Pomegranate juice extracting equipment for food processing
Technical Field
The invention relates to a pomegranate juicing device, in particular to a pomegranate juicing device for food processing.
Background
Punica granatum is sweet, sour and astringent, warm, and has effects of killing parasites, astringing intestine, and relieving dysentery. The pomegranate fruit is rich in nutrition, the vitamin C content is one two times higher than that of apples and pears, and the history of cultivating the pomegranate in China can be traced to the Han dynasty, and Zhang is recorded in Liu and introduced from the Western region. In food processing, the pomegranate needs to be squeezed first, and the juice is generally squeezed from the pomegranate, and the pomegranate is directly placed in a juice extractor to be squeezed, however, the juice squeezed by the juice extractor has a lot of pomegranates, and meanwhile, the juice can not be completely squeezed from the pomegranate, so that the juice is filtered manually after the juice squeezing is finished, and the flow is more and complex.
Therefore, there is a need to design a juice extractor for food processing that can ensure that the whole pomegranate is extracted and that does not require subsequent filtration.
Disclosure of Invention
In order to overcome the defects that a lot of pomegranates are left in the conventional juice squeezing process, and meanwhile, the whole juice squeezing process of the pomegranates cannot be guaranteed, so that the juice is filtered manually after the juice squeezing process is finished, and the process is more and complex, the technical problem of the invention is that: provided is a food processing pomegranate juicing device which can ensure that all the pomegranates are juiced and does not require subsequent filtration.
The technical implementation scheme of the invention is as follows: a juice extractor for food processing comprising: the novel rolling machine comprises a first support frame, a motor, a first rotating shaft, a first belt, a second rotating shaft, a first bevel gear set, a first storage tank, a second gear, a rolling barrel, a third gear, a second storage tank and an arc storage frame, wherein the motor is arranged on the first support frame, the first rotating shaft is connected to the first support frame in a rotating mode, the first belt is sleeved between the first rotating shaft and an output shaft on one side of the motor through a belt pulley, the first support frame is provided with the first storage tank, the first storage tank is connected with the second rotating shaft in a rotating mode, the first bevel gear set is connected between the second rotating shaft and the first rotating shaft, the second gear is connected to the second rotating shaft in a key-type mode, the rolling barrels are connected to the two sides of the first storage tank in a rotating mode, the third gear is connected to the rolling barrel in a key-type mode, the third gear is meshed with the second gear, the first storage tank is connected to the second storage tank in a detachable mode, and the arc storage frame is arranged on the first support frame.
Further, still include pressing mechanism, pressing mechanism is including: the novel rotary extrusion device comprises a first support column, a fourth rotating shaft, a fifth rotating shaft, fourth gears, rotating wheels and baffles, wherein the first support column is symmetrically connected to two sides of the first support column, the fourth rotating shaft is rotatably connected to the first support column, extrusion rollers are connected between the fourth rotating shafts corresponding to the two sides, the fifth rotating shaft is connected to one side of the fourth rotating shaft, the fourth gears are connected to the fourth rotating shaft, adjacent fourth gears are meshed, the rotating wheels are connected to the fifth rotating shaft, the rotating wheels are matched with a first belt, and the baffles are rotatably connected between the fourth rotating shafts.
Further, still including screening mechanism, screening mechanism is including: second support column, guide bar, first sieve and first compression spring, first support frame both sides all are connected with the second support column, all are connected with the guide bar between the homonymy second support column, sliding type is connected with first sieve between the guide bar, first sieve passes through hose connection with first holding vessel, all be connected with first compression spring between the both sides of first sieve and guide bar.
Further, still include cutting mechanism, cutting mechanism is including: the novel movable blade comprises a first movable rod, a second support frame, blades, a movable plate and a second compression spring, wherein the second support frame is connected to the first support frame, the blades are arranged on the second support frame, the movable plate is arranged on the second support frame in a sliding mode, the first movable rod is connected to the movable plate, and the second compression spring is connected between the movable plate and the second support frame.
