A sugar cane juicer
By designing the transmission and filtration mechanisms of the sugarcane juicer, the problem of the existing sugarcane juicer being large and difficult to move has been solved, realizing convenient and efficient sugarcane juicing and juice filtration, which is suitable for small-batch production.
Patent Information
- Application Number
- CN202211544801.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-02
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2042-12-02
AI Technical Summary
Existing sugarcane juicers are bulky, difficult to move, and complicated to operate, especially electric vertical juicers, which cannot meet the needs for portability and fast juicing.
A sugarcane juicer was designed, comprising a transmission mechanism, a grooved wheel mechanism, a pressing and filtering mechanism, a roller mechanism, a conveying pipe, a connecting rod, a housing, a water valve switch, and a slag discharge port. The motor power is transmitted to the grooved wheel and roller mechanism through a gear and belt transmission system, which, together with the pressing roller and filter, realizes the juicing and filtering of sugarcane.
It achieves convenience and efficiency in sugarcane juicing, enabling quick and portable juicing and filtration of sugarcane juice, and is suitable for small-batch production.
Smart Images

Figure CN116118251B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of food machinery, in particular to a sugar cane juicer. BACKGROUND
[0002] Sugar cane is a crop in temperate and tropical regions, and is one of the main raw materials for producing sucrose. In addition, sugar cane can also be used to extract ethanol as an energy alternative. China is one of the largest sugar cane producing countries in the world, and sugar cane has become a common edible herbaceous plant. People consume it in various ways, and sugar cane juice is one of the favorite drinks of most people. However, sugar cane needs to be juiced from a solid fruit into a liquid juice, and the existing sugar cane juicers are divided into hand-operated juicers and electric juicers. The hand-operated juicer is small in size and easy to move, but it needs to be operated manually, which is time-consuming and labor-intensive. Its production capacity is low, and it is only suitable for small batch production. The electric vertical juicer realizes automation, but it is large in size and not easy to move. Therefore, it is an urgent need to design a sugar cane juicer that is small in size, easy to move and simple to operate. SUMMARY
[0003] The technical problem to be solved by the present application is to provide a sugar cane juicer that can conveniently and quickly juice sugar cane.
[0004] The technical solution for solving the above technical problem is as follows: a sugar cane juicer, comprising: a transmission mechanism, a grooved wheel mechanism, a pressing and filtering mechanism, a roller mechanism, a conveying pipe, a connecting rod, an outer shell, a water valve switch and a residue discharge port, the outer shell is a shell structure, the transmission mechanism and the pressing and filtering mechanism are arranged inside the outer shell, the grooved wheel mechanism, the roller mechanism, the conveying pipe and the connecting rod are arranged at the top end of the outer shell, the residue discharge port is a through hole arranged on the side wall of the outer shell, the water valve switch is connected with the pressing and filtering mechanism after penetrating through the side wall of the outer shell, the transmission mechanism is connected with the grooved wheel mechanism and the pressing and filtering mechanism, the connecting rod is connected with the roller mechanism and the grooved wheel mechanism at the upper and lower ends respectively, the conveying pipe is connected with the roller mechanism, and the conveying pipe is arranged above the pressing and filtering mechanism.
[0005] The beneficial effects of the present application are: the transmission mechanism cooperates with the grooved wheel mechanism and the connecting rod to facilitate the transmission of power for the movement of the roller mechanism, thereby driving the movement of the sugar cane raw materials in the roller mechanism; the conveying pipe is conducive to conveying the sugar cane raw materials in the roller mechanism to the pressing and filtering mechanism; the pressing and filtering mechanism cooperates with the residue discharge port and the water valve switch to facilitate the processes of juicing, filtering, storing and taking out the sugar cane raw materials. The cooperation of the above-mentioned mechanisms and components is conducive to conveniently and quickly juicing the sugar cane raw materials.
[0006] On the basis of the above technical solution, the present application can also be improved as follows.
[0007] Further, the transmission mechanism comprises: a motor, a first pulley, a belt, a second pulley, a first gear, a second gear, a third gear, a fourth gear, a fifth gear, a sixth gear, a seventh gear, an eighth gear, a ninth gear, a tenth gear, an eleventh gear, a twelfth gear, a thirteenth gear, a fourteenth gear, a fifteenth gear, a first main shaft, a second main shaft, a third main shaft, a fourth main shaft, a fifth main shaft, a sixth main shaft, a seventh main shaft, an eighth main shaft and a ninth main shaft; the motor is mounted on the inner wall of the bottom end of the shell, the motor is coaxially connected with the first main shaft through the first pulley, the first pulley is connected with the second pulley through the belt, the second pulley is coaxially connected with the first gear through the second main shaft, the first gear and the second gear are engaged, the second gear is coaxially connected with the third gear through the third main shaft, the third gear and the fourth gear are engaged, the fourth gear is coaxially connected with the fifth gear through the fourth main shaft, the fifth gear and the sixth gear are engaged, the sixth gear is coaxially connected with the seventh gear through the fifth main shaft, the seventh gear and the eighth gear are engaged, the eighth gear is coaxially connected with the ninth gear and the tenth gear through the sixth main shaft, the ninth gear is arranged between the eighth gear and the tenth gear, the tenth gear and the eleventh gear are engaged, the tenth gear and the eleventh gear are conical gears, the ninth gear and the twelfth gear are engaged, the twelfth gear is coaxially connected with the thirteenth gear through the eighth main shaft, the thirteenth gear and the fourteenth gear are engaged, the fourteenth gear and the fifteenth gear are engaged, the fifteenth gear is arranged on the seventh main shaft, the fourteenth gear is arranged on the ninth main shaft, the fifth main shaft and the sixth main shaft are arranged above the seventh main shaft and the eighth main shaft, and the ninth main shaft is arranged below the seventh main shaft and the eighth main shaft.
