Bean grinding and processing device
By designing a bean grinding device including outer end sleeves, discharge sleeves and drive components, the problem that existing devices cannot adjust the grinding degree is solved, and flexible grinding control and crushed bean powder collection is achieved.
Patent Information
- Application Number
- CN202010934941.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-09-08
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2040-09-08
AI Technical Summary
The existing legume grinding device cannot change the degree of grinding and is of poor practicality.
A device including an outer end sleeve, multiple bean drain channels, grinding surface, grinding block, grinding column, grinding column push spring, drive assembly A, material drain sleeve and inner end spring is designed. By driving the grinding column to rotate, combining the coupling of the stop rod and the inner end spherical clip, the grinding degree and speed are adjusted.
It realizes flexible adjustment of the grinding degree and speed of beans to prevent the beans from falling off and facilitates the collection of crushed beans.
Smart Images

Figure CN111956097B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of agricultural machinery processing, and more particularly to a bean grinding and processing device. Background Art
[0002] Bean grinding is a way of deep processing of beans and an important link in the economic transformation of beans. There are many types of beans, and similarly, there are many ways to deep process beans, which in turn leads to many types of related machinery.
[0003] The bean grinding device with patent number CN201721389462.2 includes a bean grinding mechanism, a driving mechanism, a transmission mechanism and a support. The bean grinding mechanism includes a bean grinding bin body and a twisting and grinding assembly; the driving mechanism is used to provide power; the transmission mechanism is arranged in the bean grinding bin body, and is used to transmit the power of the driving mechanism to the twisting and grinding assembly; the driving mechanism is installed in the support, and the twisting and grinding assembly includes an outer cutter head arranged in the bean grinding bin body and an inner cutter head pivotally arranged in the bean grinding bin body, the bean grinding bin body can be detachably mounted on the support, when the bean grinding bin body is mounted on the support, the driving mechanism is connected to the transmission mechanism, and the inner cutter head can be driven to rotate by the driving mechanism. The above-mentioned bean grinding device is detachably arranged in the bean grinding bin body, the support and the driving mechanism, but the disadvantage of this technical solution is that there is no way to change the degree of grinding of the beans, and the practicality is poor. Summary of the Invention
[0004] The object of the present invention is to provide a bean grinding and processing device which can change the grinding degree of beans.
[0005] The purpose of the present invention is achieved through the following technical solutions:
[0006] A bean grinding and processing device, characterized by comprising an outer end sleeve, a plurality of bean discharge channels, a grinding surface, a grinding block, a grinding column, a grinding column push spring, a drive assembly A, a discharge sleeve and an inner end spring;
[0007] A plurality of bean discharge channels are circumferentially arranged on the inner surface of the outer end sleeve, and a grinding surface is arranged on the inner surface of the outer end sleeve;
[0008] The grinding column is slidably connected to the grinding block, and the grinding column push spring is arranged at the inner end of the grinding column and between the grinding column and the grinding block.
[0009] The discharge sleeve is fixedly connected to the drive assembly A;
[0010] The grinding block, grinding column, and grinding column push spring are all arranged at the inner end of the outer end sleeve, and the grinding block and grinding column are rotatably connected to the outer end sleeve. The driving component A drives the grinding column to rotate at the inner end of the outer end sleeve. There is a gap between the grinding surface and the grinding column. The inner end spring is arranged between the grinding column and the outer end sleeve, and the discharge sleeve is connected to the outer end sleeve.
[0011] As a further optimization of the present technical solution, the present invention provides a bean grinding and processing device, which also includes a connecting hole, an inner end rotating column and a discharge chamber. The connecting hole is arranged on the outer end sleeve, the inner end rotating column is fixedly connected to the outer end sleeve, the discharge chamber is arranged at the lower end of the outer end sleeve, and the connecting hole is connected to the discharge chamber, and the inner end spring is sleeve-connected to the inner end rotating column.
