CN111501397A - Papermaking filler and preparation method and preparation system thereof - Google Patents

Papermaking filler and preparation method and preparation system thereof Download PDF

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Publication number
CN111501397A
CN111501397A CN202010334455.2A CN202010334455A CN111501397A CN 111501397 A CN111501397 A CN 111501397A CN 202010334455 A CN202010334455 A CN 202010334455A CN 111501397 A CN111501397 A CN 111501397A
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China
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transmission
fixedly connected
frame
gear
support
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CN202010334455.2A
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Chinese (zh)
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李东旭
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Individual
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    • DTEXTILES; PAPER
    • D21PAPER-MAKING; PRODUCTION OF CELLULOSE
    • D21GCALENDERS; ACCESSORIES FOR PAPER-MAKING MACHINES
    • D21G9/00Other accessories for paper-making machines
    • DTEXTILES; PAPER
    • D21PAPER-MAKING; PRODUCTION OF CELLULOSE
    • D21HPULP COMPOSITIONS; PREPARATION THEREOF NOT COVERED BY SUBCLASSES D21C OR D21D; IMPREGNATING OR COATING OF PAPER; TREATMENT OF FINISHED PAPER NOT COVERED BY CLASS B31 OR SUBCLASS D21G; PAPER NOT OTHERWISE PROVIDED FOR
    • D21H17/00Non-fibrous material added to the pulp, characterised by its constitution; Paper-impregnating material characterised by its constitution
    • D21H17/63Inorganic compounds
    • D21H17/67Water-insoluble compounds, e.g. fillers, pigments
    • D21H17/68Water-insoluble compounds, e.g. fillers, pigments siliceous, e.g. clays

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  • Chemical & Material Sciences (AREA)
  • Dispersion Chemistry (AREA)
  • Inorganic Chemistry (AREA)
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Abstract

The invention relates to a papermaking filler, in particular to a papermaking filler and a preparation method and a preparation system thereof, and the method comprises the following steps: placing two different raw materials in two different charging barrels respectively, and simultaneously replacing the models of a screening bottom plate and a screening net frame according to the use requirements; step two: starting a power mechanism, wherein the power mechanism respectively drives a transmission mechanism I and a transmission mechanism II to perform intermittent motion, and the transmission mechanism I drives a replacing mechanism I and a replacing mechanism II to perform motion when moving, so that the replacement of corresponding raw materials and the corresponding type of screening net frame is completed; step three: the second drive mechanism drives the extrusion mechanism to move when moving, the extrusion mechanism polishes and crushes the raw materials in the charging barrel and falls on the screening net frame for further screening, the undersized raw materials are screened, the papermaking filler comprises talcum powder and china clay, the talcum powder is 5-6 parts, the talcum powder passes through a sieve hole of 190-220 meshes, the china clay is 4-5 parts, and the china clay passes through a sieve hole of 190-220 meshes.

Description

Papermaking filler and preparation method and preparation system thereof
Technical Field
The invention relates to a papermaking filler, in particular to a papermaking filler and a preparation method and a preparation system thereof.
Background
For example, the publication number CN201710177790.4 discloses a manufacturing device of a novel papermaking filler and a preparation method of the papermaking filler, which comprises an impurity removal dehydration device, a cooking press-grinding device and a filtering cold-grinding device, wherein waste building wood templates are recovered and then processed into fragments with uniform specifications by a crusher in the impurity removal dehydration device, the fragmented waste building wood templates are removed with impurities by the impurity removal dehydration device and then dehydrated, the wood templates after impurity removal and dehydration are cooked, pressed and ground by the cooking press-grinding device and then reach the filtering cold-grinding device, short fiber pulp is stored into a finished product tank as the papermaking filler, long fiber pulp is also stored into the finished product tank after being levigated, and the waste building wood templates are recovered, processed and used as the papermaking filler produced by an ash paper board; the invention has the disadvantage that different raw materials of different papermaking fillers cannot be rapidly processed into specified sizes according to different use requirements.
Disclosure of Invention
The invention aims to provide a papermaking filler, a preparation method and a preparation system thereof, which can rapidly process different raw materials of different papermaking fillers into specified sizes according to different use requirements.