Further, still include drive mechanism, drive mechanism includes: the novel movable rod comprises a third supporting column, a seventh rotating shaft and a second belt, wherein two third supporting columns are connected to the first supporting frame, the seventh rotating shafts are connected to the third supporting columns in a rotating mode, one side of each seventh rotating shaft is connected with an output shaft of the other side of the motor, the second belt is connected between the seventh rotating shafts, a plug block is arranged on the second belt, and the plug block is matched with the first movable rod in a sliding mode.
Further, still include shake mechanism, shake mechanism including: fourth support column, eighth pivot, second movable rod, fifth bevel gear group, third movable rod, fifth support column, fourth movable rod, second sieve and third compression spring, be connected with the fourth support column on the first support frame, the last rotation of fourth support column is connected with eighth pivot, both sides of eighth pivot all are connected with the second movable rod, are connected with fifth bevel gear group between one side seventh pivot and the eighth pivot, be connected with the third movable rod on the first support frame in a sliding manner, the third movable rod cooperates with the second movable rod, be connected with two fifth support columns on the arc storage frame, be connected with the fourth movable rod in a sliding manner between the fifth support column, the last rotation of second storage tank is connected with the bull stick, be connected with the second sieve on the bull stick, second sieve cooperates with the fourth movable rod, be connected with the third compression spring between second sieve and the second storage tank.
Further, still include extraction mechanism, extraction mechanism includes: sixth support column, ninth pivot, sixth gear, seventh support column, water pipe, fifth movable rod and sixth compression spring, be connected with the sixth support column on the first support column, be connected with the ninth pivot on the sixth support column, be connected with the driving lever in the ninth pivot, all be connected with the sixth gear in the ninth pivot and the eighth pivot, mesh between the sixth gear, be connected with the seventh support column on the first support column, slidable detachable is connected with the water pipe of taking the check valve on the second holding vessel, slidable is equipped with the fifth movable rod on the water pipe, fifth movable rod is connected with seventh support column slidingtype, fifth movable rod cooperates with the driving lever, fifth movable rod cooperates with the ninth pivot, be connected with sixth compression spring between fifth movable rod and the water pipe.
Further, the second storage tank is made of food grade plastic.
The beneficial effects are that: 1. the invention is provided with the cutting mechanism and the transmission mechanism, so that the device can automatically slice the pomegranate, thereby facilitating the juice squeezing of the pomegranate and improving the juice squeezing effect of the pomegranate.
2. The invention is provided with the shaking mechanism, so that the juice of the pomegranates can be filtered, further, no residue exists in the juice of the pomegranates, and meanwhile, the second sieve plate can continuously rotate back and forth, further, the second sieve plate can be prevented from being blocked, and the filtering of the juice of the pomegranates is quickened.
3. The invention is provided with the extraction mechanism, so that the pomegranate juice can be continuously discharged into the first support frame of the semicircular arc cylinder body, thereby facilitating the collection of the pomegranate juice by people.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic view of a partial perspective structure of the present invention.
Fig. 3 is a schematic perspective view of a pressing mechanism according to the present invention.
Fig. 4 is a schematic perspective view of a screening mechanism according to the present invention.
Fig. 5 is a schematic perspective view of a cutting mechanism according to the present invention.
Fig. 6 is a schematic perspective view of a transmission mechanism of the present invention.
Fig. 7 is a schematic perspective view of a first part of the dithering mechanism of the present invention.
Fig. 8 is a schematic perspective view of a second part of the dithering mechanism of the present invention.
Fig. 9 is a schematic perspective view of a third portion of the dithering mechanism of the present invention.
Fig. 10 is a schematic perspective view of an extraction mechanism according to the present invention.
