Red bayberry kernel removing, juicing and filling all-in-one machine capable of removing pulp
The Yangmei pit removal and juice extraction integrated machine addresses the challenge of pit inclusion by automating the process, ensuring high-quality juice production with enhanced efficiency and reduced labor.
Patent Information
- Application Number
- CN202510690995.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-27
- Publication Date
- 2025-07-15
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing bayberry juice filling machine is inefficient during the denucleation process, resulting in the bayberry core being shattered together with the pulp, affecting the taste and quality of the juice.
Design a bayberry core-removing juice filling machine that can remove pulp is designed, including material separation, transportation, core removal, core discharge, extrusion, storage and filling components to realize automatic removal of bayberry cores and automatic filling of juice.
The automatic removal of bayberry pulp is achieved, the production efficiency is improved, the labor force is reduced, and the juice is ensured that the core taste is not present and the taste is good.
Smart Images

Figure CN120308900A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of bayberry processing, and particularly relates to a bayberry core-removing, juice-extracting and filling integrated machine capable of removing pulp. Background Art
[0002] Bayberry belongs to the Myricaceae family and is a plant. The roots, bark and fruits of bayberry can all be used as medicine. The fruit of bayberry tastes sour and sweet. Bayberry juice contains natural acidic components and a large amount of vitamin C. After entering the human body, it can promote the secretion of gastric acid, and can also eliminate various pathogenic bacteria such as Escherichia coli and Shigella dysenteriae in the intestine, relieve diarrhea and abdominal pain. Bayberry juice is cool in nature and can also clear heat and detoxify. Drinking it in summer can also play the role of preventing heatstroke and cooling down.
[0003] However, in the actual use process of the existing bayberry juice-extracting and filling machine, due to the great difficulty in removing the cores of bayberries, the efficiency of manual core removal is low. Therefore, during general processing, the cleaned bayberries are directly added to the juice-extracting device, so that the bayberry cores and bayberry pulp are crushed together. After being crushed, the taste of the bayberry cores is not good, which will seriously affect the taste and quality of the bayberry juice.
[0004] Therefore, it is necessary to design a bayberry core-removing, juice-extracting and filling integrated machine capable of removing pulp to solve the above problems. Summary of the Invention
[0005] The purpose of the present invention is to provide a bayberry core-removing, juice-extracting and filling integrated machine capable of removing pulp to solve the above problems and achieve the purpose of juicing and filling the bayberry pulp after removing the bayberry cores.
[0006] To achieve the above purpose, the present invention provides the following solution: A bayberry core-removing, juice-extracting and filling integrated machine capable of removing pulp, comprising
[0007] A housing, with a feeding box fixedly communicated at one end of the top;
[0008] A material distribution component, fixedly communicated at the bottom end of the feeding box;
[0009] A transportation component, arranged inside the housing, the feeding end of the transportation component is located below the discharging end of the material distribution component, and the transportation component is used for transporting the bayberries after being distributed by the material distribution component;
[0010] A core-removing component, fixedly arranged inside the housing, the core-removing component is located above the transportation component, and the core-removing component is used for removing the cores of the bayberries transported by the transportation component;
[0011] A core discharging component, fixedly arranged inside the housing, the core discharging component is located between the upper layer and the lower layer of the transportation component, the core discharging component is perpendicular to the transportation component, and the core discharging component is used for discharging the cores of the bayberries out of the housing;
[0012] An extrusion assembly is provided at the discharging end of the transportation assembly, and the extrusion assembly is used to extrude the waxberries after pitting.
[0013] A storage assembly is provided inside the housing. The storage assembly is fixedly communicated with the extrusion assembly, and the storage assembly is used to store the waxberry juice generated by extrusion.
[0014] A filling assembly is provided at the liquid outlet end of the storage assembly, and the filling assembly is used to fill the waxberry juice into bottles separately.
[0015] For a waxberry pitting, juicing and filling integrated machine capable of removing pulp according to the present invention, the transportation assembly includes a first motor, the first motor is fixedly connected to the inner side wall of the housing, one end of a horizontally arranged first driving roller is coaxially and fixedly connected to the output shaft of the first motor, the other end of the first driving roller is rotatably connected to the inner side wall of the housing, a first driven roller is arranged directly below the first driving roller, both ends of the first driven roller are rotatably connected to the inner side wall of the housing and are parallel to the first driving roller, and the inner side wall of the housing is also rotatably connected to two other first driven rollers. The first driving roller and the three first driven rollers form a quadrilateral, and two conveyor belts are wound around the outer sides of the first driving roller and the three first driven rollers. The two conveyor belts are arranged at intervals, and a fruit transportation part is fixedly connected to the outer side walls of the two conveyor belts.
