CN112123186A - Automatic polishing and fluff removing machine for inner wall of reed straw - Google Patents

Automatic polishing and fluff removing machine for inner wall of reed straw Download PDF

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Publication number
CN112123186A
CN112123186A CN202011011111.4A CN202011011111A CN112123186A CN 112123186 A CN112123186 A CN 112123186A CN 202011011111 A CN202011011111 A CN 202011011111A CN 112123186 A CN112123186 A CN 112123186A
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CN
China
Prior art keywords
conveying
assembly
conveying part
motor
reed
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Application number
CN202011011111.4A
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Chinese (zh)
Inventor
曾德伟
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Individual
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Individual
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Priority to CN202011011111.4A priority Critical patent/CN112123186A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B29/00Machines or devices for polishing surfaces on work by means of tools made of soft or flexible material with or without the application of solid or liquid polishing agents
    • B24B29/02Machines or devices for polishing surfaces on work by means of tools made of soft or flexible material with or without the application of solid or liquid polishing agents designed for particular workpieces
    • B24B29/06Machines or devices for polishing surfaces on work by means of tools made of soft or flexible material with or without the application of solid or liquid polishing agents designed for particular workpieces for elongated workpieces having uniform cross-section in one main direction
    • B24B29/08Machines or devices for polishing surfaces on work by means of tools made of soft or flexible material with or without the application of solid or liquid polishing agents designed for particular workpieces for elongated workpieces having uniform cross-section in one main direction the cross-section being circular, e.g. tubes, wires, needles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B41/00Component parts such as frames, beds, carriages, headstocks
    • B24B41/005Feeding or manipulating devices specially adapted to grinding machines
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B41/00Component parts such as frames, beds, carriages, headstocks
    • B24B41/06Work supports, e.g. adjustable steadies
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B55/00Safety devices for grinding or polishing machines; Accessories fitted to grinding or polishing machines for keeping tools or parts of the machine in good working condition
    • B24B55/12Devices for exhausting mist of oil or coolant; Devices for collecting or recovering materials resulting from grinding or polishing, e.g. of precious metals, precious stones, diamonds or the like
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27JMECHANICAL WORKING OF CANE, CORK, OR SIMILAR MATERIALS
    • B27J1/00Mechanical working of cane or the like

Abstract

The invention relates to the technical field of reed straws, and discloses an automatic polishing and fluff removing machine for inner walls of reed straws, which comprises two conveying assemblies, a cutting assembly, a pushing assembly, a fixing assembly, a polishing assembly, an absorbing assembly and a segmenting assembly, wherein the cutting assembly is arranged above the conveying assemblies, the two conveying assemblies consist of a first conveying part and a second conveying part, the first conveying part is arranged below the cutting assembly, the second conveying part is arranged on one side of the first conveying part, the pushing assembly is arranged below the first conveying part, the fixing assemblies are sequentially arranged in the second conveying part, the polishing assembly is arranged on the second conveying part, the absorbing assembly is arranged below the pushing assembly, the segmenting assembly is arranged on the second conveying part, the degree of automation of the automatic polishing and fluff removing machine is high, and can collect the fine hair inside the reed, make fine hair can not drop on the equipment, influence the environment of operation.

Description

Automatic polishing and fluff removing machine for inner wall of reed straw
Technical Field
The invention relates to the technical field of reed straws, in particular to an automatic polishing and fluff removing machine for the inner wall of a reed straw.
Background
The reed is aquatic or hygrophyte tall grass with well developed rhizome. The stalk is upright, 1-3 m high and has 20 sections. The lower part of the leaf sheath is shorter than the upper part of the leaf sheath and longer than the internode of the leaf sheath; the leaf tongue edge is densely provided with a circle of short cilia with the length of about 1 mm, and the cilia can easily fall off; the leaves are in the shape of needles without hairs, and the top ends of the leaves are long and gradually tapered to form filaments. The panicle is large and has a plurality of branches; the spikelets are hairless; the two ridges of the palea are rough; the anther is yellow; the caryopsis is about 1.5 mm in length, and the reeds are various types widely distributed in the world. It is born in rivers, lakes, ponds, ditches and coasts and low wetlands. At present, the reed is widely used for producing the natural straw and has the obvious advantages of environmental protection.
Current equipment is processing into the in-process of straw to the reed, all adopts semi-automatization to add artificial mode to process the reed, and not only inefficiency has increased operating personnel's the amount of labour like this to current equipment is polishing the unhairing to the reed inner wall, can't collect fine hair, thereby makes fine hair can drop to equipment on, influences the environment of operation.
Disclosure of Invention
The invention aims to provide an automatic polishing and fluff removing machine for the inner wall of a reed straw, which aims to solve the technical problems that in the prior art, when reed is processed, an automatic and manual mode is usually adopted, so that the efficiency is low, the labor capacity of operators is increased, and fluff cannot be collected by the existing equipment.
