Disclosure of Invention
(1) Technical problem to be solved
The invention aims to overcome the defect that the fruit pit possibly causes abrasion and bending of a rotary blade and has poor taste to fruit juice when the juice is squeezed only after manual pit removal, and the technical problem to be solved by the invention is to provide the fruit pit removal juicing equipment for food processing, which is capable of automatically removing the pit and preventing the abrasion and bending of the blade.
(2) Technical proposal
In order to solve the technical problems, the invention provides fruit stoning juicing equipment for food processing, which comprises: a bottom plate connected with the bottom plate; the servo motor is connected to the first supporting frame; the first support column is connected to the bottom plate and is positioned at the left side of the first support frame; a slider slidably coupled to the first support column; the connecting plate is connected to the sliding block; a first blade connected to the connection plate; the pressing mechanism is connected between the bottom plate and the first support column; and the rotating mechanism is connected to the bottom plate.
Preferably, the pressing mechanism includes: the first rotating shaft is connected to the first support column; the first transmission assembly is connected between the first rotating shaft and the output shaft of the servo motor, and comprises two belt pulleys and a belt, and the two belt pulleys are respectively connected with the first rotating shaft 80 and the output shaft of the servo motor; the first clamping block is connected to the first rotating shaft; the turntable is connected to the first clamping block; a first crank connected to the turntable; and a fixing rod connected to the first crank.
Preferably, the rotation mechanism includes: the second supporting frame is connected to the bottom plate; the first charging barrel is connected to the second supporting frame; the second conveying assembly is connected between the first rotating shaft and the second rotating shaft; the second rotating shaft is rotationally connected to the second supporting frame; the third rotating shaft is rotationally connected to the first charging barrel; bevel gears connected to the second and third rotating shafts; all gears connected to the third rotating shaft and the fourth rotating shaft; a second blade having an outer circumference connected to the third and fifth rotating shafts; the fourth rotating shaft is rotationally connected to the first charging barrel and is positioned at the left side of the third rotating shaft; the third conveying assembly is connected between the fourth rotating shaft and the fifth rotating shaft; and the fifth rotating shaft is rotationally connected to the first charging barrel.
Preferably, still include unloading mechanism, unloading mechanism includes: the third supporting frame is connected to the bottom plate; the first sliding plate is connected to the third supporting frame; the first baffle is connected to the first sliding plate; the second baffle is connected to the first sliding plate; the clamping column is connected to the turntable; a sixth rotating shaft rotatably connected to the second supporting frame; an intermittent wheel connected to the sixth rotating shaft; and the roller is connected to the sixth rotating shaft.
Preferably, the opening mechanism is further included, the opening mechanism includes: a rotating rod connected to the sixth rotating shaft; a second crank slidably coupled to the rotating rod; a seventh rotating shaft connected to the second crank; the third baffle is connected to the seventh rotating shaft; a fourth baffle slidably coupled to the first charging basket; the second clamping block is connected to the fourth baffle; and the spring is connected with the lower side of the fourth baffle plate and the first charging barrel.
Preferably, the filter mechanism is further included, and the filter mechanism includes: the transmission pipe is connected to the first charging barrel; a ball valve connected to the transfer pipe; the second support column is connected to the bottom plate; the filter screen is connected between the second support columns; and the second charging barrel is arranged on the bottom plate and is positioned below the filter screen.
Preferably, still include receiving mechanism, receiving mechanism includes: the fourth supporting frame is connected between the first baffle and the second baffle; the second sliding plate is connected to the fourth supporting frame; a fifth supporting frame connected to the bottom plate; a third charging basket placed on the fifth supporting frame; and a handle connected to the third charging barrel.
Preferably, a sliding rail is arranged at the left part of the upper side of the first supporting column.
(3) Advantageous effects
1. Therefore, manual stoning is not needed through the pressing mechanism and the rotating mechanism, and people can conveniently and better squeeze juice.
2. Thereby need not the manual work through unloading mechanism and carry out the unloading repeatedly, improve work efficiency, make things convenient for people to work.
3. Thereby need not the manual work to open the baffle through opening mechanism and put into fruit and squeeze juice again, make things convenient for people's work.
4. Through receiving mechanism and filtering mechanism can not influence taste and the fruit pit not collected the circumstances that leads to mess because of the fruit juice has the residue, improves environmental awareness and makes things convenient for people to work.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of a portion of a pressing mechanism according to the present invention.
