JP3210027U - Baffle mechanism of sulfide purification device - Google Patents

Baffle mechanism of sulfide purification device Download PDF

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JP3210027U
JP3210027U JP2017000505U JP2017000505U JP3210027U JP 3210027 U JP3210027 U JP 3210027U JP 2017000505 U JP2017000505 U JP 2017000505U JP 2017000505 U JP2017000505 U JP 2017000505U JP 3210027 U JP3210027 U JP 3210027U
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tank body
liquid outlet
opening
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way pipe
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運華 李
運華 李
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運華 李
運華 李
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【課題】環境保全を図った硫化物浄化装置の邪魔板機構を提供する。【解決手段】硫化物浄化装置は、廃ガス回収浄化機構、ガス貯蔵タンク、圧力タンク、クリーンな天然ガスボイラー及びスマート加硫制御システムが順次接続して回路を形成する。廃ガス回収浄化機構は、地面に固設されたタンク体と、タンク体底端に位置する出液口と、出液口上に位置する第1流量計と、出液口の開口部に設けられた多用途交換機構を少なくとも備える。多用途交換機構は、出液口の外表面上に位置する雄ネジ16と、雌ネジ17付き三方管18と、三方管各湾曲部に設けられた浸透グレードの異なる浸透膜19と、三方管の他の両端開口部に位置する可動邪魔板機構とからなる。可動邪魔板機構は、管体の開口部に位置し回転端が水平となる回転モータ23と、周縁部が回転モータの回転端と固結するバッフルカバー24と、管体の開口部に固設された第2流量計25とからなる。【選択図】図6An object of the present invention is to provide a baffle plate mechanism for a sulfide purifying apparatus for environmental protection. A sulfide purifying apparatus forms a circuit by sequentially connecting a waste gas recovery and purifying mechanism, a gas storage tank, a pressure tank, a clean natural gas boiler, and a smart vulcanization control system. The waste gas recovery and purification mechanism is provided in a tank body fixed on the ground, a liquid outlet located at the bottom end of the tank body, a first flow meter located on the liquid outlet, and an opening of the liquid outlet. And at least a multipurpose exchange mechanism. The versatile exchange mechanism includes a male screw 16 located on the outer surface of the liquid outlet, a three-way pipe 18 with a female screw 17, a permeation membrane 19 having different permeation grades provided in each curved portion of the three-way pipe, and a three-way pipe. And a movable baffle plate mechanism located at the other end opening. The movable baffle plate mechanism is fixed to the opening of the tubular body, the rotating motor 23 positioned at the opening of the tubular body, the rotation end of which is horizontal, the baffle cover 24 whose periphery is fixed to the rotational end of the rotation motor, and Second flow meter 25. [Selection] Figure 6

Description

本考案は、機械・環境保全設備に関し、特に、硫化物浄化装置の邪魔板機構に関する。   The present invention relates to a machine / environmental protection facility, and more particularly to a baffle plate mechanism of a sulfide purification device.

大部分の工場は、製品生産中において非常に多くの硫化物を発生させ、現在非常に多くの環境保全装置があるが、これら環境保全装置に硫化物が排出基準に達したかどうかを自主検査する装置がなく、環境への二次汚染を起こしやすい。   Most factories generate a great deal of sulfide during product production, and there are now a lot of environmental protection devices, but these environmental protection devices are self-inspected to see if they meet the emission standards. There is no device to perform, and it is easy to cause secondary pollution to the environment.

本考案は、上記問題を解決するため、硫化物浄化装置の邪魔板機構を提供することを課題とする。   In order to solve the above problem, an object of the present invention is to provide a baffle plate mechanism for a sulfide purification device.

