in front of the slicing mechanism and the squeezing mechanism,
wherein, the slicing mechanism is located squeeze mechanism's top, the slicing mechanism is including setting up fixedly blanking platform on the base, can locate along fore-and-aft direction relative motion blanking bench and be located the slider of baffle rear, set up fixedly the slider is anterior and follow the slicing knife that the fore-and-aft direction extends, blanking platform has a plurality of blanking holes that set up along fore-and-aft direction interval, squeeze mechanism is including can set up along the fore-and-aft direction sliding squeeze piece on the base, squeeze the piece with form the squeeze operation district that is used for squeezing the operation to fruit between the baffle, blanking platform is located squeeze operation district directly over.
2. The comet-based fruit juicing device of claim 1, wherein: the juicing device further comprises a first driving assembly for driving the sliding part to move in the front-back direction, the first driving assembly comprises a push rod, a transmission rod, a driving rod and a driving wheel which are sequentially distributed from back to front, the transmission rod can be arranged on the base in a relatively sliding mode in the vertical direction, one end of the push rod is connected to the sliding part in a rotating mode around a first rotating center line, the other end of the push rod is connected to the transmission rod in a rotating mode around the axis of the transmission rod, one end of the driving rod is connected to the transmission rod in a rotating mode around the axis of the transmission rod, the other end of the driving rod is connected to the driving wheel in a rotating mode around a second rotating center line, and the first rotating center line, the axis of the transmission rod, the second rotating center line and the axis of the driving wheel all extend in the left-right direction, and the four are parallel to each other.
3. The comet-based fruit juicing device of claim 2, wherein: the first driving assembly further comprises a first motor used for driving the driving wheel to rotate, and a first transmission assembly arranged between the output end of the first motor and the driving wheel, the first transmission assembly comprises a first chain wheel arranged at the output end of the first motor, a second chain wheel connected with the first chain wheel in a chain transmission matching mode, a first transmission shaft with one end connected to the second chain wheel, and a second transmission shaft with one end connected with the other end of the first transmission shaft in a bevel gear transmission mode, and a gear set is further arranged between the second transmission shaft and the driving wheel.
4. The comet-based fruit juicing device of claim 3, wherein: the gear train is including first gear, second gear, third gear and the fourth gear of transmission connection in proper order, first gear install in on the second transmission shaft, the fourth gear with the drive wheel passes through the third and connects at the transmission shaft.
5. The comet-based fruit juicing device of claim 1, wherein: the baffle plate can be arranged on the base in a relatively sliding mode along the vertical direction, and the fruit juicing device further comprises a second driving assembly for driving the baffle plate to move.
6. The comet-based fruit juicing device of claim 5, wherein: the second drive assembly comprises a second motor, a first rack and a second drive assembly, the first rack extends in the vertical direction on the baffle, the second drive assembly is arranged on the baffle, the second drive assembly comprises a fifth gear, a sixth gear, a seventh gear and an eighth gear which are sequentially connected in a transmission mode, and a ninth gear which is connected with the eighth gear through a fourth transmission shaft, the fifth gear is installed at the output end of the second motor, and the ninth gear is connected with the first rack in a transmission mode.
7. The comet-based fruit juicing device of claim 1, wherein: the squeezing mechanism further comprises a third driving assembly for driving the squeezing block to move back and forth, and the third driving assembly comprises a lead screw in transmission connection with the squeezing block and a third motor for driving the lead screw to rotate.
8. The comet-based fruit juicing device of claim 1, wherein: the fruit slicer is characterized in that a partition plate parallel to the baffle plate is further arranged between the baffle plate and the sliding part, a space capable of containing fruits is formed between the partition plate and the baffle plate, and a plurality of groups of grooves for the slicing knives to pass through are formed in the partition plate.
9. A comet-based fruit juicing device as claimed in claim 1, wherein: the base has the lateral wall that two groups interval set up, every group the upper end of lateral wall is provided with the second rack that extends along the fore-and-aft direction, the left and right sides portion of slider has two sets of walking gears that arrange along the fore-and-aft direction respectively, all walking gear can connect with rotating around the center line of rotation that extends along the left and right directions on the slider, be located the slider homonymy walking gear with transmission coordination between the second rack.
10. The comet-based fruit juicing device of claim 1, wherein: a collector for collecting the juice is also arranged below the pressing operation area.
CN202122797101.4U 2021-11-16 2021-11-16 Juicing device based on intelligent fish Active CN216465005U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122797101.4U CN216465005U (en) 2021-11-16 2021-11-16 Juicing device based on intelligent fish

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122797101.4U CN216465005U (en) 2021-11-16 2021-11-16 Juicing device based on intelligent fish

Publications (1)

Publication Number Publication Date
CN216465005U true CN216465005U (en) 2022-05-10

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ID=81396589

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122797101.4U Active CN216465005U (en) 2021-11-16 2021-11-16 Juicing device based on intelligent fish

Country Status (1)

Country Link
CN (1) CN216465005U (en)

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