JP4291839B2 - Sealing device for continuous heat treatment furnace - Google Patents

Sealing device for continuous heat treatment furnace Download PDF

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JP4291839B2
JP4291839B2 JP2006249497A JP2006249497A JP4291839B2 JP 4291839 B2 JP4291839 B2 JP 4291839B2 JP 2006249497 A JP2006249497 A JP 2006249497A JP 2006249497 A JP2006249497 A JP 2006249497A JP 4291839 B2 JP4291839 B2 JP 4291839B2
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chamber
duct
gas
heat treatment
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JP2008069411A (en
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守 阪田
克浩 門谷
孝雄 勢能
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Chugai Ro Co Ltd
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Priority to KR1020070082578A priority patent/KR100961031B1/en
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    • CCHEMISTRY; METALLURGY
    • C21METALLURGY OF IRON
    • C21DMODIFYING THE PHYSICAL STRUCTURE OF FERROUS METALS; GENERAL DEVICES FOR HEAT TREATMENT OF FERROUS OR NON-FERROUS METALS OR ALLOYS; MAKING METAL MALLEABLE, e.g. BY DECARBURISATION OR TEMPERING
    • C21D9/00Heat treatment, e.g. annealing, hardening, quenching or tempering, adapted for particular articles; Furnaces therefor
    • C21D9/52Heat treatment, e.g. annealing, hardening, quenching or tempering, adapted for particular articles; Furnaces therefor for wires; for strips ; for rods of unlimited length
    • C21D9/54Furnaces for treating strips or wire
    • C21D9/56Continuous furnaces for strip or wire
    • C21D9/562Details
    • C21D9/565Sealing arrangements
    • CCHEMISTRY; METALLURGY
    • C21METALLURGY OF IRON
    • C21DMODIFYING THE PHYSICAL STRUCTURE OF FERROUS METALS; GENERAL DEVICES FOR HEAT TREATMENT OF FERROUS OR NON-FERROUS METALS OR ALLOYS; MAKING METAL MALLEABLE, e.g. BY DECARBURISATION OR TEMPERING
    • C21D1/00General methods or devices for heat treatment, e.g. annealing, hardening, quenching or tempering
    • C21D1/74Methods of treatment in inert gas, controlled atmosphere, vacuum or pulverulent material
    • CCHEMISTRY; METALLURGY
    • C21METALLURGY OF IRON
    • C21DMODIFYING THE PHYSICAL STRUCTURE OF FERROUS METALS; GENERAL DEVICES FOR HEAT TREATMENT OF FERROUS OR NON-FERROUS METALS OR ALLOYS; MAKING METAL MALLEABLE, e.g. BY DECARBURISATION OR TEMPERING
    • C21D9/00Heat treatment, e.g. annealing, hardening, quenching or tempering, adapted for particular articles; Furnaces therefor
    • C21D9/52Heat treatment, e.g. annealing, hardening, quenching or tempering, adapted for particular articles; Furnaces therefor for wires; for strips ; for rods of unlimited length
    • C21D9/54Furnaces for treating strips or wire
    • C21D9/56Continuous furnaces for strip or wire
    • C21D9/561Continuous furnaces for strip or wire with a controlled atmosphere or vacuum
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F27FURNACES; KILNS; OVENS; RETORTS
    • F27BFURNACES, KILNS, OVENS, OR RETORTS IN GENERAL; OPEN SINTERING OR LIKE APPARATUS
    • F27B9/00Furnaces through which the charge is moved mechanically, e.g. of tunnel type; Similar furnaces in which the charge moves by gravity
    • F27B9/04Furnaces through which the charge is moved mechanically, e.g. of tunnel type; Similar furnaces in which the charge moves by gravity adapted for treating the charge in vacuum or special atmosphere
    • F27B9/045Furnaces with controlled atmosphere
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F27FURNACES; KILNS; OVENS; RETORTS
    • F27BFURNACES, KILNS, OVENS, OR RETORTS IN GENERAL; OPEN SINTERING OR LIKE APPARATUS
    • F27B9/00Furnaces through which the charge is moved mechanically, e.g. of tunnel type; Similar furnaces in which the charge moves by gravity
    • F27B9/30Details, accessories, or equipment peculiar to furnaces of these types
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F27FURNACES; KILNS; OVENS; RETORTS
    • F27DDETAILS OR ACCESSORIES OF FURNACES, KILNS, OVENS, OR RETORTS, IN SO FAR AS THEY ARE OF KINDS OCCURRING IN MORE THAN ONE KIND OF FURNACE
    • F27D99/00Subject matter not provided for in other groups of this subclass
    • F27D99/0073Seals

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Mechanical Engineering (AREA)
  • Materials Engineering (AREA)
  • Crystallography & Structural Chemistry (AREA)
  • Thermal Sciences (AREA)
  • Physics & Mathematics (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • General Engineering & Computer Science (AREA)
  • Furnace Details (AREA)
  • Heat Treatment Of Strip Materials And Filament Materials (AREA)
  • Heat Treatments In General, Especially Conveying And Cooling (AREA)
  • Tunnel Furnaces (AREA)

Description

本発明は鋼板を連続熱処理する連続熱処理炉のシール装置に関する。 The present invention relates to a sealing device for a continuous heat treatment furnace for continuously heat-treating a steel plate .