[0012] As a further optimization of the present technical solution, a bean grinding and processing device of the present invention also includes a grinding main body component A, which includes a driving column, a matching slot, a driving column slide groove, and a middle-end matching slot. The grinding component A includes a grinding block, a grinding column, and a grinding column push spring. The matching slot is arranged at the upper end of the driving column, and the grinding block is slidingly matched with the driving column slide groove. The middle-end matching slot is arranged at the lower end of the driving column. The driving column is rotatably connected to the inner-end rotating column through the middle-end matching slot. The inner-end spring is arranged between the outer-end sleeve and the driving column. The control assembly A is connected to the driving column, and the driving column is connected to the grinding block.
[0013] As a further optimization of the present technical solution, a bean grinding and processing device of the present invention also includes a control assembly A, which includes a rotating sleeve, a driving connecting rod, a hinged column, an upper end clamping rod, an upper end clamping rod push spring, and an upper end clamping rod slot. The rotating sleeve is rotatably connected to the upper end of the driving column, one end of the driving connecting rod is hingedly connected to the rotating sleeve, and the driving connecting rod is hingedly connected to the hinged column. The driving column slide groove is arranged on the outer wall of the driving column, the upper end clamping rod slot is arranged at the upper end of the outer surface of the driving column, the upper end clamping rod is cooperatively connected with the upper end clamping rod slot, the upper end clamping rod is slidably connected to the rotating sleeve, and the upper end clamping rod push spring is arranged between the upper end clamping rod and the rotating sleeve, and the upper end clamping rod push spring is arranged in the rotating sleeve.
[0014] As a further optimization of the technical solution, the present invention provides a bean grinding and processing device, wherein the driving column slide groove is trapezoidal.
[0015] As a further optimization of the present technical solution, the present invention provides a bean grinding and processing device, characterized in that: there are specifically four driving connecting rods, grinding blocks, hinged columns, and driving column slides, and the driving connecting rods, grinding blocks, hinged columns, and driving column slides are arranged in a one-to-one correspondence.
[0016] As a further optimization of the present technical solution, the present invention provides a bean grinding and processing device, wherein the driving component A includes a fixed outer frame, a slidable sleeve, an input motor, input bevel gears, transmission bevel gears, a middle-end rotating column, and a matching boss. The slidable sleeve is slidably connected to the fixed outer frame, the input motor is fixedly connected to the upper end of the fixed outer frame through a base, the input bevel gears are fixedly connected to the input motor, the transmission bevel gears engage and transmit the input bevel gears, the middle-end rotating column is rotatably connected to the fixed outer frame, one end of the middle-end rotating column is fixedly connected to the transmission bevel gears, the other end of the middle-end rotating column is fixedly connected to the matching boss, the discharge sleeve is fixedly connected to and communicated with the fixed outer frame, the control assembly B is connected to the discharge sleeve, the discharge sleeve is fixedly connected to the outer end sleeve, and the matching boss is matched with the matching slot.
[0017] As a further optimization of the technical solution, the present invention provides a bean grinding and processing device, wherein a shielding ring is provided at the upper end of the fixed outer frame.
[0018] As a further optimization of the present technical solution, the present invention provides a bean grinding and processing device, which also includes a control assembly B, which includes a connecting plate, a driving sleeve, an inner end spherical groove, an inner end spherical clip, a spherical clip push spring, a wedge-shaped driving rod, a wedge-shaped matching rod, a baffle rod, and a baffle rod push spring. The connecting plate is cooperatively connected to the driving sleeve, the connecting plate is fixedly connected to the slidable sleeve, the driving sleeve is slidably connected to the discharge sleeve, the inner end spherical groove is provided on the outer surface of the discharge sleeve, and the inner end spherical clip is It is matched with the inner end spherical groove, the inner end spherical clip is slidably connected to the drive sleeve, the spherical clip push spring is arranged between the inner end spherical clip and the drive sleeve, the wedge-shaped drive rod is fixedly connected to the lower end of the drive sleeve, the wedge-shaped matching rod is matched with the wedge drive rod, the wedge-shaped matching rod is sleeve-connected to the discharge sleeve, the block rod push spring is sleeve-connected to the wedge-shaped matching rod, and the block rod push spring is arranged between the outer surface of the discharge sleeve and the wedge-shaped matching rod, the block rod is fixedly connected to the wedge-shaped matching rod, and the block rod is arranged at the inner end of the discharge sleeve.