[0008] The beneficial effect of the above further scheme is that the transmission mechanism can transmit the power provided by the motor to other mechanisms through gears and belts, thereby providing necessary power transmission for the movement and pressing of sugarcane raw materials, and the positions and rotation directions of the fifth main shaft, the sixth main shaft, the seventh main shaft and the eighth main shaft are beneficial to corresponding with the pressing rollers used for juicing.
[0009] Further, the groove wheel mechanism comprises a sixteenth gear, a seventeenth gear, an eighteenth gear, a nineteenth gear, a pushing block, a groove wheel, a tenth main shaft, an eleventh main shaft and a twelfth main shaft, the eleventh gear is coaxially connected with the tenth main shaft and the sixteenth gear, the sixteenth gear and the seventeenth gear are engaged, the seventeenth gear is coaxially connected with the eleventh main shaft and the eighteenth gear, the eighteenth gear and the nineteenth gear are engaged, the nineteenth gear is coaxially connected with the twelfth main shaft and the pushing block, the pushing block is rotationally connected with the groove wheel, and the groove wheel is coaxially connected with the connecting rod and the roller mechanism.
[0010] The beneficial effect of the above further scheme is that the groove wheel mechanism is coaxially connected with the eleventh gear in the transmission mechanism through the tenth main shaft and the sixteenth gear, power is transmitted from the transmission mechanism to the groove wheel mechanism, and is transmitted through a series of gears, and finally transmitted to the roller mechanism through the connecting rod, so that the roller mechanism rotates.
[0011] Further, the pushing block comprises a first rotating plate, a second rotating block, a third rotating plate and a pushing rod, the first rotating plate is an annular plate structure, the third rotating plate is a plate structure, the second rotating block is a block structure, the pushing rod is a rod structure, the upper and lower surfaces of the second rotating block are connected with the lower surface of the third rotating plate and the upper surface of the first rotating plate in a one-to-one correspondence, the inner side wall of the first rotating plate is adaptively connected with the twelfth main shaft, the lower surface of the end of the third rotating plate away from the second rotating block is connected with the pushing rod, the groove wheel is a gear structure with grooves on the outer surface, and the pushing rod is adaptively matched with the grooves on the outer surface of the groove wheel.
[0012] The beneficial effect of the above further scheme is that the components on the pushing block can rotate with the twelfth main shaft, the pushing rod and the groove wheel are adaptively matched in shape, the pushing rod can drive the groove wheel to rotate by a fixed angle every time the pushing rod rotates one circle, and the roller is further driven to rotate by a fixed angle.
[0013] Further, the pressing and filtering mechanism comprises a pressing roller, a filter, a collection container and a support frame, the pressing roller is arranged above the filter, the collection container and the support frame are arranged below the filter, the collection container and the support frame are connected, the support frame is connected with the inner wall of the bottom end of the shell, and the water valve switch is connected with the side wall of the collection container.
[0014] Further, the pressing roller comprises a first pressing roller, a second pressing roller, a third pressing roller and a fourth pressing roller, the first pressing roller, the second pressing roller, the third pressing roller and the fourth pressing roller are all tubular structures, the inner side wall of the first pressing roller is connected to the sixth main shaft away from the sixth gear end, the inner side wall of the second pressing roller is connected to the sixth main shaft away from the ninth gear end, the inner side wall of the third pressing roller is connected to the seventh main shaft away from the fifteenth gear end, and the inner side wall of the fourth pressing roller is connected to the eighth main shaft away from the twelfth gear end.
[0015] Further, the filter comprises a filter groove and a gauze, the filter groove is a funnel-shaped structure with a mesh bottom, the filter groove is arranged below the pressing roller, the gauze is arranged below the filter groove, and the collection container and the support frame are arranged below the gauze.
[0016] The beneficial effect of the above further scheme is that the pressing roller is conducive to juicing the sugarcane raw materials and discharging the sugarcane residues, the filter is conducive to filtering the sugarcane juice in multiple stages to reduce the fine residues in the sugarcane juice, and the collection container and the support frame are conducive to storing the filtered sugarcane juice.
[0017] Further, the roller mechanism comprises an outer ring roller, an inner ring roller and a plurality of material barrels, the outer ring roller is a circular shell structure with an open top, the inner ring roller and the material barrels are both circular tubular structures, the bottom end of the inner ring roller is connected to the inner wall of the bottom end of the outer ring roller, the outer ring roller and the inner ring roller are coaxially arranged, and the material barrels are arranged between the outer ring roller and the inner ring roller and are connected to the outer ring roller and the inner ring roller.