[0016] For a waxberry pitting, juicing and filling integrated machine capable of removing pulp according to the present invention, the fruit transportation part includes a plurality of pitting pallets. The pitting pallets are fixedly connected to the outer side walls of the conveyor belts. The plurality of pitting pallets are arranged at equal intervals along the length direction of the conveyor belts. A baffle is fixedly connected to the top of one side wall of the pitting pallet. A plurality of fruit grooves are formed at the top end of the pitting pallet. The plurality of fruit grooves are arranged at equal intervals along the length direction of the pitting pallet. A pitting hole is formed at the bottom wall of the fruit groove.
[0017] For a waxberry pitting, juicing and filling integrated machine capable of removing pulp according to the present invention, the pitting assembly includes two first telescopic rods. The first telescopic rods are arranged vertically and the fixed ends are fixedly connected to the inner top wall of the housing. The two first telescopic rods are arranged at intervals and the telescopic ends are jointly fixedly connected to a fixing plate. A plurality of pitting sleeves are fixedly connected to the bottom end of the fixing plate. The plurality of pitting sleeves are arranged at equal intervals along the length direction of the fixing plate. The pitting sleeves are adapted to the pitting holes. A gantry is fixedly connected to the top end of the fixing plate. The gantry is located between the two first telescopic rods. A plurality of second telescopic rods are fixedly connected to the bottom end of the cross beam of the gantry. The second telescopic rods are arranged vertically and the telescopic ends are fixedly connected to ejector rods. The ejector rods correspond to the pitting sleeves one by one. The ejector rods slide through the fixing plate and are located inside the pitting sleeves.
[0018] A bayberry core removing and juice squeezing and filling machine capable of removing pulp according to the present invention, the core removal component comprises a second motor, the second motor is fixedly connected to the inner wall of the shell, the output shaft of the second motor is coaxially fixedly connected to one end of a horizontally arranged second active roller, the other end of the second active roller is rotatably connected to an active roller seat, the active roller seat is fixedly connected to the inner wall of the shell, the other opposite inner wall of the shell is fixedly connected to two driven roller seats, a second driven roller is rotatably connected between the two driven roller seats, the second driven roller is parallel to the second active roller and located in the same horizontal plane, a belt is commonly wound around the outer side of the second driven roller and the second active roller, a slag guide inclined plate is contacted and arranged below one end of the belt close to the second driven roller, the slag guide inclined plate is fixed in a slag discharge port opened in the side wall of the shell, the slag guide inclined plate is inclined and the lower end is located outside the shell.
[0019] Based on the present invention, a bayberry core removing, juice extracting and filling integrated machine capable of removing the pulp is provided, wherein the material distribution component comprises a plurality of material distribution funnels, the plurality of material distribution funnels are arranged in parallel and fixedly connected to the bottom end of the feeding box, the bottom end of the material distribution funnel is fixedly connected to a discharge pipe, and the bottom end of the discharge pipe is located above the feeding end of the transport component.
[0020] A bayberry core-removing, juice-squeezing and filling machine capable of removing pulp according to the present invention, the squeezing assembly comprises a support frame, the support frame is an inverted U-shape, the bottoms of the two vertical beams of the support frame are fixedly connected to the tops of the two opposite outer walls of the shell, the cross beams of the support frame are fixedly connected to a plurality of multi-stage hydraulic cylinders, the piston ends of the plurality of multi-stage hydraulic cylinders are commonly fixedly connected to an squeezing block, the squeezing block movably passes through a clearance hole provided on the top wall of the shell, the inner bottom wall of the shell is fixedly connected to an squeezing shell through a plurality of supporting legs, the squeezing shell is located directly below the squeezing block and is adapted to the squeezing block, the bottom wall of the squeezing shell is provided with a plurality of leakage holes, the storage assembly is fixedly connected to the bottom end of the squeezing shell, and a feeding funnel is fixedly connected to the middle of the side wall of the squeezing shell close to the unloading end of the transport assembly.
[0021] A bayberry core removing, juice squeezing and filling machine with pulp removed based on the present invention, the storage component includes a transfer box, the transfer box is fixedly connected to the inner bottom wall of the outer shell and the top end is fixedly connected to the bottom end of the extruded outer shell, a first liquid outlet pump is arranged inside the transfer box, the outlet end of the first liquid outlet pump is fixedly connected to one end of a transfer pipe, the other end of the transfer pipe passes through the side wall of the transfer box and enters the liquid tank, the liquid box is fixedly arranged inside the outer shell, a second liquid pump is arranged inside the liquid box, the outlet end of the second liquid pump is fixedly connected to one end of a discharge pipe, the other end of the discharge pipe passes through the side wall of the liquid box and the side wall of the outer shell and is located above the filling component.