The purpose of the invention is realized by the following technical scheme:
a papermaking filler preparation system comprises side supports, an outer support, two power mechanisms, a transmission mechanism I, a replacing mechanism II, a shaking mechanism, a transmission mechanism II, an extruding mechanism and a driving mechanism, wherein the side supports are provided with two side supports, the inner side of the outer support penetrates through the two side supports, the power mechanisms are fixedly connected to one side support, the transmission mechanism I is rotatably connected to the two side supports, the power mechanisms drive the transmission mechanism I to perform intermittent motion, the replacing mechanism I is fixedly connected to the upper end of the inner side of the transmission mechanism I, the replacing mechanism II is fixedly connected to the lower end of the inner side of the transmission mechanism I, the two shaking mechanisms are fixedly connected to the replacing mechanism II, the transmission mechanism II is rotatably connected to the two side supports, the power mechanisms drive the transmission mechanism II to perform intermittent motion, the extruding mechanism is slidably connected to the inner side of the outer support, and, a compression spring II is fixedly connected between the extrusion mechanism and the outer bracket, a transmission mechanism II penetrates through the outer bracket to drive the extrusion mechanism to reciprocate up and down, the driving mechanism is fixedly connected to one side bracket, and the driving mechanism and the shaking mechanism positioned on the upper side are in friction transmission.
According to the further optimization of the technical scheme, the papermaking filler preparation system comprises two side supports, wherein the side supports comprise a support I, a side gear I and a side gear II, the upper ends of the inner sides of the two support I are fixedly connected with the side gear I, the lower ends of the inner sides of the two support I are fixedly connected with the side gear II, the outer support comprises two support plates, two hollow columns, a U-shaped support and a containing box, the two support plates are respectively positioned on the outer sides of the two support I, the inner sides of the upper ends of the two support plates are respectively fixedly connected with the hollow columns, the U-shaped support is fixedly connected between the two hollow columns, and the containing box is fixedly connected between the lower ends of the two support plates.
As further optimization of the technical scheme, the papermaking filler preparation system comprises a power mechanism, wherein the power mechanism comprises a motor I and a tooth-lacking gear, the motor I is fixedly connected to a support frame I on one side, the tooth-lacking gear is fixedly connected to an output shaft of the motor I, and the tooth-lacking gear is provided with a half circle of teeth.
As a further optimization of the technical scheme, the papermaking filler preparation system comprises a transmission mechanism I, a transmission shaft II, a hollow shaft I, a hollow shaft II and transmission gears, wherein the transmission shaft I is rotatably connected between two support frames I, the outer sides of the two support frames I are respectively rotatably connected with the transmission shaft II, the two transmission shafts II are respectively in transmission connection with the transmission shaft I, the upper ends of the two support frames I are respectively rotatably connected with the hollow shaft I, the two hollow shafts I are respectively in transmission connection with the two transmission shafts II, a hollow column penetrates through the two hollow shafts I, a side gear I and the hollow shaft I are coaxially arranged, the lower ends of the two support frames I are respectively rotatably connected with the hollow shaft II, the two hollow shafts II are respectively in transmission connection with the two transmission shafts II, a containing box penetrates through the two hollow shafts II, the hollow shafts II and the side gears, the transmission gear is in meshing transmission with the gear with missing teeth, the reference circle diameters of the transmission gear and the gear with missing teeth are equal, and the transmission ratio of the transmission mechanism I is one.
As further optimization of the technical scheme, the papermaking filler preparation system comprises a replacing mechanism I, material discharging barrels, a screening bottom plate, side gears III and linkage rods I, wherein the replacing frames I are fixedly connected to the inner sides of two hollow shafts I, the material discharging barrels are rotatably connected between the two ends of the two replacing frames I, the lower ends of the two material discharging barrels are detachably connected with the screening bottom plate, the side gears III are fixedly connected to the two ends of the two material discharging barrels, the linkage rods I are rotatably connected to the outer sides of the two replacing frames I, the outer ends of the inner sides of the four linkage rods I are respectively in meshing transmission with the two side gears I, the inner ends of the outer sides of the four linkage rods I are respectively in meshing transmission with the four side gears III, and the modulus and the diameter of the side gears I and the diameter of the side gears III are equal.
As a further optimization of the technical scheme, the papermaking filler preparation system comprises a replacing mechanism II, a centering shaft, side gears IV and linkage rods II, wherein the inner sides of two hollow shafts II are fixedly connected with the replacing frame II, the centering shaft is rotatably connected between the two ends of the two replacing frames II, the side gears IV are fixedly connected with the two ends of the two centering shafts, the outer sides of the two replacing frames II are rotatably connected with the two linkage rods II, the outer sides of the inner ends of the four linkage rods II are respectively in meshing transmission with the two side gears II, the inner sides of the outer ends of the four linkage rods II are respectively in meshing transmission with the four side gears IV, and the modulus and the diameter of the side gears II are equal to that of the side gears IV.