Fig. 3 is a schematic perspective view of a first part of a rotary mechanism according to the present invention.
Fig. 4 is a schematic perspective view of a second part of the rotating mechanism of the present invention.
Fig. 5 is a schematic view of a part of a perspective structure of a blanking mechanism of the present invention.
Fig. 6 is a schematic perspective view of a first part of the opening mechanism of the present invention.
Fig. 7 is a schematic perspective view of a second part of the opening mechanism of the present invention.
Fig. 8 is a schematic perspective view of a part of a filter mechanism according to the present invention.
Fig. 9 is a schematic view of a part of a three-dimensional structure of a receiving mechanism according to the present invention.
The marks in the drawings are: 1-bottom plate, 2-first support frame, 3-servo motor, 4-first support column, 5-slide block, 6-connecting plate, 7-first blade, 8-pushing mechanism, 80-first rotating shaft, 81-first transmission component, 82-first clamping block, 83-rotating disc, 84-first crank, 85-fixed rod, 9-rotating mechanism, 90-second support frame, 91-first charging barrel, 92-second transmission component, 93-second rotating shaft, 94-third rotating shaft, 95-bevel gear, 96-full gear, 97-second blade, 98-fourth rotating shaft, 99-third transmission component, 910-fifth rotating shaft, 10-discharging mechanism, 101-third support frame, 102-first slide plate, 103-first baffle plate, 104-second baffle plate, 105-clamping column, 106-sixth rotating shaft, 107-intermittent wheel, 108-roller, 11-opening mechanism, 111-rotating rod, 112-second crank, 113-seventh rotating shaft, 114-third baffle plate, 115-fourth baffle plate, 116-second clamping block, 117-spring, 12-filter mechanism, 121-transmission pipe, 122-ball valve, 123-second support column, 124-filter screen, 125-second charging barrel, 13-receiving mechanism, 131-fourth support frame, 132-second slide plate, 133-fifth support frame, 134-third charging barrel, 135-handle.
Detailed Description
The invention is further described below with reference to the drawings and examples.
Example 1
1-4, including bottom plate 1, first support frame 2, servo motor 3, first support column 4, slider 5, connecting plate 6, first blade 7, push down mechanism 8 and rotary mechanism 9, bottom plate 1 top right side is connected with first support frame 2, servo motor 3 is installed at first support frame 2 top, bottom plate 1 top right side is connected with first support column 4, first support column 4 is located first support frame 2 left side, first support column 4 left side middle part sliding connection has slider 5, slider 5 left side is connected with connecting plate 6, connecting plate 6 lower part is connected with four first blades 7, be connected with push down mechanism 8 between bottom plate 1 top right side and the first support column 4, bottom plate 1 top front side is connected with rotary mechanism 9.
The pushing mechanism 8 comprises a first rotating shaft 80, a first transmission assembly 81, a first clamping block 82, a rotary table 83, a first crank 84 and a fixed rod 85, wherein the middle part of the upper side of the first supporting column 4 is rotationally connected with the first rotating shaft 80, the first transmission assembly 81 is connected between the first rotating shaft 80 and the output shaft of the servo motor 3, the first transmission assembly 81 comprises two belt pulleys and a belt, the two belt pulleys are respectively connected with the first rotating shaft 80 and the output shaft of the servo motor 3, the middle part of the left side of the first rotating shaft 80 is connected with the first clamping block 82, the middle part of the left side of the first clamping block 82 is connected with the rotary table 83, the lower part of the left side of the rotary table 83 is rotationally connected with the first crank 84, the middle part of the upper part of the first crank 84 is connected with the fixed rod 85, and the fixed rod 85 is rotationally connected with the connecting plate 6.
