JP2021030207A - Polish coating device of high grade floor material - Google Patents

Polish coating device of high grade floor material Download PDF

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JP2021030207A
JP2021030207A JP2019217441A JP2019217441A JP2021030207A JP 2021030207 A JP2021030207 A JP 2021030207A JP 2019217441 A JP2019217441 A JP 2019217441A JP 2019217441 A JP2019217441 A JP 2019217441A JP 2021030207 A JP2021030207 A JP 2021030207A
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space
pulley
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shaft
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張迪超
Dichao Zhang
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C3/00Apparatus in which the work is brought into contact with a bulk quantity of liquid or other fluent material
    • B05C3/02Apparatus in which the work is brought into contact with a bulk quantity of liquid or other fluent material the work being immersed in the liquid or other fluent material
    • B05C3/09Apparatus in which the work is brought into contact with a bulk quantity of liquid or other fluent material the work being immersed in the liquid or other fluent material for treating separate articles
    • B05C3/109Passing liquids or other fluent materials into or through chambers containing stationary articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C9/00Apparatus or plant for applying liquid or other fluent material to surfaces by means not covered by any preceding group, or in which the means of applying the liquid or other fluent material is not important
    • B05C9/08Apparatus or plant for applying liquid or other fluent material to surfaces by means not covered by any preceding group, or in which the means of applying the liquid or other fluent material is not important for applying liquid or other fluent material and performing an auxiliary operation
    • B05C9/14Apparatus or plant for applying liquid or other fluent material to surfaces by means not covered by any preceding group, or in which the means of applying the liquid or other fluent material is not important for applying liquid or other fluent material and performing an auxiliary operation the auxiliary operation involving heating or cooling
    • 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
    • B24B27/00Other grinding machines or devices
    • B24B27/0076Other grinding machines or devices grinding machines comprising two or more grinding tools
    • 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
    • B24B7/00Machines or devices designed for grinding plane surfaces on work, including polishing plane glass surfaces; Accessories therefor
    • B24B7/20Machines or devices designed for grinding plane surfaces on work, including polishing plane glass surfaces; Accessories therefor characterised by a special design with respect to properties of the material of non-metallic articles to be ground
    • B24B7/28Machines or devices designed for grinding plane surfaces on work, including polishing plane glass surfaces; Accessories therefor characterised by a special design with respect to properties of the material of non-metallic articles to be ground for grinding wood

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Coating Apparatus (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Wood Science & Technology (AREA)
  • Constituent Portions Of Griding Lathes, Driving, Sensing And Control (AREA)
  • Grinding Of Cylindrical And Plane Surfaces (AREA)

Abstract

To disclose a polish coating device of a high grade floor material.SOLUTION: A polish coating device of a high grade floor material includes a body, and feeding spaces are symmetrically provided in the body. Eight rotary wheel spaces are provided on upper and lower walls of the two feeding spaces, transmission spaces are provided on the rear side of the rotary wheel spaces. Between the feeding spaces and the transmission spaces, feeding devices capable of feeding wooden plates are provided. Transmission motors symmetrically and fixedly attached to rear walls of the transmission spaces are included. A motor shaft is coupled to a front side of each transmission motor so as to perform power transmission. A first pulley is fixed on a rear side of each transmission shaft, and a second pulley is fixed to a middle side of each motor shaft. A first bevel gear is fixed to a front side of each motor shaft.SELECTED DRAWING: Figure 1

Description

本願発明は木の床材の加工分野を取り上げて、具体的には高級床材の研磨塗装装置である。 The present invention takes up the field of processing wooden flooring, and specifically is a polishing and coating apparatus for high-grade flooring.

現在、社会の発展と生活水準の向上につれ、人々のインテリアに対する要求が高まっていく。床板は日常生活でよく見る装飾であり、そのレベルと製造水準もどんどん上がっていく。一般的に、高級床材の加工は、複数回の塗装と乾燥が必要とされる。最後の一歩として、前のステップで塗装することによって生成された気泡を研磨し、改めて塗装し乾燥させることは、非常に重要な作業である。しかし、従来の設備は最後のステップにおいて、ただ前のステップの塗装と研磨を繰り返すだけで、床材自身の状況によって研磨高度を調整できない。そして、スプレー式塗装は、塗装が不均一である問題が存在する。従って、高級床材に対して最後のステップの研磨塗装作業を対応できる装置が必要とされる。 Currently, as society develops and living standards improve, people's demands for interiors increase. Floorboards are decorations that are often seen in everyday life, and their level and manufacturing level are rising steadily. Generally, the processing of high-grade flooring requires multiple painting and drying. As a final step, polishing the air bubbles created by painting in the previous step, repainting and drying is a very important task. However, the conventional equipment simply repeats the painting and polishing of the previous step in the final step, and the polishing altitude cannot be adjusted depending on the condition of the flooring material itself. Then, the spray type coating has a problem that the coating is uneven. Therefore, there is a need for a device that can handle the final step of polishing and painting work for high-grade flooring materials.

中国特許出願公開第109746170号明細書Chinese Patent Application Publication No. 109746170

本願発明の目的は高級床材の研磨塗装装置を提供し、それは上記の現在の技術中の問題を解決できる。 An object of the present invention is to provide a polishing and coating apparatus for high-grade flooring, which can solve the problems in the present technology described above.