上記課題を達成するため、本考案は、廃ガス回収浄化機構とガス貯蔵タンクと圧力タンクとクリーンな天然ガスボイラーとスマート等価加硫制御システムとを含み、前記廃ガス回収浄化機構、ガス貯蔵タンク、圧力タンク、クリーンな天然ガスボイラー及びスマート加硫制御システムが順次に接続して回路を形成し、前記スマート加硫制御システムがクリーンな天然ガスボイラーに接続する加硫プレス機と、加硫プレス機上に固設された外付け式制御装置とからなり;前記外付け式制御装置は、加硫プレス機の外表面上に開設された凹溝と、凹溝に対向する内表面上に嵌着された軸受と、両端が各々軸受内に位置する回転軸と、一端が回転軸の中心部と固結する矩形接続部材と、矩形接続部材と互いに挿着する外付けタッチパネルとからなり;前記廃ガス回収浄化機構は、地面上に固設されたタンク体と、タンク体上端の側表面に位置し且つ加硫プレス機に連なる給液口と、タンク体底端の側表面上に位置し且つ加硫プレス機に連なる吸気口と、タンク体頂端に位置し且つガス貯蔵タンクに連なる排気口と、タンク体底端に位置する出液口、出液口上に位置する第1流量計と、吸気口の開口部に設けられたターボチャージ吸気機構と、出液口の開口部に設けられた多用途交換機構と、タンク体内の上端に設けられた液受け皿機構とからなり;前記多用途交換機構は、出液口の外表面上に位置する雄ネジと、一端の内表面上に位置し雌ネジ付き三方管と、三方管に位置する管体の各湾曲部に設けられた浸透グレードの異なる浸透膜と、三方管の他の両端の開口部に位置する可動邪魔板機構とからなる硫化物浄化装置の吸気機構であって、前記可動邪魔板機構は、管体の開口部に位置し且つ回転端が水平となる回転モータ(23)と、周縁部が前記回転モータ(23)の回転端と固結するバッフルカバー(24)と、管体の開口部に固設された第2流量計(25)とからなる。   To achieve the above object, the present invention includes a waste gas recovery and purification mechanism, a gas storage tank, a pressure tank, a clean natural gas boiler, and a smart equivalent vulcanization control system. A pressure tank, a clean natural gas boiler and a smart vulcanization control system are sequentially connected to form a circuit, and the smart vulcanization control system connects to a clean natural gas boiler, and a vulcanization press An external control device fixed on the machine; the external control device is fitted on a concave groove formed on the outer surface of the vulcanizing press and on an inner surface facing the concave groove. A bearing that is attached, a rotating shaft whose both ends are located in the bearing, a rectangular connecting member that is fixed to the center of the rotating shaft at one end, and an external touch panel that is attached to the rectangular connecting member. The waste gas recovery and purification mechanism includes a tank body fixed on the ground, a liquid supply port located on the side surface of the upper end of the tank body and connected to the vulcanizing press, and a position on the side surface of the tank body bottom end. And an inlet port connected to the vulcanizing press, an exhaust port positioned at the top end of the tank body and connected to the gas storage tank, a liquid outlet port positioned at the tank body bottom end, and a first flow meter positioned above the liquid outlet port A turbocharge air intake mechanism provided at the opening of the intake port, a multipurpose exchange mechanism provided at the opening of the liquid outlet, and a liquid tray mechanism provided at the upper end of the tank body; The exchange mechanism consists of a male thread located on the outer surface of the outlet, a three-way pipe with a female thread located on the inner surface of one end, and a permeation grade provided on each curved portion of the tubular body located in the three-way pipe Movable baffle plates located at the openings at the other ends of the three-way pipe The movable baffle plate mechanism includes a rotary motor (23) positioned at the opening of the tubular body and having a horizontal rotation end, and a peripheral portion of the rotary motor. The baffle cover (24) solidified with the rotating end of (23) and the second flow meter (25) fixed at the opening of the tube body.

前記ターボチャージ吸気機構は、吸気口(12)に連なり且つ横に置くタービンキャビネット(20)と、前記タービンキャビネット(20)内に位置し且つ駆動軸が上に向くタービン駆動装置(21)と、前記タービン駆動装置(21)の駆動軸と固結するタービン(22)とからなるとしてもよい。   The turbocharge intake mechanism includes a turbine cabinet (20) that is connected to the intake port (12) and is placed on the side, a turbine drive device (21) that is located in the turbine cabinet (20) and has a drive shaft facing upward, It may consist of a turbine (22) solidified with a drive shaft of the turbine drive (21).

前記液受け皿機構は、周縁の側表面がタンク体内に固設された円形液受け板と、円形液受け板に均一に開設された複数の円形孔と、円形液受け板の下表面上に固設され且つ円形孔と各々対応する機械分離板機構としてもよい。   The liquid receiving tray mechanism is fixed on a circular liquid receiving plate whose peripheral side surface is fixed in the tank body, a plurality of circular holes formed uniformly in the circular liquid receiving plate, and a lower surface of the circular liquid receiving plate. It is good also as a machine separation board mechanism provided and each corresponding to a circular hole.