The embodiment of the invention provides an automatic polishing and fluff removing machine for inner walls of reed straws, which comprises two conveying assemblies, a cutting assembly, a pushing assembly, a fixing assembly, a polishing assembly, an absorbing assembly and a segmenting assembly, wherein the cutting assembly is arranged above the conveying assemblies, the two conveying assemblies consist of a first conveying part and a second conveying part, the first conveying part is arranged below the cutting assembly, the second conveying part is arranged on one side of the first conveying part and is positioned on the side of the cutting assembly, the pushing assembly is arranged below the first conveying part and is positioned on the side of the second conveying part, the fixing assemblies are provided with a plurality of fixing assemblies which are respectively arranged in the second conveying part in sequence, the polishing assembly is arranged on the second conveying part, the absorption assembly is arranged below the pushing assembly and corresponds to the polishing assembly, the segmentation assemblies are arranged on the second conveying part symmetrically and are located beside the polishing assembly.
Further, the cutting assembly comprises a support, two bearing boxes, two lifting cylinders, two rectangular accommodating boxes, two first motors, two first lead screws, two first sliding blocks, two fixing blocks, two first rotating motors, a rotating shaft, a gear and a knife, the support is arranged above the first conveying part, openings are formed in two sides of the support, a plurality of racks are arranged at the openings of the support, the two bearing boxes are respectively positioned between the first conveying part and the support, the two lifting cylinders are symmetrically arranged at the top end of the support, the rectangular accommodating boxes are arranged at the upper end of the first conveying part and are connected with the output ends of the two lifting cylinders, the first motors are arranged on one sides of the rectangular accommodating boxes, the first lead screws are arranged in the rectangular accommodating boxes, the first screw rod is connected with the output end of the first motor, two first sliding blocks are arranged, the two first sliding blocks are symmetrically arranged on the first screw rod, the number of the fixed blocks is two, the two fixed blocks are respectively arranged on the two first sliding blocks, two first rotating motors are arranged on two sides of the bracket respectively, two rotating shafts are arranged on the two rotating shafts, the two rotating shafts are respectively provided with an opening of the bracket, and the two rotating shafts are respectively connected with the output ends of the two first rotating motors, the number of the gears is two, the two gears are respectively arranged on the rotating shafts, and the two gears are meshed with the racks on the opening of the bracket respectively, the number of the cutter is two, the two cutters are arranged on the inner side of the bracket respectively, and the two cutters are connected with the two rotating shafts respectively.
Further, the pushing assembly comprises a bearing frame, a supporting platform, a first air cylinder and a push plate, the bearing frame is arranged at the side of the support, the supporting platform is arranged below the first conveying part, a Y-shaped groove is further formed in the supporting platform, the first air cylinder is arranged on the bearing frame, the push plate is arranged on one side of the bearing frame and is connected with the output end of the first air cylinder, and the push plate corresponds to the Y-shaped groove.
Further, the polishing assembly comprises two second lead screws, two lifting motors, two lifting plates, a sliding rail, a movable plate, a second cylinder, a second motor and a polishing head, the two second lead screws are arranged on the second conveying part respectively, the two lifting motors are arranged on the second lead screws respectively, the two output ends of the two lifting motors are connected with the second lead screws, the lifting plates are arranged above the second conveying part and connected with the second lead screws, the sliding rail is arranged on the lifting plates, the movable plate is arranged on the sliding rail, the second cylinder is arranged on one side of the sliding rail and connected with the movable plate, the second motor is arranged in the sliding rail and connected with the movable plate, and the polishing head is arranged on one side of the sliding rail and connected with the output end of the second motor.
Furthermore, the segmentation assembly comprises a plurality of segmentation assemblies, the plurality of segmentation assemblies are sequentially arranged on the second conveying component respectively, the plurality of segmentation assemblies comprise a third lead screw, a third motor, a moving block, a fourth motor and a saw blade, the third lead screw comprises a plurality of third lead screws, the third lead screws are arranged on the second conveying component respectively and are located on one side of the lifting plate, the third motors are arranged on the third lead screws respectively, the moving block is located above the second conveying component and is connected with the third lead screw, the fourth motor is arranged on one side of the moving block and is connected with the moving block, and the saw blade is arranged on one side of the moving block and is connected with the output end of the fourth motor.
Further, the absorption assembly comprises a fixed platform, a slide way, a third cylinder, a push block, a dust suction port and a bearing cylinder, wherein the fixed platform is arranged at the lower end of the supporting platform, the slide way is arranged on the fixed platform, the third cylinder is arranged on one side of the slide way, the push block is arranged in the slide way and is connected with the output end of the third cylinder, the dust suction port is arranged in the slide way and is connected with the push block, the bearing cylinder is arranged on one side of the supporting platform, and the bearing cylinder is communicated to the dust suction port.
Further, fixed subassembly has a plurality of, a plurality of fixed subassembly is arranged in proper order respectively and is set up on second conveyor components, a plurality of fixed subassembly comprises second rotating electrical machines, fourth lead screw, guide bar, second slider and stop block, the second rotating electrical machines sets up in one side of second conveyor components, the fourth lead screw sets up in second conveyor components, the guide bar has two, two the guide bar sets up respectively in the both sides of fourth lead screw, the second slider has two, two the second slider sets up respectively on fourth lead screw and the guide bar, the stopper has two, two the stopper sets up respectively on the second slider.