上記の課題を解決するため、本願発明は以下の技術プランを採用する:高級床材の研磨塗装装置は、本体を含み、前記本体の中には送り空間が左右対称に設けられ、二つの前記送り空間の上下壁には八つの回転輪空間が設けられ、前記回転輪空間の後ろ側には伝動空間が設けられ、前記送り空間と前記伝動空間の間には木板を送ることのできる送り装置が設けられ、
前記送り装置は前記伝動空間の後ろ壁に上下対称に固定的に取り付けられた伝動モーターを含み、各前記伝動モーターの前側にはモーター軸が伝動できるように連結され、各前記伝動軸の後ろ側には第一プーリーが固定され、各前記モーター軸の中側には第二プーリーが固定され、各前記モーター軸の前側には第一傘歯車が固定され、各前記伝動モーターの左右両側にはプーリー軸が対称に設けられ、各前記プーリー軸が前記伝動空間の前後壁と回転できるように連結され、各前記プーリー軸が前に延びて前記伝動空間の前壁を貫通し前記回転輪空間の中に入り前記回転輪空間の前後壁と回転できるように連結され、各前記プーリー軸の片側には互いに対して対称である貫通軸が設けられ、各前記貫通軸が前記伝動空間の前後壁と回転できるように連結され、前記貫通軸が前へ伸び前記伝動空間の前壁を貫通し前記回転輪空間の中に入り前記回転輪空間の前後壁と回転できるように連結され、各前記プーリー軸の後ろ側には第三プーリーが固定され、各前記プーリー軸の中側には前記第二プーリーと対応する第四プーリーが固定され、前記第二プーリーと前記第四プーリーの間には第一ベルトが連結され、各前記貫通軸と前記プーリー軸には送り輪が固定され、各前記貫通軸と前記プーリー軸には互いに対して対称である第五プーリーが固定され、互いに対して対称である第五プーリーの間には第二ベルトが連結され、
左側の前記送り空間の上側にはモーター空間が設けられ、前記送り空間の前側には液圧空間が設けられ、前記液圧空間と前記モーター空間の間には床材を研磨する研磨装置が設けられ、二つの前記送り空間の間には塗装空間が設けられ、前記塗装空間の上側には塗料貯蔵空間が設けられ、前記塗料貯蔵空間と前記塗装空間の間には床材にワックスがけをするワックスがけ装置が設けられ、右側の前記送り空間の上下壁には乾燥空間が設けられ、前記乾燥空間の中には床材を乾燥させる乾燥装置が設けられている
In order to solve the above problems, the present invention employs the following technical plan: a high-grade flooring polishing and coating device includes a main body, and feeding spaces are provided symmetrically in the main body, and the two above-mentioned two Eight rotating wheel spaces are provided on the upper and lower walls of the feeding space, a transmission space is provided behind the rotating wheel space, and a feeding device capable of feeding a wooden board between the feeding space and the transmission space. Is provided,
The feeding device includes a transmission motor fixedly attached to the rear wall of the transmission space symmetrically in the vertical direction, and is connected to the front side of each transmission motor so that a motor shaft can be transmitted, and is connected to the rear side of each transmission shaft. The first pulley is fixed to, the second pulley is fixed to the inside of each of the motor shafts, the first umbrella gear is fixed to the front side of each of the motor shafts, and the left and right sides of each of the transmission motors are fixed. The pulley shafts are provided symmetrically, and each of the pulley shafts is connected so as to be rotatable with the front and rear walls of the transmission space, and each of the pulley shafts extends forward and penetrates the front wall of the transmission space of the rotating wheel space. It goes inside and is connected so as to be rotatable with the front and rear walls of the rotating wheel space, and a through shaft that is symmetrical with respect to each other is provided on one side of each of the pulley shafts, and each of the through shafts is connected to the front and rear walls of the transmission space. The pulley shafts are connected so as to be rotatable, the penetrating shaft extends forward, penetrates the front wall of the transmission space, enters the rotating wheel space, and is connected so as to be rotatable with the front and rear walls of the rotating wheel space. A third pulley is fixed to the rear side of the pulley, a fourth pulley corresponding to the second pulley is fixed to the middle side of each of the pulley shafts, and a first pulley is connected between the second pulley and the fourth pulley. A belt is connected, a feed wheel is fixed to each of the through shafts and the pulley shaft, and a fifth pulley that is symmetrical to each other is fixed to each of the through shafts and the pulley shaft, which is symmetrical to each other. The second belt is connected between the fifth pulleys,
A motor space is provided on the upper side of the feed space on the left side, a hydraulic space is provided on the front side of the feed space, and a polishing device for polishing the floor material is provided between the hydraulic space and the motor space. A coating space is provided between the two feed spaces, a paint storage space is provided above the coating space, and the floor material is waxed between the paint storage space and the coating space. A waxing device is provided, a drying space is provided on the upper and lower walls of the feeding space on the right side, and a drying device for drying the floor material is provided in the drying space.

優選の技術プランとして、前記研磨装置は前記液圧空間の前壁に固定的に取り付けられた液圧モーターを含み、前記液圧モーターには液圧軸が伝動できるように連結され、前記液圧軸には液圧ロッドがねじ山によって連結され、前記液圧空間と各前記モーター空間の間には連通空間が連通しており、各前記モーター空間の中には研磨モーターがスライドできるように連結され、各前記研磨モーターの片側には前記モーター空間とスライドできるように連結されたスライドブロックが連結され、各前記研磨モーターのもう片側には研磨軸が伝動できるように連結され、各前記研磨軸のもう片側には研磨用の研磨シートが固定され、各前記研磨軸においてモーターに近接する側には前記モーター空間とスライドできるように連結された隔離ブロックが回転できるように連結され、各前記隔離ブロックと前記モーター空間の片側壁の間には支持ばねが連結されている。 As a preferred technical plan, the polishing apparatus includes a hydraulic motor fixedly attached to the front wall of the hydraulic space, and the hydraulic motor is connected to the hydraulic motor so that a hydraulic shaft can be transmitted, and the hydraulic pressure is increased. A hydraulic rod is connected to the shaft by threads, and a communication space is communicated between the hydraulic space and each of the motor spaces, and the polishing motor is connected so as to slide in each of the motor spaces. A slide block connected to the motor space so as to be slidable is connected to one side of each of the polishing motors, and a polishing shaft is connected to the other side of each of the polishing motors so that the polishing shaft can be transmitted. A polishing sheet for polishing is fixed to the other side of the polishing shaft, and an isolation block connected to the motor space so as to be slidable is connected to the side of each of the polishing shafts close to the motor so as to rotate. A support spring is connected between the block and one side wall of the motor space.

優選の技術プランとして、前記ワックスがけ装置は前記塗装空間の両側に固定的に取り付けられた開口ゴムブロックを含み、左側の前記送り空間の上側にはスライド空間が設けられ、前記スライド空間の中にはL型ブロックがスライドできるように連結され、各前記L型ブロックと各前記L型ブロックに対応する前記スライド空間の片側壁との間には復帰ばねが連結され、前記塗料貯蔵空間と前記塗装空間の間には流れ制限空間が連通するように設けられ、前記流れ制限空間の前後壁には流れ制限軸が回転できるように連結され、前記流れ制限軸が後ろへ延び前記流れ制限空間の後ろ壁を貫通して前記伝動空間の中に入り前記伝動空間の前後壁と回転できるように連結され、前記流れ制限軸には前記第三プーリーと対応する流れ制限プーリーが固定され、前記流れ制限プーリーと前記第三プーリーの間には第三ベルトが連結され、前記流れ制限軸の前側には流れ制限ブロックが固定され、前記流れ制限ブロックには油を置くことのできる四つの流れ制限穴が固定されている。 As a preferred technical plan, the waxing device includes open rubber blocks fixedly attached to both sides of the coating space, and a slide space is provided above the feed space on the left side in the slide space. Is connected so that the L-shaped block can slide, and a return spring is connected between each of the L-shaped blocks and one side wall of the slide space corresponding to each of the L-shaped blocks, and the paint storage space and the coating are connected. The flow limiting space is provided so as to communicate between the spaces, and the flow limiting shaft is connected to the front and rear walls of the flow limiting space so as to be rotatable, and the flow limiting shaft extends rearward and is behind the flow limiting space. It penetrates the wall, enters the transmission space, and is connected to the front and rear walls of the transmission space so as to be rotatable, and a flow restriction pulley corresponding to the third pulley is fixed to the flow restriction shaft. A third belt is connected between the third pulley and the third pulley, a flow limiting block is fixed to the front side of the flow limiting shaft, and four flow limiting holes in which oil can be placed are fixed to the flow limiting block. Has been done.