[0022] A waxberry pit-removing, juice-extracting and filling integrated machine based on the present invention. The filling assembly includes a base, and a filling motor is fixedly arranged inside the base. An output shaft of the filling motor is fixedly connected with a turntable, and the turntable is coaxially arranged with the base. A plurality of containing grooves are formed in an outer edge of a top end of the turntable, and the plurality of containing grooves are arranged at equal intervals along a circumference of the outer edge of the turntable.
[0023] A waxberry pit-removing, juice-extracting and filling integrated machine based on the present invention. A fixing frame is arranged between an upper layer and a lower layer of the conveyor belt. A top end and a bottom end of the fixing frame are in frictional contact with the upper layer and the lower layer of the conveyor belt respectively, and the fixing frame is fixedly connected with an inner side wall of the housing through a plurality of connecting rods.
[0024] Compared with the prior art, the present invention has the following advantages and technical effects:
[0025] Through a material distribution assembly arranged at a bottom end of a feeding box, the present invention can evenly distribute waxberries, so that the waxberries can be transferred to a transportation assembly in a single-particle form. The transportation assembly transports the waxberries to a position below a pit-removing assembly. The arranged pit-removing assembly can remove waxberry pits from waxberry fruits and transfer the waxberry pits to a pit-discharging assembly, and the waxberry pits are discharged from the housing by the pit-discharging assembly. After the pits are removed, the waxberry pulp enters an extrusion assembly under the transportation of the transportation assembly, and the waxberry pulp is extruded into waxberry juice by the extrusion assembly. The extruded waxberry juice enters a storage assembly, and the storage assembly and the filling assembly cooperate to fill the waxberry juice into a container. The integrated machine of the present invention can automatically remove pits from waxberries, automatically squeeze and process the waxberry pulp into waxberry juice and then fill the waxberry juice into a container. It has a high degree of automation, high production efficiency, reduces manual labor and manual input, and the obtained waxberry juice does not contain the components of waxberry pits and has a good taste. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required to be used in the embodiments. Obviously, the following described drawings are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts:
[0027] Figure 1 It is a schematic diagram of the whole of the present invention;
[0028] Figure 2 It is a schematic diagram inside the housing of the present invention;
[0029] Figure 3 It is a schematic diagram of the material distribution assembly and the transportation assembly of the present invention;
[0030] Figure 4This is a schematic diagram of the core removal component of the present invention;
[0031] Figure 5 It is a schematic diagram of the extrusion assembly of the present invention;
[0032] Figure 6 This is a schematic diagram of a core removal assembly of the present invention;
[0033] Figure 7 It is a cross-sectional view of the core removal component and the core removal support plate of the present invention.
[0034] Among them, 1. shell; 2. feeding box; 3. clearance hole; 4. slag discharge port; 5. support frame; 6. multi-stage hydraulic cylinder; 7. slag guide inclined plate; 8. discharge pipe; 9. base; 10. turntable; 11. holding tank; 12. material distribution funnel; 13. discharge pipe; 14. liquid box; 15. first motor; 16. first active roller; 17. first driven roller; 18. conveyor belt; 19. core removal pallet; 20. baffle; 21. connecting rod; 22. fixed frame ; 23. First telescopic rod; 24. Fixed plate; 25. Core removal sleeve; 26. Gantry; 27. Second telescopic rod; 28. Push rod; 29. Extrusion shell; 30. Feed hopper; 31. Support legs; 32. Transfer box; 33. Transfer tube; 34. Second motor; 35. Second active roller; 36. Active roller seat; 37. Belt; 38. Second driven roller; 39. Driven roller seat; 40. Fruit trough; 41. Core removal hole; 42. Extrusion block. DETAILED DESCRIPTION
[0035] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0036] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the present invention is further described in detail below with reference to the accompanying drawings and specific embodiments.
[0037] Reference Figures 1 to 7 As shown, the present invention provides a bayberry pitting, juice extraction and filling integrated machine capable of removing the fruit pulp, comprising:
[0038] The outer shell 1 has a top end fixedly connected to a feeding box 2;
[0039] A material distribution component, fixedly connected to the bottom end of the feeding box 2;
[0040] A transport component is arranged inside the housing 1, wherein a feeding end of the transport component is located below a discharging end of the material distribution component, and the transport component is used to transport the bayberries after being distributed by the material distribution component;
[0041] The pit-removing component is fixedly arranged inside the outer shell 1. The pit-removing component is located above the transportation component and is used for removing the pits from the waxberries transported by the transportation component.