The rotary mechanism 9 comprises a second supporting frame 90, a first charging basket 91, a second conveying assembly 92, a second rotating shaft 93, a third rotating shaft 94, a bevel gear 95, an all-gear 96, a second blade 97, a fourth rotating shaft 98, a third conveying assembly 99 and a fifth rotating shaft 910, wherein the front side of the top of the bottom plate 1 is connected with the second supporting frame 90, the first charging basket 91 is connected with the inner side of the top of the second supporting frame 90, the second rotating shaft 93 is rotatably connected with the upper side of the right side of the second supporting frame 90, the second conveying assembly 92 is connected between the first rotating shaft 80 and the second rotating shaft 93, the second conveying assembly comprises two belt pulleys and a belt, the two belt pulleys are respectively connected with the first rotating shaft 80 and the second rotating shaft 93, the right side of the first charging basket 91 is rotatably connected with the third rotating shaft 94, the middle part of the left side of the second rotating shaft 93 is connected with the upper side of the third rotating shaft 94, the two bevel gear 95 is meshed with each other, the right side of the first charging basket 91 is rotatably connected with the fourth rotating shaft 98, the fourth rotating shaft 98 is positioned on the left side of the third rotating shaft 94, the middle part of the third rotating shaft 94 is rotatably connected with the fourth rotating shaft 98, the fourth rotating shaft 98 is positioned on the left side of the right side of the fourth rotating shaft 94, the middle part of the third rotating shaft 94 is meshed with the fourth rotating shaft 98, the fourth rotating shaft 98 is respectively connected with the fourth rotating shaft 910, the fourth rotating shaft 98 is meshed with the fourth rotating shaft 98 and the inner side of the fourth rotating shaft 910, the fourth rotating shaft 98 is respectively connected with the fourth rotating shaft and the fourth rotating shaft 910, the right rotating shaft and the fourth rotating shaft and the upper rotating shaft and the third rotating shaft and the top rotating mechanism 9 is connected with the right rotating shaft and the top and the rotating mechanism.
When the fruit is required to be stoned and juiced, the device can be used, firstly, the fruit which is required to be stoned is placed under the first blade 7, then the servo motor 3 is started manually, the output shaft of the servo motor 3 drives the first transmission component 81, the first transmission component 81 drives the first rotating shaft 80 to rotate, the first rotating shaft 80 drives the first clamping block 82 and the rotary table 83 to rotate, the rotary table 83 drives the first crank 84 to rotate so as to drive the connecting plate 6 and the first blade 7 to do up-down circular motion, the fruit is stoned when the first blade 7 is pressed down, the first charging barrel 91 is opened manually when the fruit is required to be juiced, then the stoned fruit is placed in the first charging barrel 91, the first rotating shaft 80 drives the second transmission component 92 to rotate, the second transmission component 92 drives the second rotating shaft 93 to rotate, the second rotating shaft 93 drives the bevel gear 95 to rotate, the bevel gear 95 drives the third rotating shaft 94 to rotate, the third rotating shaft 94 drives the full gear 96 to rotate, the fourth rotating shaft 98 drives the third rotating shaft 910 to rotate, and the third transmission component 99 drives the fifth rotating shaft 910 to rotate, and then the fruit is cut off when the fruit is not juiced, and the fruit is not juiced by the second device.
Example 2
On the basis of embodiment 1, as shown in fig. 5-7, the blanking mechanism 10 is further included, the blanking mechanism 10 comprises a third supporting frame 101, a first sliding plate 102, a first baffle 103, a second baffle 104, a clamping column 105, a sixth rotating shaft 106, intermittent wheels 107 and a roller 108, the left side and the right side of the rear portion of the bottom plate 1 are connected with the third supporting frame 101, a first sliding plate 102 is connected between the tops of the third supporting frames 101 on the two sides, four second baffles 104 are connected above the rear side of the first sliding plate 102, the upper portions of the front sides of the first sliding plate 102 are symmetrically connected with the first baffle 103, the middle portion of the upper side of the turntable 83 is connected with a clamping column 105, the middle portion of the upper side of the first supporting column 4 is rotatably connected with the sixth rotating shaft 106, the middle portion of the right side of the sixth rotating shaft 106 is connected with the intermittent wheels 107, the left end of the sixth rotating shaft 106 is connected with the roller 108, and the roller 108 is placed in the middle of the first sliding plate 102.
When the fruits are required to be fed, the fruits which need to be stoned are manually placed above the first sliding plate 102, the first baffle plate 103 blocks the grooves on the corresponding roller 108, the fruits can fall into the grooves on the roller 108, the first clamping block 82 and the clamping column 105 drive the intermittent wheel 107 to rotate, the intermittent wheel 107 drives the sixth rotating shaft 106 to rotate, the roller 108 is driven to do intermittent motion, the fruits are driven to rotate upwards, the fruits are stoned, and the stoned fruits slide from the lower side of the first sliding plate 102 and are received by a container.
