JP2021045737A - Environment-friendly crushing agitation system for coal production - Google Patents

Environment-friendly crushing agitation system for coal production Download PDF

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JP2021045737A
JP2021045737A JP2019239929A JP2019239929A JP2021045737A JP 2021045737 A JP2021045737 A JP 2021045737A JP 2019239929 A JP2019239929 A JP 2019239929A JP 2019239929 A JP2019239929 A JP 2019239929A JP 2021045737 A JP2021045737 A JP 2021045737A
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rod
crushing
wall
transmission
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斯冬鳳
Dongfeng Si
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C17/00Disintegrating by tumbling mills, i.e. mills having a container charged with the material to be disintegrated with or without special disintegrating members such as pebbles or balls
    • B02C17/002Disintegrating by tumbling mills, i.e. mills having a container charged with the material to be disintegrated with or without special disintegrating members such as pebbles or balls with rotary cutting or beating elements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C17/00Disintegrating by tumbling mills, i.e. mills having a container charged with the material to be disintegrated with or without special disintegrating members such as pebbles or balls
    • B02C17/16Mills in which a fixed container houses stirring means tumbling the charge
    • B02C17/163Stirring means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C17/00Disintegrating by tumbling mills, i.e. mills having a container charged with the material to be disintegrated with or without special disintegrating members such as pebbles or balls
    • B02C17/18Details
    • B02C17/24Driving mechanisms

Abstract

To provide an environment-friendly crushing agitation system for coal production.SOLUTION: In an environment-friendly crushing agitation system for coal production, a crushing box is included; a treatment space is provided in the crushing box; a revolving plate is slidably connected to the treatment space; four transmission spaces opened downward are provided to be centrosymmetric in the revolving plate; a crushing device is provided in the transmission spaces; the crushing device includes a transmission shaft rotatably connected to an inner wall at a side apart from a symmetrical center in the transmission space and a revolving tub being provided at the transmission shaft and positioned in the transmission space; compression crushing is achieved by revolving the revolving tub; a connection space opened toward the symmetrical center is provided in the revolving tub; an agitation device is provided in the connection space; the agitation device includes twelve pressing rods slidably connected to the inner wall of the connection space and aligned to be centrosymmetric; and coal crushed by the pressing rods can be agitated.SELECTED DRAWING: Figure 1

Description

本願発明は環境に優しい石炭の製造技術分野に関し、具体的には環境に優しい石炭の製造用の粉砕撹拌系統に関する。 The present invention relates to the technical field of producing environmentally friendly coal, and specifically to a pulverizing and stirring system for producing environmentally friendly coal.

社会の発展につれ、生活環境に対する注目度が高くなり、従来の環境に優しい石炭は無煙、清潔な排出、十分な燃焼などの長所を有し、生活において幅広く使用されている。現在の環境に優しい石炭の製造過程において、石炭塊の粉砕が中で重要な一環である。石炭塊を直接に使用できないため、一定の粒度に粉砕してからこそ有効に利用できる。現在は主にジョークラッシャー又はロールクラッシャーを使って粉砕を行うが、粉砕効果が悪く、粒度が依然として大きく、後期の燃焼品質に影響する。本願発明は上記問題を解決できる。 With the development of society, attention to the living environment has increased, and conventional eco-friendly coal has advantages such as smokelessness, clean discharge, and sufficient combustion, and is widely used in daily life. Crushing coal ingots is an important part of the current environmentally friendly coal manufacturing process. Since coal ingots cannot be used directly, they can be effectively used only after being crushed to a certain particle size. Currently, crushing is mainly performed using a jaw crusher or roll crusher, but the crushing effect is poor, the particle size is still large, and it affects the combustion quality in the later stage. The present invention can solve the above problems.

中国特許出願公開第106733017号明細書Chinese Patent Application Publication No. 106733017

技術問題:
現在は主にジョークラッシャー又はロールクラッシャーを使って粉砕を行うが、粉砕効果が悪く、粒度が依然として大きく、後期の燃焼品質に影響する。
Technical problem:
Currently, crushing is mainly performed using a jaw crusher or roll crusher, but the crushing effect is poor, the particle size is still large, and it affects the combustion quality in the later stage.