優選の技術プランとして、前記乾燥装置は前記乾燥空間の左右壁に回転できるように連結された乾燥箱を含み、前記乾燥箱の内側には乾燥用の乾燥ライトが固定され、前記乾燥箱には第一はすば歯車が固定され、前記乾燥空間の後ろ側には傘歯車空間が設けられ、前記傘歯車空間の前後壁には歯車軸が回転できるように連結され、前記歯車軸が前へ延びて前記傘歯車空間の前側壁を貫通し前記乾燥空間の中に入り前記乾燥空間の前壁と回転できるように連結され、前記歯車軸の前側には前記第一はすば歯車と噛合している第二はすば歯車が固定され、前記歯車軸の後ろ側には第二傘歯車が固定され、前記傘歯車空間の左壁と前記伝動空間の右壁の間には横軸が回転できるように連結され、前記横軸の左側には前記第一傘歯車と噛合している第三傘歯車が固定され、前記横軸の右側には前記第二傘歯車と噛合している第四傘歯車が固定されている。 As a preferred technical plan, the drying device includes a drying box rotatably connected to the left and right walls of the drying space, a drying light for drying is fixed inside the drying box, and the drying box has a drying light. First, the helical gear is fixed, a bevel gear space is provided behind the dry space, and the front and rear walls of the bevel gear space are connected so that the gear shaft can rotate, and the gear shaft is moved forward. It extends, penetrates the front side wall of the bevel gear space, enters the dry space, is connected to the front wall of the dry space so as to be rotatable, and meshes with the first helical gear on the front side of the gear shaft. The second helical gear is fixed, the second bevel gear is fixed behind the gear shaft, and the horizontal shaft rotates between the left wall of the bevel gear space and the right wall of the transmission space. The third bevel gear meshing with the first bevel gear is fixed on the left side of the horizontal axis, and the fourth bevel gear meshing with the second bead gear is fixed on the right side of the horizontal axis. The bevel gear is fixed.

優選の技術プランとして、各前記送り輪にはゴムリングが固定され、前記ゴムリングは弾性ゴムから作られている。 As a technical plan of choice, a rubber ring is fixed to each of the feed rings, and the rubber ring is made of elastic rubber.

優選の技術プランとして、各前記L型ブロックにはゴムブロックが固定されている。 As an excellent technical plan, a rubber block is fixed to each of the L-shaped blocks.

優選の技術プランとして、前記塗料貯蔵空間の頂壁には塗料入口が設けられている。 As an excellent technical plan, a paint entrance is provided on the top wall of the paint storage space.

優選の技術プランとして、前記塗装空間の底壁には流出空間が設けられ、前記流出空間の下側には回収スイッチが設けられている。 As an excellent technical plan, an outflow space is provided on the bottom wall of the painting space, and a recovery switch is provided on the lower side of the outflow space.

優選の技術プランとして、前記本体の下側には支持枠が固定されている。 As an excellent technical plan, a support frame is fixed to the lower side of the main body.

複雑で部品の多い伝統的な塗装装置と比べ、本願発明は一体化の伝動によって部品の損耗を大きく減らし、そして、伝統的な研磨装置と比べ、本願発明は液圧装置をモーターの上方に取り付けることで床材の厚さによって研磨の厚さを調整でき、また、伝統的なスプレー式塗装と比べ、本願発明は浸し式塗装の方法を採り、これによって高級床材に対する塗装面積を増やすことができ、さらに、伝動的な上下にそれぞれ乾燥箱を配置する方法と比べ、本願発明は回転式乾燥の方法を採り、はすば歯車の組み合わせよって乾燥箱の回転を制御し、これにより乾燥ライトの回転を制御し、乾燥を更に均一にする。 Compared to traditional painting equipment, which is complex and has many parts, the present invention greatly reduces the wear of parts by the transmission of integration, and compared to traditional polishing equipment, the present invention mounts the hydraulic device above the motor. Therefore, the thickness of polishing can be adjusted by the thickness of the floor material, and compared to the traditional spray coating, the present invention adopts the dipping coating method, which can increase the coating area for the high-grade floor material. In addition, the present invention adopts a rotary drying method, in which the rotation of the drying box is controlled by a combination of helical gears, as compared with the method of arranging the drying boxes on the upper and lower sides of the drying light. Control rotation to make drying more uniform.

下記に図1〜4をあわせて本願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は本願発明装置の正面図であり、以下に述べる上下左右前後の方向と図1の自身投影関係の上下左右前後の方向とが一致である。 In order to explain the invention of the present application in detail with reference to FIGS. 1 to 4 below and to explain the present invention in a convenient manner, the following directions are defined as follows: FIG. The left-right front-back direction and the up-down, left-right front-back direction of the self-projection relationship in FIG. 1 are the same.

図1は本願発明の全体断面の正面構成略図FIG. 1 is a schematic front view of the entire cross section of the present invention. 図2は図1の後側の断面図FIG. 2 is a cross-sectional view of the rear side of FIG. 図3は図1のA―A方向の断面図FIG. 3 is a cross-sectional view of FIG. 1 in the AA direction. 図4は図2の前側の断面図FIG. 4 is a cross-sectional view of the front side of FIG.

本願発明書に開示した全ての特徴、或いは開示した全ての方法、過程中のステップは、互いに排斥する特徴或いはステップ以外に、いかなる方式で組み合わせることができる。 All features disclosed in the present invention, or all disclosed methods, steps in the process can be combined in any manner other than features or steps that exclude each other.