[0042] The pit-discharging component is fixedly arranged inside the outer shell 1. The pit-discharging component is located between the upper layer and the lower layer of the transportation component. The pit-discharging component is perpendicular to the transportation component and is used for discharging the fruit pits of the waxberries out of the outer shell 1.
[0043] The squeezing component is arranged at the discharging end of the transportation component and is used for squeezing the waxberries after pit removal.
[0044] The storage component is arranged inside the outer shell 1. The storage component is fixedly communicated with the squeezing component and is used for storing the waxberry juice generated by squeezing.
[0045] The filling component is arranged at the liquid outlet end of the storage component and is used for filling the waxberry juice into bottles separately.
[0046] The feeding component arranged at the bottom end of the feeding box 2 can evenly distribute the waxberries, so that the waxberries can be transferred to the transportation component in the form of single fruits. The waxberries are transported to the lower part of the pit-removing component by the transportation component. The arranged pit-removing component can remove the waxberry pits from the waxberry fruits and transfer the waxberry pits to the pit-discharging component, and the pit-discharging component discharges them out of the outer shell. After the pits are removed, the waxberry pulp enters the squeezing component under the transportation of the transportation component, and the squeezing component squeezes the waxberry pulp to produce waxberry juice. The squeezed waxberry juice enters the storage component, and the storage component and the filling component cooperate to fill the waxberry juice into containers.
[0047] Further, the transportation component includes a first motor 15. The first motor 15 is fixedly connected to the inner side wall of the outer shell 1. One end of a horizontally arranged first driving roller 16 is coaxially and fixedly connected to the output shaft of the first motor 15, and the other end of the first driving roller 16 is rotatably connected to the inner side wall of the outer shell 1. A first driven roller 17 is arranged directly below the first driving roller 16. Both ends of the first driven roller 17 are rotatably connected to the inner side wall of the outer shell 1 and are parallel to the first driving roller 16. The inner side wall of the outer shell 1 is also rotatably connected to two other first driven rollers 17. The first driving roller 16 and the three first driven rollers 17 form a quadrilateral. Two conveyor belts 18 are wound around the outside of the first driving roller 16 and the three first driven rollers 17. The two conveyor belts 18 are arranged at intervals, and a fruit transportation part is fixedly connected to the outer side walls of the two conveyor belts 18.
[0048] Further, the fruit transportation part includes several core-removing pallets 19. The core-removing pallets 19 are fixedly connected to the outer side wall of the conveyor belt 18. The several core-removing pallets 19 are arranged at equal intervals along the length direction of the conveyor belt 18. A baffle 20 is fixedly connected to the top of one side wall of the core-removing pallet 19. Several fruit grooves 40 are formed at the top end of the core-removing pallet 19. The several fruit grooves 40 are arranged at equal intervals along the length direction of the core-removing pallet 19. A core-removing hole 41 is formed at the bottom wall of the fruit groove 40.
[0049] After being distributed by the material distribution component, the bayberries fall into the fruit grooves 40. Only one bayberry can be accommodated in the fruit groove 40. The distance between the top end of the core-removing pallet 19 and the discharge end of the material distribution component is less than the diameter size of the bayberry. In this way, it can be ensured that no bayberry will roll out of the material distribution component when the core-removing pallet 19 is staggered from the discharge end of the material distribution component. The baffle 20 arranged at the top of the side wall of the core-removing pallet 19 can block the discharge end of the material distribution component, further improving the effect of preventing the bayberries from rolling. The material of the baffle 20 can be selected as rubber. Rubber itself has a certain elasticity and will not interfere with the extrusion component on the premise of being able to block the rolling of the bayberries. After all the fruit grooves 40 of the core-removing pallet 19 are filled with bayberries, the conveyor belt 18 drives the core-removing pallet 19 to move below the core-removing component, and the core-removing component removes the cores of the bayberries in the fruit grooves 40.
[0050] Further, the core-removing component includes two first telescopic rods 23. The first telescopic rods 23 are vertically arranged and the fixed ends are fixedly connected to the inner top wall of the housing 1. The two first telescopic rods 23 are arranged at intervals and the telescopic ends are jointly fixedly connected to a fixing plate 24. A plurality of core-removing sleeves 25 are fixedly connected to the bottom end of the fixing plate 24. The several core-removing sleeves 25 are arranged at equal intervals along the length direction of the fixing plate 24. The core-removing sleeve 25 is adapted to the core-removing hole 41. A gantry 26 is fixedly connected to the top end of the fixing plate 24. The gantry 26 is located between the two first telescopic rods 23. A plurality of second telescopic rods 27 are fixedly connected to the bottom end of the cross beam of the gantry 26. The second telescopic rods 27 are vertically arranged and the telescopic ends are fixedly connected to a top rod 28. The top rod 28 corresponds to the core-removing sleeve 25 one by one. The top rod 28 slides through the fixing plate 24 and is located inside the core-removing sleeve 25.