環境に優しい石炭の製造用の粉砕撹拌系統であって、砕け箱を含み、前記砕け箱の中には処理空間が設置され、前記処理空間の中には旋転板がスライド可能に連結され、前記旋転板の中には下方に開口した四つの伝動空間が中心対称に設置され、前記伝動空間の中には粉砕装置が設置され、前記粉砕装置は前記伝動空間において対称中心から離れた側の内壁と回転可能に連結された伝動軸と、前記伝動軸に設置されかつ前記伝動空間の中に位置する旋転桶とを含み、前記旋転桶が転がることで圧搾粉砕を実現し、前記旋転桶の中には対称中心に向かって開口した連結空間が設置され、前記連結空間の中には攪拌装置が設置され、前記攪拌装置は、前記連結空間の内壁とスライド可能に連結されかつ中心対称に配列された十二個の押圧棒を含み、前記押圧棒により粉砕された石炭を撹拌でき、前記旋転板の中には前記伝動空間の中心に位置しかつ上方に開口した開き溝が形成され、前記開き溝の中には攪拌装置を制御できるスイッチ部品が設置され、前記スイッチ部品は前記開き溝の内壁とスライド可能に連結されかつ前記連結空間の中まで延びたガイドスライド棒を含み、前記ガイドスライド棒が前記押圧棒と当接しており、前記押圧棒は前記ガイドスライド棒の形により上下にスライドでき、前記開き溝の上側端面には制限桶が固定的に設置され、前記制限桶には駆動空間が設置され、前記駆動空間の中には前記駆動空間を貫通した駆動軸が回転可能に連結され、前記駆動軸には差動装置が設置され、前記差動装置は前記駆動空間の内壁と噛み合うように連結された左右対称の旋転軸と、前記駆動軸に位置しかつ前記旋転軸と噛み合うように連結された中心歯車とを含み、噛合伝動比により減速を行うことができ、前記旋転板には固定軸が固定的に設置され、前記固定軸の下端には濾過網が回転可能に連結され、前記処理空間の内壁の前後側の内壁には前記旋転板の上端の内部に位置する受け取り箱が固定的に設置され、前記受け取り箱の下端には左右対称の投入装置が設置され、前記投入装置は前記受け取り箱の下端と連通するように連結された排出管と、前記排出管と回転可能に連結された止め板とを含み、前記止め板の回転により前記排出管の開閉状態を変えることができ、前記処理空間の頂端内壁には封閉部品が設置されている。 An environmentally friendly crushing and stirring system for producing coal, including a crushing box, a processing space is installed in the crushing box, and a rotating plate is slidably connected in the processing space. Four transmission spaces opened downward are installed symmetrically in the rotating plate, a crushing device is installed in the transmission space, and the crushing device is an inner wall on the side away from the center of symmetry in the transmission space. Including a transmission shaft rotatably connected to the transmission shaft and a rotating tub installed on the transmission shaft and located in the transmission space, the rotating tub rolls to realize squeezing and crushing, and inside the rotating tub. Is provided with a connected space that opens toward the center of symmetry, a stirrer is installed in the connected space, and the stirrer is slidably connected to the inner wall of the connected space and arranged symmetrically. The twelve pressing rods are included, and the coal crushed by the pressing rods can be agitated, and an opening groove located in the center of the transmission space and open upward is formed in the rotating plate, and the opening is formed. A switch component capable of controlling the stirring device is installed in the groove, and the switch component includes a guide slide rod slidably connected to the inner wall of the opening groove and extended into the connected space, and the guide slide rod is included. Is in contact with the pressing rod, and the pressing rod can slide up and down in the shape of the guide slide rod, a limiting tub is fixedly installed on the upper end surface of the opening groove, and a drive space is provided in the limiting tub. Is installed, a drive shaft penetrating the drive space is rotatably connected to the drive space, a differential device is installed on the drive shaft, and the differential device meshes with the inner wall of the drive space. A symmetrical turning shaft connected in this way and a central gear located on the driving shaft and connected so as to mesh with the turning shaft can be included, and deceleration can be performed by the meshing transmission ratio. A fixed shaft is fixedly installed, a filtration net is rotatably connected to the lower end of the fixed shaft, and a receiving box located inside the upper end of the turning plate is connected to the inner wall on the front and rear sides of the inner wall of the processing space. Is fixedly installed, and a symmetrical loading device is installed at the lower end of the receiving box, and the loading device is rotatable with a discharge pipe connected so as to communicate with the lower end of the receiving box. The open / closed state of the discharge pipe can be changed by rotating the stop plate, and a sealing component is installed on the inner wall of the top end of the processing space.

有益的に、前記処理空間の底端内壁には排出孔が連通するように設置され、前記排出孔を傾斜にする。 Advantageously, the inner wall at the bottom end of the processing space is provided with the discharge holes communicating with each other, and the discharge holes are inclined.

有益的には、前記処理空間の底端端面には左右対称の支脚が固定的に設置されている。 Advantageously, symmetrical support legs are fixedly installed on the bottom end surface of the processing space.

有益的には、前記粉砕装置は、前記伝動軸に設置されかつ前記伝動空間の外側に位置するはすば歯車を含み、前記処理空間の内壁には環状溝が形成され、前記環状溝の中には前記はすば歯車と噛み合うように連結された内歯車が固定的に設置されている。 Advantageously, the crusher includes a helical gear installed on the transmission shaft and located outside the transmission space, an annular groove is formed on the inner wall of the processing space, and the inside of the annular groove is formed. An internal gear connected so as to mesh with the helical gear is fixedly installed in the space.

有益的に、前記攪拌装置は、前記押圧棒に左右対称にヒンジで連結されかつ前記連結空間の外側に位置する活動棒を含み、前記活動棒にはスライド溝が形成され、前記押圧棒と前記連結空間の外側端面との間には復帰ばねが連結され、前記連結空間の外側端面には前記押圧棒に対して左右対称となった固定棒が固定的に設置され、前記固定棒には前記スライド溝とスライド可能に連結された固定ピンが設置されている。 Beneficially, the stirrer includes an activity rod that is symmetrically hinged to the pressing rod and located outside the connected space, the activity rod having a slide groove formed in the pressing rod and said. A return spring is connected to the outer end surface of the connected space, and a fixed rod symmetrical with respect to the pressing rod is fixedly installed on the outer end surface of the connected space. A fixing pin that is slidably connected to the slide groove is installed.