Furthermore, the number of the conveying assemblies is two, the two conveying assemblies are composed of a first conveying part and a second conveying part, the first conveying part is arranged below the cutting assembly, the second conveying part is arranged on one side of the first conveying part and is positioned beside the cutting assembly, the first conveying part and the second conveying part are composed of a supporting frame, a first baffle, a third rotating motor, a roller shaft, a first belt wheel, a first belt, a conveying belt, a fixing frame, a second baffle, a fourth rotating motor, a roller, a second belt wheel, a second belt and a bearing box, the supporting frame is arranged on two sides of the support frame, the number of the first baffle is two, the two first baffles are respectively arranged on the top end of the supporting frame, the third rotating motor is arranged on one side of the first baffles, the number of the roller shaft is two, the two roller shafts are respectively arranged on two sides of the first baffle and connected with the output end of the third rotating motor, the number of the first belt pulleys is two, the two first belt pulleys are respectively arranged on the roller shafts, the first belt is respectively sleeved on the two first belt pulleys, the conveying belt is sleeved on the two roller shafts, the conveying belt is provided with a partition plate, the fixing frame is arranged at the side of the pushing assembly, the second baffle is respectively arranged at the top end of the fixing frame, the fourth rotating motor is respectively arranged at one side of the second baffle, the number of the rollers is a plurality, the rollers are respectively arranged in the second baffle in sequence and connected with the output end of the fourth rotating motor, the number of the second belt pulleys is a plurality, the number of the second belt pulleys are respectively arranged at one end of the rollers, the number of the second belt pulleys is a plurality, the second belts are sequentially sleeved on the second belts, and the bearing box is arranged at the tail end of the second baffle.
Compared with the prior art, the invention has the beneficial effects that:
firstly, when the reed polishing device is used, the reed is placed on the first conveying component by an operator, the reed is conveyed to the position below the cutting component by the first conveying component, the reed is fixed by the cutting component, then the head end and the tail end of the reed are cut, the sizes of the reed are consistent, the reed can be better processed for the polishing component, the absorption component and the segmentation component, the reed is moved to the pushing component by the first conveying component after being cut by the cutting component, then the reed is pushed to the second conveying component by the pushing component, the reed is moved to the fixing component by the second conveying component, the reed is fixedly clamped by the fixing component, a stable working environment is provided for the polishing component and the absorption component, the inner wall of the reed is rotated and polished by the polishing component, and the roughness inside the reed is reduced to be more rounded, the inside fine hair of reed is absorbed and loaded by the absorption assembly again, collect fine hair, prevent that fine hair from dropping on the equipment, influence the environment of equipment operation, the below department of segmentation subassembly is carried to the reed with second conveying part, fix the centre gripping to the reed through fixed subassembly again, the segmentation subassembly is carried out the segmentation to the reed again, make single reed can divide into several sections, accomplish to process into the straw to the reed, thereby with this effectual solution among the prior art add reed man-hour, all adopt automatic with artifical mode, so not only inefficiency has increased operating personnel's the amount of labour, and current equipment can't collect fine hair when polishing the reed inner wall unhairing, thereby make fine hair drop on the equipment, influence the technical problem of environment of operation.
Secondly, the invention is provided with a cutting component, when in use, an operator places the reed on a first conveying component, the reed is moved to the lower part of a rectangular containing box through the conveying component, then the lifting cylinder is started, the rectangular containing box is driven to lift downwards through the lifting cylinder, a first motor is started, the lead screw is driven to rotate through the first motor, the lead screw drives a fixed block arranged on a slide block, the reed is fixed through the fixed block, a stable cutting environment is provided for the knife when the reed is cut, then the first rotating motor is started, a rotating shaft is driven to rotate through the first rotating motor, then the gear and the knife are driven to rotate through the rotating shaft, and then the gear and the rack are matched, so that the knife can be driven to lift upwards and downwards to cut the head end and the tail end of the reed, the length of the reed is kept consistent, the polishing component, the absorbing component and the segmenting component can better process the reed into a straw, and loading the cut reed waste through a bearing box.
Thirdly, the reed is moved to the supporting platform through the first conveying part when the reed pushing device is used, the reed can fall onto the supporting platform more quickly and accurately through the Y-shaped groove, the first air cylinder is started, the pushing plate is driven to push forwards through the first air cylinder, and the reed is pushed to the second conveying part accurately through the pushing plate.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and other drawings can be obtained by those skilled in the art without creative efforts.
FIG. 1 is a schematic representation of the three-dimensional structure of the present invention;
FIG. 2 is a schematic view of a transfer assembly according to the present invention;
FIG. 3 is an enlarged view of the point A in FIG. 2;
FIG. 4 is an enlarged view of the point B in FIG. 2;
FIG. 5 is a schematic view of a cutting assembly according to the present invention;
FIG. 6 is a schematic view of a partial structure of the cutting assembly of the present invention;
FIG. 7 is a schematic view of a pushing assembly according to the present invention;
FIG. 8 is a schematic view of a fixing member according to the present invention;
FIG. 9 is a schematic diagram of a polishing assembly according to the present invention;
FIG. 10 is a schematic view of an absorbent assembly according to the present invention;
FIG. 11 is a schematic view of a segmented assembly according to the present invention.