[0019] The beneficial effects of the bean grinding and processing device of the present invention are:
[0020] 1. A shielding ring is set on the upper end of the fixed outer frame, which can effectively prevent the beans from falling off.
[0021] 2. The crushed soybean powder falls into the discharge chamber through the connecting hole, making it easy to collect.
[0022] 3. The grinding block is driven by the hinged column to slide up and down along the driving column slot, thereby changing the distance between the grinding block and the outer end sleeve, thereby changing the specifications of the bean halves that the grinding block and the outer end sleeve can adapt to, thereby achieving the adjustment of the bean grinding degree.
[0023] 4. The baffle moves at the inner end of the discharge sleeve, thereby changing the area of the inner end of the discharge sleeve blocked by the baffle, thereby changing the number of beans passing through the inner end of the discharge sleeve per unit time, thereby achieving adjustment of the bean grinding speed.
[0024] 5. By cooperating and connecting the inner end spherical clip and the inner end spherical slot, the sliding position of the drive sleeve on the discharge sleeve is fixed, thereby realizing the control of the number of beans passing through the inner end of the discharge sleeve per unit time, thereby realizing the control of the bean grinding speed. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] The present invention will be further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0026] Figure 1 This is a schematic diagram of the overall structure of a bean grinding and processing device Figure 1 ;
[0027] Figure 2 This is a schematic diagram of the overall structure of a bean grinding and processing device Figure 2 ;
[0028] Figure 3 This is a partial structural diagram of a bean grinding and processing device invented Figure 1 ;
[0029] Figure 4 This is a partial structural diagram of a bean grinding and processing device invented Figure 2 ;
[0030] Figure 5 This is a partial structural diagram of a bean grinding and processing device invented Figure 3 ;
[0031] Figure 6 This is a partial structural diagram of a bean grinding and processing device invented Figure 4 ;
[0032] Figure 7 This is a partial structural diagram of a bean grinding and processing device invented Figure 5 ;
[0033] Figure 8 This is a partial structural diagram of a bean grinding and processing device invented Figure 6 ;
[0034] Figure 9 This is a partial structural diagram of a bean grinding and processing device invented Figure 7 ;
[0035] Figure 10 This is a partial structural diagram of a bean grinding and processing device invented Figure 8 .
[0036] In the figure: outer sleeve 1-1; bean discharge channel 1-2; grinding surface 1-3; connecting hole 1-4; inner rotating column 1-5; discharge chamber 1-6; drive column 2-1; matching slot 2-2; rotating sleeve 2-3; drive connecting rod 2-4; grinding block 2-5; hinged column 2-6; drive column slide 2-7; grinding column 2-8; grinding column push spring 2-9; middle end matching slot 2-10; upper end clamping rod 2-11; upper end clamping rod push spring 2-12; upper end clamping rod slot 2-13 ; Fixed outer frame 3-1; Slidable sleeve 3-2; Input motor 3-3; Input bevel gear 3-4; Transmission bevel gear 3-5; Middle end rotating column 3-6; Matching boss 3-7; Discharge sleeve 3-8; Connecting plate 3-9; Drive sleeve 3-10; Inner end spherical groove 3-11; Inner end spherical clip 3-12; Spherical clip push spring 3-13; Wedge-shaped drive rod 3-14; Wedge-shaped matching rod 3-15; Baffle rod 3-16; Baffle rod push spring 3-17; Inner end spring 4. DETAILED DESCRIPTION
[0037] The present invention will be described in further detail below with reference to the accompanying drawings.