鋼板の連続熱処理炉は、例えば予熱帯、加熱帯、均熱帯、冷却帯から構成される。通常は各帯に同一仕様の雰囲気ガスを供給し、炉圧をプラスに保つと同時に鋼板の表面処理(多くの場合は還元)を行なう。しかしながら、表面処理、ヒートサイクル、安全性等において特殊な要求事項がある場合、各帯を異なる雰囲気ガスで保持する必要性が出てくる。この場合は雰囲気ガスの混合を防止する為、各帯の境界部にシール装置が設けられる。   The steel sheet continuous heat treatment furnace is composed of, for example, a pre-tropical zone, a heating zone, a soaking zone, and a cooling zone. Usually, the atmosphere gas of the same specification is supplied to each band, and the furnace pressure is kept positive, and at the same time, the steel sheet is surface-treated (in many cases reduction). However, when there are special requirements in surface treatment, heat cycle, safety, etc., it becomes necessary to hold each band with a different atmospheric gas. In this case, a sealing device is provided at the boundary of each band in order to prevent mixing of the atmospheric gas.

例えば、特許文献1には、急冷帯と過時効帯の中間及び徐冷帯と急冷帯の中間に、ガスシール装置を設けた連続焼鈍設備が開示されている。このガスシール装置は、通過する鋼帯を挟んで上下に対向するガス吸引室と、該ガス吸引室の両側にガス吹き出し室を備えている。急冷帯側のガス吹き出し室からは、急冷帯からの冷却ガスが鋼帯に吹き付けられ、急冷帯に向かうガスの流れにより急冷帯からのガスの侵入を防止している。同様に、過時効帯側のガス吹き出し室からは、過時効帯からの雰囲気ガスが鋼帯に吹き付けられ、過時効帯に向かうガスの流れにより過時効帯からのガスの侵入を防止している。ガス吸引室は、両側のガス吹き出し口から流入するガスを吸引して排気する。これにより、急冷帯の雰囲気ガスが過時効帯に侵入するのを防止することができる。   For example, Patent Document 1 discloses a continuous annealing facility in which a gas seal device is provided between a quench zone and an overaging zone and between a slow zone and a quench zone. This gas seal device includes a gas suction chamber facing up and down across a passing steel strip, and gas blowing chambers on both sides of the gas suction chamber. From the gas blowing chamber on the quenching zone side, the cooling gas from the quenching zone is blown onto the steel strip, and the gas flow toward the quenching zone prevents the gas from entering from the quenching zone. Similarly, from the gas blowing chamber on the overaging zone side, the atmospheric gas from the overaging zone is blown onto the steel strip, and the gas flow toward the overaging zone prevents gas from entering from the overaging zone. . The gas suction chamber sucks and exhausts the gas flowing in from the gas outlets on both sides. Thereby, it is possible to prevent the atmosphere gas in the quenching zone from entering the overaging zone.

また、特許文献2には、均熱帯と冷却帯とをガス混合防止部を介して連接した連続焼鈍炉の雰囲気ガス混合防止装置が開示されている。この装置では、ガス混合防止部の上流側と下流側に、ストリップの上下面に押圧状態で当接するセラミックファイバーブランケット等からなるシール部をそれぞれ配設して、均熱帯と冷却帯の間の雰囲気ガスの混入を防止している。また、シール部の間の小室の雰囲気ガスを排気口を介して排気することで、小室内の圧力P1を均熱帯の圧力P2や冷却帯の圧力P3より低い圧力に保持している。
特開平9−235626 特開平9−279253
Patent Document 2 discloses an atmospheric gas mixing prevention device for a continuous annealing furnace in which a soaking zone and a cooling zone are connected via a gas mixing prevention unit. In this apparatus, on the upstream side and downstream side of the gas mixing prevention unit, seal portions made of ceramic fiber blankets and the like that are in contact with the upper and lower surfaces of the strip in a pressed state are disposed, respectively, so that the atmosphere between the soaking zone and the cooling zone is provided. Prevents gas contamination. Further, by exhausting the atmospheric gas in the small chamber between the seal portions through the exhaust port, the pressure P1 in the small chamber is maintained at a pressure lower than the soaking pressure P2 and the cooling zone pressure P3.
JP-A-9-235626 JP-A-9-279253

しかしながら、前記引用文献1のガスシール装置は、ガス吸引室とその両側のガス吹き出し室からなる一体型のダクトの形状を有し、ガス吸引室が狭くなっている。このため、上流側のガス吹き出し室から吹き出されたガスの一部が鋼板の流れに巻き込まれて中間のガス吸引室に流れ込んだときに、このガス吸引室でガスが十分に吸引されずれに下流側のガス吹き出し室にリークするという問題がある。 However, the gas sealing device of the cited document 1 has a shape of an integrated duct including a gas suction chamber and gas blowing chambers on both sides thereof, and the gas suction chamber is narrow. For this reason, when a part of the gas blown out from the upstream gas blowing chamber is caught in the flow of the steel sheet and flows into the intermediate gas suction chamber, the gas is sufficiently sucked in this gas suction chamber and is shifted downstream. There is a problem of leakage into the gas blowing chamber on the side.