According to the further optimization of the technical scheme, the papermaking filler preparation system comprises a shaking bottom frame, a sliding frame, a screening net frame, a pushing shaft, a conical friction wheel I and a cam I, wherein the shaking bottom frame is connected with the sliding frame in a sliding mode, the screening net frame is placed on the sliding frame, a compression spring I is arranged between the sliding frame and the shaking bottom frame, the shaking bottom frame is connected with the pushing shaft in a rotating mode, the conical friction wheel I and the cam I are fixedly connected onto the pushing shaft, the shaking bottom frames are fixedly connected onto two righting shafts, the driving mechanism comprises a motor III and a conical friction wheel II, a conical friction wheel II is fixedly connected onto an output shaft of the motor III, the motor III is fixedly connected onto a supporting frame I on one side, and the conical friction wheel II can be in friction transmission with the conical friction wheel I.
As a further optimization of the technical scheme, the papermaking filler preparation system comprises a transmission mechanism II, a transmission shaft IV and a cam II, wherein the transmission shaft III is rotatably connected between two support frames I and is in transmission connection with a tooth-lacking gear, the transmission shaft IV is rotatably connected in two hollow columns, the cam II is fixedly connected to the middle of the transmission shaft IV, the transmission shaft III is in transmission connection with the transmission shaft IV, an extrusion mechanism comprises a sliding column, a motor II, a spiral body and a spring baffle plate, the sliding column is slidably connected to a U-shaped support, the spring baffle plate is fixedly connected to the sliding column, a compression spring II is arranged between the spring baffle plate and the U-shaped support, the lower end of the sliding column is fixedly connected with the motor II, and the spiral body is fixedly connected to an output shaft of the motor.
A method of making a papermaking filler, the method comprising the steps of:
the method comprises the following steps: placing two different raw materials in two different charging barrels respectively, and simultaneously replacing the models of a screening bottom plate and a screening net frame according to the use requirements, wherein the screening bottom plate controls the upper limit of the size of the raw materials, and the screening net frame controls the lower limit of the size of the raw materials;
step two: starting a power mechanism, wherein the power mechanism respectively drives a transmission mechanism I and a transmission mechanism II to perform intermittent motion, and the transmission mechanism I drives a replacing mechanism I and a replacing mechanism II to perform motion when moving, so that the replacement of corresponding raw materials and the corresponding type of screening net frame is completed;
step three: and the driving mechanism II drives the extrusion mechanism to move when moving, the extrusion mechanism polishes and crushes the raw materials in the charging barrel and falls on the screening net frame for further screening, and the undersized raw materials are screened out.
The papermaking filler comprises 5-6 parts of talcum powder, the talcum powder passes through a sieve hole of 190-220 meshes, 4-5 parts of china clay and the china clay passes through a sieve hole of 190-220 meshes.
The papermaking filler, the preparation method and the preparation system thereof have the beneficial effects that:
according to the papermaking filler and the preparation method and the preparation system thereof, two different raw materials can be respectively placed in two different charging barrels, the models of the screening bottom plate and the screening net frame are changed according to the use requirements, the upper limit of the size of the raw materials is controlled by the screening bottom plate, and the lower limit of the size of the raw materials is controlled by the screening net frame; starting a power mechanism, wherein the power mechanism respectively drives a transmission mechanism I and a transmission mechanism II to perform intermittent motion, and the transmission mechanism I drives a replacing mechanism I and a replacing mechanism II to perform motion when moving, so that the replacement of corresponding raw materials and the corresponding type of screening net frame is completed; and the driving mechanism II drives the extrusion mechanism to move when moving, the extrusion mechanism polishes and crushes the raw materials in the charging barrel and falls on the screening net frame for further screening, and the undersized raw materials are screened out.
Drawings
The invention is described in further detail below with reference to the accompanying drawings and specific embodiments.
In the description of the present invention, it should be noted that the terms "center", "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "top", "bottom", "inner", "outer" and "upright", etc., indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention.
In the description of the present invention, it should be noted that unless otherwise explicitly stated or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected, directly or indirectly connected through an intermediate medium, and may be a communication between two members. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
In addition, in the description of the present invention, the meaning of "a plurality", and "a plurality" is two or more unless otherwise specified.
FIG. 1 is a schematic diagram of the overall structure of a papermaking filler production system of the present invention;
FIG. 2 is a schematic view of the side bracket of the present invention;
FIG. 3 is a schematic diagram of the external frame structure of the present invention;
FIG. 4 is a schematic diagram of a power mechanism according to the present invention;
FIG. 5 is a schematic structural diagram of a transmission mechanism I of the invention;
FIG. 6 is a schematic structural view of a replacing mechanism I of the invention;
FIG. 7 is a schematic structural view of a replacing mechanism II of the invention;
FIG. 8 is a schematic structural diagram of the dithering mechanism of the present invention;
FIG. 9 is a schematic structural diagram of a transmission mechanism II of the present invention;
fig. 10 is a schematic view of the pressing mechanism of the present invention.