前記スイッチ部品は、前記開き溝の下端内壁に固定されたスライド棒を含み、前記スライド棒には前記ガイドスライド棒と当接した円台がスライド可能に連結され、前記円台の上端には動かし棒が設置されている。 The switch component includes a slide rod fixed to the inner wall of the lower end of the opening groove, and a circular table in contact with the guide slide rod is slidably connected to the slide rod and moved to the upper end of the circular table. A stick is installed.

前記差動装置は、前記駆動空間の頂端内壁に嵌設されかつ前記駆動軸と伝動可能に連結されたモータを含み、前記駆動軸には前記中心歯車の上端に位置する横棒が回転可能に連結され、前記横棒には前記従動歯車と固定的に連結された旋転軸が左右対称に回転可能に連結され、前記駆動軸には前記開き溝の中に位置する軌道桶が設置され、前記軌道桶と前記動かし棒とがスライド可能に連結され、前記駆動軸には前記駆動空間の頂端の外側に位置する間欠歯車が設置されている。 The differential includes a motor fitted in the inner wall of the apex of the drive space and mobilably connected to the drive shaft, on which a horizontal bar located at the upper end of the center gear can rotate. A rotating shaft that is connected and fixedly connected to the driven gear is rotatably connected to the horizontal bar, and a track tub located in the opening groove is installed on the drive shaft. The track tub and the moving rod are slidably connected, and an intermittent gear located outside the apex of the driving space is installed on the driving shaft.

前記投入装置は、前記排出管において対称中心に近接した側の端面に固定された位置制限枠を含み、前記位置制限枠の中にはネジ棒が回転可能に連結され、前記ネジ棒には前記間欠歯車と噛み合うように連結された傘歯車が設置され、前記ネジ棒には前記止め板と当接した押し棒がネジ山により連結され、前記押し棒と前記位置制限枠との間には引張ばねが連結されている。 The loading device includes a position limiting frame fixed to an end face on the side close to the center of symmetry in the discharge pipe, and a screw rod is rotatably connected to the position limiting frame, and the screw rod is connected to the screw rod. A bevel gear connected so as to mesh with the intermittent gear is installed, and a push rod in contact with the stop plate is connected to the screw rod by a screw thread, and tension is applied between the push rod and the position limiting frame. The springs are connected.

前記封閉部品は、前記処理空間の頂端内壁に貫通のように設置された入口を含み、前記入口の中には蓋板が回転可能に連結され、前記蓋板の上側端面にはハンドルが固定的に設置されている。 The sealing component includes an inlet installed through the inner wall of the top end of the processing space, a lid plate is rotatably connected into the entrance, and a handle is fixed to the upper end surface of the lid plate. It is installed in.

本願発明の有益効果は:本願発明は円周旋転の板の上にロール式構成を設置して大塊の石炭を粉砕し、またロール式構成に往復に広げたり閉じたりすることのできる撹拌構成を設置することで、石炭原料に対する十分な粉砕撹拌を実現し、後期における完成品の燃焼品質を上げるとともに、遊星歯車機構の原理を利用し、粉砕撹拌構成を制御する装置と旋転板との速度に差を形成させることで、毎回の撹拌場所が異なり、石炭の品質をあげる。 The beneficial effect of the present invention is: The present invention is a stirring configuration in which a roll type structure is installed on a plate of circumferential rotation to crush a large amount of coal, and the roll type structure can be expanded and closed in a reciprocating manner. By installing, it is possible to realize sufficient crushing and stirring for coal raw materials, improve the combustion quality of the finished product in the latter stage, and utilize the principle of the planetary gear mechanism to control the crushing and stirring configuration and the speed of the rotating plate. By forming a difference in the coal, the stirring place is different each time, and the quality of coal is improved.

下記に図1〜5をあわせて本発明について詳しく説明し、便利に説明するために、下記の方向を以下のように規定する:図1は本発明装置の正面図であり、本願に記載の各方向が、図1と同じ向きに装置を見た際の方向である。 In order to explain the present invention in detail with reference to FIGS. 1 to 5 below and to explain the present invention in a convenient manner, the following directions are defined as follows: FIG. 1 is a front view of the apparatus of the present invention and is described in the present application. Each direction is the direction when the device is viewed in the same direction as in FIG.

図1は本願発明の全体構成図FIG. 1 is an overall configuration diagram of the present invention. 図2は図1におけるAの構成拡大図FIG. 2 is an enlarged view of the configuration of A in FIG. 図3は図1におけるBの構成拡大図FIG. 3 is an enlarged view of the configuration of B in FIG. 図4は図1におけるCの構成拡大図FIG. 4 is an enlarged view of the configuration of C in FIG. 図5は図1におけるD―D方向の構成図FIG. 5 is a block diagram in the DD direction in FIG.

