CN111528488B - Intelligent production fruit pre-juicing equipment - Google Patents

Intelligent production fruit pre-juicing equipment Download PDF

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Publication number
CN111528488B
CN111528488B CN202010502879.5A CN202010502879A CN111528488B CN 111528488 B CN111528488 B CN 111528488B CN 202010502879 A CN202010502879 A CN 202010502879A CN 111528488 B CN111528488 B CN 111528488B
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sliding
seat
rod
machine body
seats
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CN111528488A (en
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李想
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Jiangxi Yilanmei Food Co ltd
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Jiangxi Yilanmei Food Co ltd
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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23NMACHINES OR APPARATUS FOR TREATING HARVESTED FRUIT, VEGETABLES OR FLOWER BULBS IN BULK, NOT OTHERWISE PROVIDED FOR; PEELING VEGETABLES OR FRUIT IN BULK; APPARATUS FOR PREPARING ANIMAL FEEDING- STUFFS
    • A23N1/00Machines or apparatus for extracting juice
    • A23N1/02Machines or apparatus for extracting juice combined with disintegrating or cutting

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  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Polymers & Plastics (AREA)
  • Apparatuses For Bulk Treatment Of Fruits And Vegetables And Apparatuses For Preparing Feeds (AREA)

Abstract

The invention relates to pre-squeezing equipment, in particular to intelligent production fruit pre-squeezing equipment which comprises a linkage squeezing mechanism, a squeezing machine body mechanism and a filtering mechanism.

Description

Intelligence production water fruit equipment of squeezing juice in advance
Technical Field
The invention relates to a pre-juicing device, in particular to an intelligent fruit pre-juicing device for production.
Background
In factory's fruit juice production, traditional production facility is all to fruit stirring processing, can make the peel become in the disintegrating slag form sneaks into fruit juice like this, is unfavorable for retrieving the peel, so designed this kind of intelligence production fruit equipment of squeezing juice in advance.
Disclosure of Invention
The invention mainly solves the technical problem of providing intelligent production water fruit pre-squeezing equipment, which can push and feed fruits and simultaneously carry out primary squeezing, can carry out secondary squeezing on the fruits, can carry out filtering, and can be conveniently cleaned.
In order to solve the technical problems, the invention relates to pre-squeezing equipment, in particular to intelligent fruit pre-squeezing equipment for production, which comprises a linkage squeezing mechanism, a squeezing machine body mechanism and a filtering mechanism, wherein the equipment can push feeding materials and simultaneously carry out primary squeezing, can carry out secondary squeezing on fruits, can filter the fruits and can be conveniently cleaned.
The linkage extrusion mechanism is connected with the extrusion machine body mechanism, and the extrusion machine body mechanism is connected with the filtering mechanism.
As a further optimization of the technical scheme, the linkage extrusion mechanism of the intelligent fruit pre-juicing equipment for production comprises a supporting leg, a push plug with a rod, a supporting seat, a special-shaped movable seat, a stepped slider, a slope seat, a threaded hole, a stepped groove, a unthreaded hole, a door-shaped support, a fixed seat, a bearing seat I, a connecting seat, a slider, a spring, a pulley, a servo motor, a coupler and a lead screw.
As a further optimization of the technical scheme, the squeezing machine body mechanism of the intelligent fruit pre-squeezing device for production comprises a base, a supporting leg I, a machine body shell, a sliding hole I, a feeding hopper, a conveying motor, a coupling I, a head roller, a belt, a linkage arm, a driven roller, a tail roller, a conveying frame support, a support A, a pushing rod I, a pushing rod matching hole, a bearing seat A, a matching driving motor, a coupling B, a driving shaft, a driving disc, a hinged arm, a hinged connecting seat, a sliding door rod, a return spring, a sliding door, a hole seat, a sliding door matching groove, a discharging port, a secondary squeezing block, a pressurizing block movable cavity and a belt rod pushing plug movable cavity, wherein the base is connected with the supporting leg I, the supporting leg I is connected with the machine body shell, the sliding hole I is arranged on the machine body shell, and the sliding hole I is in sliding connection with the belt rod pushing plug, the machine body shell is connected with the feed hopper, the conveying motor is connected with the conveying frame, the conveying motor is connected with the head roller through a coupling I, the head roller is connected with the conveying frame through a bearing, the head roller is connected with the belt in a friction manner, the belt is connected with the driven roller in a friction manner, the driven roller is connected with the conveying frame through a bearing, the tail roller is connected with the belt in a friction manner, the tail roller is connected with the conveying frame through a bearing, the conveying frame is connected with the conveying frame support, the conveying frame support is connected with the base, the support A is connected with the machine body shell, the linkage arm is connected with the connecting seat, the linkage arm is connected with the push rod I, the push rod I is in sliding connection with the push rod matching hole, the push rod matching hole is formed in the machine body shell, the bearing seat A is connected with the base, the matching driving motor is connected with the bearing seat A, the matching driving motor is connected with the driving shaft through a coupling B, the connection mode of drive shaft and bearing frame A is bearing connection, the drive shaft links to each other with the driving-disc, the driving-disc is articulated mutually with the articulated arm, the articulated arm is articulated mutually with articulated connecting seat, articulated connecting seat links to each other with the sliding door pole, sliding door pole and foraminiferous seat sliding connection, foraminiferous seat links to each other with the fuselage shell, reset spring overlaps on the sliding door pole, reset spring supports on foraminiferous seat, on the sliding door, sliding door and sliding door cooperation groove sliding connection, sliding door cooperation groove sets up on the fuselage shell, the discharge gate sets up on the fuselage shell, secondary extrusion piece and pressurization piece movable chamber sliding connection, secondary extrusion piece links to each other with catch bar I, pressurization piece movable chamber sets up in the fuselage shell, area pole push plug and area pole push plug movable chamber sliding connection.