[0018] The beneficial effect of the above further scheme is that the plurality of material barrels are conducive to placing a plurality of sugarcane at one time to improve the efficiency of sugarcane juicing, and the connection of the inner ring roller and the connecting rod is conducive to transmitting the power of the groove wheel mechanism to the roller mechanism to make the roller mechanism rotate.
[0019] Further, the conveying pipe is a tubular structure, the inner diameter of the conveying pipe is adapted to the inner diameter of the material barrel, the top end of the conveying pipe is connected to the bottom end of the outer ring roller, and the bottom end of the conveying pipe penetrates the top end of the outer shell and is arranged above the pressing roller.
[0020] The beneficial effect of the above further scheme is that the conveying pipe is conducive to conveying the sugarcane raw materials in the material barrel to the pressing roller in the pressing and filtering mechanism for juicing during the rotation of the roller device, and the inner diameter of the conveying pipe is adapted to the inner diameter of the material barrel to avoid the situation that the sugarcane cannot pass through the conveying pipe due to its large diameter.
[0021] Further, the connecting rod is a rod structure, the top end of the connecting rod is connected with the inner side wall of the inner ring roller after penetrating through the bottom end of the outer ring roller, and the bottom end of the connecting rod is connected with the groove wheel mechanism.
[0022] The beneficial effect of the further scheme is that the connecting rod is beneficial to transmit the power of the groove wheel mechanism to the roller mechanism, so that the roller mechanism rotates at a fixed angle each time under the action of the power, and then the sugarcane raw materials are sent to the squeezing and filtering mechanism through the conveying pipe. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 The overall structure schematic diagram provided for the embodiment of the application is shown in the figure.
[0024] Figure 2 The internal structure schematic diagram provided for the embodiment of the application is shown in the figure.
[0025] Figure 3 The overall structure top view provided for the embodiment of the application is shown in the figure.
[0026] Figure 4 The roller mechanism schematic diagram provided for the embodiment of the application is shown in the figure.
[0027] Figure 5 The roller mechanism and conveying pipe connection schematic diagram provided for the embodiment of the application is shown in the figure.
[0028] Figure 6 The transmission mechanism structure schematic diagram provided for the embodiment of the application is shown in the figure. Figure 1 ;
[0029] Figure 7 The transmission mechanism structure schematic diagram provided for the embodiment of the application is shown in the figure. Figure 2 ;
[0030] Figure 8 The transmission mechanism structure schematic diagram provided for the embodiment of the application is shown in the figure. Figure 3 ;
[0031] Figure 9 The transmission mechanism structure schematic diagram provided for the embodiment of the application is shown in the figure. Figure 4 ;
[0032] Figure 10 The transmission mechanism structure schematic diagram provided for the embodiment of the application is shown in the figure. Figure 5 ;
[0033] Figure 11 The squeezing and filtering mechanism structure schematic diagram provided for the embodiment of the application is shown in the figure.
[0034] Figure 12 The groove wheel mechanism structure schematic diagram provided for the embodiment of the application is shown in the figure. Figure 1 ;
[0035] Figure 13 The schematic diagram of the sprocket mechanism structure provided by the embodiment of the present application Figure 2
[0036] Figure 14 The schematic diagram of the block pushing structure provided by the embodiment of the present application.
[0037] In the drawings, the components represented by the numbers are listed as follows:
[0038] 1, transmission mechanism; 2, sprocket mechanism; 3, pressing and filtering mechanism; 4, roller mechanism; 5, conveying pipe; 6, connecting rod; 7, shell; 8, water valve switch; 9, slag discharge port; 21, sixteenth gear; 22, seventeenth gear; 23, eighteenth gear; 24, nineteenth gear; 25, block pushing; 26, sprocket; 27, tenth main shaft; 28, eleventh main shaft; 29, twelfth main shaft; 31, press roller; 32, filter; 33, collecting container; 34, support frame; 41, outer ring roller; 42, inner ring roller; 43, material cylinder; 101, motor; 102, first pulley; 103, belt; 104, second pulley; 105, first gear; 106, second gear; 107, third gear; 108, fourth gear; 109, fifth gear; 110, sixth gear; 111, seventh gear; 112, eighth gear; 113, ninth gear; 114, tenth gear; 115, eleventh gear; 116, twelfth gear; 117, thirteenth gear; 118, fourteenth gear; 119, fifteenth gear; 120, first main shaft; 121, second main shaft; 122, third main shaft; 123, fourth main shaft; 124, fifth main shaft; 125, sixth main shaft; 126, seventh main shaft; 127, eighth main shaft; 128, ninth main shaft; 251, first rotating plate; 252, second rotating block; 253, third rotating plate; 254, pushing rod; 311, first press roller; 312, second press roller; 313, third press roller; 314, fourth press roller; 321, filtering groove; 322, gauze. DETAILED DESCRIPTION
[0039] The principles and features of the present application are described below, and the examples are only used to explain the present application, and are not used to limit the scope of the present application.