[0038] The fixed connection described in this device refers to fixation by welding, threaded fixing, etc., and different fixing methods are used in combination with different usage environments; the rotating connection refers to the axial fixation of the bearing and rotation of the bearing by baking the bearing on the shaft, providing a spring retaining ring groove on the shaft or the shaft hole, and clamping the elastic retaining ring in the retaining ring groove; the sliding connection refers to the connection by sliding the slider in the slide groove or guide rail, and the slide groove or guide rail is generally stepped to prevent the slider from falling off in the slide groove or guide rail; the hinged connection refers to a connection method by moving on connecting parts such as hinges, pins and short shafts; the required sealing parts are all sealed by sealing rings or O-rings. Specific implementation method one:
[0040] The following combination Figure 1-10 This embodiment describes a bean grinding and processing device, characterized by comprising an outer end sleeve 1-1, a plurality of bean discharge channels 1-2, a grinding surface 1-3, a grinding block 2-5, a grinding column 2-8, a grinding column push spring 2-9, a drive assembly A, a discharge sleeve 3-8, and an inner end spring 4;
[0041] A plurality of bean discharge channels 1-2 are circumferentially arranged on the inner surface of the outer end sleeve 1-1, and a grinding surface 1-3 is arranged on the inner surface of the outer end sleeve 1-1;
[0042] The grinding column 2-8 is slidably connected to the grinding block 2-5, and the grinding column push spring 2-9 is provided at the inner end of the grinding column 2-8, and the grinding column push spring 2-9 is provided between the grinding column 2-8 and the grinding block 2-5.
[0043] The discharge sleeve 3-8 is fixedly connected to the drive assembly A;
[0044] The grinding block 2-5, the grinding column 2-8, and the grinding column push spring 2-9 are all arranged at the inner end of the outer end sleeve 1-1, and the grinding block 2-5 and the grinding column 2-8 are rotatably connected to the outer end sleeve 1-1. The driving component A drives the grinding column 2-8 to rotate at the inner end of the outer end sleeve 1-1. There is a gap between the grinding surface 1-3 and the grinding column 2-8. The inner end spring 4 is arranged between the grinding column 2-8 and the outer end sleeve 1-1, and the discharge sleeve 3-8 is connected to the outer end sleeve 1-1;
[0045] During use, beans are added to the device through the discharge sleeve 3-8, and then the grinding column 2-8 and the grinding block 2-5 are driven to move by the driving component A. The beans are ground through the relative movement between the grinding column 2-8, the grinding block 2-5 and the grinding surface 1-3. Specific implementation method two:
[0047] The following combination Figure 1-10 To explain this embodiment, this embodiment further explains embodiment one, and also includes a connecting hole 1-4, an inner end rotating column 1-5 and a discharge cavity 1-6. The connecting hole 1-4 is provided on the outer end sleeve 1-1, the inner end rotating column 1-5 is fixedly connected to the outer end sleeve 1-1, the discharge cavity 1-6 is provided at the lower end of the outer end sleeve 1-1, and the connecting hole 1-4 is connected to the discharge cavity 1-6, and the inner end spring 4 is sleeve-connected to the inner end rotating column 1-5. Specific implementation method three:
[0049] The following combination Figure 1-10 To explain this embodiment, this embodiment further explains embodiment one, including a grinding main body component A, the grinding main body component A includes a driving column 2-1, a matching slot 2-2, a driving column slide 2-7, and a middle-end matching slot 2-10, the grinding component A includes a grinding block 2-5, a grinding column 2-8, and a grinding column push spring 2-9, the matching slot 2-2 is arranged at the upper end of the driving column 2-1, the grinding block 2-5 is slidably connected with the driving column slide 2-7, the middle-end matching slot 2-10 is arranged at the lower end of the driving column 2-1, the driving column 2-1 is rotatably connected with the inner end rotating column 1-5 through the middle-end matching slot 2-10, the inner end spring 4 is arranged between the outer end sleeve 1-1 and the driving column 2-1, the control assembly A is connected to the driving column 2-1, and the driving column 2-1 is connected to the grinding block 2-5. Specific implementation method four:
[0051] The following combination Figure 1-10This embodiment further describes the embodiment 1, which also includes a control assembly A, which includes a rotating sleeve 2-3, a driving link 2-4, a hinged column 2-6, an upper end clamping rod 2-11, an upper end clamping rod push spring 2-12, and an upper end clamping rod slot 2-13. The rotating sleeve 2-3 is rotatably connected to the upper end of the driving column 2-1, one end of the driving link 2-4 is hingedly connected to the rotating sleeve 2-3, and the hinged connection of the driving link 2-4 is On the hinge column 2-6, the driving column slot 2-7 is set on the outer wall of the driving column 2-1, the upper end card rod slot 2-13 is set at the upper end of the outer surface of the driving column 2-1, the upper end card rod 2-11 is cooperated with the upper end card rod slot 2-13, the upper end card rod 2-11 is slidingly connected with the rotating sleeve 2-3, and the upper end card rod push spring 2-12 is set between the upper end card rod 2-11 and the rotating sleeve 2-3, and the upper end card rod push spring 2-12 is set in the rotating sleeve 2-3. Specific implementation method five:
[0053] The following combination Figure 1-10 This embodiment is described. This embodiment further describes the first embodiment. The driving column slot 2-7 is trapezoidal. Specific implementation method six:
[0055] The following combination Figure 1-10 This embodiment further explains the embodiment 1. The driving connecting rod 2-4, the grinding block 2-5, the hinge column 2-6, and the driving column slot 2-7 are specifically provided with four, and the driving connecting rod 2-4, the grinding block 2-5, the hinge column 2-6, and the driving column slot 2-7 are provided one by one. Specific implementation method seven:
[0057] The following combination Figure 1-10 This embodiment further illustrates the first embodiment and further includes a drive assembly A. The drive assembly A includes a fixed outer frame 3-1, a slidable sleeve 3-2, an input motor 3-3, an input bevel gear 3-4, a transmission bevel gear 3-5, a middle-end rotating column 3-6, and a matching boss 3-7. The slidable sleeve 3-2 is slidably connected to the fixed outer frame 3-1, the input motor 3-3 is fixedly connected to the upper end of the fixed outer frame 3-1 through a base, and the input bevel gear 3-4 is fixedly connected to the input motor 3-3. The transmission bevel gear 3-5 is meshed with the input bevel gear 3-4 for transmission, the middle-end rotating column 3-6 is rotatably connected to the fixed outer frame 3-1, one end of the middle-end rotating column 3-6 is fixedly connected to the transmission bevel gear 3-5, the other end of the middle-end rotating column 3-6 is fixedly connected to the matching boss 3-7, the discharge sleeve 3-8 is fixedly connected to and communicates with the fixed outer frame 3-1, the control assembly B is connected to the discharge sleeve 3-8, the discharge sleeve 3-8 is fixedly connected to the outer end sleeve 1-1, and the matching boss 3-7 is matched with the matching slot 2-2;
[0058] Start the input motor 3-3, and the input bevel gear 3-4 is driven to rotate by the input motor 3-3, and then the transmission bevel gear 3-5 is driven to rotate by the input bevel gear 3-4, and then the middle-end rotating column 3-6 is driven to rotate by the transmission bevel gear 3-5. At the same time, the driving column 2-1 is driven to rotate through the matching connection between the mating boss 3-7 and the mating slot 2-2, and then the driving column 2-1 drives the grinding block 2-5 to rotate through the driving column slot 2-7, and then drives the grinding column 2-8 to rotate. The beans fall into the device through the discharge sleeve 3-8, roll through the bean discharge channel 1-2 and fall between the outer sleeve 1-1 and the grinding block 2-5, and are crushed by the grinding column 2-8. Specific implementation method eight:
[0060] The following combination Figure 1-10 This embodiment is described as further explaining the first embodiment. A shielding ring is provided at the upper end of the fixed outer frame 3 - 1 . Specific implementation method nine:
[0062] The following combination Figure 1-10 Description of this embodiment. This embodiment further describes embodiment 1 and also includes a control assembly B. The control assembly B includes a connecting plate 3-9, a driving sleeve 3-10, an inner end spherical groove 3-11, an inner end spherical clip 3-12, a spherical clip push spring 3-13, a wedge-shaped driving rod 3-14, a wedge-shaped matching rod 3-15, a blocking rod 3-16, and a blocking rod push spring 3-17. The connecting plate 3-9 is connected to the driving sleeve 3-10, the connecting plate 3-9 is fixedly connected to the slidable sleeve 3-2, the driving sleeve 3-10 is slidably connected to the discharge sleeve 3-8, the inner end spherical groove 3-11 is provided on the outer surface of the discharge sleeve 3-8, and the inner end spherical clip 3-12 is matched with the inner end spherical groove 3-11. The inner end spherical clip 3-12 is slidably connected with the drive sleeve 3-10, the spherical clip push spring 3-13 is arranged between the inner end spherical clip 3-12 and the drive sleeve 3-10, the wedge-shaped drive rod 3-14 is fixedly connected to the lower end of the drive sleeve 3-10, the wedge-shaped matching rod 3-15 is matched with the wedge-shaped drive rod 3-14, the wedge-shaped matching rod 3-15 is sleeve-connected with the discharge sleeve 3-8, the block rod push spring 3-17 is sleeve-connected with the wedge-shaped matching rod 3-15, and the block rod push spring 3-17 is arranged between the outer surface of the discharge sleeve 3-8 and the wedge-shaped matching rod 3-15, the block rod 3-16 is fixedly connected to the wedge-shaped matching rod 3-15, and the block rod 3-16 is arranged at the inner end of the discharge sleeve 3-8;
[0063] By cooperating and connecting the inner end spherical clip 3-12 and the inner end spherical slot 3-11, the sliding position of the drive sleeve 3-10 on the discharge sleeve 3-8 is fixed, thereby realizing the control of the number of beans passing through the inner end of the discharge sleeve 3-8 per unit time, thereby realizing the control of the bean grinding speed.