In the figure: a side stand 1; a support frame I101; a side gear I102; a side gear II 103; an outer bracket 2; a support plate 201; a hollow column 202; a U-shaped bracket 203; a storage box 204; a power mechanism 3; a motor I301; a missing tooth gear 302; a transmission mechanism I4; a transmission shaft I401; a transmission shaft II 402; a hollow shaft I403; a hollow shaft II 404; a drive gear 405; the replacing mechanism I5; a replacement rack I501; a discharge barrel 502; a screening floor 503; a side gear III 504; a linkage rod I505; a replacing mechanism II 6; replacing the frame II 601; a centralizer shaft 602; a side gear IV 603; a linkage rod II 604; a shaking mechanism 7; a shaking chassis 701; a slide frame 702; a screening frame 703; pushing the shaft 704; a conical friction wheel I705; a cam I706; a transmission mechanism II 8; a transmission shaft III 801; a transmission shaft IV 802; a cam II 803; an extrusion mechanism 9; a sliding column 901; a motor II 902; a spiral body 903; a spring retainer 904; a drive mechanism 10.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
The first embodiment is as follows:
the embodiment is described below by combining fig. 1-10, a papermaking filler preparation system comprises two side supports 1, an outer support 2, a power mechanism 3, a transmission mechanism i 4, an exchange mechanism i 5, an exchange mechanism ii 6, a shaking mechanism 7, a transmission mechanism ii 8, an extrusion mechanism 9 and a driving mechanism 10, wherein the inner sides of the side supports 1 penetrate through the two side supports 1, the power mechanism 3 is fixedly connected to one of the side supports 1, the transmission mechanism i 4 is rotatably connected to the two side supports 1, the power mechanism 3 drives the transmission mechanism i 4 to perform intermittent motion, the upper end of the inner side of the transmission mechanism i 4 is fixedly connected with the exchange mechanism i 5, the lower end of the inner side of the transmission mechanism i 4 is fixedly connected with the exchange mechanism ii 6, the exchange mechanism ii 6 is fixedly connected with the two shaking mechanisms 7, the transmission mechanism ii 8 is rotatably connected to the two side supports 1, the power mechanism 3 drives the transmission mechanism II 8 to move intermittently, the extrusion mechanism 9 is connected to the inner side of the outer support 2 in a sliding mode, the extrusion mechanism 9 is located in the replacing mechanism I5, a compression spring II is fixedly connected between the extrusion mechanism 9 and the outer support 2, the transmission mechanism II 8 penetrates through the outer support 2 to drive the extrusion mechanism 9 to reciprocate up and down, the driving mechanism 10 is fixedly connected to one side support 1, and the driving mechanism 10 and the shaking mechanism 7 located on the upper side conduct friction transmission.
The second embodiment is as follows:
the present embodiment is described below with reference to fig. 1 to 10, and the present embodiment further describes the first embodiment, where the side bracket 1 includes two support frames i 101, two side gears i 102, and two side gears ii 103, the two support frames i 101 are provided, the side gears i 102 are fixedly connected to the upper ends of the inner sides of the two support frames i 101, the side gears ii 103 are fixedly connected to the lower ends of the inner sides of the two support frames i 101, the outer bracket 2 includes two support plates 201, two hollow columns 202, two U-shaped brackets 203, and a storage box 204, the two support plates 201 are respectively located at the outer sides of the two support frames i 101, the hollow columns 202 are fixedly connected to the inner sides of the upper ends of the two support plates 201, the U-shaped brackets 203 are fixedly connected between the two hollow columns 202, and the storage box 204 is fixedly connected.
The third concrete implementation mode:
the embodiment is described below with reference to fig. 1 to 10, and the second embodiment is further described in the present embodiment, the power mechanism 3 includes a motor i 301 and a tooth-missing gear 302, the motor i 301 is fixedly connected to the support frame i 101 on one side, the tooth-missing gear 302 is fixedly connected to an output shaft of the motor i 301, and the tooth-missing gear 302 is provided with half-circle teeth.
The fourth concrete implementation mode:
the third embodiment is further described with reference to fig. 1-10, wherein the transmission mechanism i 4 includes a transmission shaft i 401, a transmission shaft ii 402, a hollow shaft i 403, a hollow shaft ii 404 and a transmission gear 405, the transmission shaft i 401 is rotatably connected between two support frames i 101, the outer sides of the two support frames i 101 are rotatably connected with the transmission shaft ii 402, the two transmission shafts ii 402 are rotatably connected with the transmission shaft i 401, the upper ends of the two support frames i 101 are rotatably connected with the hollow shaft i 403, the two hollow shafts i 403 are respectively and rotatably connected with the two transmission shafts ii 402, the hollow column 202 passes through the two hollow shafts i 403, the side gear i 102 and the hollow shaft i 403 are coaxially arranged, the lower ends of the two support frames i 101 are rotatably connected with the hollow shaft ii 404, the two hollow shafts ii 404 are respectively and rotatably connected with the two transmission shafts ii 402, the containing box 204 penetrates through the two hollow shafts II 404, the hollow shafts II 404 and the side gears II 103 are coaxially arranged, a transmission gear 405 is fixedly connected to the transmission shaft I401, the transmission gear 405 and the tooth-missing gear 302 are in meshed transmission, the reference circle diameters of the transmission gear 405 and the tooth-missing gear 302 are equal, and the transmission ratio of the transmission mechanism I4 is one.