[0040] As Figures 1 to 3 As shown, a sugarcane juicer comprises a transmission mechanism 1, a grooved wheel mechanism 2, a squeezing and filtering mechanism 3, a roller mechanism 4, a conveying pipe 5, a connecting rod 6, a shell 7, a water valve switch 8 and a residue discharge port 9, the shell 7 is a shell structure, the transmission mechanism 1 and the squeezing and filtering mechanism 3 are arranged inside the shell 7, the grooved wheel mechanism 2, the roller mechanism 4, the conveying pipe 5 and the connecting rod 6 are arranged at the top end of the shell 7, the residue discharge port 9 is a through hole arranged on the side wall of the shell 7, the water valve switch 8 is connected with the squeezing and filtering mechanism 3 after penetrating through the side wall of the shell 7, the transmission mechanism 1 is connected with the grooved wheel mechanism 2 and the squeezing and filtering mechanism 3, the connecting rod 6 is connected with the roller mechanism 4 and the grooved wheel mechanism 2 at the upper and lower ends one by one, the conveying pipe 5 is connected with the roller mechanism 4, and the conveying pipe 5 is arranged above the squeezing and filtering mechanism 3.
[0041] The beneficial effects of the present application are that the transmission mechanism cooperates with the grooved wheel mechanism and the connecting rod to facilitate the transmission of power for the movement of the roller mechanism, thereby driving the movement of the sugarcane raw materials in the roller mechanism, the conveying pipe is conducive to conveying the sugarcane raw materials in the roller mechanism to the squeezing and filtering mechanism, the squeezing and filtering mechanism cooperates with the residue discharge port and the water valve switch to facilitate the processes of juicing, filtering, storing and taking out the sugarcane raw materials. The cooperation of the above-mentioned mechanisms and components facilitates the juicing of the sugarcane raw materials conveniently and quickly.
[0042] Preferably, as Figures 6 to 10As shown, the transmission mechanism 1 comprises: a motor 101, a first pulley 102, a belt 103, a second pulley 104, a first gear 105, a second gear 106, a third gear 107, a fourth gear 108, a fifth gear 109, a sixth gear 110, a seventh gear 111, an eighth gear 112, a ninth gear 113, a tenth gear 114, an eleventh gear 115, a twelfth gear 116, a thirteenth gear 117, a fourteenth gear 118, a fifteenth gear 119, a first main shaft 120, a second main shaft 121, a third main shaft 122, a fourth main shaft 123, a fifth main shaft 124, a sixth main shaft 125, a seventh main shaft 126, an eighth main shaft 127 and a ninth main shaft 128; the motor 101 is mounted on the inner wall of the bottom end of the shell 7, the motor 101 is coaxially connected with the first main shaft 120 and the first pulley 102, the first pulley 102 is connected with the second pulley 104 through the belt 103, the second pulley 104 is coaxially connected with the first gear 105 through the second main shaft 121, the first gear 105 is engaged with the second gear 106, the second gear 106 is coaxially connected with the third gear 107 through the third main shaft 122, the third gear 107 is engaged with the fourth gear 108, the fourth gear 108 is coaxially connected with the fifth gear 109 through the fourth main shaft 123, the fifth gear 109 is engaged with the sixth gear 110, the sixth gear 110 is coaxially connected with the seventh gear 111 through the fifth main shaft 124, the seventh gear 111 is engaged with the eighth gear 112, the eighth gear 112 is coaxially connected with the ninth gear 113 and the tenth gear 114 through the sixth main shaft 125, the ninth gear 113 is arranged between the eighth gear 112 and the tenth gear 114, the tenth gear 114 is engaged with the eleventh gear 115, the tenth gear 114 and the eleventh gear 115 are conical gears, the ninth gear 113 is engaged with the twelfth gear 116, the twelfth gear 116 is coaxially connected with the thirteenth gear 117 through the eighth main shaft 127, the thirteenth gear 117 is engaged with the fourteenth gear 118, the fourteenth gear 118 is engaged with the fifteenth gear 119, the fifteenth gear 119 is arranged on the seventh main shaft 126, the fourteenth gear 118 is arranged on the ninth main shaft 128, the fifth main shaft 124 and the sixth main shaft 125 are arranged above the seventh main shaft 126 and the eighth main shaft 127, and the ninth main shaft 128 is arranged below the seventh main shaft 126 and the eighth main shaft 127.
[0043] Wherein, it is understood that if the motor 101 rotates forward, through the transmission of the belt and the main shaft in the transmission mechanism 1, the first pulley 102, the second pulley 104 and the first gear 105 rotate forward, the second gear 106 and the third gear 107 rotate reversely, the fourth gear 108 and the fifth gear 109 rotate forward, the sixth gear 110, the seventh gear 111 and the fifth main shaft 124 rotate reversely, the sixth main shaft 125 rotates forward, the eighth main shaft 127 rotates reversely, and the seventh main shaft 126 rotates reversely; if the motor 101 reverses, the sixth main shaft 125 reverses, the fifth main shaft 124, the seventh main shaft 126 and the eighth main shaft 127 rotate forward.