前記機械分離板機構は、円形液受け板の下表面上に固設され且つ伸縮側が下に向く一組のマイクロリニアモータと、一端が2個のマイクロリニアモータ伸縮側と固結し且つ互いに平行となる2個の立レバーと、2個の立レバー上に固設され且つ上から下に順次に配列する3枚の分離板と、各分離板上に開設された分離孔としてもよい。   The mechanical separation plate mechanism includes a pair of micro linear motors fixed on the lower surface of the circular liquid receiving plate and having the expansion / contraction side facing downward, and one end fixed to the two micro linear motor expansion / contraction sides and parallel to each other. The two standing levers, three separation plates fixed on the two standing levers and sequentially arranged from the top to the bottom, and separation holes opened on the separation plates may be used.

前記3枚の分離板の直径は、上から下に順次減少するとしてもよい。   The diameters of the three separation plates may be decreased sequentially from top to bottom.

前記排気口は、低圧管を通じてガス貯蔵タンクと繋がるとしてもよい。   The exhaust port may be connected to a gas storage tank through a low pressure pipe.

前記ガス貯蔵タンクは、圧力タンク内の圧力管を通じてクリーンな天然ガスボイラーと繋がるとしてもよい。   The gas storage tank may be connected to a clean natural gas boiler through a pressure pipe in the pressure tank.

前記矩形接続部材は、データ線を通じて加硫プレス機と接続してもよい。   The rectangular connecting member may be connected to a vulcanizing press through a data line.

本考案によると、省エネ・二酸化炭素排出量の減少、環境保全等の面に対し現実的や深遠な意義を有し、同時に循環利用を実現し、還水管に圧力がなく正常生産に影響を及ぼさず、同種の製造業者と差別化し、効率をアップし、作業場に廃水、泡立ち等の現象がない。   According to the present invention, it has practical and profound significance in terms of energy saving, reduction of carbon dioxide emissions, environmental conservation, etc., and at the same time, it realizes circulation use, and there is no pressure on the return pipe, affecting normal production. Differentiate from similar manufacturers, increase efficiency, and have no wastewater or foaming phenomena in the workplace.

本考案に係る硫化物浄化装置の構造を示す模式図Schematic diagram showing the structure of the sulfide purification device according to the present invention 本考案に係る硫化物浄化装置の上面図Top view of the sulfide purification device according to the present invention 本考案に係る硫化物浄化装置の左側面図Left side view of the sulfide purification device according to the present invention 本考案に係る硫化物浄化装置の加硫プレス機の左側面図Left side view of the vulcanizing press of the sulfide purification device according to the present invention 本考案に係る硫化物浄化装置の部分拡大図Partial enlarged view of the sulfide purification device according to the present invention 本考案に係る硫化物浄化装置の三方管部分の拡大図Enlarged view of the three-way pipe part of the sulfide purification device according to the present invention 本考案に係る硫化物浄化装置の機械分離板機構部分の拡大図Enlarged view of the mechanical separation plate mechanism part of the sulfide purification device according to the present invention 本考案に係る硫化物浄化装置の外付けタッチパネル部分の拡大図Enlarged view of the external touch panel of the sulfide purification device according to the present invention