Reference numerals: the conveying assembly 1, the first conveying part 11, the supporting frame 111, the first baffle 112, the third rotating motor 113, the roller shaft 114, the first belt pulley 115, the first belt 116, the conveying belt 117, the second conveying part 12, the fixing frame 121, the second baffle 122, the fourth rotating motor 123, the roller 124, the second belt pulley 125, the second belt 126, the carrying box 127, the cutting assembly 2, the support frame 21, the carrying box 22, the lifting cylinder 23, the rectangular containing box 24, the first motor 25, the first screw rod 26, the first slider 27, the fixing block 28, the first rotating motor 29, the rotating shaft 291, the gear 292, the knife 293, the pushing assembly 3, the carrying frame 31, the supporting platform 32, the first cylinder 33, the pushing plate 34, the fixing assembly 4, the second rotating motor 41, the fourth screw rod 42, the guide rod 43, the second slider 44, the stopper 45, the polishing assembly 5, the second screw rod 51, the lifting motor 52, the device comprises a lifting plate 53, a sliding rail 54, a moving plate 55, a second air cylinder 56, a second motor 57, a polishing head 58, an absorption assembly 6, a fixed platform 61, a slideway 62, a third air cylinder 63, a pushing block 64, a dust suction port 65, a bearing cylinder 66, a segmentation assembly 7, a third screw rod 71, a third motor 72, a moving block 73, a fourth motor 74 and a saw blade 75.
Detailed Description
The technical solutions of the present invention will be described clearly and completely with reference to the accompanying drawings, and it should be understood that the described embodiments are some, but not all embodiments of the present invention.
The components of embodiments of the present invention generally described and illustrated in the figures herein may be arranged and designed in a wide variety of different configurations. Thus, the following detailed description of the embodiments of the present invention, presented in the figures, is not intended to limit the scope of the invention, as claimed, but is merely representative of selected embodiments of the invention.
All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it should be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Referring to fig. 1 to 11, an embodiment of the present invention provides an automatic polishing and fluff removing machine for inner walls of reed straws, comprising a conveying assembly 1, two cutting assemblies 2, a pushing assembly 3, a fixing assembly 4, a polishing assembly 5, an absorbing assembly 6 and a segmenting assembly 7, wherein the cutting assembly 2 is arranged above the conveying assembly 1, the two conveying assemblies 1 are composed of a first conveying part 11 and a second conveying part 12, the first conveying part 11 is arranged below the cutting assembly 2, the second conveying part 12 is arranged on one side of the first conveying part 11, the second conveying part 12 is arranged on the side of the cutting assembly 2, the pushing assembly 3 is arranged below the first conveying part 11, the pushing assembly 3 is arranged on the side of the second conveying part 12, the fixing assembly 4 is provided with a plurality of components, the fixed components 4 are respectively arranged in the second conveying part 12 in sequence, the polishing component 5 is arranged on the second conveying part 12, the absorbing component 6 is arranged below the pushing component 3, the absorbing component 6 corresponds to the polishing component 5, the segmented components 7 are provided in a plurality, the segmented components 7 are respectively symmetrically arranged on the second conveying part 12, the segmented components 7 are arranged beside the polishing component 5, when in use, reeds are placed on the first conveying part 11 through an operator, the reeds are conveyed to the position below the cutting component 2 through the first conveying part 11, the reeds are firstly fixed by the cutting component 2, then the head ends and the tail ends of the reeds are cut, so that the sizes of the reeds are consistent, and the reeds can be better processed for the polishing component 5, the absorbing component 6 and the segmented components 7, the reed is moved to the pushing component 3 through the first conveying component 11 after being cut by the cutting component 2, then the reed is pushed to the second conveying component 12 through the pushing component 3, the reed is moved to the fixing component 4 through the second conveying component 12, the reed is fixedly clamped through the fixing component 4, a stable working environment is provided for the polishing component 5 and the absorption component 6, the inner wall of the reed is rotationally polished through the polishing component 5, the roughness in the reed is reduced and becomes more rounded, the fluff in the reed is absorbed and loaded through the absorption component 6, the fluff is collected to prevent the fluff from falling onto equipment and affecting the operation environment of the equipment, the reed is conveyed to the lower part of the segmenting component 7 through the second conveying component 12, the reed is fixedly clamped again through the fixing component 4, and then the reed is segmented through the segmenting component 7, make single reed can divide into several sections, accomplish and process into the straw to the reed to add man-made mode to the reed with this effectual solution among the prior art, all adopt automation to add artifical mode usually, so not only inefficiency and increased operating personnel's the amount of labour, and current equipment is polishing the reed inner wall when unhairing, can't collect fine hair, thereby make fine hair can drop to equipment on, influence the technical problem of the environment of operation.