[0051] After the core-removing pallet 19 filled with bayberries moves below the core-removing sleeve 25, the telescopic ends of the first telescopic rods 23 extend to drive the fixing plate 24 and the core-removing sleeve 25 to descend. During the descending process, the core-removing sleeve 25 passes through the bayberries in the fruit groove 40 and removes the cores of the bayberries from the pulp. The removed bayberry cores stay in the core-removing sleeve 25. When the core-removing sleeve 25 completely passes through the bayberries, the telescopic ends of the second telescopic rods 27 extend to drive the top rod 28 to descend and move inside the core-removing sleeve 25. During the descending movement, the top rod 28 pushes out the bayberry cores remaining in the core-removing sleeve 25, and finally they fall on the core-discharging component.
[0052] As an additional embodiment of the present invention, a number of pressing rings are fixedly connected to the bottom end of the fixed plate 24 through springs. The pressing rings correspond to the pit-removing sleeves 25 one by one and are sleeved on the outer sides of the pit-removing sleeves 25. During the downward movement of the fixed plate 24, when the pressing rings come into contact with the bayberry pulp, the springs are compressed to fix the bayberry pulp. After the pit-removing is completed, during the upward movement of the fixed plate 24, when the springs return from the compressed state to the original state, they always apply a force to the pressing rings to fix the bayberry pulp in the fruit groove 40, preventing the bayberry pulp from being taken out of the fruit groove 40 by the pit-removing sleeve 25.
[0053] Furthermore, the pit-discharging assembly includes a second motor 34, which is fixedly connected to the inner side wall of the housing 1. One end of a horizontally arranged second driving roller 35 is coaxially and fixedly connected to the output shaft of the second motor 34, and the other end of the second driving roller 35 is rotatably connected to a driving roller seat 36, which is fixedly connected to the inner side wall of the housing 1. Two driven roller seats 39 are fixedly connected to the other opposite inner side wall of the housing 1, and a second driven roller 38 is rotatably connected between the two driven roller seats 39. The second driven roller 38 is parallel to the second driving roller 35 and is located in the same horizontal plane. A belt 37 is jointly wound around the outer sides of the second driven roller 38 and the second driving roller 35. Below one end of the belt 37 close to the second driven roller 38, there is a slag-guiding inclined plate 7 in contact. The slag-guiding inclined plate 7 is fixed in the slag-discharging port 4 opened on the side wall of the housing 1. The slag-guiding inclined plate 7 is inclined and its lower end is located outside the housing 1.
[0054] After the bayberry pits fall on the belt 37, the second motor 34 operates to drive the second driving roller 35 to rotate, thereby driving the belt 37 to move. As the belt 37 moves, the bayberry pits are transferred to the slag-guiding inclined plate 7 and finally discharged outside the housing 1.
[0055] Furthermore, the material-distributing assembly includes a number of material-distributing funnels 12, which are arranged in parallel and are fixedly communicated with the bottom end of the feeding box 2. The bottom end of the material-distributing funnel 12 is fixedly communicated with a discharge pipe 13, and the bottom end of the discharge pipe 13 is located above the feeding end of the transportation assembly.
[0056] The washed bayberries are manually put into the feeding box 2. The material-distributing funnels 12 are conical with the large opening at the top and the small opening at the bottom. At the same time, the inner diameter of the discharge pipe 13 only allows one bayberry to pass through. After passing through the material-distributing funnels 12, only one bayberry can enter the fruit groove 40 each time.
[0057] Further, the extrusion assembly includes a support frame 5. The support frame 5 is in an inverted U shape. The bottoms of the two vertical beams of the support frame 5 are fixedly connected to the tops of two opposite outer side walls of the housing 1. A number of multi-stage hydraulic cylinders 6 are fixedly connected to the cross beam of the support frame 5. The piston ends of the number of multi-stage hydraulic cylinders 6 are jointly fixedly connected to an extrusion block 42. The extrusion block 42 movably passes through a relief hole 3 opened in the top wall of the housing 1. The inner bottom wall of the housing 1 is fixedly connected to an extrusion housing 29 through a number of support legs 31. The extrusion housing 29 is located directly below the extrusion block 42 and is adapted to the extrusion block 42. A number of liquid leakage holes are opened in the bottom wall of the extrusion housing 29. The storage assembly is fixedly communicated with the bottom end of the extrusion housing 29. A feed hopper 30 is fixedly communicated with the middle of the side wall of the extrusion housing 29 close to the discharging end of the transportation assembly.