環境に優しい石炭の製造用の粉砕撹拌系統であって、主に石炭の粉砕撹拌に用いられ、下記に明細書図面を合わせて詳しく説明する: It is a crushing and stirring system for the production of environmentally friendly coal, which is mainly used for crushing and stirring coal, and will be described in detail below together with the specification drawings:

環境に優しい石炭の製造用の粉砕撹拌系統であって、砕け箱11を含み、前記砕け箱11の中には処理空間12が設置され、前記処理空間12の中には旋転板29がスライド可能に連結され、前記旋転板29の中には下方に開口した四つの伝動空間30が中心対称に設置され、前記伝動空間30の中には粉砕装置901が設置され、前記粉砕装置901は前記伝動空間30において対称中心から離れた側の内壁と回転可能に連結された伝動軸43と、前記伝動軸43に設置されかつ前記伝動空間30の中に位置する旋転桶40とを含み、前記旋転桶40が転がることで圧搾粉砕を実現し、前記旋転桶40の中には対称中心に向かって開口した連結空間39が設置され、前記連結空間39の中には攪拌装置902が設置され、前記攪拌装置902は、前記連結空間39の内壁とスライド可能に連結されかつ中心対称に配列された十二個の押圧棒36を含み、前記押圧棒36により粉砕された石炭を撹拌でき、前記旋転板29の中には前記伝動空間30の中心に位置しかつ上方に開口した開き溝55が形成され、前記開き溝55の中には攪拌装置を制御できるスイッチ部品903が設置され、前記スイッチ部品903は前記開き溝55の内壁とスライド可能に連結されかつ前記連結空間39の中まで延びたガイドスライド棒37を含み、前記ガイドスライド棒37が前記押圧棒36と当接しており、前記押圧棒36は前記ガイドスライド棒37の形により上下にスライドでき、前記開き溝55の上側端面には制限桶46が固定的に設置され、前記制限桶46には駆動空間47が設置され、前記駆動空間47の中には前記駆動空間47を貫通した駆動軸53が回転可能に連結され、前記駆動軸53には差動装置904が設置され、前記差動装置904は前記駆動空間47の内壁と噛み合うように連結された左右対称の旋転軸49と、前記駆動軸53に位置しかつ前記旋転軸49と噛み合うように連結された中心歯車52とを含み、噛合伝動比により減速を行うことができ、前記旋転板29には固定軸22が固定的に設置され、前記固定軸22の下端には濾過網20が回転可能に連結され、前記処理空間12の内壁の前後側の内壁には前記旋転板29の上端の内部に位置する受け取り箱13が固定的に設置され、前記受け取り箱13の下端には左右対称の投入装置905が設置され、前記投入装置905は前記受け取り箱13の下端と連通するように連結された排出管14と、前記排出管14と回転可能に連結された止め板15とを含み、前記止め板15の回転により前記排出管14の開閉状態を変えることができ、前記処理空間12の頂端内壁には封閉部品906が設置されている。 An environmentally friendly crushing and stirring system for producing coal, including a crushing box 11, a processing space 12 is installed in the crushing box 11, and a rotating plate 29 can slide in the processing space 12. In the rotating plate 29, four transmission spaces 30 opened downward are installed symmetrically in the center, a crushing device 901 is installed in the transmission space 30, and the crushing device 901 is the transmission. The rotating tub includes a transmission shaft 43 rotatably connected to an inner wall on the side away from the center of symmetry in the space 30, and a rotating tub 40 installed on the transmission shaft 43 and located in the transmission space 30. The rolling tub 40 realizes squeezing and crushing, a connected space 39 opened toward the center of symmetry is installed in the rotating tub 40, and a stirring device 902 is installed in the connecting space 39 to stir. The device 902 includes twelve pressing rods 36 that are slidably connected to the inner wall of the connected space 39 and are arranged in a centrally symmetrical manner, and can agitate the coal crushed by the pressing rods 36, and the rotating plate 29 can be agitated. An opening groove 55 located at the center of the transmission space 30 and open upward is formed in the opening groove 55, and a switch component 903 capable of controlling the stirring device is installed in the opening groove 55. A guide slide rod 37 that is slidably connected to the inner wall of the opening groove 55 and extends into the connected space 39 is included, the guide slide rod 37 is in contact with the pressing rod 36, and the pressing rod 36 is in contact with the pressing rod 36. The guide slide rod 37 can slide up and down, and a limiting tub 46 is fixedly installed on the upper end surface of the opening groove 55, and a drive space 47 is installed in the limiting tub 46. A drive shaft 53 penetrating the drive space 47 is rotatably connected to the inside, a differential device 904 is installed on the drive shaft 53, and the differential device 904 meshes with the inner wall of the drive space 47. The rotating shaft 49, which is symmetrical to the left and right, and the center gear 52, which is located on the drive shaft 53 and is connected so as to mesh with the rotating shaft 49, can be decelerated by the meshing transmission ratio, and the rotation can be performed. A fixed shaft 22 is fixedly installed on the plate 29, a filtration net 20 is rotatably connected to the lower end of the fixed shaft 22, and the rotating plate 29 is connected to the inner wall on the front and rear sides of the inner wall of the processing space 12. A receiving box 13 located inside the upper end is fixedly installed, a symmetrical loading device 905 is installed at the lower end of the receiving box 13, and the loading device 905 is the lower end of the receiving box 13. A discharge pipe 14 connected to the discharge pipe 14 and a stop plate 15 rotatably connected to the discharge pipe 14 are included, and the open / closed state of the discharge pipe 14 can be changed by rotation of the stop plate 15. A sealing component 906 is installed on the inner wall of the apex of the processing space 12.