In the above figures: 1. a first supporting frame, 2, a motor, 3, a first rotating shaft, 4, a first belt, 5, a second rotating shaft, 6, a first bevel gear set, 7, a first storage tank, 8, a second gear, 9, a grinding cylinder, 10, a third gear, 101, a second storage tank, 102, an arc-shaped storage frame, 11, a pressing mechanism, 111, a first supporting column, 112, a fourth rotating shaft, 113, a fifth rotating shaft, 114, a fourth gear, 115, a rotating wheel, 116, a baffle plate, 12, a screening mechanism, 121, a second supporting column, 122, a guide rod, 123, a first screen plate, 124, a first compression spring, 13, a cutting mechanism, 131, a first movable rod, 132, a second supporting frame, 133, a blade, 134, movable plate, 135, second compression spring, 14, transmission mechanism, 141, third support column, 142, seventh rotation shaft, 143, second belt, 15, shaking mechanism, 151, fourth support column, 152, eighth rotation shaft, 153, second movable lever, 154, fifth bevel gear set, 155, third movable lever, 156, fifth support column, 157, fourth movable lever, 158, second screen plate, 159, third compression spring, 1510, rotation rod, 16, extraction mechanism, 161, sixth support column, 162, ninth rotation shaft, 163, sixth gear, 164, seventh support column, 165, water pipe, 166, fifth movable lever, 167, sixth compression spring.
Detailed Description
The objects, technical solutions and advantages of the present invention will become more apparent by the following detailed description of the present invention with reference to the accompanying drawings. It should be understood that the description is only illustrative and is not intended to limit the scope of the invention. In addition, in the following description, descriptions of well-known structures and techniques are omitted so as not to unnecessarily obscure the present invention.
Example 1
The utility model provides a food processing is with pomegranate juicing equipment, as shown in fig. 1-2, including first support frame 1, motor 2, first pivot 3, first belt 4, second pivot 5, first bevel gear group 6, first holding vessel 7, second gear 8, roll a section of thick bamboo 9, third gear 10, second holding vessel 101 and arc bin 102, the rear portion upside of first support frame 1 is equipped with motor 2, the right part front side rotation formula of first support frame 1 is connected with first pivot 3, there is first belt 4 through the belt pulley cover between first pivot 3 and the right side output shaft of motor 2, the first belt 4 outside evenly is provided with the ejector pad, the front portion of first support frame 1 is equipped with first holding vessel 7, the well upper portion rotation of first holding vessel 7 is connected with second pivot 5, be connected with first bevel gear group 6 between second pivot 5 and the first pivot 3, the downside key of second pivot 5 is connected with second gear 8, the front and back both sides of first holding vessel 7 all are rotated and are connected with roll a section of thick bamboo 9, the upside key of rolling a section of thick bamboo 9 is connected with first gear 10, the third gear 10 all is connected with first gear 10 and arc bin 102, the arc bin 102 is connected with first side 101, the front side is dismantled with first arc bin 101.
When the pomegranate juice is required to be squeezed, the pomegranate juice is cut into pieces and then placed in the first storage tank 7, then the motor 2 is started, the motor 2 drives the first belt 4 to operate so as to drive the first rotating shaft 3 to rotate, the second rotating shaft 5 is further rotated through the first bevel gear set 6, the second gear 8 is further rotated so as to drive the third gear 10 to rotate, the rolling barrel 9 is further rotated, the pomegranate juice is squeezed through the mutual matching of the rolling barrel 9, the juice falls into the second storage tank 101, after the pomegranate juice is squeezed, the motor 2 is closed, and then the second storage tank 101 is disassembled to collect the pomegranate juice, and the pomegranate juice can be stored in the arc-shaped storage frame 102.
Example 2
On the basis of embodiment 1, as shown in fig. 1, 3, 4, 5, 6, 7, 8, 9 and 10, the device further comprises a pressing mechanism 11, the pressing mechanism 11 comprises a first support column 111, a fourth rotating shaft 112, a fifth rotating shaft 113, a fourth gear 114, a rotating wheel 115 and a baffle 116, the front side and the rear side of the upper part of the first support frame 1 are symmetrically connected with the first support column 111, the first support column 111 is rotationally connected with the fourth rotating shaft 112, squeeze rollers are respectively connected between the corresponding fourth rotating shafts 112 on the left side and the right side, the right side of the fourth rotating shaft 112 on the rear right side is connected with the fifth rotating shaft 113, the fourth rotating shaft 112 is connected with the fourth gear 114 on the same side, the fourth rotating shaft 113 is meshed with the fourth gear 114, the rotating wheel 115 is matched with a pushing block on the first belt 4, the baffle 116 is rotationally connected between the middle parts of the fourth rotating shafts 112, and the squeeze rollers are located in the baffle 116.