[0044] The beneficial effects of the above preferred scheme are that the transmission mechanism can transmit the power provided by the motor to other mechanisms through gears and belts, thereby providing necessary power transmission for the movement and pressing of sugarcane raw materials, and the positions and rotation directions of the fifth main shaft, the sixth main shaft, the seventh main shaft and the eighth main shaft are conducive to forming a correspondence with the pressing roller used for juicing.
[0045] Preferably, as shown in Figure 12 and Figure 13 The groove wheel mechanism 2 comprises a sixteenth gear 21, a seventeenth gear 22, an eighteenth gear 23, a nineteenth gear 24, a push block 25, a groove wheel 26, a tenth main shaft 27, an eleventh main shaft 28 and a twelfth main shaft 29, the eleventh gear 115 is coaxially connected with the tenth main shaft 27 and the sixteenth gear 21, the sixteenth gear 21 and the seventeenth gear 22 are in meshing engagement, the seventeenth gear 22 is coaxially connected with the eleventh main shaft 28 and the eighteenth gear 23, the eighteenth gear 23 and the nineteenth gear 24 are in meshing engagement, the nineteenth gear 24 is coaxially connected with the twelfth main shaft 29 and the push block 25, the push block 25 is rotationally connected with the groove wheel 26, and the groove wheel 26 is coaxially connected with the connecting rod 6 and the roller mechanism 4.
[0046] The beneficial effects of the above preferred scheme are that the groove wheel mechanism is coaxially connected with the eleventh gear in the transmission mechanism through the tenth main shaft and the sixteenth gear, transmits power from the transmission mechanism to the groove wheel mechanism, and transmits power to the roller mechanism through a series of gears and a connecting rod, so as to rotate the roller mechanism.
[0047] Preferably, as shown in Figure 14As shown, the dial block 25 comprises: a first rotating plate 251, a second rotating block 252, a third rotating plate 253 and a dial rod 254, the first rotating plate 251 is an annular plate structure, the third rotating plate 253 is a plate structure, the second rotating block 252 is a block structure, the dial rod 254 is a rod structure, the upper and lower surfaces of the second rotating block 252 are connected to the lower surface of the third rotating plate 253 and the upper surface of the first rotating plate 251 respectively, the inner side wall of the first rotating plate 251 is connected to the twelfth main shaft 29, the lower surface of the end of the dial rod 254 away from the second rotating block 252 is connected to the third rotating plate 253, and the groove wheel 26 is a gear structure with grooves on the outer surface, and the dial rod 254 is matched with the grooves on the outer surface of the groove wheel 26.
[0048] The beneficial effects of the above preferred scheme are that the components on the dial block can rotate with the twelfth main shaft, the shape of the dial rod and the groove wheel is matched, and the dial rod can rotate the groove wheel by a fixed angle every rotation.
[0049] Preferably, as shown in the figure, Figure 11 As shown, the pressing filter mechanism 3 comprises: a press roller 31, a filter 32, a collection container 33 and a support frame 34, the press roller 31 is arranged above the filter 32, the collection container 33 and the support frame 34 are arranged below the filter 32, the collection container 33 and the support frame 34 are connected, the support frame 34 and the inner wall of the bottom end of the shell 7 are connected, and the water valve switch 8 and the side wall of the collection container 33 are connected.
[0050] Preferably, as shown in the figure, Figure 11 As shown, the press roller 31 comprises: a first press roller 311, a second press roller 312, a third press roller 313 and a fourth press roller 314, the first press roller 311, the second press roller 312, the third press roller 313 and the fourth press roller 314 are all tubular structures, the inner side wall of the first press roller 311 is connected to the fifth main shaft 124 away from the end of the sixth gear 110, the inner side wall of the second press roller 312 is connected to the sixth main shaft 125 away from the end of the ninth gear 113, the inner side wall of the third press roller 313 is connected to the seventh main shaft 126 away from the end of the fifteenth gear 119, and the inner side wall of the fourth press roller 314 is connected to the eighth main shaft 127 away from the end of the twelfth gear 116.
[0051] The rotation direction of the first compression roller 311, the second compression roller 312, the third compression roller 313 and the fourth compression roller 314 is the same as the rotation direction of the fifth main shaft 124, the sixth main shaft 125, the seventh main shaft 126 and the eighth main shaft 127, that is, the rotation direction of the second compression roller 312 is opposite to the rotation direction of the first compression roller 311, the third compression roller 313 and the fourth compression roller 314. The reverse rotation of the second compression roller 312 and the first compression roller 311 is beneficial to the pressing of sugarcane, and the same direction rotation of the third compression roller 313 and the fourth compression roller 314 is beneficial to the discharge of the sugarcane residue after juicing. At the same time, the outer surface of the first compression roller 311 is provided with a blade hook, and the outer surface of the second compression roller 312 is provided with vertical lines, which are beneficial to better extract the juice in the sugarcane.
[0052] Preferably, as shown in the first aspect of the present application, Figure 11 As shown in the first aspect of the present application, the filter 32 comprises a filter groove 321 and a gauze 322, the filter groove 321 is a funnel-shaped structure with a mesh bottom, the filter groove 321 is arranged below the compression roller 31, the gauze 322 is arranged below the filter groove 321, and the collection container 33 and the support frame 34 are arranged below the gauze 322.