The opening mechanism 11 comprises a rotating rod 111, a second crank 112, a seventh rotating shaft 113, a third baffle 114, a fourth baffle 115, a second clamping block 116 and a spring 117, wherein the middle part of the right side of the sixth rotating shaft 106 is connected with the rotating rod 111, the lower part of the right side of the rotating rod 111 is connected with the second crank 112 in a sliding manner, the left part of the front side of the second crank 112 is connected with the seventh rotating shaft 113, the middle part of the left side of the seventh rotating shaft 113 is connected with the third baffle 114, the third baffle 114 is arranged between the second baffles 104 on two sides, the upper part of the middle part of the rear side of the first charging barrel 91 is connected with the fourth baffle 115 in a sliding manner, the middle part of the upper part of the rear side of the fourth baffle 115 is connected with the second clamping block 116, and the lower parts of the rear side of the fourth baffle 115 and the inner parts of the first charging barrel 91 are all connected with a plurality of springs 117.
When the fruit subjected to kernel removal is required to be directly collected and juiced, the fruit subjected to kernel removal slides down from the first sliding plate 102, the third baffle 114 can block the fruit subjected to kernel removal, the sixth rotating shaft 106 drives the rotating rod 111 to rotate so as to drive the second crank 112 to move upwards, then the second crank 112 drives the seventh rotating shaft 113 and the third baffle 114 to rotate, the third baffle 114 and the second clamping block 116 are contacted to drive the fourth baffle 115 downwards, the spring 117 is compressed, the opening of the first charging barrel 91 is opened, the fruit subjected to kernel removal falls into the first charging barrel 91 from the first sliding plate 102 through the third baffle 114 to be juiced, and when the rotating rod 111 rotates to an initial position again, the second crank 112 is driven to rotate so as to drive the seventh rotating shaft 113 and the third baffle 114 to rotate and reset, and the spring 117 resets the fourth baffle 115 under the action of the third baffle 114.
Example 3
On the basis of embodiment 2, as shown in fig. 8 and 9, the filter mechanism 12 is further comprised of a filter mechanism 12, the filter mechanism 12 comprises a transmission pipe 121, a ball valve 122, a second support column 123, a filter screen 124, and a second charging barrel 125, the middle of the lower side of the first charging barrel 91 is connected with the transmission pipe 121, the middle of the rear side of the transmission pipe 121 is provided with the ball valve 122, the left and right sides of the top of the front side of the bottom plate 1 are both connected with the second support column 123, the filter screen 124 is connected between the second support columns 123 on both sides, the middle of the front side of the bottom plate 1 is provided with the second charging barrel 125, and the second charging barrel 125 is located below the filter screen 124.
When the fruit juice is required to be filtered, the fruit juice in the first charging basket 91 flows into the transmission pipe 121, the ball valve 122 is manually rotated, the fruit juice flows into the filter screen 124 from the transmission pipe 121 to be filtered, the filtered fruit juice flows into the second charging basket 125, and when the fruit juice flows into a certain degree, the ball valve 122 is closed, and residues on the filter screen 124 are manually cleaned.
The automatic feeding device is characterized by further comprising a feeding mechanism 13, wherein the feeding mechanism 13 comprises a fourth supporting frame 131, a second sliding plate 132, a fifth supporting frame 133, a third charging barrel 134 and a handle 135, the fourth supporting frame 131 is connected between the first baffle 103 on the left side and the second baffle 104 on the left side, the second sliding plate 132 is connected to the upper side of the fourth supporting frame 131, the fifth supporting frame 133 is connected to the left side of the top of the bottom plate 1, the third charging barrel 134 is placed on the upper side of the fifth supporting frame 133, and the handle 135 is connected to the upper left side of the third charging barrel 134.
When the fruit kernels are required to be collected, the kernels are removed and fall into the third charging barrel 134 from the inside of the roller 108 through the second sliding plate 132, and when the kernels are collected to a certain extent, the third charging barrel 134 is taken down by manually pulling the handle 135, and after the fruit kernels are processed, the third charging barrel 134 is placed in place by manually pulling the handle 135 again.
The foregoing examples have shown only the preferred embodiments of the invention, which are described in more detail and are not to be construed as limiting the scope of the invention. It should be noted that modifications, improvements and substitutions can be made by those skilled in the art without departing from the scope of the invention. Accordingly, the scope of protection of the present invention is to be determined by the appended claims.