When the pomegranate is required to be juiced, the pomegranate is placed in the baffle 116, the first belt 4 is operated, the push block drives the rotary wheel 115 to rotate, the fifth rotary shaft 113 is driven to rotate, the rear side fourth rotary shaft 112 is driven to rotate, the front side fourth rotary shaft 112 is driven to rotate through the fourth gear 114, the pomegranate is rolled through the mutual matching of the extrusion rollers on two sides, and the juice is collected and placed in the first storage tank 7 after being rolled.
Still including screening machanism 12, screening machanism 12 is including second support column 121, guide bar 122, first sieve 123 and first compression spring 124, and symmetrical connection has second support column 121 around the well upper portion left and right sides of first support frame 1 all, all is connected with guide bar 122 between the homonymy second support column 121, and sliding connection has first sieve 123 between the guide bar 122, passes through hose connection between the downside of first sieve 123 and the first holding vessel 7, all is connected with first compression spring 124 between the front and back both sides of first sieve 123 and guide bar 122.
After the pomegranate rolls, the pomegranate can drop into the first sieve plate 123, and then the pomegranate after rolling is screened, and then the juice effect of the pomegranate is better, and when the pomegranate is screened, the first sieve plate 123 can be stirred to move, and then the first sieve plate 123 is made to reciprocate due to the action of the first compression spring 124, and then the first sieve plate 123 can be prevented from being blocked by the pomegranate.
The cutting mechanism 13 comprises a first movable rod 131, a second support frame 132, a blade 133, a movable plate 134 and a second compression spring 135, wherein the middle part of the first support frame 1 is connected with the second support frame 132, the front side of the second support frame 132 is provided with the blade 133, the second support frame 132 is provided with the movable plate 134 in a sliding manner, the lower rear side of the movable plate 134 is connected with the first movable rod 131, and the second compression spring 135 is connected between the movable plate 134 and the second support frame 132.
When the juice is squeezed from the pomegranates, the whole pomegranates can be placed in the second supporting frame 132, then the first movable rod 131 is controlled to move forward, the movable plate 134 is driven to move forward, the second compression spring 135 is compressed, the movable plate 134 pushes the pomegranates through the blade 133, the pomegranates are sliced, meanwhile, the sliced pomegranates can fall into the baffle 116, the pomegranates are rolled, juice is squeezed from the pomegranates, then the first movable rod 131 is not controlled, the second compression spring 135 rebounds to drive the movable plate 134 and the first movable rod 131 to move backward for resetting, then the operation is repeated, and after the juice is squeezed from the pomegranates, the first movable rod 131 is not controlled.
The transmission mechanism 14 comprises a third supporting column 141, a seventh rotating shaft 142 and a second belt 143, wherein the upper side of the rear part of the first supporting frame 1 is connected with a front third supporting column 141 and a rear third supporting column 141, the third supporting columns 141 are respectively and rotatably connected with the seventh rotating shaft 142, the seventh rotating shaft 142 on the rear side is connected with the left output shaft of the motor 2, the seventh rotating shaft 142 is sheathed with the second belt 143 through a belt pulley, the left side of the second belt 143 is connected with a bolt block, and the bolt block is in sliding fit with the first movable rod 131.
When the motor 2 is started, the seventh rotating shaft 142 at the rear side is driven to rotate through the output shaft at the left side, so that the second belt 143 operates and is matched with the first movable rod 131, the first movable rod 131 is driven to move back and forth, the pomegranate is continuously pushed to be sliced, and the trouble of manually controlling the first movable rod 131 to slice the pomegranate is reduced.