As a further optimization of the technical scheme, the filtering mechanism of the intelligent fruit pre-juicing device for production comprises a hydraulic cylinder, a movable valve, a switching box, an outlet pipe, a clean liquid outlet pipe, a clean water inlet pipe, a connecting pipe, a liquid outlet box, a standby filtering hole, a filtering hole and a sliding cavity, wherein the hydraulic cylinder is connected with a base, the hydraulic cylinder is connected with the movable valve, the movable valve is connected with the sliding cavity in a sliding manner, the sliding cavity is arranged in the switching box, the switching box is connected with the base, the switching box is connected with the outlet pipe, the switching box is connected with the clean liquid outlet pipe, the clean water inlet pipe is connected with the switching box, the connecting pipe is used for communicating the switching box with the liquid outlet box, and the standby filtering hole and the filtering hole are both arranged on the movable valve.
As further optimization of the technical scheme, a sealing material is arranged between the movable valve and the switching box of the intelligent fruit pre-juicing equipment for production.
The intelligent fruit pre-juicing equipment for production has the beneficial effects that:
according to the intelligent fruit pre-squeezing device for production, disclosed by the invention, the device can push the feeding material and simultaneously carry out primary squeezing, the device can carry out secondary squeezing on fruits, the device can carry out filtering, and the device can be convenient to clean.
Drawings
The invention is described in further detail below with reference to the accompanying drawings and specific embodiments.
FIG. 1 is a first structural schematic diagram of intelligent fruit pre-squeezing equipment for production.
Fig. 2 is a schematic structural diagram II of the intelligent fruit pre-squeezing device for production.
Fig. 3 is a schematic structural diagram III of intelligent fruit pre-squeezing equipment for production.
Fig. 4 is a fourth schematic structural diagram of the intelligent fruit pre-squeezing device for production.
Fig. 5 is a schematic structural diagram of a linkage extrusion mechanism 1 of the intelligent fruit pre-juicing device for production.
Fig. 6 is a schematic structural diagram of a linkage extrusion mechanism 1 of the intelligent fruit pre-juicing device for production.
Fig. 7 is a third structural schematic diagram of the linkage squeezing mechanism 1 of the intelligent fruit pre-juicing device for production.
Fig. 8 is a fourth structural schematic diagram of the linkage squeezing mechanism 1 of the intelligent fruit pre-juicing device for production.
Fig. 9 is a fifth structural schematic diagram of the linkage extrusion mechanism 1 of the intelligent fruit pre-juicing device for production.
Fig. 10 is a schematic structural diagram six of the linkage extrusion mechanism 1 of the intelligent fruit pre-juicing device for production.
Fig. 11 is a first structural schematic diagram of the extruding machine body mechanism 2 of the intelligent fruit pre-squeezing device for production.
Fig. 12 is a second structural schematic diagram of the extruding machine body mechanism 2 of the intelligent fruit pre-juicing device for production.
Fig. 13 is a third schematic structural diagram of the extruding machine body mechanism 2 of the intelligent fruit pre-juicing device for production.
Fig. 14 is a fourth schematic structural diagram of the extruding machine body mechanism 2 of the intelligent fruit pre-squeezing device for production.
Fig. 15 is a fifth schematic structural diagram of the extruding machine body mechanism 2 of the intelligent fruit pre-juicing device for production.
Fig. 16 is a schematic structural diagram six of the extruding machine body mechanism 2 of the intelligent fruit pre-squeezing device for production.