以下、添付図面を基に本考案に対して具体的説明を行う。図1乃至図8に示すように、硫化物浄化装置であって、廃ガス回収浄化機構とガス貯蔵タンク1と圧力タンク2とクリーンな天然ガスボイラー3とスマート等価加硫制御システムとを含み、前記廃ガス回収浄化機構、ガス貯蔵タンク1、圧力タンク2、クリーンな天然ガスボイラー3及びスマート加硫制御システムが順次に接続して回路を形成し、前記スマート加硫制御システムがクリーンな天然ガスボイラー3に接続する加硫プレス機4と、加硫プレス機4上に固設された外付け式制御装置とからなり;前記外付け式制御装置は、加硫プレス機4の外表面上に開設された凹溝5と、凹溝5に対向する内表面上に嵌着された軸受6と、両端が各々軸受6内に位置する回転軸7と、一端が回転軸7の中心部と固結する矩形接続部材8と、矩形接続部材8と互いに挿着する外付けタッチパネル9とからなり;前記廃ガス回収浄化機構は、地面上に固設されたタンク体10と、タンク体10上端の側表面に位置し且つ加硫プレス機4に連なる給液口11と、タンク体10底端の側表面上に位置し且つ加硫プレス機4に連なる吸気口12と、タンク体10頂端に位置し且つガス貯蔵タンク1に連なる排気口13と、タンク体10底端に位置する出液口14、出液口14上に位置する第1流量計15と、吸気口12の開口部に設けられたターボチャージ吸気機構と、出液口14の開口部に設けられた多用途交換機構と、タンク体10内の上端に設けられた液受け皿機構とからなり;前記多用途交換機構は、出液口14の外表面上に位置する雄ネジ16と、一端の内表面上に位置し雌ネジ17付き三方管18と、三方管18に位置する管体の各湾曲部に設けられた浸透グレードの異なる浸透膜19と、三方管18の他の両端の開口部に位置する可動邪魔板機構とからなり;前記ターボチャージ吸気機構は、吸気口12に連なり且つ横に置くタービンキャビネット20と、タービンキャビネット20内に位置し且つ駆動軸が上に向くタービン駆動装置21と、タービン駆動装置21の駆動軸と固結するタービン22とからなり;前記可動邪魔板機構は、管体の開口部に位置し且つ回転端が水平となる回転モータ23と、周縁部が回転モータ23の回転端と固結するバッフルカバー24と、管体の開口部に固設された第2流量計25とからなり;前記液受け皿機構は、周縁の側表面がタンク体10内に固設された円形液受け板26と、円形液受け板26に均一に開設された複数の円形孔27と、円形液受け板26の下表面上に固設され且つ円形孔27と各々対応する機械分離板機構とからなり;前記機械分離板機構は、円形液受け板26の下表面上に固設され且つ伸縮側が下に向く一組のマイクロリニアモータ28と、一端が2個のマイクロリニアモータ28伸縮側と固結し且つ互いに平行となる2個の立レバー29と、2個の立レバー29上に固設され且つ上から下に順次に配列する3枚の分離板30と、各分離板30上に開設された分離孔31とからなり;前記3枚の分離板30の直径は、上から下に順次減少し;前記排気口13は、低圧管32を通じてガス貯蔵タンク1と繋がり;前記ガス貯蔵タンク1は、圧力タンク2内の圧力管33を通じてクリーンな天然ガスボイラー3と繋がり;前記矩形接続部材8は、データ線を通じて加硫プレス機4と接続する。   Hereinafter, the present invention will be described in detail with reference to the accompanying drawings. As shown in FIG. 1 to FIG. 8, the sulfide purifier includes a waste gas recovery and purification mechanism, a gas storage tank 1, a pressure tank 2, a clean natural gas boiler 3, and a smart equivalent vulcanization control system, The waste gas recovery and purification mechanism, gas storage tank 1, pressure tank 2, clean natural gas boiler 3 and smart vulcanization control system are sequentially connected to form a circuit, and the smart vulcanization control system is clean natural gas. It comprises a vulcanizing press 4 connected to the boiler 3 and an external control device fixed on the vulcanizing press 4; the external control device is provided on the outer surface of the vulcanizing press 4. An established groove 5, a bearing 6 fitted on the inner surface facing the groove 5, a rotating shaft 7 having both ends positioned in the bearing 6, and one end fixed to the center of the rotating shaft 7. A rectangular connecting member 8 to be connected, and a rectangular contact The waste gas recovery and purification mechanism is composed of a tank body 10 fixed on the ground, and a vulcanizing press machine located on the side surface of the upper end of the tank body 10. 4, a liquid supply port 11 connected to the tank body 10, an intake port 12 positioned on the side surface of the bottom end of the tank body 10 and connected to the vulcanizing press 4, and an exhaust port positioned at the top end of the tank body 10 and connected to the gas storage tank 1. 13, a liquid outlet 14 located at the bottom end of the tank body 10, a first flow meter 15 located on the liquid outlet 14, a turbocharge intake mechanism provided at the opening of the air inlet 12, and a liquid outlet 14, a multipurpose exchange mechanism provided at the opening of the tank 14, and a liquid tray mechanism provided at the upper end of the tank body 10; the multipurpose exchange mechanism is a male located on the outer surface of the liquid outlet 14. Screw 16 and female screw 17 located on the inner surface of one end It consists of a three-way pipe 18, an osmotic membrane 19 of a different osmotic grade provided at each curved part of the tubular body located in the three-way pipe 18, and a movable baffle plate mechanism located at the openings at the other ends of the three-way pipe 18. The turbocharged intake mechanism includes a turbine cabinet 20 that is connected to the intake port 12 and placed sideways; a turbine drive device 21 that is located in the turbine cabinet 20 and has a drive shaft facing upward; and a drive shaft of the turbine drive device 21; The movable baffle plate mechanism includes a rotary motor 23 positioned at the opening of the tubular body and having a rotating end that is horizontal, and a baffle having a peripheral edge fixed to the rotating end of the rotating motor 23. A cover 24 and a second flow meter 25 fixed at the opening of the tube; the liquid receiving tray mechanism includes a circular liquid receiving plate 26 whose peripheral side surface is fixed within the tank body 10; Round liquid A plurality of circular holes 27 provided uniformly in the receiving plate 26; and a mechanical separating plate mechanism fixed on the lower surface of the circular liquid receiving plate 26 and corresponding to each of the circular holes 27; Is a set of micro linear motors 28 fixed on the lower surface of the circular liquid receiving plate 26 and extending toward the lower side, and one end of the micro linear motor 28 is fixed to the expansion and contraction sides and parallel to each other. Two standing levers 29, three separation plates 30 fixed on the two standing levers 29 and sequentially arranged from the top to the bottom, and separation holes 31 opened on each separation plate 30 The diameter of the three separation plates 30 decreases sequentially from top to bottom; the exhaust port 13 is connected to the gas storage tank 1 through a low-pressure pipe 32; the gas storage tank 1 is located in the pressure tank 2; Clean natural gas boiler through pressure tube 33 And connection; the rectangular connecting member 8 is connected to the vulcanizing press machine 4 through the data line.