[0053] The beneficial effects of the above preferred scheme are that the compression roller is beneficial to juice extraction and residue discharge of sugarcane raw materials, the filter is beneficial to multi-stage filtration of sugarcane juice, and the collection container and the support frame are beneficial to storage of filtered sugarcane juice.
[0054] Preferably, as shown in the first aspect of the present application, Figure 4 As shown in the first aspect of the present application, the roller mechanism 4 comprises an outer ring roller 41, an inner ring roller 42 and a plurality of material barrels 43, the outer ring roller 41 is a circular shell structure with an open top, the inner ring roller 42 and the material barrel 43 are both circular pipe structures, the bottom end of the inner ring roller 42 is connected with the inner wall of the bottom end of the outer ring roller 41, the outer ring roller 41 and the inner ring roller 42 are coaxially arranged, and the material barrel 43 is arranged between the outer ring roller 41 and the inner ring roller 42 and is adaptively connected with the outer ring roller 41 and the inner ring roller 42.
[0055] The beneficial effects of the above preferred scheme are that the plurality of material barrels are beneficial to placing a plurality of sugarcane at one time, improving the efficiency of sugarcane juicing, and the adaptive connection of the inner ring roller and the connecting rod is beneficial to power transmission from the groove wheel mechanism to the roller mechanism, so that the roller mechanism rotates.
[0056] Preferably, as shown in the first aspect of the present application, Figure 5As shown, the conveying pipe 5 is a tubular structure. The inner diameter of the conveying pipe 5 is adapted to the inner diameter of the material cylinder 43. The top end of the conveying pipe 5 is connected to the bottom end of the outer ring roller 41. The bottom end of the conveying pipe 5 passes through the top end of the outer shell 7 and is positioned above the pressure roller 31.
[0057] The advantages of adopting the above preferred solution are: the conveying pipe facilitates the transfer of sugarcane raw material in the material cylinder to the pressure roller in the pressing and filtering mechanism for juicing during the rotation of the roller device. The matching of the inner diameter of the conveying pipe with the inner diameter of the material cylinder is to avoid the sugarcane being unable to pass through the conveying pipe due to its excessive diameter.
[0058] Preferred, such as Figure 1 and Figure 2 As shown, the connecting rod 6 is a rod-shaped structure. The top end of the connecting rod 6 passes through the bottom end of the outer ring roller 41 and is adapted to connect with the inner side wall of the inner ring roller 42. The bottom end of the connecting rod 6 is connected to the grooved wheel mechanism 2.
[0059] The advantages of adopting the above preferred solution are: the connecting rod facilitates the transmission of power from the grooved wheel mechanism to the roller mechanism, so that the roller mechanism rotates at a fixed angle each time under the action of power, thereby sending the sugarcane raw material to the pressing and filtering mechanism through the conveying pipe.
[0060] The working process of the present invention will be described below through an embodiment:
[0061] like Figures 1 to 14 As shown, when it is necessary to juice sugarcane, the peeled sugarcane is first placed into multiple material cylinders 43, and then the motor 101 is started. The motor 101 drives the first pulley 102 to rotate. The first pulley 102 drives the second pulley 104 to rotate through the belt 103. The second pulley 104 and the first gear 105 rotate coaxially. The first gear 105 and the second gear 106 mesh and rotate. The second gear 106 and the third gear 107 rotate coaxially. The third gear 107 and the fourth gear 108 mesh and rotate. The fourth gear 108 and the fifth gear 109 rotate coaxially. The fifth gear 109 and the sixth gear 110 mesh and rotate. The sixth gear 110 and the seventh gear 111 rotate coaxially around the fifth main shaft 124. The seventh gear 111 and the eighth gear 112 mesh and rotate. The eighth gear 112 rotates coaxially around the sixth main shaft 125 with the ninth gear 113 and the tenth gear 114.
[0062] At this time, on the one hand, the tenth gear 114 and the eleventh gear 115 mesh and rotate, the eleventh gear 115 and the sixteenth gear 21 coaxially rotate, the sixteenth gear 21 and the seventeenth gear 22 mesh and rotate, the seventeenth gear 22 and the eighteenth gear 23 coaxially rotate, the eighteenth gear 23 and the nineteenth gear 24 mesh and rotate, the nineteenth gear 24 and the block 25 coaxially rotate, the block 25 rotates one fixed angle every time, the block 25 drives the notch wheel 26 to rotate one fixed angle every time, the notch wheel 26 is connected with the inner wall of the inner ring roller 42 through the connecting rod 6, and then drives the material roller 43 to rotate one fixed angle, and the material roller 43 rotates one fixed angle every time, and then the corresponding material roller 43 is coaxial with the conveying pipe 5, and then the sugarcane raw material in the corresponding material roller 43 is sent to the squeezing and filtering mechanism 3.