Fig. 17 is a first structural schematic diagram of a filtering mechanism 3 of the intelligent fruit pre-squeezing device for production in accordance with the present invention.
Fig. 18 is a schematic structural diagram of a second filtering mechanism 3 of the intelligent fruit pre-squeezing device for production.
Fig. 19 is a third schematic structural diagram of the filtering mechanism 3 of the intelligent fruit pre-squeezing device for production in accordance with the present invention.
Fig. 20 is a fourth schematic structural diagram of the filtering mechanism 3 of the intelligent fruit pre-squeezing device for production in accordance with the present invention.
In the figure: a linkage extrusion mechanism 1; 1-1 of a support leg; a push plug with a rod 1-2; 1-3 of a supporting seat; 1-4 of a special-shaped movable seat; 1-5 of a stepped sliding block; 1-6 of a slope seat; 1-7 of a threaded hole; 1-8 of a stepped groove; 1-9 of a light hole; 1-10 of a door-shaped support; a fixed seat 1-11; 1-12 of a bearing seat; bearing seats I1-13; connecting seats 1 to 14; 1-15 slide bars; springs 1-16; 1-17 pulley seats; pulleys 1-18; servo motors 1-19; 1-20 parts of a coupler; 1-21 parts of a lead screw; a body extruding mechanism 2; a base 2-1; a support leg I2-2; a fuselage shell 2-3; a sliding hole I2-4; 2-5 parts of a feed hopper; 2-6 of a conveying motor; 2-7 of a coupler I; 2-8 parts of a head roller; 2-9 parts of a belt; 2-10 parts of linkage arm; 2-11 parts of a driven roller; 2-12 parts of tail roller; 2-13 of a conveying frame; a carriage support 2-14; supports A2-15; push rods I2-16; the push rod is matched with the hole 2-17; bearing seats A2-18; matching with a driving motor 2-19; 2-20 parts of a coupler B; a drive shaft 2-21; drive discs 2-22; articulated arms 2-23; hinged connecting seats 2-24; 2-25 of a sliding door rod; 2-26 of a return spring; sliding doors 2-27; 2-28 parts of a perforated base; sliding door matching grooves 2-29; 2-30 parts of a discharge port; 2-31 parts of secondary extrusion blocks; 2-32 parts of a movable cavity of the pressurizing block; a movable cavity 2-33 of the push plug with a rod; a filter mechanism 3; a hydraulic cylinder 3-1; 3-2 of a movable valve; a switching box 3-3; a pipe 3-4 is taken out; 3-5, cleaning the liquid outlet pipe; cleaning the water inlet pipe 3-6; connecting pipes 3-7; 3-8 of a liquid outlet box; 3-9 of spare filtering holes; 3-10 parts of filter holes; sliding chambers 3-11.
Detailed Description
The first specific implementation way is as follows:
the embodiment is described below with reference to fig. 1, fig. 2, fig. 3, fig. 4, fig. 5, fig. 6, fig. 7, fig. 8, fig. 9, fig. 10, fig. 11, fig. 12, fig. 13, fig. 14, fig. 15, fig. 16, fig. 17, fig. 18, fig. 19 and fig. 20, the invention relates to a pre-squeezing device, and more specifically to an intelligent fruit pre-squeezing device for production, which comprises a linkage squeezing mechanism 1, a squeezing machine body mechanism 2 and a filtering mechanism 3, wherein the device can push and feed the fruit and simultaneously perform primary squeezing, the device can perform secondary squeezing on the fruit, the device can perform filtering, and the device can be cleaned conveniently.
The linkage extrusion mechanism 1 is connected with the extrusion machine body mechanism 2, and the extrusion machine body mechanism 2 is connected with the filtering mechanism 3.