有益的には、前記処理空間12の底端内壁には排出孔21が連通するように設置され、前記排出孔21を傾斜にすることで、顆粒状の石炭を順調に排出できる。 Advantageously, the discharge holes 21 are installed on the inner wall of the bottom end of the treatment space 12 so as to communicate with each other, and by inclining the discharge holes 21, granular coal can be smoothly discharged.

有益的には、前記処理空間12の底端端面には左右対称の支脚19が固定的に設置されていることで、本願発明の石炭収納空間を提供する。 Advantageously, the symmetrical support legs 19 are fixedly installed on the bottom end surface of the processing space 12, thereby providing the coal storage space of the present invention.

前記粉砕装置901は、前記伝動軸43に設置されかつ前記伝動空間30の外側に位置するはすば歯車42を含み、前記処理空間12の内壁には環状溝44が形成され、前記環状溝44の中には前記はすば歯車42と噛み合うように連結された内歯車41が固定的に設置されている。 The crushing device 901 includes a helical gear 42 installed on the transmission shaft 43 and located outside the transmission space 30, and an annular groove 44 is formed on the inner wall of the processing space 12, and the annular groove 44 is formed. An internal gear 41 connected so as to mesh with the helical gear 42 is fixedly installed in the inside.

前記攪拌装置902は、前記押圧棒36に左右対称にヒンジで連結されかつ前記連結空間39の外側に位置する活動棒32を含み、前記活動棒32にはスライド溝35が形成され、前記押圧棒36と前記連結空間39の外側端面との間には復帰ばね33が連結され、前記連結空間39の外側端面には前記押圧棒36に対して左右対称となった固定棒31が固定的に設置され、前記固定棒31には前記スライド溝35とスライド可能に連結された固定ピン34が設置され、前記活動棒32と前記固定棒31との間の回転により、粉砕された石炭を撹拌できる。 The stirring device 902 includes an activity rod 32 that is symmetrically connected to the pressing rod 36 by a hinge and is located outside the connecting space 39, and the activity rod 32 is formed with a slide groove 35, and the pressing rod is formed. A return spring 33 is connected between the 36 and the outer end surface of the connected space 39, and a fixed rod 31 symmetrical with respect to the pressing rod 36 is fixedly installed on the outer end surface of the connected space 39. A fixing pin 34 slidably connected to the slide groove 35 is installed in the fixing rod 31, and the crushed coal can be agitated by rotation between the activity rod 32 and the fixing rod 31.

有益的には、前記スイッチ部品903は、前記開き溝55の下端内壁に固定されたスライド棒57を含み、前記スライド棒57には前記ガイドスライド棒37と当接した円台56がスライド可能に連結され、前記円台56の上端には動かし棒54が設置されている。 Beneficially, the switch component 903 includes a slide rod 57 fixed to the inner wall of the lower end of the opening groove 55, and the slide rod 57 allows a circular base 56 in contact with the guide slide rod 37 to slide. It is connected, and a moving rod 54 is installed at the upper end of the circular table 56.

前記差動装置904は、前記駆動空間47の頂端内壁に嵌設されかつ前記駆動軸53と伝動可能に連結されたモータ51を含み、前記駆動軸53には前記中心歯車52の上端に位置する横棒48が回転可能に連結され、前記横棒48には前記従動歯車50と固定的に連結された旋転軸49が左右対称に回転可能に連結され、前記駆動軸53には前記開き溝55の中に位置する軌道桶58が設置され、前記軌道桶58と前記動かし棒54とがスライド可能に連結され、前記駆動軸53には前記駆動空間47の頂端の外側に位置する間欠歯車18が設置されている。 The differential device 904 includes a motor 51 fitted in the inner wall of the apex of the drive space 47 and mobilably connected to the drive shaft 53, and is located on the drive shaft 53 at the upper end of the center gear 52. The horizontal bar 48 is rotatably connected, the rotating shaft 49 fixedly connected to the driven gear 50 is rotatably connected to the horizontal bar 48, and the opening groove 55 is connected to the drive shaft 53. An orbital tub 58 located inside is installed, the orbital tub 58 and the moving rod 54 are slidably connected, and the drive shaft 53 has an intermittent gear 18 located outside the top end of the drive space 47. is set up.

前記投入装置905は、前記排出管14において対称中心に近接した側の端面に固定された位置制限枠25を含み、前記位置制限枠25の中にはネジ棒24が回転可能に連結され、前記ネジ棒24には前記間欠歯車18と噛み合うように連結された傘歯車17が設置され、前記ネジ棒24には前記止め板15と当接した押し棒16がネジ山により連結され、前記押し棒16と前記位置制限枠25との間には引張ばね23が連結されている。 The loading device 905 includes a position limiting frame 25 fixed to an end face on the side close to the center of symmetry in the discharge pipe 14, and a screw rod 24 is rotatably connected to the position limiting frame 25. A bevel gear 17 connected to the screw rod 24 so as to mesh with the intermittent gear 18 is installed, and a push rod 16 in contact with the stop plate 15 is connected to the screw rod 24 by a screw thread. A tension spring 23 is connected between the 16 and the position limiting frame 25.