本実施形態の特徴としては、廃ガス回収浄化機構、ガス貯蔵タンク、圧力タンク、クリーンな天然ガスボイラー及びスマート加硫制御システムが順次に接続して回路を形成し、前記スマート加硫制御システムがクリーンな天然ガスボイラーに連接する加硫プレス機と加硫プレス機上に固設された外付け式制御装置とからなり;外付け式制御装置は加硫プレス機の外表面上に開設された凹溝と、凹溝に対向する内表面上に嵌着された軸受と、両端が各々軸受内に位置する回転軸と、一端が回転軸の中心部と固結する矩形接続部材と、矩形接続部材と互いに挿着する外付けタッチパネルとからなり;廃ガス回収浄化機構が地面上に固設されたタンク体と、タンク体上端の側表面に位置し且つ加硫プレス機に連なる給液口と、タンク体底端の側表面上に位置し且つ加硫プレス機に連なる吸気口と、タンク体頂端に位置し且つガス貯蔵タンクに連なる排気口と、タンク体底端に位置する出液口、出液口上に位置する第1流量計と、吸気口の開口部に設けられたターボチャージ吸気機構と、出液口の開口部に設けられた多用途交換機構と、タンク体内の上端に設けられた液受け皿機構とからなり;多用途交換機構が出液口の外表面上に位置する雄ネジと、一端の内表面上に位置し雌ネジ付き三方管と、三方管に位置する管体の各湾曲部に設けられた浸透グレードの異なる浸透膜と、三方管の他の両端の開口部に位置する可動邪魔板機構とからなる。省エネ・二酸化炭素排出量の減少、環境保全等の面に対し現実的や深遠な意義を有し、同時に循環利用を実現し、還水管に圧力がなく正常生産に影響を及ぼさず、同種の製造業者と差別化し、効率をアップし、作業場に廃水、泡立ち等の現象がない。   As a feature of this embodiment, a waste gas recovery and purification mechanism, a gas storage tank, a pressure tank, a clean natural gas boiler, and a smart vulcanization control system are sequentially connected to form a circuit, and the smart vulcanization control system Consisting of a vulcanizing press connected to a clean natural gas boiler and an external control device fixed on the vulcanizing press; the external control device was established on the outer surface of the vulcanizing press A concave groove, a bearing fitted on the inner surface facing the concave groove, a rotary shaft whose ends are respectively located in the bearing, a rectangular connecting member whose one end is fixed to the center of the rotary shaft, and a rectangular connection A tank body in which a waste gas recovery and purification mechanism is fixed on the ground, and a liquid supply port connected to the vulcanizing press machine and located on a side surface of the upper end of the tank body. , Side surface of the tank body bottom end And an exhaust port located at the top end of the tank body and connected to the gas storage tank, a liquid outlet located at the bottom end of the tank body, and a first flow rate located above the liquid outlet A meter, a turbo charge intake mechanism provided at the opening of the intake port, a multipurpose exchange mechanism provided at the opening of the liquid outlet, and a liquid tray mechanism provided at the upper end of the tank body; A permeation grade provided on each curved portion of the external thread where the application changing mechanism is located on the outer surface of the outlet, the three-way pipe with the female thread located on the inner surface of one end, and the three-way pipe And a movable baffle plate mechanism located at the openings at the other ends of the three-way pipe. Realistic and profound significance in terms of energy saving, reduction of carbon dioxide emissions, environmental conservation, etc., and at the same time realizes the circulation use, there is no pressure on the return water pipe and does not affect normal production, the same type of production Differentiate from contractors and improve efficiency, and there is no phenomenon such as waste water and foaming in the workplace.