[0058] After the pitted bayberries fall out of the fruit trough 40, they enter the feed hopper 30 and then enter the extrusion housing 29. When a certain amount of bayberry pulp accumulates in the extrusion housing 29, the piston end of the multi-stage hydraulic cylinder 6 extends to drive the extrusion block 42 to descend into the extrusion housing 29 to extrude the bayberry pulp. The extruded bayberry juice enters the storage assembly through the liquid leakage holes, and the pulp residue stays in the extrusion housing 29. When a certain amount of pulp residue accumulates in the extrusion housing 29, the piston end of the multi-stage hydraulic cylinder 6 shortens to drive the extrusion block 42 to rise out of the extrusion housing 29, and then the pulp residue is removed from the extrusion housing 29 manually.
[0059] Further, the storage assembly includes a transfer tank 32. The transfer tank 32 is fixedly connected to the inner bottom wall of the housing 1 and its top end is fixedly communicated with the bottom end of the extrusion housing 29. A first liquid pump is arranged inside the transfer tank 32. One end of a transfer pipe 33 is fixedly communicated with the outlet end of the first liquid pump. The other end of the transfer pipe 33 passes through the side wall of the transfer tank 32 and then enters the liquid tank 14. The liquid tank 14 is fixedly arranged inside the housing 1. A second liquid pump is arranged inside the liquid tank 14. One end of a liquid discharge pipe 8 is fixedly communicated with the outlet end of the second liquid pump. The other end of the liquid discharge pipe 8 passes through the side walls of the liquid tank 14 and the housing 1 and is located above the filling assembly.
[0060] Further, the filling assembly includes a base 9. A filling motor is fixedly arranged inside the base 9. The output shaft of the filling motor is fixedly connected to a turntable 10. The turntable 10 is coaxially arranged with the base 9. A number of holding grooves 11 are opened at the outer edge of the top end of the turntable 10. The number of holding grooves 11 are circumferentially and equally spaced along the outer edge of the turntable 10.
[0061] Further, a fixing frame 22 is arranged between the upper layer and the lower layer of the conveyor belt 18. The top end and the bottom end of the fixing frame 22 are in frictional contact with the upper layer and the lower layer of the conveyor belt 18 respectively. The fixing frame 22 is fixedly connected to the inner side wall of the housing 1 through a number of connecting rods 21.
[0062] The fixed frame 22 supports the conveyor belt 18 to prevent the conveyor belt 18 from bending when the fixed plate 24 presses down to remove the pits.
[0063] The working process of the present invention is as follows:
[0064] After being washed, the waxberries are manually put into the feeding box 2. After passing through the material distribution funnel 12, they enter the discharge pipe 13 in the form of single pieces. When the pit-removing tray 19 moves to the lower part of the discharge pipe 13 following the conveyor belt 18, the fruit groove 40 is aligned with the discharge pipe 13, and the waxberries in the discharge pipe 13 enter the fruit groove 40. Then the pit-removing tray 19 continues to move forward. During the forward movement, the baffle 20 moves to the lower part of the discharge pipe 13 to block its outlet end to prevent the waxberries from falling. After the fruit groove 40 containing the waxberries moves to the lower part of the pit-removing sleeve 25, the first telescopic rod 23 extends to drive the pit-removing sleeve 25 to descend and insert into the waxberries, and the pits of the waxberries are removed from the pulp. The waxberry pits stay in the pit-removing sleeve 25. Then the ejector rod 28 descends to eject the waxberry pits and let them fall on the belt 37. The belt 37 moves to transport the waxberry pits out of the housing 1. After the ejector rod 28 ejects the waxberry pits out of the pit-removing sleeve 25, the first telescopic rod 23 shortens to drive the pit-removing sleeve 25 to rise away from the waxberry pulp, and the pit-removing tray 19 continues to transport the waxberry pulp forward. The waxberry pulp falls into the feeding funnel 30 at the discharging end of the conveyor belt 18 and enters the extrusion housing 29. When a certain amount of waxberry pulp accumulates in the extrusion housing 29, the multi-stage hydraulic cylinder 6 drives the extrusion block 42 to descend into the extrusion housing 29 to extrude the waxberry pulp. The extruded waxberry juice enters the transfer tank 32. Then the first liquid pump pumps the waxberry juice into the liquid tank 14, and then the second liquid pump pumps the waxberry juice into the drain pipe 8. An empty container is placed in the holding tank 11 by a person. The filling motor drives the turntable 10 to rotate, moves the empty container to the lower part of the drain pipe 8, and the waxberry juice in the drain pipe 8 is discharged into the container to complete the filling of the waxberry juice.