[0063] On the other hand, the ninth gear 113 and the twelfth gear 116 mesh and rotate, the twelfth gear 116 and the thirteenth gear 117 coaxially rotate around the eighth main shaft 127, the thirteenth gear 117 and the fourteenth gear 118 mesh and rotate, and the fourteenth gear 118 and the fifteenth gear 119 mesh and rotate. Since the fifteenth gear 119 and the third pressure roller 313 are installed on the seventh main shaft 126, the first pressure roller 311 is installed on the fifth main shaft 124, the second pressure roller 312 is installed on the sixth main shaft 125, and the fourth pressure roller 314 is installed on the eighth main shaft 127, when the sugarcane raw material is transmitted from the material roller 43 to above the pressure roller 31, the sugarcane raw material is first squeezed by the first pressure roller 311 and the second pressure roller 312 rotating in opposite directions to squeeze out juice, and then the sugarcane residue is discharged from the residue discharge port 9 by the third pressure roller 313 and the fourth pressure roller 314 rotating in the same direction. The sugarcane juice is filtered through the filter groove 321 and the gauze 322 in turn, and finally flows into the collection container 33 for storage. When the sugarcane juice needs to be taken out, only the water valve switch 8 needs to be opened.
[0064] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0065] In addition, the terms "first", "second", etc. are used only for the purpose of description and do not imply or imply relative importance or imply the number of the technical features indicated. Therefore, the features defined as "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise explicitly specified.
[0066] In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting", "fixing" and the like should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0067] In the present application, unless otherwise explicitly specified and limited, the first feature is "on" or "under" the second feature, which can be direct contact between the first and second features, or indirect contact between the first and second features through an intermediate medium. Moreover, the first feature "above", "above" and "above" the second feature can be directly above or obliquely above the first feature, or only indicate that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" the second feature can be directly below or obliquely below the first feature, or only indicate that the horizontal height of the first feature is less than that of the second feature.
[0068] In the description of the present application, the description of the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms is not necessarily directed to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples. Furthermore, those skilled in the art can combine and combine different embodiments or features of different embodiments or examples described in the present application without contradiction.
[0069] Although the embodiments of the present application have been shown and described above, it is understood that the above embodiments are exemplary and cannot be construed as limiting the present application, and those skilled in the art can make changes, modifications, replacements and variations to the above embodiments within the scope of the present application.
Claims
1. A sugar cane juicer, characterised in that, Include: Transmission mechanism (1), groove wheel mechanism (2), squeezing filter mechanism (3), roller mechanism (4), conveying pipe (5), connecting rod (6), shell (7), water valve switch (8) and slag port (9), the shell (7) is the shell structure, the transmission mechanism (1) and the squeezing filter mechanism (3) are arranged in the shell (7) inside, the groove wheel mechanism (2), the roller mechanism (4), the conveying pipe (5) and the connecting rod (6) are arranged at the top of the shell (7), the slag port (9) is the through hole arranged on the side wall of the shell (7), the water valve switch (8) is connected with the squeezing filter mechanism (3) after penetrating the side wall of the shell (7), the transmission mechanism (1) is connected with the groove wheel mechanism (2) and the squeezing filter mechanism (3) simultaneously, the connecting rod (6) upper and lower ends correspondingly connect the roller mechanism (4) and the groove wheel mechanism (2), the conveying pipe (5) is connected with the roller mechanism (4), the conveying pipe (5) is arranged above the squeezing filter mechanism (3). The squeezing filter mechanism (3) includes: press roll (31), filter (32), collection container (33) and support frame (34), the press roll (31) is horizontally arranged above the filter (32), the collection container (33) and the support frame (34) are arranged below the filter (32), the collection container (33) and the support frame (34) are connected, the support frame (34) and the bottom end inner wall of the shell (7) are connected, the water valve switch (8) and the side wall of the collection container (33) are connected. The roller mechanism (4) includes: outer ring roller (41), inner ring roller (42) and a plurality of material barrels (43), the outer ring roller (41) is a circular shell structure with open top, the inner ring roller (42) and the material barrel (43) are both circular pipe structures, the bottom end of the inner ring roller (42) and the bottom end inner wall of the outer ring roller (41) are connected, the outer ring roller (41) and the inner ring roller (42) are coaxially arranged, the material barrel (43) is arranged between the outer ring roller (41) and the inner ring roller (42) and is adaptively connected with the outer ring roller (41) and the inner ring roller (42). The conveying pipe (5) is a tubular structure, the inner circle diameter of the conveying pipe (5) and the inner circle diameter of the material barrel (43) are adapted, the top end of the conveying pipe (5) is connected with the bottom end of the outer ring roller (41), and the bottom end of the conveying pipe (5) penetrates the top end of the shell (7) and is arranged above the press roll (31).