The second embodiment is as follows:
the embodiment is further described with reference to fig. 1, fig. 2, fig. 3, fig. 4, fig. 5, fig. 6, fig. 7, fig. 8, fig. 9, fig. 10, fig. 11, fig. 12, fig. 13, fig. 14, fig. 15, fig. 16, fig. 17, fig. 18, fig. 19, fig. 20. The embodiment comprises a supporting leg 1-1, a belt rod pushing plug 1-2, a supporting seat 1-3, a special-shaped movable seat 1-4, a stepped slider 1-5, a slope seat 1-6, a threaded hole 1-7, a stepped groove 1-8, a smooth hole 1-9, a gate-shaped support 1-10, a fixed seat 1-11, a bearing seat 1-12, a bearing seat I1-13, a connecting seat 1-14, a sliding rod 1-15, a spring 1-16, a pulley seat 1-17, a pulley 1-18, a servo motor 1-19, a coupler 1-20, a lead screw 1-21, a supporting leg 1-1, a supporting seat 1-11, a belt rod 1-11, a pushing rod 1, fig. 5, fig. 1-4 and fig. 1-4, a special-shaped movable seat 1-4, a supporting seat 1-9, a supporting seat 1-4 sliding block, a sliding block 1-6, a sliding block, a supporting seat 1-9, the bearing block I1-13 is connected with the fixed seat I1-11, the connecting seat 1-14 is connected with the sliding rod 1-15, the spring 1-16 is sleeved on the sliding rod 1-15, the spring 1-16 is abutted against the door type support 1-10 and the pulley block 1-17, the pulley block 1-17 is connected with the pulley 1-18 in a bearing mode, the pulley 1-18 is contacted with the special-shaped movable seat 1-4, the servo motor 1-19 is connected with the fixed seat 1-11, the servo motor 1-19 is connected with the lead screw 1-21 through the coupler 1-20, the lead screw 1-21 is connected with the bearing block 1-12 in a bearing mode, the lead screw 1-21 is connected with the bearing block I1-13 in a bearing mode, and the lead screw 1-21 is in threaded connection with the threaded hole 1-7.
The third concrete implementation mode:
the present embodiment will be described below with reference to fig. 1, fig. 2, fig. 3, fig. 4, fig. 5, fig. 6, fig. 7, fig. 8, fig. 9, fig. 10, fig. 11, fig. 12, fig. 13, fig. 14, fig. 15, fig. 16, fig. 17, fig. 18, fig. 19, and fig. 20, and the first embodiment will be further described, the extruding machine body mechanism 2 comprises a base 2-1, supporting legs I2-2, a machine body shell 2-3, sliding holes I2-4, a feed hopper 2-5, a conveying motor 2-6, a coupler I2-7, a head roller 2-8, a belt 2-9, a linkage arm 2-10, a driven roller 2-11, a tail roller 2-12, a conveying frame 2-13, a conveying frame support 2-14, a support A2-15, a push rod I2-16, a push rod matching hole 2-17, a bearing seat A2-18, a matching driving motor 2-19, a coupler B2-20, a driving shaft 2-21, a driving disc 2-22, an articulated arm 2-23, an articulated connecting seat 2-24, a sliding door rod 2-25, a return spring 2-26, a sliding door 2-27, a perforated seat 2-28, a sliding door groove 2-29, a discharge port 2-30, a secondary extruding block 2-31, a pressurizing block cavity 2-32 and a movable plug movable cavity 2-33 with a rod, the base 2-1 is connected with the supporting leg 1-1, the base 2-1 is connected with the supporting leg I2-2, the supporting leg I2-2 is connected with the machine body shell 2-3, the machine body shell 2-3 is provided with a sliding hole I2-4, the sliding hole I2-4 is connected with the push plug 1-2 with the rod in a sliding way, the machine body shell 2-3 is connected with a feed hopper 2-5, a conveying motor 2-6 is connected with a conveying frame 2-13, the conveying motor 2-6 is connected with a head roller 2-8 through a coupler I2-7, the head roller 2-8 is connected with the conveying frame 2-13 through a bearing, the head roller 2-8 is connected with a belt 2-9 in a friction mode, the belt 2-9 is connected with a driven roller 2-11 in a friction mode, the driven roller 2-11 is connected with the conveying frame 2-13 through a bearing, a tail roller 2-12 is connected with the belt 2-9 in a friction mode, a tail roller 2-12 is connected with the conveying frame 2-13 through a bearing, the conveying frame 2-13 is connected with a conveying frame support 2-14, and the conveying frame support 2-14 is connected with a base 2-1, the supports A2-15 are connected with the machine body shell 2-3, the linkage arms 2-10 are connected with the connecting seats 1-14, the linkage arms 2-10 are connected with the push rods I2-16, the push rods I2-16 are connected with the push rod matching holes 2-17 in a sliding mode, the push rod matching holes 2-17 are arranged on the machine body shell 2-3, the bearing seats A2-18 are connected with the base 2-1, the driving motors 2-19 are connected with the bearing seats A2-18 in a matching mode, the driving motors 2-19 are connected with the driving shafts 2-21 through the couplings B2-20 in a matching mode, the driving shafts 2-21 are connected with the bearing seats A2-18 in a bearing mode, the driving shafts 2-21 are connected with the driving discs 2-22, and the driving discs 2-22 are hinged with the hinged arms 2-23, the articulated arm 2-23 is articulated with the articulated connecting seat 2-24, the articulated connecting seat 2-24 is connected with the sliding door rod 2-25, the sliding door rod 2-25 is connected with the perforated seat 2-28 in a sliding way, the perforated seat 2-28 is connected with the machine body shell 2-3, the reset spring 2-26 is sleeved on the sliding door rod 2-25, the reset spring 2-26 is abutted against the perforated seat 2-28 and the sliding door 2-27, the sliding door 2-27 is connected with the