[0065] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.
[0066] The embodiments described above are only descriptions of the preferred modes of the present invention, and do not limit the scope of the present invention. Without departing from the design spirit of the present invention, various deformations and improvements made by those of ordinary skill in the art to the technical solutions of the present invention shall fall within the protection scope of the present invention.
Claims
1. A combined machine for removing the pit, extracting juice and filling waxberries that can remove the pulp, characterized in that, including a housing (1) with a feeding box (2) fixedly connected to one end of the top; a material distribution component fixedly connected to the bottom end of the feeding box (2); a transportation component arranged inside the housing (1), the feeding end of the transportation component being located below the discharging end of the material distribution component, and the transportation component being used for transporting the waxberries after being distributed by the material distribution component; a pit-removing component fixedly arranged inside the housing (1), the pit-removing component being located above the transportation component, and the pit-removing component being used for removing the pits of the waxberries transported by the transportation component; a pit-discharging component fixedly arranged inside the housing (1), the pit-discharging component being located between the upper layer and the lower layer of the transportation component, the pit-discharging component being perpendicular to the transportation component, and the pit-discharging component being used for discharging the pits of the waxberries out of the housing (1); a squeezing component arranged at the discharging end of the transportation component, and the squeezing component being used for squeezing the waxberries after pit removal; a storage component arranged inside the housing (1), the storage component being fixedly connected to the squeezing component, and the storage component being used for storing the waxberry juice generated by squeezing; a filling component arranged at the liquid outlet end of the storage component, and the filling component being used for filling the waxberry juice into bottles separately.
2. The one - body machine for removing pits, juicing and filling waxberries capable of removing pulp according to claim 1, wherein, The transportation component includes a first motor (15), the first motor (15) being fixedly connected to the inner side wall of the housing (1), one end of a horizontally arranged first driving roller (16) being coaxially and fixedly connected to the output shaft of the first motor (15), the other end of the first driving roller (16) being rotatably connected to the inner side wall of the housing (1), a first driven roller (17) being arranged directly below the first driving roller (16), both ends of the first driven roller (17) being rotatably connected to the inner side wall of the housing (1) and being parallel to the first driving roller (16), and the inner side wall of the housing (1) also being rotatably connected to two other first driven rollers (17). The first driving roller (16) and the three first driven rollers (17) form a quadrilateral, and two conveyor belts (18) are wound around the outer sides of the first driving roller (16) and the three first driven rollers (17). The two conveyor belts (18) are arranged at intervals, and a fruit transportation part is fixedly connected to the outer side walls of the two conveyor belts (18).
3. A waxberry core-removing, juicing and filling integrated machine capable of removing pulp according to claim 2, characterized in that, The fruit transportation part includes a plurality of pit-removing pallets (19), the pit-removing pallets (19) being fixedly connected to the outer side walls of the conveyor belts (18), the plurality of pit-removing pallets (19) being arranged at equal intervals along the length direction of the conveyor belts (18), a baffle (20) being fixedly connected to the top of one side wall of the pit-removing pallet (19), a plurality of fruit grooves (40) being formed at the top end of the pit-removing pallet (19), the plurality of fruit grooves (40) being arranged at equal intervals along the length direction of the pit-removing pallet (19), and a pit-removing hole (41) being formed at the bottom wall of the fruit groove (40).
4. A waxberry core-removing, juice-extracting and filling integrated machine capable of removing pulp according to claim 3, characterized in that, The nuclear removal component includes two first telescopic rods (23). The first telescopic rods (23) are vertically arranged, and the fixed ends are fixedly connected to the inner top wall of the housing (1). The two first telescopic rods (23) are arranged at intervals, and the telescopic ends are fixedly connected to a fixing plate (24) together. The bottom end of the fixing plate (24) is fixedly connected with a number of nuclear removal sleeves (25). The number of nuclear removal sleeves (25) are arranged at equal intervals along the length direction of the fixing plate (24). The nuclear removal sleeves (25) are adapted to the nuclear removal holes (41). The top end of the fixing plate (24) is fixedly connected with a gantry (26). The gantry (26) is located between the two first telescopic rods (23). The bottom end of the cross beam of the gantry (26) is fixedly connected with a number of second telescopic rods (27). The second telescopic rods (27) are vertically arranged, and the telescopic ends are fixedly connected with ejector rods (28). The ejector rods (28) correspond to the nuclear removal sleeves (25) one by one. The ejector rods (28) slide through the fixing plate (24) and are located inside the nuclear removal sleeves (25).