図1〜4を参照し、高級床材の研磨塗装装置は、本体20を含み、前記本体20の中には送り空間72が左右対称に設けられ、二つの前記送り空間72の上下壁には八つの回転輪空間73が設けられ、前記回転輪空間73の後ろ側には伝動空間53が設けられ、前記送り空間72と前記伝動空間53の間には木板を送ることのできる送り装置101が設けられ、前記送り装置101は前記伝動空間53の後ろ壁に上下対称に固定的に取り付けられた伝動モーター58を含み、各前記伝動モーター58の前側にはモーター軸57が伝動できるように連結され、各前記伝動軸57の後ろ側には第一プーリー77が固定され、各前記モーター軸57の中側には第二プーリー59が固定され、各前記モーター軸57の前側には第一傘歯車66が固定され、各前記伝動モーター58の左右両側にはプーリー軸47が対称に設けられ、各前記プーリー軸47が前記伝動空間53の前後壁と回転できるように連結され、各前記プーリー軸47が前に延びて前記伝動空間53の前壁を貫通し前記回転輪空間73の中に入り前記回転輪空間73の前後壁と回転できるように連結され、各前記プーリー軸47の片側には互いに対して対称である貫通軸50が設けられ、各前記貫通軸50が前記伝動空間53の前後壁と回転できるように連結され、前記貫通軸50が前へ伸び前記伝動空間53の前壁を貫通し前記回転輪空間73の中に入り前記回転輪空間73の前後壁と回転できるように連結され、各前記プーリー軸47の後ろ側には第三プーリー55が固定され、各前記プーリー軸47の中側には前記第二プーリー59と対応する第四プーリー54が固定され、前記第二プーリー59と前記第四プーリー54の間には第一ベルト56が連結され、各前記貫通軸50と前記プーリー軸47には送り輪22が固定され、各前記貫通軸50と前記プーリー軸47には互いに対して対称である第五プーリー51が固定され、互いに対して対称である第五プーリー51の間には第二ベルト52が連結され、左側の前記送り空間72の上側にはモーター空間23が設けられ、前記送り空間72の前側には液圧空間75が設けられ、前記液圧空間75と前記モーター空間23の間には床材を研磨する研磨装置102が設けられ、二つの前記送り空間72の間には塗装空間44が設けられ、前記塗装空間44の上側には塗料貯蔵空間32が設けられ、前記塗料貯蔵空間32と前記塗装空間44の間には床材にワックスがけをするワックスがけ装置103が設けられ、右側の前記送り空間72の上下壁には乾燥空間34が設けられ、前記乾燥空間34の中には床材を乾燥させる乾燥装置104が設けられている。 With reference to FIGS. 1 to 4, the high-grade flooring polishing and coating device includes the main body 20, and the feed spaces 72 are provided symmetrically in the main body 20, and the upper and lower walls of the two feed spaces 72 are provided. Eight rotary wheel spaces 73 are provided, a transmission space 53 is provided behind the rotary wheel space 73, and a feed device 101 capable of feeding a wooden board is provided between the feed space 72 and the transmission space 53. The feeding device 101 includes a transmission motor 58 which is fixedly attached to the rear wall of the transmission space 53 in a vertically symmetrical manner, and is connected to the front side of each transmission motor 58 so that a motor shaft 57 can be transmitted. A first pulley 77 is fixed to the rear side of each of the transmission shafts 57, a second pulley 59 is fixed to the middle side of each of the motor shafts 57, and a first umbrella gear is fixed to the front side of each of the motor shafts 57. 66 is fixed, pulley shafts 47 are symmetrically provided on both left and right sides of each of the transmission motors 58, and each of the pulley shafts 47 is connected so as to be rotatable with the front and rear walls of the transmission space 53, and each of the pulley shafts 47 is connected. Extends forward, penetrates the front wall of the transmission space 53, enters the rotary wheel space 73, and is connected to the front and rear walls of the rotary wheel space 73 so as to be rotatable, and is connected to each other on one side of each of the pulley shafts 47. A penetrating shaft 50 that is symmetrical with respect to the penetrating shaft 50 is provided, and each of the penetrating shafts 50 is connected to the front and rear walls of the transmission space 53 so as to be rotatable, and the penetrating shaft 50 extends forward and penetrates the front wall of the transmission space 53. The third pulley 55 is fixed to the rear side of each of the pulley shafts 47 so as to enter the rotary wheel space 73 and be connected to the front and rear walls of the rotary wheel space 73 so as to be rotatable. A fourth pulley 54 corresponding to the second pulley 59 is fixed to the inner side, a first belt 56 is connected between the second pulley 59 and the fourth pulley 54, and each of the through shafts 50 and the said A feed ring 22 is fixed to the pulley shaft 47, and a fifth pulley 51 that is symmetrical with respect to each other is fixed to each of the through shaft 50 and the pulley shaft 47, and between the fifth pulley 51 that is symmetrical to each other. A second belt 52 is connected to the body, a motor space 23 is provided above the feed space 72 on the left side, a hydraulic space 75 is provided on the front side of the feed space 72, and the hydraulic space 75 and the above. A polishing device 102 for polishing the floor material is provided between the motor spaces 23, a coating space 44 is provided between the two feed spaces 72, and a paint storage space 32 is provided above the coating space 44. And said paint storage A waxing device 103 for waxing the floor material is provided between the space 32 and the coating space 44, and a drying space 34 is provided on the upper and lower walls of the feed space 72 on the right side, and the inside of the drying space 34. Is provided with a drying device 104 for drying the flooring material.