[0064] The working principle of the bean grinding and processing device of the present invention is as follows:
[0065] When in use, the beans to be processed are placed on the top of the driving assembly 3. Since a shielding ring is provided at the upper end of the fixed outer frame 3-1, the beans can be effectively prevented from falling off. At the same time, the beans fall into the device through the discharge sleeve 3-8, and the input motor 3-3 is started. The input motor 3-3 drives the input bevel gear 3-4 to rotate, and then the input bevel gear 3-4 drives the transmission bevel gear 3-5 to rotate, and then the transmission bevel gear 3-5 drives the middle end rotating column 3-6 to rotate, and at the same time, the mating boss 3-7 is connected with the mating slot 2-2, which drives the driving column 2-1 to rotate, and then the driving column 2-1 drives the grinding block 2-5 to rotate through the driving column slide groove 2-7, and then drives the grinding column 2- 8 rotates, and the beans fall into the device through the discharge sleeve 3-8. The beans roll through the bean discharge channel 1-2 and fall between the outer sleeve 1-1 and the grinding block 2-5. The beans are crushed by the grinding column 2-8. At the same time, the crushed bean powder falls into the discharge chamber 1-6 through the connecting hole 1-4, which is convenient for collection. At the same time, the grinding degree of the beans can be adjusted according to actual conditions. The rotating sleeve 2-3 is manually rotated, and the driving connecting rod 2-4 is driven to move through the rotating sleeve 2-3, and the hinged column 2-6 is driven to move through the driving connecting rod 2-4, and the grinding block 2-5 is driven to slide up and down along the driving column slide groove 2-7 through the hinged column 2-6, so that the grinding block 2-5 and the outer end The spacing between the sleeves 1-1 changes, thereby changing the specifications of the broken beans that the grinding block 2-5 and the outer sleeve 1-1 can adapt to, thereby realizing the adjustment of the bean grinding degree; at the same time, the upper end clamping rod 2-11 is connected with the upper end clamping rod clamping groove 2-13, thereby realizing the fixing of the rotation position of the rotating sleeve 2-3, thereby realizing the control of the bean grinding degree; at the same time, the slidable sleeve 3-2 slides up and down along the outer wall of the fixed outer frame 3-1, thereby driving the connecting plate 3-9 to move through the slidable sleeve 3-2, and then driving the driving sleeve 3-10 to slide up and down along the outer wall of the discharge sleeve 3-8 through the connecting plate 3-9, thereby driving the wedge-shaped driving rod 3-14 to drive the driving sleeve 3-10 to slide up and down along the outer wall of the discharge sleeve 3-8. The wedge-shaped matching rod 3-15 slides radially inward and outward along the discharge sleeve 3-8, thereby causing the blocking rod 3-16 to move at the inner end of the discharge sleeve 3-8, thereby causing the area of the inner end of the discharge sleeve 3-8 blocked by the blocking rod 3-16 to change, thereby causing the number of beans passing through the inner end of the discharge sleeve 3-8 per unit time to change, thereby achieving adjustment of the bean grinding speed; at the same time, through the matching connection between the inner end spherical clip 3-12 and the inner end spherical slot 3-11, the sliding position of the drive sleeve 3-10 on the discharge sleeve 3-8 is fixed, thereby achieving control of the number of beans passing through the inner end of the discharge sleeve 3-8 per unit time, thereby achieving control of the bean grinding speed.