前記封閉部品906は、前記処理空間12の頂端内壁に貫通のように設置された入口28を含み、前記入口28の中には蓋板27が回転可能に連結され、前記蓋板27の上側端面にはハンドル26が固定的に設置され、前記蓋板27は前記入口28を封閉して前記処理空間12を隔離できる。 The sealing component 906 includes an inlet 28 installed so as to penetrate the inner wall of the top end of the processing space 12, and a lid plate 27 is rotatably connected to the inlet 28, and an upper end surface of the lid plate 27 is connected. A handle 26 is fixedly installed in the lid plate 27, and the lid plate 27 can close the entrance 28 to isolate the processing space 12.

下記に図1〜5をあわせて本願発明の使用手順を詳しく説明する:
初期状態のとき、手でハンドル26を引き動かして蓋板27を上方に翻転し、入口28を開けて石炭を入口28から処理空間12の中に入れる。
粉砕撹拌するとき、モータ51を起動して駆動軸53を旋転させ、駆動軸53が間欠歯車18と左側の傘歯車17との噛合により回転して左側のネジ棒24を旋転させ、左側のネジ棒24がネジ山により回転して押し棒16に止め板15を押し動かさせて移動させ、かつ引張ばね23に弾性エネルギーを蓄えさせることで、後続の傘歯車17と間欠歯車18とが噛合連結から離脱するときの弾性復帰に便利を与え、更に止め板15が上方に連動して翻転し排出管14を封閉し、このとき、右端の排出管14は石炭と繋ぎ、石炭が投入されて濾過網20に落ち、サイズ合格の石炭は直接に排出孔21から排出されると同時に、駆動軸53が噛合回転により従動歯車50と制限桶46とを旋転させ、伝動比が一より小さいため、制限桶46の回転速度が駆動軸53より小さく、制限桶46が旋転板29を回転連動させ、旋転板29の回転過程において、旋転桶40と伝動軸43がはすば歯車42と内歯車41の噛合回転を自身に伝達し、石炭を圧搾すると同時に、固定棒31と活動棒32とにより混合を行い、かつ駆動軸53が軌道桶58により往復に動かし棒54を押し動かして昇降させ、動力が順次に円台56と、ガイドスライド棒37とにより押圧棒36を移動連動させ、押圧棒36が移動するとき、固定ピン34と押圧棒36の距離が変わらず、したがって、固定棒31は固定ピン34に沿って回転して広がって前記復帰ばね33の弾力回復により収縮することができ、十分な撹拌を行う。
The procedure for using the present invention will be described in detail with reference to FIGS. 1 to 5 below:
In the initial state, the handle 26 is pulled by hand to turn the lid plate 27 upward, the inlet 28 is opened, and coal is put into the processing space 12 from the inlet 28.
At the time of crushing and stirring, the motor 51 is started to rotate the drive shaft 53, and the drive shaft 53 rotates by meshing with the intermittent gear 18 and the left side gear 17 to rotate the left screw rod 24 and the left screw. The rod 24 is rotated by a screw thread to push the stop plate 15 to the push rod 16 to move it, and the tension spring 23 stores elastic energy so that the subsequent cap gear 17 and the intermittent gear 18 are meshed and connected. It provides convenience for elastic recovery when the gear is separated from the gear, and the stop plate 15 is interlocked upward to close the discharge pipe 14, and at this time, the discharge pipe 14 at the right end is connected to the coal and the coal is charged. Coal that has fallen into the filtration net 20 and has passed the size is discharged directly from the discharge hole 21, and at the same time, the drive shaft 53 rotates the driven gear 50 and the limiting tub 46 by meshing rotation, and the transmission ratio is smaller than one. The rotation speed of the limiting tub 46 is smaller than that of the drive shaft 53, the limiting tub 46 rotates and interlocks the rotating plate 29, and in the rotation process of the rotating plate 29, the rotating tub 40 and the transmission shaft 43 are helical gears 42 and internal gears 41. At the same time as squeezing the coal by transmitting the meshing rotation of the gear to itself, the fixed rod 31 and the active rod 32 are mixed, and the drive shaft 53 is reciprocated by the orbital tub 58 to push and move the rod 54 to raise and lower the power. Sequentially moves the pressing rod 36 by the circular base 56 and the guide slide rod 37, and when the pressing rod 36 moves, the distance between the fixing pin 34 and the pressing rod 36 does not change, and therefore the fixing rod 31 is fixed. It rotates along the pin 34 and spreads, and can be contracted by recovering the elasticity of the return spring 33, and sufficient stirring is performed.

上記方式により、本分野の当業者は本願発明の範囲内に作動パターンにより各種な変化を実行できる。 According to the above method, those skilled in the art can carry out various changes according to the operation pattern within the scope of the present invention.