前記研磨装置102は前記液圧空間75の前壁に固定的に取り付けられた液圧モーター65を含み、前記液圧モーター65には液圧軸64が伝動できるように連結され、前記液圧軸64には液圧ロッド63がねじ山によって連結され、前記液圧空間75と各前記モーター空間23の間には連通空間62が連通しており、各前記モーター空間23の中には研磨モーター25がスライドできるように連結され、各前記研磨モーター25の片側には前記モーター空間23とスライドできるように連結されたスライドブロック24が連結され、各前記研磨モーター25のもう片側には研磨軸48が伝動できるように連結され、各前記研磨軸48のもう片側には研磨用の研磨シート49が固定され、各前記研磨軸48においてモーターに近接する側には前記モーター空間23とスライドできるように連結された隔離ブロック26が回転できるように連結され、各前記隔離ブロック26と前記モーター空間23の片側壁の間には支持ばね27が連結され、
前記液圧モーター65を始動することで、前記液圧軸64が駆動されて回転し、これによって前記液圧ロッド63が押し動かされ、これによって前記液圧空間75の中の液圧油が前記連通空間62から前記モーター空間23の中に入り、これによって前記スライドブロック24と前記研磨モーター25が押し動かされて上下に移動し、これによって前記研磨軸48が押し動かされて移動し、これによって前記研磨シート49が床材に対する研磨の厚さは決められる。
The polishing device 102 includes a hydraulic motor 65 fixedly attached to the front wall of the hydraulic space 75, and is connected to the hydraulic motor 65 so that the hydraulic shaft 64 can be transmitted. A hydraulic rod 63 is connected to 64 by a screw thread, a communication space 62 is communicated between the hydraulic space 75 and each of the motor spaces 23, and a polishing motor 25 is contained in each of the motor spaces 23. Are connected so that they can slide, a slide block 24 connected so as to slide with the motor space 23 is connected to one side of each of the polishing motors 25, and a polishing shaft 48 is connected to the other side of each of the polishing motors 25. It is connected so that it can be transmitted, a polishing sheet 49 for polishing is fixed to the other side of each of the polishing shafts 48, and the side of each of the polishing shafts 48 close to the motor is connected so as to slide with the motor space 23. The isolated blocks 26 are connected so as to be rotatable, and a support spring 27 is connected between each of the isolated blocks 26 and one side wall of the motor space 23.
By starting the hydraulic motor 65, the hydraulic shaft 64 is driven and rotated, whereby the hydraulic rod 63 is pushed and moved, whereby the hydraulic oil in the hydraulic space 75 is said to be said. From the communication space 62, the motor space 23 is entered, whereby the slide block 24 and the polishing motor 25 are pushed and moved up and down, whereby the polishing shaft 48 is pushed and moved, thereby moving. The polishing thickness of the polishing sheet 49 with respect to the floor material is determined.

前記ワックスがけ装置103は前記塗装空間44の両側に固定的に取り付けられた開口ゴムブロック45を含み、左側の前記送り空間72の上側にはスライド空間28が設けられ、前記スライド空間28の中にはL型ブロック30がスライドできるように連結され、各前記L型ブロック30と各前記L型ブロック30に対応する前記スライド空間28の片側壁との間には復帰ばね29が連結され、前記塗料貯蔵空間32と前記塗装空間44の間には流れ制限空間33が連通するように設けられ、前記流れ制限空間33の前後壁には流れ制限軸41が回転できるように連結され、前記流れ制限軸41が後ろへ延び前記流れ制限空間33の後ろ壁を貫通して前記伝動空間53の中に入り前記伝動空間53の前後壁と回転できるように連結され、前記流れ制限軸41には前記第三プーリー55と対応する流れ制限プーリー60が固定され、前記流れ制限プーリー60と前記第三プーリー55の間には第三ベルト97が連結され、前記流れ制限軸41の前側には流れ制限ブロック76が固定され、前記流れ制限ブロック76には油を置くことのできる四つの流れ制限穴40が固定され、床材が左側の前記送り空間72から前記開口ゴムブロック45を通って前記塗装空間44の中に入り、塗装作業が行われ、
前記プーリー軸47が回転し前記第三プーリー55を駆動し回転させ、これによって前記流れ制限プーリー60が連動し回転し、これによって前記流れ制限軸41が駆動されて回転し、これによって前記流れ制限ブロック76が駆動されて回転し、これによって前記塗料貯蔵空間32の中の塗料がゆっくりと前記塗装空間44の中に流れ、これで前記塗装空間44の中に充分の塗料があることを保証する。
The waxing device 103 includes opening rubber blocks 45 fixedly attached to both sides of the coating space 44, and a slide space 28 is provided on the upper side of the feed space 72 on the left side, and the slide space 28 is provided in the slide space 28. Is connected so that the L-shaped block 30 can slide, and a return spring 29 is connected between each of the L-shaped blocks 30 and one side wall of the slide space 28 corresponding to each of the L-shaped blocks 30, and the paint. A flow limiting space 33 is provided between the storage space 32 and the coating space 44 so as to communicate with each other, and the flow limiting shaft 41 is connected to the front and rear walls of the flow limiting space 33 so as to be rotatable. 41 extends rearward, penetrates the back wall of the flow limiting space 33, enters the transmission space 53, is connected to the front and rear walls of the transmission space 53 so as to be rotatable, and is connected to the flow limiting shaft 41 so as to be the third. A flow limiting pulley 60 corresponding to the pulley 55 is fixed, a third belt 97 is connected between the flow limiting pulley 60 and the third pulley 55, and a flow limiting block 76 is provided on the front side of the flow limiting shaft 41. Four flow limiting holes 40, which are fixed and in which oil can be placed, are fixed in the flow limiting block 76, and the floor material passes from the feed space 72 on the left side through the opening rubber block 45 into the coating space 44. Enter, painting work is done,
The pulley shaft 47 rotates to drive and rotate the third pulley 55, whereby the flow limiting pulley 60 is interlocked and rotated, whereby the flow limiting shaft 41 is driven and rotated, thereby limiting the flow. The block 76 is driven and rotated, which allows the paint in the paint storage space 32 to slowly flow into the paint space 44, thereby ensuring that there is sufficient paint in the paint space 44. ..

前記乾燥装置104は前記乾燥空間34の左右壁に回転できるように連結された乾燥箱38を含み、前記乾燥箱38の内側には乾燥用の乾燥ライト39が固定され、前記乾燥箱38には第一はすば歯車37が固定され、前記乾燥空間34の後ろ側には傘歯車空間61が設けられ、前記傘歯車空間61の前後壁には歯車軸36が回転できるように連結され、前記歯車軸36が前へ延びて前記傘歯車空間61の前側壁を貫通し前記乾燥空間34の中に入り前記乾燥空間34の前壁と回転できるように連結され、前記歯車軸36の前側には前記第一はすば歯車37と噛合している第二はすば歯車35が固定され、前記歯車軸36の後ろ側には第二傘歯車70が固定され、前記傘歯車空間61の左壁と前記伝動空間53の右壁の間には横軸68が回転できるように連結され、前記横軸68の左側には前記第一傘歯車66と噛合している第三傘歯車67が固定され、前記横軸68の右側には前記第二傘歯車70と噛合している第四傘歯車69が固定され、
前記第一傘歯車66が回転し前記第三傘歯車67を駆動し回転させ、これによって前記横軸68と前記第四傘歯車69が連動し回転し、これによって前記第二傘歯車70と前記歯車軸36が駆動されて回転し、これによって前記歯車軸36が連動し回転し、これによって前記第一はすば歯車37と前記乾燥箱38が駆動されて回転し、これによって前記乾燥箱38の内部の前記乾燥ライト39が駆動されて回転し、これによって均一に乾燥させる効果を果たす。
The drying device 104 includes a drying box 38 rotatably connected to the left and right walls of the drying space 34, and a drying light 39 for drying is fixed inside the drying box 38, and the drying box 38 has a drying light 39 fixed therein. First, the helical gear 37 is fixed, a bevel gear space 61 is provided behind the drying space 34, and a gear shaft 36 is connected to the front and rear walls of the bevel gear space 61 so as to be rotatable. The gear shaft 36 extends forward, penetrates the front side wall of the bevel gear space 61, enters the drying space 34, and is connected to the front wall of the drying space 34 so as to be rotatable, and is connected to the front side of the gear shaft 36 so as to be rotatable. The second helical gear 35 that meshes with the first helical gear 37 is fixed, the second bevel gear 70 is fixed behind the gear shaft 36, and the left wall of the bevel gear space 61 is fixed. And the right wall of the transmission space 53 are connected so that the horizontal shaft 68 can rotate, and the third gear gear 67 meshing with the first gear gear 66 is fixed to the left side of the horizontal shaft 68. A fourth bevel gear 69 that meshes with the second bevel gear 70 is fixed to the right side of the horizontal axis 68.
The first cap gear 66 rotates to drive and rotate the third cap gear 67, whereby the horizontal shaft 68 and the fourth cap gear 69 are interlocked and rotated, whereby the second cap gear 70 and the said. The gear shaft 36 is driven and rotated, whereby the gear shaft 36 is interlocked and rotated, whereby the first helical gear 37 and the drying box 38 are driven and rotated, whereby the drying box 38 is driven and rotated. The drying light 39 inside the is driven and rotated, thereby achieving the effect of uniformly drying.