The shaking device further comprises a shaking mechanism 15, the shaking mechanism 15 comprises a fourth supporting column 151, an eighth rotating shaft 152, a second movable rod 153, a fifth bevel gear set 154, a third movable rod 155, a fifth supporting column 156, a fourth movable rod 157, a second sieve plate 158 and a third compression spring 159, the fourth supporting column 151 is connected to the upper middle portion of the first supporting column 1, the eighth rotating shaft 152 is rotatably connected to the fourth supporting column 151, the second movable rod 153 is connected to the upper side and the lower side of the eighth rotating shaft 152, the fifth bevel gear set 154 is connected between the right side of the front seventh rotating shaft 142 and the upper side of the eighth rotating shaft 152, the third movable rod 155 is slidably connected to the upper middle portion of the first supporting column 1, the third movable rod 155 is matched with the second movable rod 153, the front fifth supporting column 156 and the rear fifth sieve plate 156 are slidably connected to the upper left upper side of the arc-shaped storage frame 102, the second rotating rod 1510 is rotatably connected to the middle portion of the second storage tank 101, the second sieve plate 158 is connected to the second sieve plate 158, the second sieve plate 157 is matched with the fourth movable rod 157, and the third sieve plate 158 is slidably connected to the front compression spring 159.
After the juice is squeezed from the pomegranate, the juice falls on the second sieve plate 158, and then the juice is filtered, so that no residue exists in the juice, meanwhile, when the rear seventh rotating shaft 142 rotates, the front seventh rotating shaft 142 is driven to rotate through the second belt 143, and then the eighth rotating shaft 152 is driven to rotate through the fifth bevel gear set 154, so that the second movable rod 153 rotates, and then the third movable rod 155 is stirred to move forward, so that the third movable rod 155 is matched with the fourth movable rod 157, the fourth movable rod 157 moves forward, the fourth movable rod 157 pushes the second sieve plate 158 to rotate, the third compression spring 159 deforms, when the second movable rod 153 is separated from the third movable rod 155, the third compression spring 159 returns to drive all parts to reset, and then the device repeats the process, so that the second movable rod 155 continuously rotates back and forth, and further the second sieve plate 158 can be prevented from being blocked, and meanwhile the juice is filtered.
The drawing mechanism 16 comprises a sixth support column 161, a ninth rotating shaft 162, a sixth gear 163, a seventh support column 164, a water pipe 165, a fifth movable rod 166 and a sixth compression spring 167, wherein the rear side of the first support column 1 is connected with the sixth support column 161, the sixth support column 161 is rotatably connected with the ninth rotating shaft 162, the lower side of the ninth rotating shaft 162 is connected with a deflector rod, the upper side of the ninth rotating shaft 162 and the lower side of the eighth rotating shaft 152 are both connected with the sixth gear 163, the sixth gear 163 are meshed, the first support column 1 is connected with the seventh support column 164, the rear side of the second storage tank 101 is slidably connected with the water pipe 165 with a one-way valve, the rear side of the water pipe 165 is slidably provided with the fifth movable rod 166, the fifth movable rod 166 is slidably connected with the seventh support column 164, the fifth movable rod 166 is matched with the deflector rod, and the sixth compression spring 167 is connected between the fifth movable rod 166 and the water pipe 165.
When the eighth rotating shaft 152 rotates, the sixth gear 163 drives the ninth rotating shaft 162 to rotate, so that the shift lever rotates, the fifth movable lever 166 is shifted to move to the rear side, the sixth compression spring 167 is stretched, so that the water pipe 165 extracts the juice in the second storage tank 101, when the shift lever rotates to be separated from the fifth movable lever 166, the sixth compression spring 167 retracts to drive the fifth movable lever 166 to move forward to reset, so that the juice in the water pipe 165 is discharged into the arc storage frame 102, and then the device repeats the operation, so that the juice can be continuously discharged into the arc storage frame 102, and the juice can be stored, so that the juice in the second storage tank 101 is prevented from overflowing due to overfilling.
The foregoing description is only illustrative of the present invention and is not intended to limit the scope of the invention, and all equivalent structures or equivalent processes or direct or indirect application in other related arts are included in the scope of the present invention.