sliding door matching groove 2-29 in a sliding way, the sliding door matching groove 2-29 is arranged on the machine body shell 2-3, the discharge port 2-30 is arranged on the machine body shell 2-3, the secondary extrusion block 2-31 is connected with the movable cavity 2-32 in a sliding way, the secondary extrusion block 2-31 is connected with the pushing rod I2-16, the movable cavity 2-32 is arranged in the machine body shell 2-3, the movable cavity 2-33 with the pushing rod is arranged in the machine body shell 2-3, the pushing rod 1-2 with the pushing rod 2-33, the movable cavity 2-3 with the pushing rod, the feeding roller 2-7 is driven by the feeding hopper 2-8 to rotate by the motor, the feeding drum 2-8 is driven by the head of the feeding drum 2-8, the servo motors 1-19 can alternately drive the shaft couplings 1-20 to rotate in the forward direction and the reverse direction, the shaft couplings 1-20 can drive the screw rods 1-21 to rotate in the forward direction, the special-shaped movable seats 1-4 can be pulled to move towards the servo motors 1-19 through the matching with the threaded holes 1-7, the special-shaped movable seats 1-4 can drive the belt rod pushing plugs 1-2 to move through the supporting seats 1-3, the belt rod pushing plugs 1-2 can push fruits in the belt rod pushing plug movable cavities 2-33, if more fruits exist, a certain extrusion pre-crushing effect can be achieved, when the screw rods 1-21 rotate reversely, the belt rod pushing plugs 1-2 can reset, when the shaft couplings 1-20 can drive the screw rods 1-21 to rotate in the forward direction, the special-shaped movable seat 1-4 can support the pulleys 1-18 towards two sides through the slope seat 1-6, the pulleys 1-18 can drive the connecting seat 1-14 to move towards two sides through the sliding rod 1-15, the connecting seat 1-14 can drive the pushing rod I2-16 to move through the linkage arm 2-10, the pushing rod I2-16 can drive the secondary extrusion blocks 2-31 to be away from each other, so that the fruit can be pushed into the space between the secondary extrusion blocks 2-31 which are away from each other by the pushing plug 1-2 with the rod, and when the screw rod 1-21 rotates reversely, the secondary extrusion blocks 2-31 at two sides reset towards the middle under the resilience action of the spring 1-16, so that the fruit in the middle can be extruded secondarily by the secondary extrusion blocks 2-31 at two sides.
The fourth concrete implementation mode:
the first embodiment will be further described with reference to fig. 1, fig. 2, fig. 3, fig. 4, fig. 5, fig. 6, fig. 7, fig. 8, fig. 9, fig. 10, fig. 11, fig. 12, fig. 13, fig. 14, fig. 15, fig. 16, fig. 17, fig. 18, fig. 19, fig. 20, wherein the filtering mechanism 3 includes a hydraulic cylinder 3-1, a movable valve 3-2, a switching box 3-3, an outlet pipe 3-4, a cleaning outlet pipe 3-5, a cleaning inlet pipe 3-6, a connecting pipe 3-7, an outlet pipe 3-8, a spare filter hole 3-9, a filter hole 3-10, and a sliding chamber 3-11, wherein the hydraulic cylinder 3-1 is connected to the base 2-1, the hydraulic cylinder 3-1 is connected to the movable valve 3-2, the movable valve 3-2 is slidably connected to the sliding chamber 3-11, the sliding cavity 3-11 is arranged in the switching box 3-3, the switching box 3-3 is connected with the base 2-1, the switching box 3-3 is connected with the outlet pipe 3-4, the switching box 3-3 is connected with the cleaning outlet pipe 3-5, the cleaning inlet pipe 3-6 is connected with the switching box 3-3, the switching box 3-3 is communicated with the outlet pipe 3-8 by the connecting pipe 3-7, the spare filtering hole 3-9 and the filtering hole 3-10 are arranged on the movable valve 3-2, the driving motor 2-19 is matched in operation after the bent arm is extruded, the coupling B2-20 is driven to rotate by matching with the driving motor 2-19, the coupling B2-20 drives the driving disc 2-22 to rotate by the driving shaft 2-21, the driving disc 2-22 rotates and pulls the sliding door rod 2-25 by the hinged arm 2-23, then resetting under the resilience of a return spring 2-26, so that a sliding door rod 2-25 can reciprocate, the sliding door rod 2-25 can drive a sliding door 2-27 to reciprocate in a sliding door matching groove 2-29, so that a discharge port 2-30 can intermittently lose the sealing of the sliding door 2-27, fruit juice and fruit peel sheets fall into a liquid outlet box 3-8, the fruit juice is filtered by a filter hole 3-10 after passing through a connecting pipe 3-7 and then is discharged clean fruit juice, when the filter hole 3-10 is blocked, hydraulic oil is injected into a hydraulic cylinder 3-1, the movable valve 3-2 is pushed under the driving of the oil pressure, the movable valve 3-2 can drive the filter hole 3-10 to move to a position which is overlapped with a cleaning liquid outlet pipe 3-5, then high-pressure water is injected into the cleaning water inlet pipe 3-6, the water quickly enters from the cleaning water inlet pipe 3-6 and then is discharged from the cleaning liquid outlet pipe 3-5, blockages of the filter hole 3-10 are discharged, at the standby filter hole 3-9 is used as an initial cleaning liquid outlet hole 3-10, the hydraulic oil is not used for driving the cleaning liquid outlet pipe 3-5 to be wrongly flushed, and the hydraulic oil is not used for producing the hydraulic oil, and the hydraulic cylinder is not used for delaying the normal production.