各前記送り輪22にはゴムリング21が固定され、前記ゴムリング21は弾性ゴムから作られているため、異なった厚さの床材を送ることができる。 Since the rubber ring 21 is fixed to each of the feed rings 22 and the rubber ring 21 is made of elastic rubber, flooring materials having different thicknesses can be fed.

各前記L型ブロック30にはゴムブロック46が固定されているため、密封の作用を果たすことができる。 Since the rubber block 46 is fixed to each of the L-shaped blocks 30, it can perform a sealing action.

前記塗料貯蔵空間32の頂壁には塗料入口31が設けられ、前記塗料入口31から塗料を入れることができる。 A paint inlet 31 is provided on the top wall of the paint storage space 32, and paint can be put in from the paint inlet 31.

前記塗装空間44の底壁には流出空間44が設けられ、前記流出空間43の下側には回収スイッチ42が設けられ、前記回収スイッチ42をオンにすることで前記塗装空間44の中の塗料を流出させることができる。 An outflow space 44 is provided on the bottom wall of the coating space 44, a recovery switch 42 is provided on the lower side of the outflow space 43, and the paint in the coating space 44 is painted by turning on the recovery switch 42. Can be leaked.

前記本体20の下側には支持枠71が固定され、前記本体20を支持することができる。 A support frame 71 is fixed to the lower side of the main body 20, and the main body 20 can be supported.

高級床材に対する最後の一歩の塗装をするとき、木の床材を送り空間72の中に入れ、伝動モーター58を起動し、これによって第二プーリー59が駆動されて回転し、これによって第四プーリー54が駆動されて回転し、これによってプーリー軸47が駆動されて回転し、これによって第五プーリー51と貫通軸50が駆動されて回転し、これによって送り輪22が連動し回転し、これによってゴムリング21が駆動されて回転し、これによって床材を各作業空間の中に送り、床材が送り空間72の中に入ったとき、液圧モーター65を起動し、これによって液圧軸64が駆動されて回転し、これによって液圧ロッド63が押し動かされ、これによって液圧空間75の中の液圧油が連通空間62からモーター空間23の中に入り、これによってスライドブロック24と研磨モーター25が押し動かされて上下に移動し、これによって研磨軸48が押し動かされて移動し、これによって研磨シート49が床材に対する研磨の厚さは決められる。 When painting the last step on the high-grade flooring, the wooden flooring is put into the feed space 72 and the transmission motor 58 is activated, which drives and rotates the second pulley 59, thereby the fourth. The pulley 54 is driven and rotated, whereby the pulley shaft 47 is driven and rotated, which drives and rotates the fifth pulley 51 and the through shaft 50, whereby the feed wheel 22 is interlocked and rotated. The rubber ring 21 is driven and rotated by, which feeds the floor material into each work space, and when the floor material enters the feed space 72, it activates the hydraulic motor 65, which causes the hydraulic shaft. 64 is driven to rotate, which pushes the hydraulic rod 63 so that the hydraulic oil in the hydraulic space 75 enters the motor space 23 from the communication space 62, thereby forming the slide block 24. The polishing motor 25 is pushed and moved up and down, which pushes and moves the polishing shaft 48, whereby the polishing thickness of the polishing sheet 49 with respect to the floor material is determined.

研磨完了後に床材が右方へ移動し、これによってL型ブロック30が両側へ押し動かされ、これによって床材が塗装空間44の中に入り、プーリー軸47が回転し第三プーリー55を駆動し回転させ、これによって流れ制限プーリー60が駆動されて回転し、これによって流れ制限軸41が駆動されて回転し、これによって流れ制限ブロック76が駆動されて回転し、これによって塗料貯蔵空間32の中の塗料がゆっくりと塗装空間44の中に流れ、これで塗装空間44の中に充分の塗料があることを保証し、これによって床材が乾燥空間34の中に入り、これによって第一プーリー77が回転し第三傘歯車67を駆動し回転させ、これによって横軸68と第四傘歯車69が連動し回転し、これによって第二傘歯車70と歯車軸36が駆動されて回転し、これによって歯車軸36が連動し回転し、これによって第一はすば歯車37と乾燥箱38が駆動されて回転し、これによって乾燥箱38の内部の乾燥ライト39が駆動されて回転し、これによって均一に乾燥させる効果を果たし、床板をゴムリング21によって本体20から出す。 After the polishing is completed, the floor material moves to the right, which pushes the L-shaped block 30 to both sides, whereby the floor material enters the painting space 44, the pulley shaft 47 rotates, and the third pulley 55 is driven. Rotates, which drives and rotates the flow limiting pulley 60, which drives and rotates the flow limiting shaft 41, which drives and rotates the flow limiting block 76, which causes the paint storage space 32 to rotate. The paint inside slowly flows into the paint space 44, which ensures that there is enough paint in the paint space 44, which allows the flooring material to enter the dry space 34, thereby the first pulley. 77 rotates to drive and rotate the third cap gear 67, whereby the horizontal shaft 68 and the fourth cap gear 69 are interlocked and rotated, whereby the second cap gear 70 and the gear shaft 36 are driven and rotated. As a result, the gear shaft 36 is interlocked and rotated, whereby the first helical gear 37 and the drying box 38 are driven and rotated, whereby the drying light 39 inside the drying box 38 is driven and rotated. The floor plate is pulled out from the main body 20 by the rubber ring 21 to achieve the effect of uniformly drying.