5. A waxberry stone-removing, juicing and filling integrated machine capable of removing pulp according to claim 1, characterized in that, The nuclear discharge component includes a second motor (34). The second motor (34) is fixedly connected to the inner side wall of the housing (1). One end of a horizontally arranged second driving roller (35) is coaxially and fixedly connected to the output shaft of the second motor (34). The other end of the second driving roller (35) is rotatably connected to a driving roller seat (36). The driving roller seat (36) is fixedly connected to the inner side wall of the housing (1). Two driven roller seats (39) are fixedly connected to the other opposite inner side wall of the housing (1). A second driven roller (38) is rotatably connected between the two driven roller seats (39). The second driven roller (38) is parallel to the second driving roller (35) and is located on the same horizontal plane. A belt (37) is wound around the outer sides of the second driven roller (38) and the second driving roller (35) together. A slag guiding inclined plate (7) is arranged in contact with the lower end of the belt (37) near the second driven roller (38). The slag guiding inclined plate (7) is fixed in a slag discharge port (4) opened on the side wall of the housing (1). The slag guiding inclined plate (7) is inclined and the lower end is located outside the housing (1).
6. The one - body machine for removing pulp, pitting, juicing and filling waxberries according to claim 1, wherein, The material distribution component includes a number of material distribution funnels (12). The number of material distribution funnels (12) are arranged side by side and are fixedly communicated with the bottom end of the feeding box (2). The bottom end of the material distribution funnel (12) is fixedly communicated with a discharge pipe (13). The bottom end of the discharge pipe (13) is located above the feeding end of the transportation component.
7. A combined machine for removing pits, juicing, and filling waxberries capable of removing pulp, according to claim 1, wherein The extrusion assembly comprises a support frame (5), the support frame (5) is in an inverted U shape, the bottoms of the two vertical beams of the support frame (5) are fixedly connected to the tops of the two opposite outer side walls of the shell (1), the cross beams of the support frame (5) are fixedly connected to a plurality of multi-stage hydraulic cylinders (6), the piston ends of the plurality of multi-stage hydraulic cylinders (6) are commonly fixedly connected to an extrusion block (42), the extrusion block (42) movably passes through a clearance hole (3) provided on the top wall of the shell (1), the inner bottom wall of the shell (1) is fixedly connected to an extrusion shell (29) through a plurality of supporting legs (31), the extrusion shell (29) is located directly below the extrusion block (42) and is adapted to the extrusion block (42), the bottom wall of the extrusion shell (29) is provided with a plurality of leakage holes, the storage assembly is fixedly connected to the bottom end of the extrusion shell (29), and a feeding funnel (30) is fixedly connected to the middle of the side wall of the extrusion shell (29) near the unloading end of the transport assembly.
8. A waxberry core-removing, juice-extracting and filling integrated machine capable of removing pulp according to claim 7, wherein, The storage assembly comprises a transfer box (32), the transfer box (32) being fixedly connected to the inner bottom wall of the outer shell (1) and the top end being fixedly connected to the bottom end of the extruded outer shell (29); a first liquid outlet pump is arranged inside the transfer box (32); the outlet end of the first liquid outlet pump is fixedly connected to one end of a transfer pipe (33); the other end of the transfer pipe (33) passes through the side wall of the transfer box (32) and enters the liquid box (14); the liquid box (14) is fixedly arranged inside the outer shell (1); a second liquid pump is arranged inside the liquid box (14); the outlet end of the second liquid pump is fixedly connected to one end of a discharge pipe (8); the other end of the discharge pipe (8) passes through the side wall of the liquid box (14) and the side wall of the outer shell (1) and is located above the filling assembly.
9. The one - body machine for removing the pits of bayberries, removing the pulp and filling the juice according to claim 8, wherein, The filling assembly comprises a base (9), a filling motor is fixedly arranged inside the base (9), an output shaft of the filling motor is fixedly connected to a turntable (10), the turntable (10) is coaxially arranged with the base (9), a plurality of containing grooves (11) are provided on the outer edge of the top end of the turntable (10), and the plurality of containing grooves (11) are arranged at equal intervals along the circumference of the outer edge of the turntable (10).
10. A waxberry stone-removing, juicing and filling integrated machine capable of removing pulp according to claim 2, characterized in that, A fixed frame (22) is provided between the upper layer and the lower layer of the conveyor belt (18); the top end and the bottom end of the fixed frame (22) are in frictional contact with the upper layer and the lower layer of the conveyor belt (18) respectively; the fixed frame (22) is fixedly connected to the inner wall of the outer shell (1) via a plurality of connecting rods (21).