The fifth concrete implementation mode:
the present embodiment will be described below with reference to fig. 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, and 20, and the present embodiment will be further described with reference to the present embodiment, in which a sealing material is provided between the movable valve 3-2 and the switching box 3-3.
The working principle of the equipment is as follows: the equipment can push feeding and simultaneously perform primary extrusion, firstly, a conveying motor 2-6 is operated to drive a coupler I2-7 to rotate, the coupler I2-7 rotates to drive a head roller 2-8 to rotate, the head roller 2-8 rotates to drive a belt 2-9 to move, so that fruit raw materials placed at one end of a tail roller 2-12 are conveyed to one end of a head roller 2-8 and then thrown into a feed hopper 2-5, the fruit raw materials enter a belt rod pushing plug movable cavity 2-33 from the feed hopper 2-5, a servo motor 1-19 is synchronously operated, the servo motor 1-19 alternately drives a coupler 1-20 to rotate in the forward direction and the reverse direction, the coupler 1-20 drives a screw rod 1-21 to rotate in the forward direction, the special-shaped movable seat 1-4 is pulled to move towards the direction of the servo motor 1-19 through the matching with a threaded hole 1-7, the movable seat 1-4 drives a belt rod pushing plug 1-2 to move through a supporting seat 1-3, the belt rod pushing plug 1-2 pushes the belt rod pushing plug 2-33 to move, and the special-shaped movable plug 2-33 can perform certain extrusion when the belt rod pushing action, and fruit can also perform certain backward extrusion when the belt rod pushing action, and fruit raw materials can be reset, and if the fruit raw materials can be reset; the device can extrude the fruits for the second time, when the shaft coupling 1-20 can drive the screw rod 1-21 to rotate forwards, the special-shaped movable seat 1-4 can move to support the pulleys 1-18 towards two sides through the slope seat 1-6, the pulleys 1-18 can drive the connecting seat 1-14 to move towards two sides through the slide rod 1-15, the connecting seat 1-14 can drive the push rod I2-16 to move through the linkage arm 2-10, the push rod I2-16 can drive the secondary extrusion blocks 2-31 to be away from each other, so that the push rod push plug 1-2 can push the fruits into the space between the secondary extrusion blocks 2-31 which are away from each other, when the screw rod 1-21 rotates reversely, the secondary extrusion blocks 2-31 at two sides can reset towards the middle under the resilience action of the spring 1-16, so that the secondary extrusion blocks 2-31 at two sides can extrude the fruits at the middle for the second time; the device can carry out filtering, the bent arm is extruded to run and cooperate with the driving motor 2-19, the driving motor 2-19 is matched to drive the shaft coupling B2-20 to rotate, the shaft coupling B2-20 can drive the driving disc 2-22 to rotate through the driving shaft 2-21, the driving disc 2-22 can drive the sliding door rod 2-25 to rotate through the hinged arm 2-23, and then the sliding door rod 2-25 is reset under the resilience effect of the reset spring 2-26, so that the sliding door rod 2-25 can carry out reciprocating motion, the sliding door rod 2-25 can drive the sliding door 2-27 to carry out reciprocating motion in the sliding door matching groove 2-29, so that the discharge port 2-30 can lose the sealing of the sliding door 2-27 intermittently, fruit juice and fruit peel sheets fall into the liquid outlet box 3-8, and then the fruit juice passes through the connecting pipe 3-7 and then is filtered through the filtering hole 3-10 to discharge clean fruit juice; the device can be cleaned conveniently, when the filter holes 3-10 are blocked, hydraulic oil is injected into the hydraulic cylinder 3-1, the movable valve 3-2 is pushed under the driving of the oil pressure, the movable valve 3-2 can drive the filter holes 3-10 to move to the position coinciding with the cleaning liquid outlet pipe 3-5, then high-pressure water is injected into the cleaning water inlet pipe 3-6, water rapidly enters from the cleaning water inlet pipe 3-6 and then is discharged from the cleaning liquid outlet pipe 3-5, blocking objects of the filter holes 3-10 are washed out, the standby filter holes 3-9 serve as standby filtering effects at the initial positions of the filter holes 3-10, normal production is not delayed, and the hydraulic oil is reversely injected into the hydraulic cylinder 3-1 after cleaning to drive the filter holes 3-10 to reset.