本実施形態において、生産過程中で発生した廃ガスは、管路を通じて加硫プレス機に到達し、加硫プレス機が外付け式制御装置を通じて粘着テープ加硫のスマート過程を完了させ、この過程においてデータ線を通じて一端を回転軸中心部と固結する矩形接続部材に接続する外付けタッチパネルで制御し、外付けタッチパネル内に加硫制御パラメータ及び計算ソフトウェアデータを入力しており、加硫制御パラメータは接着剤の熱性能パラメータと各部位接着剤加硫特性パラメータとコンベア仕様・型番と加硫工程パラメータと加硫シフトとを含むことで、データを受信及び分析して検査の硫化物浄化を制御する働きを果たし、加硫プレス機で処理済みの廃ガスが吸気口からタービンキャビネット内に入り、変速タービン駆動装置により駆動してタービンを回転させて昇圧排気の効果を奏し、昇圧後のガスが廃ガス回収浄化機構内に入り、廃水がタンク体に入った後液受け皿上に滴下し、そして液受け皿上の円形孔を通じて機械分離板機構に入り、同時に液体の分離に要するガスが底端表面上の吸気口からタンク体に入り、ガスがターボチャージャーを通じて昇圧した後、より一層廃水と反応を起こし、分離操作をより徹底させ;反応後で生成したガス及び反応の残存ガスは、タンク体上方の排気口から排出され;機械分離板機構において、複数の機構を用いて同時に分離操作を行い、作業効率をアップし、分離精製を終えた廃水はタンク体底端の出液口から排出され、同時に出液口上にある第1流量計により流量を計算し;液体が出液口から排出した後三方管に入り、両端の管路内に浸透密度が異なる浸透膜を設けることで、廃水を二次分離させ、所要のタイプに応じてマッチする浸透膜を設けて所要の材料を分離することもでき;管路両端に設けられた第2流量計は、管路中液体の流量を測定でき、且つ三方管の他の両端の開口部に可動邪魔板機構を設けており、必要がある時回転モータが正常動作し、回転端の回転により邪魔板が開口部を邪魔しないようにさせ、廃ガス回収浄化機構は廃水・廃ガスを低圧管でガス貯蔵タンクに連なり、水を高温ポンプで吸引し、ガスをガス吸引ポンプで圧力管まで吸引してクリーンな天然ガスボイラーに送り、クリーンな天然ガスボイラーを経由して再度加温加圧して新しい高温高圧蒸気を発生し、循環利用を実現し、還流水管路に圧力がなく、正常生産に影響を及ぼさない。   In this embodiment, the waste gas generated during the production process reaches the vulcanizing press through the pipeline, and the vulcanizing press completes the smart process of adhesive tape vulcanization through an external control device. Is controlled by an external touch panel that is connected to a rectangular connecting member that is solidified to the center of the rotary shaft through a data line, and vulcanization control parameters and calculation software data are input into the external touch panel. Includes thermal performance parameters of adhesives, adhesive adhesive vulcanization characteristics parameters, conveyor specifications / model numbers, vulcanization process parameters, and vulcanization shifts to control the sulfide purification of inspections by receiving and analyzing data The waste gas that has been processed by the vulcanizing press enters the turbine cabinet through the intake port and is driven by the variable speed turbine drive unit. The turbine is rotated to produce the effect of pressurized exhaust, and the pressurized gas enters the waste gas recovery and purification mechanism. After the waste water enters the tank body, it drops onto the liquid tray, and the machine passes through the circular hole on the liquid tray. At the same time, the gas required to separate the liquid enters the tank body from the air inlet on the bottom end surface, and after the pressure of the gas is increased through the turbocharger, the gas reacts more with the waste water, thereby making the separation operation more thorough. The gas generated after the reaction and the residual gas from the reaction are exhausted from the exhaust port above the tank body; in the mechanical separation plate mechanism, the separation operation is performed simultaneously using multiple mechanisms to improve work efficiency and separation and purification. The wastewater that has been discharged is discharged from the liquid outlet at the bottom of the tank body, and at the same time, the flow rate is calculated by the first flow meter above the liquid outlet; In the street By providing osmosis membranes with different osmotic densities, waste water can be secondarily separated, and osmosis membranes that match according to the required type can be provided to separate the required materials; the second provided at both ends of the pipeline The flow meter can measure the flow rate of liquid in the pipe, and is provided with a movable baffle mechanism at the openings at the other ends of the three-way pipe. When necessary, the rotary motor operates normally, and the rotation of the rotary end The baffle plate prevents the opening from interfering with the waste gas recovery and purification mechanism, and waste water and waste gas are connected to the gas storage tank by a low-pressure pipe, water is sucked by a high-temperature pump, and gas is sucked to the pressure pipe by a gas suction pump. Then, it is sent to a clean natural gas boiler, heated and pressurized again via a clean natural gas boiler to generate new high-temperature and high-pressure steam, realizing circulation use, and there is no pressure in the reflux water line, and normal production Has no effect.