[0066] Of course, the above description is not a limitation of the present invention, and the present invention is not limited to the above examples. Changes, modifications, additions or substitutions made by ordinary technicians in this technical field within the essential scope of the present invention also fall within the scope of protection of the present invention.
Claims
1. A bean grinding and processing device, characterized in that: The invention comprises an outer end sleeve (1-1), a plurality of bean discharge channels (1-2), a grinding surface (1-3), a grinding block (2-5), a grinding column (2-8), a grinding column push spring (2-9), a drive assembly A, a discharge sleeve (3-8), an inner end spring (4), and a control assembly A; the plurality of bean discharge channels (1-2) are circumferentially arranged on the inner surface of the outer end sleeve (1-1), and the grinding surface (1-3) is arranged on the inner surface of the outer end sleeve (1-1); the grinding column (2-8) is slidably connected to the grinding block (2-5), the grinding column push spring (2-9) is arranged at the inner end of the grinding column (2-8), and the grinding column push spring (2-9) is arranged between the grinding column (2-8) and the grinding block (2-5); and the discharge sleeve (3-8) is fixedly connected to the drive assembly A; The grinding block (2-5), the grinding column (2-8), and the grinding column push spring (2-9) are all arranged at the inner end of the outer end sleeve (1-1), and the grinding block (2-5) and the grinding column (2-8) are all rotatably connected to the outer end sleeve (1-1). The driving component A drives the grinding column (2-8) to rotate at the inner end of the outer end sleeve (1-1). There is a gap between the grinding surface (1-3) and the grinding column (2-8). The inner end spring (4) is arranged between the grinding column (2-8) and the outer end sleeve (1-1), and the discharge sleeve (3-8) is connected to the outer end sleeve (1-1). The control assembly A comprises a rotating sleeve (2-3), a driving connecting rod (2-4), a hinged column (2-6), an upper end clamping rod (2-11), an upper end clamping rod push spring (2-12), and an upper end clamping rod clamping groove (2-13); the rotating sleeve (2-3) is rotatably connected to the upper end of the driving column (2-1); one end of the driving connecting rod (2-4) is hingedly connected to the rotating sleeve (2-3); the driving connecting rod (2-4) is hingedly connected to the hinged column (2-6); the driving column slide groove (2-7) The upper end clamping rod (2-11) is arranged on the outer wall of the driving column (2-1), the upper end clamping rod slot (2-13) is arranged at the upper end of the outer surface of the driving column (2-1), the upper end clamping rod (2-11) is matched and connected with the upper end clamping rod slot (2-13), the upper end clamping rod (2-11) is slidably connected with the rotating sleeve (2-3), and the upper end clamping rod push spring (2-12) is arranged between the upper end clamping rod (2-11) and the rotating sleeve (2-3), and the upper end clamping rod push spring (2-12) is arranged in the rotating sleeve (2-3).
2. The bean grinding and processing device according to claim 1, characterized in that: The invention also includes a communicating hole (1-4), an inner end rotating column (1-5) and a discharge cavity (1-6); the communicating hole (1-4) is arranged on the outer end sleeve (1-1); the inner end rotating column (1-5) is fixedly connected to the outer end sleeve (1-1); the discharge cavity (1-6) is arranged at the lower end of the outer end sleeve (1-1); the communicating hole (1-4) is communicated with the discharge cavity (1-6); and the inner end spring (4) is sleeve-connected to the inner end rotating column (1-5).