2. A sugar cane juicer as claimed in claim 1 wherein, The transmission mechanism (1) comprises: a motor (101), a first pulley (102), a belt (103), a second pulley (104), a first gear (105), a second gear (106), a third gear (107), a fourth gear (108), a fifth gear (109), a sixth gear (110), a seventh gear (111), an eighth gear (112), a ninth gear (113), a tenth gear (114), an eleventh gear (115), a twelfth gear (116), a thirteenth gear (117), a fourteenth gear (118), a fifteenth gear (119), a first main shaft (120), a second main shaft (121), a third main shaft (122), a fourth main shaft (123), a fifth main shaft (124), a sixth main shaft (125), a seventh main shaft (126), an eighth main shaft (127) and a ninth main shaft (128); The motor (101) is installed on the inner wall of the bottom end of the shell (7), the motor (101) is coaxially connected with the first main shaft (120) and the first pulley (102), the first pulley (102) is connected with the second pulley (104) through the belt (103), the second pulley (104) is coaxially connected with the first gear (105) through the second main shaft (121), the first gear (105) and the second gear (106) are engaged, the second gear (106) is coaxially connected with the third gear (107) through the third main shaft (122), the third gear (107) and the fourth gear (108) are engaged, the fourth gear (108) is coaxially connected with the fifth gear (109) through the fourth main shaft (123), the fifth gear (109) and the sixth gear (110) are engaged, the sixth gear (110) is coaxially connected with the seventh gear (111) through the fifth main shaft (124), the seventh gear (111) and the eighth gear (112) are engaged, the eighth gear (112) is coaxially connected with the ninth gear (113) and the tenth gear (114) through the sixth main shaft (125), the ninth gear (113) is arranged between the eighth gear (112) and the tenth gear (114), the tenth gear (114) and the eleventh gear (115) are engaged, the tenth gear (114) and the eleventh gear (115) are conical gears, the ninth gear (113) and the twelfth gear (116) are engaged, the twelfth gear (116) is coaxially connected with the thirteenth gear (117) through the eighth main shaft (127), the thirteenth gear (117) and the fourteenth gear (118) are engaged, the fourteenth gear (118) and the fifteenth gear (119) are engaged, the fifteenth gear (119) is arranged on the seventh main shaft (126), the fourteenth gear (118) is arranged on the ninth main shaft (128), the fifth main shaft (124) and the sixth main shaft (125) are arranged above the seventh main shaft (126) and the eighth main shaft (127), and the ninth main shaft (128) is arranged below the seventh main shaft (126) and the eighth main shaft (127).
3. A sugar cane juicer as claimed in claim 2 wherein, The slot wheel mechanism (2) comprises a sixteenth gear (21), a seventeenth gear (22), an eighteenth gear (23), a nineteenth gear (24), a block (25), a slot wheel (26), a tenth main shaft (27), an eleventh main shaft (28) and a twelfth main shaft (29), the eleventh gear (115) is coaxially connected through the tenth main shaft (27) and the sixteenth gear (21), the sixteenth gear (21) and the seventeenth gear (22) are engaged, the seventeenth gear (22) is coaxially connected through the eleventh main shaft (28) and the eighteenth gear (23), the eighteenth gear (23) and the nineteenth gear (24) are engaged, the nineteenth gear (24) is coaxially connected through the twelfth main shaft (29) and the block (25), the block (25) and the slot wheel (26) are rotatably connected, and the slot wheel (26) is coaxially connected through the connecting rod (6) and the roller mechanism (4).
4. A sugar cane juicer as claimed in claim 3 wherein, The block (25) comprises a first rotating plate (251), a second rotating block (252), a third rotating plate (253) and a lever (254), the first rotating plate (251) is an annular plate structure, the third rotating plate (253) is a plate structure, the second rotating block (252) is a block structure, the lever (254) is a rod structure, the upper and lower surfaces of the second rotating block (252) are connected with the lower surface of the third rotating plate (253) and the upper surface of the first rotating plate (251) in a one-to-one correspondence, the inner side wall of the first rotating plate (251) is adaptively connected with the twelfth main shaft (29), the lever (254) is connected with the lower surface of the end of the third rotating plate (253) away from the second rotating block (252), and the slot wheel (26) is a gear structure with a groove on the outer ring surface.
5. A sugar cane juicer as claimed in claim 2 wherein, The pressure roller (31) comprises a first pressure roller (311), a second pressure roller (312), a third pressure roller (313) and a fourth pressure roller (314), the first pressure roller (311), the second pressure roller (312), the third pressure roller (313) and the fourth pressure roller (314) are all tubular structures, the inner side wall of the first pressure roller (311) is adaptively connected with the end of the fifth main shaft (124) away from the sixth gear (110), the inner side wall of the second pressure roller (312) is adaptively connected with the end of the sixth main shaft (125) away from the ninth gear (113), the inner side wall of the third pressure roller (313) is adaptively connected with the end of the seventh main shaft (126) away from the fifteenth gear (119), and the inner side wall of the fourth pressure roller (314) is adaptively connected with the end of the eighth main shaft (127) away from the twelfth gear (116).
6. A sugar cane juicer as claimed in claim 1 wherein, The filter (32) comprises a filter groove (321) and a gauze (322), the filter groove (321) is a funnel structure with a mesh bottom, the filter groove (321) is arranged below the compression roller (31), the gauze (322) is arranged below the filter groove (321), and the collecting container (33) and the support frame (34) are arranged below the gauze (322).
7. A sugar cane juicer as claimed in claim 1 wherein, The connecting rod (6) is a rod structure, the top end of the connecting rod (6) penetrates through the bottom end of the outer ring roller (41) and is connected to the inner side wall of the inner ring roller (42), and the bottom end of the connecting rod (6) is connected to the groove wheel mechanism (2).
Citation Information
Patent Citations
Cane-juice squeezer
CN105361192A
Juicing device for fruit processing
CN110169581A
Dish discharging device and cooking equipment
CN216189379U