上記実施例は、本考案の技術内容を明らかにするためのものであって、本考案はその趣旨から逸脱しない範囲で、従来公知の技術を援用して適宜設計変更可能である。   The above-described embodiments are for clarifying the technical contents of the present invention, and the present invention can be appropriately modified with the aid of conventionally known techniques without departing from the spirit of the present invention.

1 ガス貯蔵タンク
2 圧力タンク
3 クリーンな天然ガスボイラー
4 加硫プレス機
5 凹溝
6 軸受
7 回転軸
8 矩形接続部材
9 外付けタッチパネル
10 タンク体
11 給液口
12 吸気口
13 排気口
14 出液口
15 第1流量計
16 雄ネジ
17 雌ネジ
18 三方管
19 浸透膜
20 タービンキャビネット
21 タービン駆動装置
22 タービン
23 回転モータ
24 バッフルカバー
25 第2流量計
26 円形液受け板
27 円形孔
28 マイクロリニアモータ
29 立レバー
30 分離板
31 分離孔
32 低圧管
33 圧力管
DESCRIPTION OF SYMBOLS 1 Gas storage tank 2 Pressure tank 3 Clean natural gas boiler 4 Vulcanizing press 5 Groove 6 Bearing 7 Rotating shaft 8 Rectangular connection member 9 External touch panel 10 Tank body 11 Supply port 12 Inlet port 13 Exhaust port 14 Outlet Port 15 First flow meter 16 Male screw 17 Female screw 18 Three-way pipe 19 Osmosis membrane 20 Turbine cabinet 21 Turbine driving device 22 Turbine 23 Rotating motor 24 Baffle cover 25 Second flow meter 26 Circular liquid receiving plate 27 Circular hole 28 Micro linear motor 29 Standing lever 30 Separation plate 31 Separation hole 32 Low pressure pipe 33 Pressure pipe

Claims (1)