Preferably, the cutting assembly 2 comprises a bracket 21, a bearing box 22, a lifting cylinder 23, a rectangular accommodating box 24, a first motor 25, a first screw rod 26, a first slide block 27, a fixed block 28, a first rotating motor 29, a rotating shaft 291, a gear 292 and a knife 293, wherein the bracket 21 is arranged above the first conveying component 11, openings are formed in both sides of the bracket 21, a plurality of racks are arranged at the openings of the bracket 21, two bearing boxes 22 are provided, the two bearing boxes 22 are respectively positioned between the first conveying component 11 and the bracket 21, two lifting cylinders 23 are provided, the two lifting cylinders 23 are symmetrically arranged on the top end of the bracket 21, the rectangular accommodating box 24 is arranged at the upper end of the first conveying component 11, the rectangular accommodating box 24 is connected with the output end of the lifting cylinder 23, the first motor 25 is arranged on one side of the rectangular accommodating box 24, the first lead screw 26 is disposed in the rectangular accommodating box 24, and the first lead screw 26 is connected to the output end of the first motor 25, there are two first sliders 27, two first sliders 27 are symmetrically disposed on the first lead screw 26, there are two fixed blocks 28, two fixed blocks 28 are respectively disposed on the two first sliders 27, there are two first rotating motors 29, two first rotating motors 29 are respectively disposed on both sides of the bracket 21, there are two rotating shafts 291, two rotating shafts 291 are respectively disposed at the opening of the bracket 21, and two rotating shafts 291 are respectively connected to the output ends of the two first rotating motors 29, there are two gears 292, two gears 292 are respectively disposed on the rotating shafts 291, and the two gears 292 are respectively engaged with the rack on the opening of the bracket 21, the two data knives 293 are respectively arranged on the inner side of the bracket 21, and the two data knives 293 are respectively connected with the two rotating shafts 291, when in use, an operator places the reeds on the first conveying part 11, the reeds are moved to the position below the rectangular containing box 24 through the conveying part, the lifting cylinder 23 is started, the rectangular containing box 24 is driven to lift downwards through the lifting cylinder 23, the first motor 25 is started, the lead screw is driven to rotate through the first motor 25, the lead screw drives the fixed block 28 arranged on the slide block, the reeds are fixed through the fixed block 28, a stable cutting environment is provided for the data knives 293 to cut the reeds, the first rotating motor 29 is started, the rotating shaft 291 is driven to rotate through the first rotating motor 29, the rotating shaft 291 drives the gear 292 and the data knives 293 to rotate, and the gear 292 and the rack are matched, thereby can drive according to sword 293 and go up and down to cut the head end and the tail end of reed, make the length of reed keep unanimous, for polishing subassembly 5, absorption component 6 and segmentation component 7 can be better process into the straw to the reed, load the reed waste material that has cut through bearing box 22.
Preferably, the pushing assembly 3 includes a bearing frame 31, a supporting platform 32, a first air cylinder 33 and a push plate 34, the bearing frame 31 is disposed at the side of the support 21, the supporting platform 32 is disposed below the first conveying component 11, a Y-shaped groove is further disposed on the supporting platform 32, the first air cylinder 33 is disposed on the bearing frame 31, the push plate 34 is disposed on one side of the bearing frame 31, the push plate 34 is connected with an output end of the first air cylinder 33, the push plate 34 corresponds to the Y-shaped groove, when in use, the reeds are moved onto the supporting platform 32 through the first conveying component 11, the reeds can fall onto the supporting platform 32 more quickly and accurately through the Y-shaped groove, and the first air cylinder 33 is restarted to drive the push plate 34 to push forwards through the first air cylinder 33, so that the push plate 34 accurately pushes the reeds onto the second conveying component 12.
Preferably, the polishing assembly 5 includes two second screws 51, two lifting motors 52, two lifting plates 53, two sliding rails 54, a moving plate 55, two air cylinders 56, two motors 57 and a polishing head 58, the two second screws 51 are respectively disposed on the second conveying member 12, the two lifting motors 52 are respectively disposed on the second screws 51, and output ends of the two lifting motors 52 are connected with the second screws 51, the lifting plate 53 is disposed above the second conveying member 12 and connected with the second screws 51, the sliding rails 54 are disposed on the lifting plates 53, the moving plate 55 is disposed on the sliding rails 54, the second air cylinders 56 are disposed on one side of the sliding rails 54 and connected with the moving plate 55, the second motor 57 is disposed inside the sliding rails 54 and connected with the moving plate 55, the polishing head 58 is disposed on one side of the sliding rails 54 and connected with output ends of the second motors 57, when the reed polishing device is used, the lifting motor 52 is started, the lifting plate 53 on the second screw rod 51 is driven by the lifting motor 52 to lift to a position flush with the reed, the second air cylinder 56 is started to push the moving plate 55 forwards, the moving plate 55 drives the second motor 57 to move along the direction of the slide rail 54, the polishing head 58 is driven by the second motor 57 to polish the inside of the reed, and the roughness of the inside of the reed is reduced to be more rounded.
Preferably, there are several segment assemblies 7, several segment assemblies 7 are respectively and sequentially arranged on the second conveying part 12, several segment assemblies 7 are composed of a third lead screw 71, a third motor 72, a moving block 73, a fourth motor 74 and a saw blade 75, several third lead screws 71 are respectively arranged on the second conveying part 12 and located at one side of the lifting plate 53, the third motors 72 are respectively arranged on the third lead screws 71, the moving block 73 is located above the second conveying part 12 and connected with the third lead screw 71, the fourth motor 74 is arranged at one side of the moving block 73 and connected with the moving block 73, the saw blade 75 is arranged at one side of the moving block 73 and connected with the output end of the fourth motor 74, when in use, the third motor 72 drives the moving block 73 on the third lead screw 71 to move up and down, the fourth motor 74 drives the saw blade 75 to rotate to segment the reeds, so that the single reed can be divided into several segments.