以上に述べたのはただ本願発明の具体的な実施方式で、本願発明の保護範囲はここに限らないである。全部の創造的な労働を通じなく思いついた変化と取替は本願発明の保護範囲にカバーされる。だから本願発明の保護範囲は権利要求書が限定される保護範囲を標準とする。 The above is merely a specific embodiment of the present invention, and the scope of protection of the present invention is not limited to this. Changes and replacements that come to mind through all creative labor are covered by the scope of the invention of the present application. Therefore, the scope of protection of the present invention is based on the scope of protection in which the request for rights is limited.

Claims (9)

本体を含み、前記本体の中には送り空間が左右対称に設けられ、二つの前記送り空間の上下壁には八つの回転輪空間が設けられ、前記回転輪空間の後ろ側には伝動空間が設けられ、前記送り空間と前記伝動空間の間には木板を送ることのできる送り装置が設けられ、
前記送り装置は前記伝動空間の後ろ壁に上下対称に固定的に取り付けられた伝動モーターを含み、各前記伝動モーターの前側にはモーター軸が伝動できるように連結され、各前記伝動軸の後ろ側には第一プーリーが固定され、各前記モーター軸の中側には第二プーリーが固定され、各前記モーター軸の前側には第一傘歯車が固定され、各前記伝動モーターの左右両側にはプーリー軸が対称に設けられ、各前記プーリー軸が前記伝動空間の前後壁と回転できるように連結され、各前記プーリー軸が前に延びて前記伝動空間の前壁を貫通し前記回転輪空間の中に入り前記回転輪空間の前後壁と回転できるように連結され、各前記プーリー軸の片側には互いに対して対称である貫通軸が設けられ、各前記貫通軸が前記伝動空間の前後壁と回転できるように連結され、前記貫通軸が前へ伸び前記伝動空間の前壁を貫通し前記回転輪空間の中に入り前記回転輪空間の前後壁と回転できるように連結され、各前記プーリー軸の後ろ側には第三プーリーが固定され、各前記プーリー軸の中側には前記第二プーリーと対応する第四プーリーが固定され、前記第二プーリーと前記第四プーリーの間には第一ベルトが連結され、各前記貫通軸と前記プーリー軸には送り輪が固定され、各前記貫通軸と前記プーリー軸には互いに対して対称である第五プーリーが固定され、互いに対して対称である第五プーリーの間には第二ベルトが連結され、
左側の前記送り空間の上側にはモーター空間が設けられ、前記送り空間の前側には液圧空間が設けられ、前記液圧空間と前記モーター空間の間には床材を研磨する研磨装置が設けられ、二つの前記送り空間の間には塗装空間が設けられ、前記塗装空間の上側には塗料貯蔵空間が設けられ、前記塗料貯蔵空間と前記塗装空間の間には床材にワックスがけをするワックスがけ装置が設けられ、右側の前記送り空間の上下壁には乾燥空間が設けられ、前記乾燥空間の中には床材を乾燥させる乾燥装置が設けられていることを特徴とする高級床材の研磨塗装装置。
Including the main body, feed spaces are provided symmetrically in the main body, eight rotating wheel spaces are provided on the upper and lower walls of the two feed spaces, and a transmission space is provided behind the rotating wheel spaces. A feeding device capable of feeding a wooden board is provided between the feeding space and the transmission space.
The feeding device includes a transmission motor fixedly attached to the rear wall of the transmission space symmetrically in the vertical direction, and is connected to the front side of each transmission motor so that a motor shaft can be transmitted, and is connected to the rear side of each transmission shaft. The first pulley is fixed to, the second pulley is fixed to the inside of each of the motor shafts, the first umbrella gear is fixed to the front side of each of the motor shafts, and the left and right sides of each of the transmission motors are fixed. The pulley shafts are provided symmetrically, and each of the pulley shafts is connected so as to be rotatable with the front and rear walls of the transmission space, and each of the pulley shafts extends forward and penetrates the front wall of the transmission space of the rotating wheel space. It goes inside and is connected so as to be rotatable with the front and rear walls of the rotating wheel space, and a through shaft that is symmetrical with respect to each other is provided on one side of each of the pulley shafts, and each of the through shafts is connected to the front and rear walls of the transmission space. The pulley shafts are connected so as to be rotatable, the penetrating shaft extends forward, penetrates the front wall of the transmission space, enters the rotating wheel space, and is connected so as to be rotatable with the front and rear walls of the rotating wheel space. A third pulley is fixed to the rear side of the pulley, a fourth pulley corresponding to the second pulley is fixed to the middle side of each of the pulley shafts, and a first pulley is connected between the second pulley and the fourth pulley. A belt is connected, a feed wheel is fixed to each of the through shafts and the pulley shaft, and a fifth pulley that is symmetrical to each other is fixed to each of the through shafts and the pulley shaft, which is symmetrical to each other. The second belt is connected between the fifth pulleys,
A motor space is provided on the upper side of the feed space on the left side, a hydraulic space is provided on the front side of the feed space, and a polishing device for polishing the floor material is provided between the hydraulic space and the motor space. A painting space is provided between the two feed spaces, a paint storage space is provided above the paint space, and the floor material is waxed between the paint storage space and the paint space. A high-grade floor material characterized in that a waxing device is provided, a drying space is provided on the upper and lower walls of the feeding space on the right side, and a drying device for drying the floor material is provided in the drying space. Polishing and painting equipment.
前記研磨装置は前記液圧空間の前壁に固定的に取り付けられた液圧モーターを含み、前記液圧モーターには液圧軸が伝動できるように連結され、前記液圧軸には液圧ロッドがねじ山によって連結され、前記液圧空間と各前記モーター空間の間には連通空間が連通しており、各前記モーター空間の中には研磨モーターがスライドできるように連結され、各前記研磨モーターの片側には前記モーター空間とスライドできるように連結されたスライドブロックが連結され、各前記研磨モーターのもう片側には研磨軸が伝動できるように連結され、各前記研磨軸のもう片側には研磨用の研磨シートが固定され、各前記研磨軸においてモーターに近接する側には前記モーター空間とスライドできるように連結された隔離ブロックが回転できるように連結され、各前記隔離ブロックと前記モーター空間の片側壁の間には支持ばねが連結されていることを特徴とする請求項1に記載の高級床材の研磨塗装装置。 