The fifth concrete implementation mode:
this embodiment will be described with reference to fig. 1 to 10, and this embodiment will further describe embodiment four, change mechanism I5 including changing frame I501, blowing section of thick bamboo 502, screening bottom plate 503, side gear III 504 and gangbar I505, the equal fixedly connected with in inboard of two hollow shafts I403 changes frame I501, it is connected with blowing section of thick bamboo 502 all to rotate between two both ends of changing frame I501, the equal detachable connection of lower extreme of two blowing section of thick bamboo 502 has screening bottom plate 503, the equal fixedly connected with side gear III 504 in both ends of two blowing section of thick bamboo 502, two change the outside of frame I501 all to rotate and be connected with gangbar I505, the inboard outer end of four gangbars I505 respectively with two side gear I102 meshing transmissions, the inner in the outside of four gangbars I505 respectively with four side gear III 504 meshing transmissions, the modulus and the diameter of side gear I102 and side gear III 504 equal.
The sixth specific implementation mode:
the embodiment is described below with reference to fig. 1 to 10, and the fifth embodiment is further described, where the replacing mechanism ii 6 includes a replacing frame ii 601, a centering shaft 602, side gears iv 603, and linkage rods ii 604, the inner sides of the two hollow shafts ii 404 are both fixedly connected with the replacing frame ii 601, the two ends of the two replacing frames ii 601 are both rotatably connected with the centering shaft 602, the two ends of the two centering shafts 602 are both fixedly connected with the side gears iv 603, the outer sides of the two replacing frames ii 601 are both rotatably connected with the two linkage rods ii 604, the outer sides of the inner ends of the four linkage rods ii 604 are respectively engaged with the two side gears ii 103 for transmission, the inner sides of the outer ends of the four linkage rods ii 604 are respectively engaged with the four side gears iv 603 for transmission, and the modules and diameters of the side gears ii 103 and the side gears iv 603 are equal.
The seventh embodiment:
this embodiment will be described below with reference to fig. 1 to 10, and this embodiment will further describe embodiment six, the shaking mechanism 7 comprises a shaking underframe 701, a sliding frame 702, a screening net frame 703, a pushing shaft 704, a conical friction wheel I705 and a cam I706, the shaking underframe 701 is connected with the sliding frame 702 in a sliding mode, the screening net frame 703 is placed on the sliding frame 702, a compression spring I is arranged between the sliding frame 702 and the shaking underframe 701, the shaking underframe 701 is connected with the pushing shaft 704 in a rotating mode, the pushing shaft 704 is connected with the conical friction wheel I705 and the cam I706 in a fixed mode, the two righting shafts 602 are both fixedly connected with the shaking underframe 701, the driving mechanism 10 comprises a motor III and a conical friction wheel II, a conical friction wheel II is fixedly connected to an output shaft of the motor III, the motor III is fixedly connected to a support frame I101 on one side, and the conical friction wheel II can be in friction transmission with the conical friction wheel I.
The specific implementation mode is eight:
this embodiment will be described with reference to fig. 1 to 10, and a seventh embodiment will be further described, the driving mechanism II 8 comprises a driving shaft III 801, a driving shaft IV 802 and a cam II 803, the driving shaft III 801 is rotatably connected between two support frames I101, the driving shaft III 801 is in transmission connection with the tooth-missing gear 302, the driving shaft IV 802 is rotatably connected in the two hollow columns 202, the middle of the driving shaft IV 802 is fixedly connected with the cam II 803, the driving shaft III 801 is in transmission connection with the driving shaft IV 802, the squeezing mechanism 9 comprises a sliding column 901, a motor II 902, a spiral body 903 and a spring baffle 904, the sliding column 901 is in sliding connection with the U-shaped support 203, the sliding column 901 is fixedly connected with the spring baffle 904, a compression spring 903 is arranged between the spring baffle 904 and the U-shaped support 203, the lower end of the sliding column 901 is fixedly connected with the motor II 902, and an output shaft of the.