Preferably, the absorption assembly 6 comprises a fixed platform 61, a slide way 62, a third cylinder 63, a push block 64, a dust suction opening 65 and a bearing cylinder 66, the fixed platform 61 is arranged at the lower end of the supporting platform 32, the slide way 62 is arranged on the fixed platform 61, the third cylinder 63 is arranged at one side of the slide way 62, the push block 64 is arranged inside the slide way 62 and connected with the output end of the third cylinder 63, the dust suction opening 65 is arranged inside the slide way 62 and connected with the push block 64, the bearing cylinder 66 is arranged at one side of the supporting platform 32, the bearing cylinder 66 is communicated with the dust suction opening 65, when in use, the reed is fixed on the second conveying part 12 through the fixed assembly 4, the third cylinder 63 is started to drive the push block 64 to move forwards to insert the dust suction opening 65 into the reed, fluff inside the reed is absorbed into the bearing cylinder 66 through the dust suction opening 65, the fluff is treated in a centralized way through the bearing cylinder 66, so that the fluff is prevented from falling onto the equipment and affecting the operation environment of the equipment.
Preferably, there are a plurality of the fixed assemblies 4, the plurality of the fixed assemblies 4 are respectively arranged on the second conveying part 12 in sequence, the plurality of the fixed assemblies 4 are composed of a second rotating motor 41, a fourth screw rod 42, two guide rods 43, two second sliders 44 and limit blocks 45, the second rotating motor 41 is arranged on one side of the second conveying part 12, the fourth screw rod 42 is arranged in the second conveying part 12, the two guide rods 43 are arranged on two sides of the fourth screw rod 42, respectively, there are two second sliders 44, the two second sliders 44 are arranged on the fourth screw rod 42 and the guide rods 43, respectively, the two limit blocks 45 are arranged on the second sliders 44, when in use, reeds are conveyed to the second conveying part 12 through the pushing assembly 3, the fourth motor 74 is started to drive the second sliders 44 on the fourth screw rod 42 to move, the reed is fixedly clamped by the limiting block 45 on the second sliding block 44, a stable working environment is provided for the polishing component 5 and the absorbing component 6, a guiding effect is provided when the second sliding block 44 is moved by the guide rod 43, and the reed processing is not influenced because the second sliding block 44 cannot deviate when being moved.
Preferably, the conveying assemblies 1 have two, two conveying assemblies 1 are composed of a first conveying part 11 and a second conveying part 12, the first conveying part 11 is disposed below the cutting assembly 2, the second conveying part 12 is disposed at one side of the first conveying part 11, and the second conveying part 12 is located at the side of the cutting assembly 2, the first conveying part 11 and the second conveying part 12 are composed of a supporting frame 111, a first baffle 112, a third rotating motor 113, a roller shaft 114, a first pulley 115, a first belt 116, a conveying belt 117, a fixing frame 121, a second baffle 122, a fourth rotating motor 123, a roller 124, a second pulley 125, a second belt 126, and a carrying box 127, the supporting frame 111 is disposed at two sides of the supporting frame 21, the first baffle 112 has two, the two first baffles 112 are disposed at the top end of the supporting frame 111 respectively, the third rotating electric machine 113 is arranged at one side of the first baffle plate 112, there are two roller shafts 114, the two roller shafts 114 are respectively arranged at two sides of the first baffle plate 112 and connected with the output end of the third rotating electric machine 113, there are two first belt pulleys 115, the two first belt pulleys 115 are respectively arranged on the roller shafts 114, the first belt 116 is respectively sleeved on the two first belt pulleys 115, the conveying belt 117 is sleeved on the two roller shafts 114, and the conveying belt 117 is provided with a baffle plate, the fixing frame 121 is arranged at the side of the pushing assembly 3, the second baffle plate 122 is respectively arranged at the top end of the fixing frame 121, the fourth rotating electric machine 123 is respectively arranged at one side of the second baffle plate 122, there are a plurality of rollers 124, and the rollers 124 are respectively arranged in the second baffle plate 122 in sequence and connected with the output end of the fourth rotating electric machine 123, the number of the second pulleys 125 is several, the number of the second pulleys 125 is respectively arranged at one end of the roller 124, the number of the second belts 126 is several, the number of the second belts 126 is respectively sleeved on the number of the second pulleys 125 in sequence, the bearing box 127 is arranged at the end of the second baffle 122, when in use, a reed is placed on the conveyor belt 117 by an operator, the reed is separated by the baffle on the conveyor belt 117, the third rotating motor 113 is started to drive the roller shaft 114 to rotate, the first pulley 115 is matched with the first belt 116, so that the conveyor belt 117 drives the reed to move to the pushing assembly 3, the reed is moved to the roller 124 by the pushing assembly 3, the fourth rotating motor 123 is started to drive the roller 124 to rotate, and the second pulleys 125 are matched with the second belts 126, so that the roller 124 moves the reed to the bearing box 127, the reeds are loaded and bagged through the loading box 127.