廃ガス回収浄化機構とガス貯蔵タンク(1)と圧力タンク(2)とクリーンな天然ガスボイラー(3)とスマート等価加硫制御システムとを含み、前記廃ガス回収浄化機構、前記ガス貯蔵タンク(1)、前記圧力タンク(2)、前記クリーンな天然ガスボイラー(3)及び前記スマート加硫制御システムが順次に接続して回路を形成し、前記スマート加硫制御システムが前記クリーンな天然ガスボイラー(3)に接続する加硫プレス機(4)と、前記加硫プレス機(4)上に固設された外付け式制御装置とからなり;前記外付け式制御装置は、前記加硫プレス機(4)の外表面上に開設された凹溝(5)と、前記凹溝(5)に対向する内表面上に嵌着された軸受(6)と、両端が各々前記軸受(6)内に位置する回転軸(7)と、一端が前記回転軸(7)の中心部と固結する矩形接続部材(8)と、前記矩形接続部材(8)と互いに挿着する外付けタッチパネル(9)とからなり;前記廃ガス回収浄化機構は、地面上に固設されたタンク体(10)と、前記タンク体(10)上端の側表面に位置し且つ前記加硫プレス機(4)に連なる給液口(11)と、前記タンク体(10)底端の側表面上に位置し且つ前記加硫プレス機(4)に連なる吸気口(12)と、前記タンク体(10)頂端に位置し且つ前記ガス貯蔵タンク(1)に連なる排気口(13)と、前記タンク体(10)底端に位置する出液口(14)、前記出液口(14)上に位置する第1流量計(15)と、前記吸気口(12)の開口部に設けられたターボチャージ吸気機構と、前記出液口(14)の開口部に設けられた多用途交換機構と、前記タンク体(10)内の上端に設けられた液受け皿機構とからなり;前記多用途交換機構は、前記出液口(14)の外表面上に位置する雄ネジ(16)と、一端の内表面上に位置し雌ネジ(17)付き三方管(18)と、前記三方管(18)に位置する管体の各湾曲部に設けられた浸透グレードの異なる浸透膜(19)と、前記三方管(18)の他の両端の開口部に位置する可動邪魔板機構とからなることを特徴とする硫化物浄化装置であって、
前記可動邪魔板機構は、管体の開口部に位置し且つ回転端が水平となる回転モータ(23)と、周縁部が前記回転モータ(23)の回転端と固結するバッフルカバー(24)と、管体の開口部に固設された第2流量計(25)とからなる
ことを特徴とする硫化物浄化装置の邪魔板機構。
A waste gas recovery and purification mechanism, a gas storage tank (1), a pressure tank (2), a clean natural gas boiler (3), and a smart equivalent vulcanization control system, the waste gas recovery and purification mechanism, the gas storage tank ( 1) the pressure tank (2), the clean natural gas boiler (3) and the smart vulcanization control system are sequentially connected to form a circuit, and the smart vulcanization control system is connected to the clean natural gas boiler. A vulcanizing press (4) connected to (3), and an external control device fixed on the vulcanizing press (4); the external control device is the vulcanizing press A groove (5) established on the outer surface of the machine (4), a bearing (6) fitted on the inner surface facing the groove (5), and both ends of the bearing (6). A rotating shaft (7) located inside and one end A rectangular connecting member (8) solidified to the center of the rolling shaft (7), and an external touch panel (9) to be attached to the rectangular connecting member (8); A tank body (10) fixed on the ground, a liquid supply port (11) located on the side surface of the upper end of the tank body (10) and connected to the vulcanizing press (4), and the tank body ( 10) An inlet (12) located on the side surface of the bottom end and connected to the vulcanizing press (4), and an exhaust located at the top end of the tank body (10) and connected to the gas storage tank (1) An outlet (13), a liquid outlet (14) located at the bottom end of the tank body (10), a first flow meter (15) located on the liquid outlet (14), and the inlet (12) A turbocharged intake mechanism provided at the opening of the outlet and an opening of the liquid outlet (14) It consists of a use exchange mechanism and a liquid tray mechanism provided at the upper end in the tank body (10); the multi-use exchange mechanism is a male screw (16) located on the outer surface of the liquid outlet (14) ), A three-way pipe (18) with an internal thread (17) located on the inner surface of one end, and osmotic membranes of different osmotic grades provided in the respective curved portions of the tubular body located in the three-way pipe (18) 19) and a movable baffle plate mechanism located at the openings at the other ends of the three-way pipe (18),
The movable baffle plate mechanism includes a rotary motor (23) positioned at the opening of the tubular body and having a horizontal rotation end, and a baffle cover (24) having a peripheral edge firmly connected to the rotation end of the rotation motor (23). And a second flow meter (25) fixed to the opening of the tubular body. A baffle plate mechanism for the sulfide purifier.
JP2017000505U 2017-02-08 2017-02-08 Baffle mechanism of sulfide purification device Expired - Fee Related JP3210027U (en)

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US10544732B2 (en) 2011-07-28 2020-01-28 Pratt & Whitney Canada Corp. Rotary internal combustion engine with removable subchamber insert
US10557407B2 (en) 2011-07-28 2020-02-11 Pratt & Whitney Canada Corp. Rotary internal combustion engine with pilot subchamber
US10578012B2 (en) 2011-07-28 2020-03-03 Pratt & Whitney Canada Corp. Rotary internal combustion engine with pilot subchamber
US10697365B2 (en) 2011-07-28 2020-06-30 Pratt & Whitney Canada Corp. Rotary internal combustion engine with pilot subchamber
US10801394B2 (en) 2017-11-29 2020-10-13 Pratt & Whitney Canada Corp. Rotary engine with pilot subchambers
US11215110B2 (en) 2017-10-10 2022-01-04 Pratt & Whitney Canada Corp. Rotary engine and method of combusting fuel

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10544732B2 (en) 2011-07-28 2020-01-28 Pratt & Whitney Canada Corp. Rotary internal combustion engine with removable subchamber insert
US10557407B2 (en) 2011-07-28 2020-02-11 Pratt & Whitney Canada Corp. Rotary internal combustion engine with pilot subchamber
US10578012B2 (en) 2011-07-28 2020-03-03 Pratt & Whitney Canada Corp. Rotary internal combustion engine with pilot subchamber
US10697365B2 (en) 2011-07-28 2020-06-30 Pratt & Whitney Canada Corp. Rotary internal combustion engine with pilot subchamber
US11215110B2 (en) 2017-10-10 2022-01-04 Pratt & Whitney Canada Corp. Rotary engine and method of combusting fuel
US10801394B2 (en) 2017-11-29 2020-10-13 Pratt & Whitney Canada Corp. Rotary engine with pilot subchambers

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