It is to be understood that the above description is not intended to limit the present invention, and the present invention is not limited to the above examples, and that various changes, modifications, additions and substitutions which are within the spirit and scope of the present invention and which may be made by those skilled in the art are also within the scope of the present invention.

Claims (2)

1. The utility model provides an intelligence production water fruit equipment of squeezing juice in advance, includes linkage extrusion mechanism (1), extrusion fuselage mechanism (2), filtering mechanism (3), its characterized in that: the linkage extrusion mechanism (1) is connected with the extrusion machine body mechanism (2), and the extrusion machine body mechanism (2) is connected with the filtering mechanism (3);
the linkage extrusion mechanism (1) comprises supporting legs (1-1), a push plug with a rod (1-2), supporting seats (1-3), special-shaped movable seats (1-4), stepped sliders (1-5), slope seats (1-6), threaded holes (1-7), stepped grooves (1-8), unthreaded holes (1-9), door-shaped supports (1-10), fixing seats (1-11), bearing seats (1-12), bearing seats I (1-13), connecting seats (1-14), sliding rods (1-15), springs (1-16), pulley seats (1-17), pulleys (1-18), servo motors (1-19), couplers (1-20) and lead screws (1-21), the supporting legs (1-1) are connected with the fixing seats (1-11), the push plug with a rod (1-2) is connected with the supporting seats (1-3), the supporting seats (1-3) are connected with the special-shaped movable seats (1-4), the special-shaped sliders (1-4) are arranged on the movable seats (1-4), the slope seats (1-4) are provided with the special-shaped movable seats (1-6), and the threaded holes (1-7), the stepped groove (1-8) is arranged on the fixed seat (1-11), the stepped sliding block (1-5) is connected with the stepped groove (1-8) in a sliding manner, the unthreaded hole (1-9) is arranged on the door type support (1-10), the door type support (1-10) is connected with the fixed seat (1-11), the bearing seat (1-12) is connected with the fixed seat (1-11), the bearing seat I (1-13) is connected with the fixed seat (1-11), the connecting seat (1-14) is connected with the sliding rod (1-15), the spring (1-16) is sleeved on the sliding rod (1-15), the spring (1-16) is abutted against the door type support (1-10) and the pulley seat (1-17), the pulley seat (1-17) is connected with the pulley (1-18) in a bearing manner, the pulley (1-18) is connected with the special-shaped movable seat (1-4), the servo motor (1-19) is connected with the fixed seat (1-11), the servo motor (1-19) is connected with the lead screw (1-21) in a bearing coupling manner, and the bearing seat I (1-13) is connected with the lead screw (1-21), the screw rod (1-21) is in threaded connection with the threaded hole (1-7);
the extruding machine body mechanism (2) comprises a base (2-1), a supporting leg I (2-2), a machine body shell (2-3), a sliding hole I (2-4), a feeding hopper (2-5), a conveying motor (2-6), a coupler I (2-7), a head roller (2-8), a belt (2-9), a linkage arm (2-10), a driven roller (2-11), a tail roller (2-12), a conveying frame (2-13), a conveying frame support (2-14), a support A (2-15), a push rod I (2-16), a push rod matching hole (2-17), a bearing seat A (2-18), a matching driving motor (2-19), a coupler B (2-20), a driving shaft (2-21), a driving disc (2-22), a hinged arm (2-23), a hinged connecting seat (2-24), a sliding door rod (2-25), a reset spring (2-26), a sliding door (2-27), a perforated seat (2-28), a sliding door groove (2-29), a movable matching block (2-30), a secondary extruding block (2-31) and a pressurizing block (2-31), A movable cavity (2-33) of a push plug with a rod, a base (2-1) connected with a supporting leg (1-1), a base (2-1) connected with a supporting leg I (2-2), a supporting leg I (2-2) connected with a machine body shell (2-3), a sliding hole I (2-4) arranged on the machine body shell (2-3), a sliding hole I (2-4) connected with the push plug with the rod (1-2) in a sliding manner, a machine body shell (2-3) connected with a feed hopper (2-5), a conveying motor (2-6) connected with a conveying frame (2-13), a conveying motor (2-6) connected with a head roller (2-8) through a coupler I (2-7), a connection mode of the head roller (2-8) and the conveying frame (2-13) being a bearing connection mode, the head roller (2-8) being a friction connection