A papermaking filler preparation system method, comprising the steps of:
the method comprises the following steps: two different raw materials are respectively placed in two different charging barrels 502, the models of a screening bottom plate 503 and a screening net frame 703 are changed according to the use requirement, the upper limit of the size of the raw materials is controlled by the screening bottom plate 503, and the lower limit of the size of the raw materials is controlled by the screening net frame 703;
step two: starting the power mechanism 3, wherein the power mechanism 3 respectively drives the transmission mechanism I4 and the transmission mechanism II 8 to perform intermittent motion, and the transmission mechanism I4 drives the replacing mechanism I5 and the replacing mechanism II 6 to perform motion when in motion, so that the replacement of the corresponding raw materials and the corresponding type of the screening net frame 703 is completed;
step three: when the transmission mechanism II 8 moves, the extrusion mechanism 9 is driven to move, the extrusion mechanism 9 polishes and crushes the raw materials in the discharging barrel 502, the raw materials fall on the screening net frame 703 for further screening, and undersize raw materials are screened out.
The papermaking filler comprises 5-6 parts of talcum powder, the talcum powder passes through a sieve hole of 190-220 meshes, 4-5 parts of china clay and the china clay passes through a sieve hole of 190-220 meshes.
The invention relates to a papermaking filler and a preparation method and a preparation system thereof, wherein the working principle is as follows:
when the material discharging device is used, different raw materials are respectively placed in different material discharging barrels 502, the corresponding sieving bottom plate 503 and the corresponding sieving net frame 703 are replaced at the same time, the sieving bottom plate 503 controls the upper limit of the size of the raw materials, the sieving net frame 703 controls the lower limit of the size of the raw materials, if the raw materials need to pass through 190-220-mesh sieve holes, the sieving bottom plate 503 selects 220-mesh sieve holes, and the sieving net frame 703 selects 190-mesh sieve holes; starting a motor I301, starting rotation of an output shaft of the motor I301, driving a tooth-missing gear 302 to rotate by the output shaft of the motor I301, driving a transmission gear 405 and a transmission shaft III 801 to rotate by the tooth-missing gear 302, when the tooth-missing gear 302 and the transmission gear 405 are in meshing transmission, the tooth-missing gear 302 and the transmission shaft III 801 are in meshing transmission, when the tooth-missing gear 302 and the transmission shaft III 801 are in meshing transmission, the tooth-missing gear 302 and the transmission gear 405 are in meshing transmission, half circle teeth are arranged on the tooth-missing gear 302, the reference circle diameters of the transmission gear 405 and the tooth-missing gear 302 are equal, the transmission ratio of a transmission mechanism I4 is one, the tooth-missing gear 302 drives the transmission gear 405 to rotate for half a circle, the transmission gear 405 drives the transmission shaft I401 to rotate for half a circle, the transmission shaft I401 drives the transmission shaft II 402 to rotate for half a circle, the transmission shaft II 402 drives, when the replacing mechanism I5 rotates, because two side gears I102 are fixed, the side gears I102 push the corresponding four linkage rods I505 to rotate, the linkage rods I505 push the corresponding side gears III 504 to rotate, the discharging barrel 502 is ensured to be always in a vertical state when the replacing mechanism I5 rotates, the hollow shaft II 404 drives the replacing mechanism II 6 to rotate for a half circle similarly, when the replacing mechanism II 6 rotates, because the two side gears II 103 are fixed, the side gears II 103 push the corresponding four linkage rods II 604 to rotate, the linkage rods II 604 push the corresponding side gears IV 603 to rotate, the shaking mechanism 7 is ensured to be always in a horizontal state when the replacing mechanism II 6 rotates, the discharging barrel 502 positioned at the outer side corresponds to the shaking mechanism 7, the charging barrel 502 positioned at the inner side corresponds to the shaking mechanism 7, the replacing mechanism I5 and the replacing mechanism II 6 are driven to move when the transmission mechanism I4 moves, the replacement of the corresponding raw material and the corresponding model of the screening frame 703 is completed; when one of the shaking mechanisms 7 moves to the upper end, the driving mechanism 10 comprises a motor III and a conical friction wheel II, a conical friction wheel II is fixedly connected to an output shaft of the motor III, the motor III is fixedly connected to a support frame I101 on one side, the conical friction wheel II can be in friction transmission with a conical friction wheel I705, the driving mechanism 10 drives a sliding frame 702 to slide in a reciprocating mode, the screening net frame 703 is pushed in a reciprocating mode, the driving mechanism II 8 drives an extruding mechanism 9 to move when moving, the extruding mechanism 9 polishes and crushes raw materials in the discharging barrel 502 and further screens the raw materials on the screening net frame 703, undersized raw materials are screened, and the transmission ratio of the driving mechanism II 8 is set to ensure that the whole reciprocating motion period of the extruding mechanism 9 can return to the initial position.
It is to be understood that the above description is not intended to limit the present invention, and the present invention is not limited to the above examples, and that various changes, modifications, additions and substitutions which are within the spirit and scope of the present invention and which may be made by those skilled in the art are also within the scope of the present invention.