The working principle is as follows: when the device is used, the reeds are placed on the first conveying part 11 by an operator, the reeds are conveyed to the position below the cutting component 2 through the first conveying part 11, the reeds are fixed by the cutting component 2, then the head ends and the tail ends of the reeds are cut, the sizes of the reeds are consistent, the reeds can be better processed for the polishing component 5, the absorption component 6 and the segmentation component 7, the reeds are moved to the pushing component 3 through the first conveying part 11 after being cut by the cutting component 2, then the reeds are pushed to the second conveying part 12 through the pushing component 3, the reeds are moved to the fixing component 4 through the second conveying part 12, the reeds are fixedly clamped through the fixing component 4, a stable working environment is provided for the polishing component 5 and the absorption component 6, and then the output ends of the reeds are rotated and polished to the inner walls through the polishing component 5, make the roughness reduction of the inside of reed become more mellow and full, the inside fine hair of reed is absorbed the loading by the output of absorption subassembly 6 again, thereby can collect fine hair, prevent that fine hair from dropping on the equipment, influence the environment of equipment operation, the below department of segmentation subassembly 7 is carried with the reed to rethread second conveying component 12, fix the centre gripping to the reed again through fixed subassembly 4, segment the reed through segmentation subassembly 7, make the reed can divide into several sections, obtain required reed straw, rethread roller 124 on the second conveying component 12 removes the unloading with the reed straw to bearing box 127 on, bear the weight of the bagging-off to the reed straw through bearing box 127, accomplish the packing to the reed straw.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit the same; while the invention has been described in detail and with reference to the foregoing embodiments, it will be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; and the modifications or the substitutions do not make the essence of the corresponding technical solutions depart from the scope of the technical solutions of the embodiments of the present invention.

Claims (8)

1. The automatic polishing and fluff removing machine for the inner wall of the reed straw is characterized by comprising a conveying assembly (1), a cutting assembly (2), a pushing assembly (3), a fixing assembly (4), a polishing assembly (5), an absorbing assembly (6) and a segmenting assembly (7), wherein the cutting assembly (2) is arranged above the conveying assembly (1), the conveying assembly (1) is provided with two conveying assemblies (1), the conveying assembly (1) consists of a first conveying part (11) and a second conveying part (12), the first conveying part (11) is arranged below the cutting assembly (2), the second conveying part (12) is arranged on one side of the first conveying part (11), the second conveying part (12) is positioned on the side of the cutting assembly (2), the pushing assembly (3) is arranged below the first conveying part (11), and pushing away subassembly (3) and being located the side of second conveyor means (12), fixed subassembly (4) have a plurality of, a plurality of fixed subassembly (4) are arranged in second conveyor means (12) respectively in proper order, polishing subassembly (5) set up on second conveyor means (12), absorption subassembly (6) set up in the below that pushes away subassembly (3), and absorption subassembly (6) correspond with polishing subassembly (5), segmentation subassembly (7) have a plurality of, a plurality of segmentation subassembly (7) are the symmetry respectively and set up on second conveyor means (12), and a plurality of segmentation subassembly (7) are located the side of polishing subassembly (5).
2. The automatic polishing and fluff removing machine for the inner wall of the reed straw as claimed in claim 1, wherein the cutting assembly (2) comprises a bracket (21), a bearing box (22), a lifting cylinder (23), a rectangular accommodating box (24), a first motor (25), a first screw rod (26), a first slider (27), a fixed block (28), a first rotating motor (29), a rotating shaft (291), a gear (292) and a knife (293), the bracket (21) is arranged above the first conveying component (11), openings are formed in two sides of the bracket (21), a plurality of racks are arranged at the openings of the bracket (21), the two bearing boxes (22) are provided, the two bearing boxes (22) are respectively arranged between the first conveying component (11) and the bracket (21), the two lifting cylinders (23) are provided, and the two lifting cylinders (23) are symmetrically arranged on the top end of the bracket (21), the rectangular containing box (24) is arranged at the upper end of the first conveying part (11), the rectangular containing box (24) is connected with the output end of the lifting cylinder (23), the first motor (25) is arranged on one side of the rectangular containing box (24), the first screw rod (26) is arranged in the rectangular containing box (24), the first screw rod (26) is connected with the output end of the first motor (25), two first sliding blocks (27) are arranged, two first sliding blocks (27) are symmetrically arranged on the first screw rod (26), two fixed blocks (28) are arranged, two fixed blocks (28) are respectively arranged on the two first sliding blocks (27), two first rotating motors (29) are arranged, two first rotating motors (29) are respectively arranged on two sides of the bracket (21), and two rotating shafts (291) are arranged, the two rotating shafts (291) are respectively provided with an opening of the bracket (21), the two rotating shafts (291) are respectively connected with output ends of the two first rotating motors (29), the number of the gears (292) is two, the two gears (292) are respectively arranged on the rotating shafts (291), the two gears (292) are respectively meshed with racks on the opening of the bracket (21), the number of the knife carriers (293) is two, the two knife carriers (293) are respectively arranged on the inner side of the bracket (21), and the two knife carriers (293) are respectively connected with the two rotating shafts (291).
3. The automatic polishing and fluff removing machine for the inner wall of the reed straw as claimed in claim 2, wherein the pushing assembly (3) comprises a bearing frame (31), a supporting platform (32), a first air cylinder (33) and a pushing plate (34), the bearing frame (31) is arranged beside the support (21), the supporting platform (32) is arranged below the first conveying part (11), a Y-shaped groove is further arranged on the supporting platform (32), the first air cylinder (33) is arranged on the bearing frame (31), the pushing plate (34) is arranged on one side of the bearing frame (31), the pushing plate (34) is connected with the output end of the first air cylinder (33), and the pushing plate (34) corresponds to the Y-shaped groove.