with a belt (2-9), a friction connection mode of the belt (2-9) with a driven roller (2-11), a connection mode of the driven roller (2-11) and a connection mode of the conveying frame (2-13) being a friction connection mode of the belt roller (2-9), a connection mode of the belt (2-13) being a connection mode of the conveying frame (2-12), a connection mode of the tail roller (2-13) being a bearing connection mode of the belt connection with the conveying frame (2-13), the conveying frame (2-13) is connected with the conveying frame support (2-14), the conveying frame support (2-14) is connected with the base (2-1), the support A (2-15) is connected with the machine body shell (2-3), the linkage arm (2-10) is connected with the connecting seat (1-14), the linkage arm (2-10) is connected with the push rod I (2-16), the push rod I (2-16) is connected with the push rod matching hole (2-17) in a sliding manner, the push rod matching hole (2-17) is arranged on the machine body shell (2-3), the bearing seat A (2-18) is connected with the base (2-1), the driving motor (2-19) is connected with the bearing seat A (2-18) in a matching manner, the driving motor (2-19) is connected with the driving shaft (2-21) through the coupling B (2-20), the articulated arm (2-21) is connected with the bearing seat A (2-18) in a bearing manner, the driving shaft (2-21) is connected with the driving disc (2-22), the driving disc (2-22) is connected with the connecting seat (2-24) in a sliding manner, and the connecting seat (2-24) is connected with the connecting seat (2-24), the sliding door rod (2-25) is connected with the perforated seat (2-28) in a sliding manner, the perforated seat (2-28) is connected with the machine body shell (2-3), the reset spring (2-26) is sleeved on the sliding door rod (2-25), the reset spring (2-26) abuts against the perforated seat (2-28) and the sliding door (2-27), the sliding door (2-27) is connected with the sliding door matching groove (2-29) in a sliding manner, the sliding door matching groove (2-29) is formed in the machine body shell (2-3), the discharge port (2-30) is formed in the machine body shell (2-3), the secondary extrusion block (2-31) is connected with the compression block movable cavity (2-32) in a sliding manner, the secondary extrusion block (2-31) is connected with the push rod I (2-16), the compression block movable cavity (2-32) is formed in the machine body shell (2-3), and the belt rod push plug movable cavity (2-33) is formed in the machine body shell (2-3) and the belt rod push plug movable cavity (2-33) is connected with the push rod (2-3);
the filter mechanism (3) comprises a hydraulic cylinder (3-1), a movable valve (3-2), a switching box (3-3), a discharge pipe (3-4), a clean discharge pipe (3-5), a clean water inlet pipe (3-6), a connecting pipe (3-7), a discharge box (3-8), a standby filter hole (3-9), a filter hole (3-10) and a sliding cavity (3-11), wherein the hydraulic cylinder (3-1) is connected with a base (2-1), the hydraulic cylinder (3-1) is connected with the movable valve (3-2), the movable valve (3-2) is connected with the sliding cavity (3-11) in a sliding manner, the sliding cavity (3-11) is arranged in the switching box (3-3), the switching box (3-3) is connected with the base (2-1), the switching box (3-3) is connected with the discharge pipe (3-4), the connecting pipe (3-3) is connected with the clean discharge pipe (3-5), the clean water inlet pipe (3-6) is connected with the switching box (3-3), the standby switching box (3-7) is connected with the filter hole (3-10), and the movable valve (3-11) is arranged on the switching box (3-3).
2. The intelligent fruit pre-juicing device for the production as claimed in claim 1, wherein: and a sealing material is arranged between the movable valve (3-2) and the switching box (3-3).
CN202010502879.5A 2020-06-05 2020-06-05 Intelligent production fruit pre-juicing equipment Active CN111528488B (en)

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Publication number Priority date Publication date Assignee Title
CN112841663B (en) * 2021-03-03 2022-09-02 吕梁野山坡食品有限责任公司 Food processing is with equipment of squeezing juice
CN113662204B (en) * 2021-09-26 2024-02-23 广东凯美欣电器科技有限公司 Pomegranate juice extracting equipment for food processing

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JP2008077622A (en) * 2006-01-24 2008-04-03 Sanden Corp Beverage brewer
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