Claims (10)

1. The utility model provides a papermaking filler preparation system, includes side support (1), outer support (2), power unit (3), drive mechanism I (4), change mechanism I (5), change mechanism II (6), shake mechanism (7), drive mechanism II (8), extrusion mechanism (9) and actuating mechanism (10), its characterized in that: the side support (1) is provided with two, two side supports (1) are passed through the inner side of the outer support (2), the power mechanism (3) is fixedly connected to one side support (1), the transmission mechanism I (4) is rotatably connected to the two side supports (1), the power mechanism (3) drives the transmission mechanism I (4) to perform intermittent motion, the upper end of the inner side of the transmission mechanism I (4) is fixedly connected with a replacing mechanism I (5), the lower end of the inner side of the transmission mechanism I (4) is fixedly connected with a replacing mechanism II (6), the replacing mechanism II (6) is fixedly connected with two shaking mechanisms (7), the transmission mechanism II (8) is rotatably connected to the two side supports (1), the power mechanism (3) drives the transmission mechanism II (8) to perform intermittent motion, the extruding mechanism (9) is slidably connected to the inner side of the outer support (2), the extruding mechanism (9) is positioned in the replacing mechanism I (5), a compression spring II is fixedly connected between the extrusion mechanism (9) and the outer bracket (2), a transmission mechanism II (8) penetrates through the outer bracket (2) to drive the extrusion mechanism (9) to reciprocate up and down, a driving mechanism (10) is fixedly connected to one side bracket (1), and the driving mechanism (10) and a shaking mechanism (7) positioned on the upper side are in friction transmission.
2. A papermaking filler preparation system according to claim 1, characterized in that: side support (1) is including support frame I (101), side gear I (102) and side gear II (103), support frame I (101) are provided with two, the equal fixedly connected with side gear I (102) in the upper end of two support frame I (101) inboards, the equal fixedly connected with side gear II (103) of lower extreme of two support frame I (101) inboards, outer support (2) are including backup pad (201), hollow post (202), U-shaped support (203) and containing box (204), backup pad (201) are provided with two, two backup pads (201) are located the outside of two support frame I (101) respectively, the equal fixedly connected with hollow post (202) in inboard of two backup pad (201) upper ends, fixedly connected with U-shaped support (203) between two hollow post (202), fixedly connected with containing box (204) between the lower extreme of two backup pad (201).
3. A papermaking filler preparation system according to claim 2, characterized in that: the power mechanism (3) comprises a motor I (301) and a tooth-missing gear (302), the motor I (301) is fixedly connected to the support frame I (101) on one side, the tooth-missing gear (302) is fixedly connected to an output shaft of the motor I (301), and a half-circle tooth is arranged on the tooth-missing gear (302).
4. A papermaking filler preparation system according to claim 3, characterized in that: the transmission mechanism I (4) comprises a transmission shaft I (401), a transmission shaft II (402), a hollow shaft I (403), a hollow shaft II (404) and a transmission gear (405), the transmission shaft I (401) is rotatably connected between the two support frames I (101), the outer sides of the two support frames I (101) are rotatably connected with the transmission shaft II (402), the two transmission shafts II (402) are respectively in transmission connection with the transmission shaft I (401), the upper ends of the two support frames I (101) are respectively in rotation connection with the hollow shaft I (403), the two hollow shafts I (403) are respectively in transmission connection with the two transmission shafts II (402), a hollow column (202) penetrates through the two hollow shafts I (403), a side gear I (102) and the hollow shafts I (403) are coaxially arranged, the lower ends of the two support frames I (101) are respectively in rotation connection with the hollow shaft II (404), the two hollow shafts II (404) are respectively in transmission, the containing box (204) passes two hollow shafts II (404), the hollow shafts II (404) and the side gears II (103) are coaxially arranged, a transmission gear (405) is fixedly connected to the transmission shaft I (401), the transmission gear (405) and the tooth-missing gear (302) are in meshing transmission, the reference circle diameters of the transmission gear (405) and the tooth-missing gear (302) are equal, and the transmission ratio of the transmission mechanism I (4) is one.
5. The papermaking filler preparation system according to claim 4, wherein: the replacing mechanism I (5) comprises a replacing frame I (501), a discharging barrel (502), a screening bottom plate (503), a side gear III (504) and a linkage rod I (505), the equal fixedly connected with in inboard of two hollow shafts I (403) changes frame I (501), it is connected with between the both ends of two change frame I (501) and puts feed cylinder (502) all to rotate, the lower extreme of two feed cylinder (502) all can be dismantled and be connected with screening bottom plate (503), the equal fixedly connected with side gear in both ends of two feed cylinder (502) of putting III (504), the outside of two change frame I (501) all rotates and is connected with gangbar I (505), the outer end in four gangbar I (505) inboards respectively with two side gear I (102) meshing transmission, the inner in four gangbar I (505) outsides respectively with four side gear III (504) meshing transmission, the modulus and the diameter of side gear I (102) and side gear III (504) equal.