4. The automatic polishing and fluff removing machine for the inner wall of the reed straw as claimed in claim 1, wherein the polishing assembly (5) comprises two second screws (51), two lifting motors (52), two lifting plates (53), two sliding rails (54), a moving plate (55), two air cylinders (56), two motors (57) and a polishing head (58), the two second screws (51) are respectively arranged on the second conveying member (12), the two lifting motors (52) are respectively arranged on the second screws (51), the output ends of the two lifting motors (52) are connected with the second screws (51), the lifting plate (53) is arranged above the second conveying member (12) and connected with the second screws (51), the sliding rails (54) are arranged on the lifting plate (53), the movable plate (55) is arranged on the slide rail (54), the second air cylinder (56) is arranged on one side of the slide rail (54) and connected with the movable plate (55), the second motor (57) is arranged in the slide rail (54) and connected with the movable plate (55), and the polishing head (58) is arranged on one side of the slide rail (54) and connected with the output end of the second motor (57).
5. The automatic polishing and fluff removing machine for the inner wall of the reed straw as claimed in claim 4, wherein the plurality of segment assemblies (7) are provided, the plurality of segment assemblies (7) are sequentially arranged on the second conveying member (12), the plurality of segment assemblies (7) are composed of a third screw rod (71), a third motor (72), a moving block (73), a fourth motor (74) and a saw blade (75), the plurality of third screw rods (71) are provided on the second conveying member (12) and located on one side of the lifting plate (53), the third motors (72) are provided on the third screw rods (71), the moving block (73) is located above the second conveying member (12) and connected with the third screw rod (71), the fourth motor (74) is provided on one side of the moving block (73) and connected with the moving block (73), the saw blade (75) is arranged on one side of the moving block (73) and is connected with the output end of the fourth motor (74).
6. The automatic polishing and de-fluff machine for inner wall of reed straw as claimed in claim 3, the absorption component (6) comprises a fixed platform (61), a slideway (62), a third cylinder (63), a push block (64), a dust suction port (65) and a bearing cylinder (66), the fixed platform (61) is arranged at the lower end of the supporting platform (32), the slide way (62) is arranged on the fixed platform (61), the third cylinder (63) is arranged on one side of the slide way (62), the push block (64) is arranged in the slide way (62) and is connected with the output end of the third cylinder (63), the dust suction opening (65) is arranged inside the slideway (62) and is connected with the push block (64), the carrying cylinder (66) is arranged on one side of the supporting platform (32), and the carrying cylinder (66) is communicated to the dust suction port (65).
7. The automatic polishing and fluff removing machine for the inner wall of the reed straw as claimed in claim 1, wherein the number of the fixing assemblies (4) is several, the several fixing assemblies (4) are respectively arranged on the second conveying member (12) in sequence, the several fixing assemblies (4) are composed of a second rotating motor (41), a fourth screw rod (42), a guide rod (43), a second slider (44) and a limit block (45), the second rotating motor (41) is arranged on one side of the second conveying member (12), the fourth screw rod (42) is arranged in the second conveying member (12), the number of the guide rods (43) is two, the two guide rods (43) are respectively arranged on two sides of the fourth screw rod (42), the number of the second slider (44) is two, the two second sliders (44) are respectively arranged on the fourth screw rod (42) and the guide rod (43), the number of the limiting blocks (45) is two, and the two limiting blocks (45) are respectively arranged on the second sliding block (44).
8. The automatic polishing and fluff removing machine for the inner wall of the reed straw as claimed in claim 2, wherein the number of the conveying assemblies (1) is two, the two conveying assemblies (1) are composed of a first conveying part (11) and a second conveying part (12), the first conveying part (11) is arranged below the cutting assembly (2), the second conveying part (12) is arranged on one side of the first conveying part (11), the second conveying part (12) is arranged on the side of the cutting assembly (2), and the first conveying part (11) and the second conveying part (12) are composed of a support frame (111), a first baffle plate (112), a third rotating motor (113), a roller shaft (114), a first belt pulley (115), a first belt (116), a conveying belt (117), a fixing frame (121), a second baffle plate (122), a fourth rotating motor (123), Roller (124), second belt pulley (125), second belt (126) and bearing box (127) constitute, support frame (111) sets up the both sides at support (21), first baffle (112) have two, two first baffle (112) set up respectively on the top of support frame (111), third rotating electrical machines (113) set up the one side at first baffle (112), roller (114) have two, two roller (114) set up respectively in first baffle (112) both sides and are connected with the output of third rotating electrical machines (113), first belt pulley (115) have two, two first belt pulley (115) set up respectively on roller (114), first belt (116) overlap respectively on two first belt pulley (115), conveyer belt (117) overlap and establish on two roller (114), and the conveyor belts (117) are respectively provided with a clapboard, the fixed frame (121) is arranged at the side of the pushing component (3), the second baffle plates (122) are respectively arranged at the top ends of the fixed frames (121), the fourth rotating motors (123) are respectively arranged at one sides of the second baffle plates (122), a plurality of rollers (124) are arranged in the second baffle (122) in sequence and are connected with the output end of a fourth rotating motor (123), a plurality of second belt pulleys (125) are arranged, the second belt pulleys (125) are respectively arranged on one end of the roller (124), the second belts (126) are provided with a plurality of second belts (126) which are sequentially sleeved on the second belts (125) respectively, and the bearing box (127) is arranged at the tail end of the second baffle plate (122).
CN202011011111.4A 2020-09-23 2020-09-23 Automatic polishing and fluff removing machine for inner wall of reed straw Withdrawn CN112123186A (en)

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CN113142950A (en) * 2021-03-11 2021-07-23 杭州颐盛贸易有限公司 Plant straw extraction element based on cattail

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