Claims (9)

環境に優しい石炭の製造用の粉砕撹拌系統であって、砕け箱を含み、前記砕け箱の中には処理空間が設置され、
前記処理空間の中には旋転板がスライド可能に連結され、前記旋転板の中には下方に開口した四つの伝動空間が中心対称に設置され、前記伝動空間の中には粉砕装置が設置され、前記粉砕装置は前記伝動空間において対称中心から離れた側の内壁と回転可能に連結された伝動軸と、前記伝動軸に設置されかつ前記伝動空間の中に位置する旋転桶とを含み、前記旋転桶が転がることで圧搾粉砕を実現し、前記旋転桶の中には対称中心に向かって開口した連結空間が設置され、前記連結空間の中には攪拌装置が設置され、前記攪拌装置は、前記連結空間の内壁とスライド可能に連結されかつ中心対称に配列された十二個の押圧棒を含み、前記押圧棒により粉砕された石炭を撹拌でき、
前記旋転板の中には前記伝動空間の中心に位置しかつ上方に開口した開き溝が形成され、前記開き溝の中には攪拌装置を制御できるスイッチ部品が設置され、前記スイッチ部品は前記開き溝の内壁とスライド可能に連結されかつ前記連結空間の中まで延びたガイドスライド棒を含み、前記ガイドスライド棒が前記押圧棒と当接しており、前記押圧棒は前記ガイドスライド棒の形により上下にスライドでき、前記開き溝の上側端面には制限桶が固定的に設置され、前記制限桶には駆動空間が設置され、前記駆動空間の中には前記駆動空間を貫通した駆動軸が回転可能に連結され、前記駆動軸には差動装置が設置され、
前記差動装置は前記駆動空間の内壁と噛み合うように連結された左右対称の旋転軸と、前記駆動軸に位置しかつ前記旋転軸と噛み合うように連結された中心歯車とを含み、噛合伝動比により減速を行うことができ、前記旋転板には固定軸が固定的に設置され、前記固定軸の下端には濾過網が回転可能に連結され、前記処理空間の内壁の前後側の内壁には前記旋転板の上端の内部に位置する受け取り箱が固定的に設置され、前記受け取り箱の下端には左右対称の投入装置が設置され、前記投入装置は前記受け取り箱の下端と連通するように連結された排出管と、前記排出管と回転可能に連結された止め板とを含み、前記止め板の回転により前記排出管の開閉状態を変えることができ、前記処理空間の頂端内壁には封閉部品が設置されていることを特徴とする環境に優しい石炭の製造用の粉砕撹拌系統。
It is a crushing and stirring system for the production of environmentally friendly coal, including a crushing box, and a processing space is installed in the crushing box.
A rotating plate is slidably connected in the processing space, four transmission spaces opened downward are installed symmetrically in the rotation plate, and a crushing device is installed in the transmission space. The crushing device includes a transmission shaft rotatably connected to an inner wall on a side away from the center of symmetry in the transmission space, and a rotating tub installed on the transmission shaft and located in the transmission space. Squeezing and crushing is realized by rolling the rotating tub, a connected space opened toward the center of symmetry is installed in the rotating tub, and a stirring device is installed in the connecting space. It contains twelve pressing rods that are slidably connected to the inner wall of the connected space and are arranged symmetrically in the center, and the coal crushed by the pressing rods can be agitated.
An opening groove located at the center of the transmission space and open upward is formed in the rotating plate, and a switch component capable of controlling the stirring device is installed in the opening groove, and the switch component is the opening. A guide slide rod that is slidably connected to the inner wall of the groove and extends into the connected space is included, the guide slide rod is in contact with the pressing rod, and the pressing rod is moved up and down by the shape of the guide slide rod. A limiting tub is fixedly installed on the upper end surface of the opening groove, a driving space is installed in the limiting tub, and a drive shaft penetrating the driving space can rotate in the driving space. A differential device is installed on the drive shaft.
The differential device includes a symmetrical rotating shaft connected so as to mesh with the inner wall of the driving space, and a central gear located on the driving shaft and connected so as to mesh with the rotating shaft, and has a meshing transmission ratio. A fixed shaft is fixedly installed on the rotating plate, a filtration net is rotatably connected to the lower end of the fixed shaft, and the inner wall on the front and rear sides of the inner wall of the processing space is connected. A receiving box located inside the upper end of the rotating plate is fixedly installed, a symmetrical loading device is installed at the lower end of the receiving box, and the loading device is connected so as to communicate with the lower end of the receiving box. The open / closed state of the discharge pipe can be changed by rotating the stop plate, including the discharged pipe and the stop plate rotatably connected to the discharge pipe. A crushing and stirring system for the production of environmentally friendly coal, which is characterized by being installed.