6. The papermaking filler preparation system according to claim 5, wherein: change mechanism II (6) including changing frame II (601), right axle (602), side gear IV (603) and gangbar II (604), the equal fixedly connected with in inboard of two hollow shafts II (404) changes frame II (601), it is connected with between the both ends of two change frame II (601) to all rotate and rights axle (602), the equal fixedly connected with side gear IV (603) in both ends of two right axle (602), the outside of two change frame II (601) all rotates and is connected with two gangbar II (604), the outside of four gangbar II (604) inner respectively with two side gear II (103) meshing transmission, the inboard of four gangbar II (604) outer ends respectively with four side gear IV (603) meshing transmission, the modulus and the diameter of side gear II (103) and side gear IV (603) equal.
7. The papermaking filler preparation system according to claim 6, wherein: the shaking mechanism (7) comprises a shaking bottom frame (701), a sliding frame (702), a screening net frame (703), a pushing shaft (704), a conical friction wheel I (705) and a cam I (706), sliding connection has sliding frame (702) on shake chassis (701), screening screen frame (703) have been placed on sliding frame (702), be provided with compression spring I between sliding frame (702) and shake chassis (701), it has promotion axle (704) to rotate on shake chassis (701), fixedly connected with toper friction pulley I (705) and cam I (706) on promotion axle (704), equal fixedly connected with shakes chassis (701) on two centralizing axle (602), actuating mechanism (10) include motor III and toper friction pulley II, fixedly connected with toper friction pulley II on motor III's the output shaft, motor III fixed connection is on support frame I (101) of one side, toper friction pulley II can with toper friction pulley I (705) friction drive.
8. The papermaking filler preparation system according to claim 7, wherein: the transmission mechanism II (8) comprises a transmission shaft III (801), a transmission shaft IV (802) and a cam II (803), the transmission shaft III (801) is rotatably connected between the two support frames I (101), the transmission shaft III (801) is in transmission connection with the tooth-missing gear (302), the transmission shaft IV (802) is rotatably connected in the two hollow columns (202), the cam II (803) is fixedly connected to the middle of the transmission shaft IV (802), the transmission shaft III (801) is in transmission connection with the transmission shaft IV (802), the extrusion mechanism (9) comprises a sliding column (901), a motor II (902), a spiral body (903) and a spring baffle (904), the sliding column (901) is slidably connected to the U-shaped support (203), the spring baffle (904) is fixedly connected to the sliding column (901), a compression spring II is arranged between the spring baffle (904) and the U-shaped support (203), and the lower end of the sliding column (901) is fixedly connected with the motor 902 II (803, and a spiral body (903) is fixedly connected to an output shaft of the motor II (902).
9. A method of making a papermaking filler using the papermaking filler making system of claim 8, wherein: the method comprises the following steps:
the method comprises the following steps: two different raw materials are respectively placed in two different material placing barrels (502), the models of a screening bottom plate (503) and a screening screen frame (703) are changed according to the use requirement, the upper limit of the size of the raw materials is controlled by the screening bottom plate (503), and the lower limit of the size of the raw materials is controlled by the screening screen frame (703);
step two: starting the power mechanism (3), wherein the power mechanism (3) respectively drives the transmission mechanism I (4) and the transmission mechanism II (8) to perform intermittent motion, and the transmission mechanism I (4) drives the replacing mechanism I (5) and the replacing mechanism II (6) to perform motion when moving, so that the replacement of the corresponding raw materials and the corresponding type of screening net frame (703) is completed;
step three: when the transmission mechanism II (8) moves, the extrusion mechanism (9) is driven to move, the extrusion mechanism (9) polishes and crushes the raw materials in the discharging barrel (502) and falls on the screening net frame (703) for further screening, and undersize raw materials are screened out.
10. A papermaking filler prepared using the papermaking filler preparation system of claim 8, wherein: the papermaking filler comprises 5-6 parts of talcum powder and porcelain clay, wherein the talcum powder passes through a sieve hole of 190-220 meshes, the porcelain clay is 4-5 parts, and the porcelain clay passes through a sieve hole of 190-220 meshes.
CN202010334455.2A 2020-04-24 2020-04-24 Papermaking filler and preparation method and preparation system thereof Withdrawn CN111501397A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111939610A (en) * 2020-08-11 2020-11-17 钟锦泉 Health-care medicinal liquor and preparation process and preparation system thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111939610A (en) * 2020-08-11 2020-11-17 钟锦泉 Health-care medicinal liquor and preparation process and preparation system thereof

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Application publication date: 20200807