3. The bean grinding and processing device according to claim 1, characterized in that: The invention also includes a grinding body component A, which includes a driving column (2-1), a matching slot (2-2), a driving column slide groove (2-7), and a middle-end matching slot (2-10). The grinding component A includes a grinding block (2-5), a grinding column (2-8), and a grinding column push spring (2-9). The matching slot (2-2) is arranged at the upper end of the driving column (2-1). The grinding block (2-5) is slidably matched with the driving column slide groove (2-7). The middle-end matching slot (2-10) is arranged at the lower end of the driving column (2-1). The driving column (2-1) is rotatably connected to the inner end rotating column (1-5) through the middle end matching slot (2-10). The inner end spring (4) is arranged between the outer end sleeve (1-1) and the driving column (2-1). The control assembly A is connected to the driving column (2-1), and the driving column (2-1) is connected to the grinding block (2-5).
4. The bean grinding and processing device according to claim 3, characterized in that: The driving column sliding groove (2-7) is trapezoidal.
5. The bean grinding and processing device according to claim 2 or claim 3, characterized in that: Specifically, four of the driving connecting rod (2-4), the grinding block (2-5), the hinged column (2-6), and the driving column slide groove (2-7) are provided, and the driving connecting rod (2-4), the grinding block (2-5), the hinged column (2-6), and the driving column slide groove (2-7) are provided in a one-to-one correspondence.
6. The bean grinding and processing device according to claim 1, characterized in that: The driving assembly A comprises a fixed outer frame (3-1), a slidable sleeve (3-2), an input motor (3-3), an input bevel gear (3-4), a transmission bevel gear (3-5), a middle end rotating column (3-6), and a matching boss (3-7); the slidable sleeve (3-2) is slidably connected to the fixed outer frame (3-1); the input motor (3-3) is fixedly connected to the upper end of the fixed outer frame (3-1) via a base; the input bevel gear (3-4) is fixedly connected to the input motor (3-3); the transmission bevel gear (3-5) is fixedly connected to the input bevel gear (3-4); Meshing transmission, the middle end rotating column (3-6) is rotatably connected to the fixed outer frame (3-1), one end of the middle end rotating column (3-6) is fixedly connected to the transmission bevel gear (3-5), the other end of the middle end rotating column (3-6) is fixedly connected to the matching boss (3-7), the discharge sleeve (3-8) is fixedly connected and communicated with the fixed outer frame (3-1), the control assembly B is connected to the discharge sleeve (3-8), the discharge sleeve (3-8) is fixedly connected to the outer end sleeve (1-1), and the matching boss (3-7) is matched with the matching slot (2-2).
7. The bean grinding and processing device according to claim 6, characterized in that: A shielding ring is provided at the upper end of the fixed outer frame (3-1).
8. The bean grinding and processing device according to claim 6, characterized in that: The control assembly B further comprises a connecting plate (3-9), a driving sleeve (3-10), an inner spherical groove (3-11), an inner spherical clip (3-12), a spherical clip push spring (3-13), a wedge-shaped driving rod (3-14), a wedge-shaped matching rod (3-15), a blocking rod (3-16), and a blocking rod push spring (3-17). The connecting plate (3-9) is connected to the driving sleeve (3-10), the connecting plate (3-9) is fixedly connected to the slidable sleeve (3-2), the driving sleeve (3-10) is connected to the discharge sleeve (3-8) in a sliding manner, the inner spherical groove (3-11) is provided on the outer surface of the discharge sleeve (3-8), the inner spherical clip (3-12) is connected to the inner spherical groove (3-11), and the inner spherical clip (3-13) is connected to the inner spherical groove (3-11). (3-12) is slidably connected to the drive sleeve (3-10), the spherical clip push spring (3-13) is arranged between the inner end spherical clip (3-12) and the drive sleeve (3-10), the wedge-shaped drive rod (3-14) is fixedly connected to the lower end of the drive sleeve (3-10), the wedge-shaped matching rod (3-15) is matched with the wedge-shaped drive rod (3-14), the wedge-shaped matching rod (3-15) is sleeve-connected to the discharge sleeve (3-8), the blocking rod push spring (3-17) is sleeve-connected to the wedge-shaped matching rod (3-15), and the blocking rod push spring (3-17) is arranged between the outer surface of the discharge sleeve (3-8) and the wedge-shaped matching rod (3-15), the blocking rod (3-16) is fixedly connected to the wedge-shaped matching rod (3-15), and the blocking rod (3-16) is arranged at the inner end of the discharge sleeve (3-8).
Citation Information
Patent Citations
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