前記処理空間の底端内壁には排出孔が連通するように設置され、前記排出孔を傾斜にすることを特徴とする請求項1に記載の環境に優しい石炭の製造用の粉砕撹拌系統。 The pulverizing and stirring system for producing environmentally friendly coal according to claim 1, wherein the discharge holes are installed on the inner wall at the bottom end of the treatment space so as to communicate with each other, and the discharge holes are inclined. 前記処理空間の底端端面には左右対称の支脚が固定的に設置されていることを特徴とする請求項1に記載の環境に優しい石炭の製造用の粉砕撹拌系統。 The pulverizing and stirring system for producing environmentally friendly coal according to claim 1, wherein symmetrical support legs are fixedly installed on the bottom end surface of the processing space. 前記粉砕装置は、前記伝動軸に設置されかつ前記伝動空間の外側に位置するはすば歯車を含み、前記処理空間の内壁には環状溝が形成され、前記環状溝の中には前記はすば歯車と噛み合うように連結された内歯車が固定的に設置されていることを特徴とする請求項1に記載の環境に優しい石炭の製造用の粉砕撹拌系統。 The crushing device includes a helical gear installed on the transmission shaft and located outside the transmission space, an annular groove is formed on the inner wall of the processing space, and the coal is contained in the annular groove. The pulverizing and stirring system for producing environmentally friendly coal according to claim 1, wherein the internal gears connected so as to mesh with the helical gears are fixedly installed. 前記攪拌装置は、前記押圧棒に左右対称にヒンジで連結されかつ前記連結空間の外側に位置する活動棒を含み、前記活動棒にはスライド溝が形成され、前記押圧棒と前記連結空間の外側端面との間には復帰ばねが連結され、前記連結空間の外側端面には前記押圧棒に対して左右対称となった固定棒が固定的に設置され、前記固定棒には前記スライド溝とスライド可能に連結された固定ピンが設置されていることを特徴とする請求項1に記載の環境に優しい石炭の製造用の粉砕撹拌系統。 The stirring device includes an activity rod symmetrically connected to the pressing rod by a hinge and located outside the connecting space, and a slide groove is formed in the activity rod, and the pressing rod and the outside of the connecting space are formed. A return spring is connected to the end face, and a fixed rod symmetrical with respect to the pressing rod is fixedly installed on the outer end surface of the connected space, and the slide groove and the slide are installed on the fixed rod. The crushing and stirring system for the production of environmentally friendly coal according to claim 1, characterized in that possibly connected fixing pins are installed. 前記スイッチ部品は、前記開き溝の下端内壁に固定されたスライド棒を含み、前記スライド棒には前記ガイドスライド棒と当接した円台がスライド可能に連結され、前記円台の上端には動かし棒が設置されていることを特徴とする請求項1に記載の環境に優しい石炭の製造用の粉砕撹拌系統。 The switch component includes a slide rod fixed to the inner wall of the lower end of the opening groove, and a circular table in contact with the guide slide rod is slidably connected to the slide rod and moved to the upper end of the circular table. The pulverizing and stirring system for producing environmentally friendly coal according to claim 1, wherein a rod is installed. 前記差動装置は、前記駆動空間の頂端内壁に嵌設されかつ前記駆動軸と伝動可能に連結されたモータを含み、前記駆動軸には前記中心歯車の上端に位置する横棒が回転可能に連結され、前記横棒には前記従動歯車と固定的に連結された旋転軸が左右対称に回転可能に連結され、前記駆動軸には前記開き溝の中に位置する軌道桶が設置され、前記軌道桶と前記動かし棒とがスライド可能に連結され、前記駆動軸には前記駆動空間の頂端の外側に位置する間欠歯車が設置されていることを特徴とする請求項6に記載の環境に優しい石炭の製造用の粉砕撹拌系統。 The differential includes a motor fitted in the inner wall of the apex of the drive space and mobilably connected to the drive shaft, on which a horizontal bar located at the upper end of the center gear can rotate. A rotating shaft that is connected and fixedly connected to the driven gear is rotatably connected to the horizontal bar, and a track tub located in the opening groove is installed on the drive shaft. The environment-friendly according to claim 6, wherein the track tub and the moving rod are slidably connected, and an intermittent gear located outside the apex of the drive space is installed on the drive shaft. Grinding and stirring system for the production of coal. 前記投入装置は、前記排出管において対称中心に近接した側の端面に固定された位置制限枠を含み、前記位置制限枠の中にはネジ棒が回転可能に連結され、前記ネジ棒には前記間欠歯車と噛み合うように連結された傘歯車が設置され、前記ネジ棒には前記止め板と当接した押し棒がネジ山により連結され、前記押し棒と前記位置制限枠との間には引張ばねが連結されていることを特徴とする請求項7に記載の環境に優しい石炭の製造用の粉砕撹拌系統。 The loading device includes a position limiting frame fixed to an end face on the side close to the center of symmetry in the discharge pipe, and a screw rod is rotatably connected to the position limiting frame, and the screw rod is connected to the screw rod. A bevel gear connected so as to mesh with the intermittent gear is installed, and a push rod in contact with the stop plate is connected to the screw rod by a screw thread, and tension is applied between the push rod and the position limiting frame. The pulverizing and stirring system for producing environmentally friendly coal according to claim 7, wherein the springs are connected. 前記封閉部品は、前記処理空間の頂端内壁に貫通のように設置された入口を含み、前記入口の中には蓋板が回転可能に連結され、前記蓋板の上側端面にはハンドルが固定的に設置されていることを特徴とする請求項1に記載の環境に優しい石炭の製造用の粉砕撹拌系統。 The sealing component includes an inlet that is installed through the inner wall of the top end of the processing space, a lid plate is rotatably connected to the entrance, and a handle is fixed to the upper end surface of the lid plate. The pulverizing and stirring system for producing environmentally friendly coal according to claim 1, which is characterized by being installed in.
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