The polishing device includes a hydraulic motor fixedly attached to the front wall of the hydraulic space, is connected to the hydraulic motor so that a hydraulic shaft can be transmitted, and is connected to the hydraulic shaft by a hydraulic rod. Are connected by threads, and a communication space is communicated between the hydraulic space and each of the motor spaces, and the polishing motors are connected so as to slide in each of the motor spaces. A slide block connected to the motor space so as to be slidable is connected to one side of the motor, a polishing shaft is connected to the other side of each of the polishing motors so that the polishing shaft can be transmitted, and polishing is performed to the other side of each of the polishing shafts. The polishing sheet for the motor is fixed, and on the side of each polishing shaft close to the motor, an isolation block connected so as to slide with the motor space is connected so as to be rotatable, and each isolation block and the motor space are connected. The polishing and coating device for a high-grade floor material according to claim 1, wherein a support spring is connected between one side wall. 前記ワックスがけ装置は前記塗装空間の両側に固定的に取り付けられた開口ゴムブロックを含み、左側の前記送り空間の上側にはスライド空間が設けられ、前記スライド空間の中にはL型ブロックがスライドできるように連結され、各前記L型ブロックと各前記L型ブロックに対応する前記スライド空間の片側壁との間には復帰ばねが連結され、前記塗料貯蔵空間と前記塗装空間の間には流れ制限空間が連通するように設けられ、前記流れ制限空間の前後壁には流れ制限軸が回転できるように連結され、前記流れ制限軸が後ろへ延び前記流れ制限空間の後ろ壁を貫通して前記伝動空間の中に入り前記伝動空間の前後壁と回転できるように連結され、前記流れ制限軸には前記第三プーリーと対応する流れ制限プーリーが固定され、前記流れ制限プーリーと前記第三プーリーの間には第三ベルトが連結され、前記流れ制限軸の前側には流れ制限ブロックが固定され、前記流れ制限ブロックには油を置くことのできる四つの流れ制限穴が固定されていることを特徴とする請求項1に記載の高級床材の研磨塗装装置。 The waxing device includes opening rubber blocks fixedly attached to both sides of the coating space, a slide space is provided above the feed space on the left side, and an L-shaped block slides in the slide space. A return spring is connected between each of the L-shaped blocks and one side wall of the slide space corresponding to each of the L-shaped blocks, and a flow flows between the paint storage space and the coating space. The limiting space is provided so as to communicate with each other, and the flow limiting shaft is connected to the front and rear walls of the flow limiting space so as to be rotatable, and the flow limiting shaft extends rearward and penetrates the back wall of the flow limiting space. It enters the transmission space and is rotatably connected to the front and rear walls of the transmission space, and a flow restriction pulley corresponding to the third pulley is fixed to the flow restriction shaft, and the flow restriction pulley and the third pulley A third belt is connected between them, a flow limiting block is fixed to the front side of the flow limiting shaft, and four flow limiting holes on which oil can be placed are fixed to the flow limiting block. The high-grade flooring material polishing and coating apparatus according to claim 1. 前記乾燥装置は前記乾燥空間の左右壁に回転できるように連結された乾燥箱を含み、前記乾燥箱の内側には乾燥用の乾燥ライトが固定され、前記乾燥箱には第一はすば歯車が固定され、前記乾燥空間の後ろ側には傘歯車空間が設けられ、前記傘歯車空間の前後壁には歯車軸が回転できるように連結され、前記歯車軸が前へ延びて前記傘歯車空間の前側壁を貫通し前記乾燥空間の中に入り前記乾燥空間の前壁と回転できるように連結され、前記歯車軸の前側には前記第一はすば歯車と噛合している第二はすば歯車が固定され、前記歯車軸の後ろ側には第二傘歯車が固定され、前記傘歯車空間の左壁と前記伝動空間の右壁の間には横軸が回転できるように連結され、前記横軸の左側には前記第一傘歯車と噛合している第三傘歯車が固定され、前記横軸の右側には前記第二傘歯車と噛合している第四傘歯車が固定されていることを特徴とする請求項1に記載の高級床材の研磨塗装装置。 The drying device includes a drying box rotatably connected to the left and right walls of the drying space, a drying light for drying is fixed inside the drying box, and the first helical gear is fixed to the drying box. Is fixed, a bevel gear space is provided behind the dry space, and the front and rear walls of the bevel gear space are connected so that the gear shaft can rotate, and the gear shaft extends forward to be the bead gear space. The first is engaged with the helical gear on the front side of the gear shaft, which is connected to the front wall of the dry space so as to penetrate the front side wall of the dry space and enter the dry space. A gear is fixed, a second bevel gear is fixed behind the gear shaft, and a horizontal shaft is connected between the left wall of the bevel gear space and the right wall of the transmission space so that the horizontal shaft can rotate. The third bevel gear meshing with the first bevel gear is fixed to the left side of the horizontal axis, and the fourth bevel gear meshing with the second bead gear is fixed to the right side of the horizontal axis. The high-grade flooring material polishing and coating apparatus according to claim 1, wherein the equipment is provided. 各前記送り輪にはゴムリングが固定され、前記ゴムリングは弾性ゴムから作られていることを特徴とする請求項1に記載の高級床材の研磨塗装装置。 The polishing and coating apparatus for a high-grade flooring material according to claim 1, wherein a rubber ring is fixed to each of the feed rings, and the rubber ring is made of elastic rubber. 各前記L型ブロックにはゴムブロックが固定されていることを特徴とする請求項3に記載の高級床材の研磨塗装装置。 The polishing and coating apparatus for a high-grade flooring material according to claim 3, wherein a rubber block is fixed to each of the L-shaped blocks. 前記塗料貯蔵空間の頂壁には塗料入口が設けられていることを特徴とする請求項3に記載の高級床材の研磨塗装装置。 The polishing and coating apparatus for a high-grade flooring according to claim 3, wherein a paint inlet is provided on the top wall of the paint storage space. 前記塗装空間の底壁には流出空間が設けられ、前記流出空間の下側には回収スイッチが設けられていることを特徴とする請求項3に記載の高級床材の研磨塗装装置。 The polishing and coating apparatus for a high-grade floor material according to claim 3, wherein an outflow space is provided on the bottom wall of the coating space, and a recovery switch is provided on the lower side of the outflow space. 前記本体の下側には支持枠が固定されていることを特徴とする請求項1に記載の高級床材の研磨塗装装置。 The polishing and coating apparatus for a high-grade flooring material according to claim 1, wherein a support frame is fixed to the lower side of the main body.
JP2019217441A 2019-08-27 2019-11-29 Polish coating device of high grade floor material Pending JP2021030207A (en)

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