前記引用文献2の雰囲気ガス混合防止装置では、セラミックファイバーブランケット等からなるシール部がストリップの上下面に押圧状態で当接するため、ストリップのエッジの形状が悪い場合にシール部が削られて損傷するという問題がある。   In the atmospheric gas mixing prevention device of the above-mentioned cited document 2, since the sealing portion made of a ceramic fiber blanket or the like contacts the upper and lower surfaces of the strip in a pressed state, the sealing portion is scraped and damaged when the shape of the edge of the strip is bad. There is a problem.

本発明は、前記従来の問題点に鑑みてなされたもので、前記引用文献1のような気体シールにおいて、上流側の室に導入したシールガスが鋼板の流れに巻き込まれて中間部を介して下流側の室に流れ込むのを低減し、また中間部の上流側及び下流側から中間部にシールガスが漏れるのを防止することができる連続熱処理炉のシール装置を提供することを課題とする。 The present invention has been made in view of the above-described conventional problems, and in the gas seal as in the cited document 1, the seal gas introduced into the upstream chamber is caught in the flow of the steel plate and interposed through the intermediate portion. It is an object of the present invention to provide a sealing device for a continuous heat treatment furnace that can reduce the flow into the downstream chamber and prevent the sealing gas from leaking from the upstream side and the downstream side of the intermediate portion to the intermediate portion.

前記課題を解決するために、本発明は、
鋼板の第1の熱処理工程を行う第1室と第2の熱処理工程を行う第2室との間に中間室を設け、前記中間室の上流側と下流側に、鋼板が通過する開口部を有し該開口部からシールガスを鋼板に向かって吹き出すダクトをそれぞれ設け、前記中間室からガスを排気する連続熱処理炉のシール装置において、
前記各ダクトに沿って昇降し、前記開口部を開く開放位置と、前記開口部を鋼板が通過する程度に閉じる閉鎖位置とに移動可能な昇降部材と、
前記昇降部材が閉鎖位置にあるときに、前記昇降部材を前記ダクトに向かって押し付け、前記昇降部材と前記ダクトの間の隙間を無くする押付け部材とを設けたものである。
In order to solve the above problems, the present invention provides:
An intermediate chamber is provided between the first chamber for performing the first heat treatment step of the steel plate and the second chamber for performing the second heat treatment step, and an opening through which the steel plate passes is provided on the upstream side and the downstream side of the intermediate chamber. In the sealing device of the continuous heat treatment furnace, each having a duct for blowing the sealing gas from the opening toward the steel plate , and exhausting the gas from the intermediate chamber,
A raising and lowering member movable up and down along each duct and movable to an open position that opens the opening and a closed position that closes the opening to the extent that a steel plate passes through the duct,
When the elevating member is in the closed position, the elevating member is pressed toward the duct, and a pressing member that eliminates a gap between the elevating member and the duct is provided.

前記連続熱処理装置のシール装置において、前記押付け部材は、先端にテーパ面を有する棒状の部材からなり、該棒状の部材を軸方向に移動させて、前記テーパ面を前記昇降部材の前記ダクトと対向する面と反対側の面に接触させることにより、前記昇降部材を前記ダクトに向かって押し付けることが好ましい。   In the sealing device of the continuous heat treatment apparatus, the pressing member is made of a rod-shaped member having a tapered surface at a tip, and the rod-shaped member is moved in the axial direction so that the tapered surface faces the duct of the elevating member. It is preferable to press the elevating member toward the duct by bringing it into contact with the surface opposite to the surface to be performed.

本発明によれば、各ダクトに沿って昇降し、開口部を開く開放位置と、開口部を鋼板が通過する程度に閉じる閉鎖位置とに移動可能な昇降部材を設けたので、昇降部材を閉鎖位置にして開口部と鋼板の間の隙間を少なくすることで、ダクトから第1室側に吹き出されたシールガスが鋼板の流れに巻き込まれて中間室に進入し、さらに第2室側に流れるのが低減される。 According to the present invention, the elevating member that is movable up and down along each duct to open the opening and the closing position that closes the opening to the extent that the steel plate passes is provided, so the elevating member is closed. By reducing the gap between the opening and the steel plate at the position, the seal gas blown from the duct to the first chamber side is caught in the flow of the steel plate and enters the intermediate chamber, and further flows to the second chamber side. Is reduced.

また、昇降部材が閉鎖位置にあるときに、昇降部材をダクトに向かって押し付け、昇降部材とダクトの間の隙間を無くする押付け部材を設けたので、昇降部材とダクトの間の隙間から中間室へのシールガスの漏れが無くなる。   In addition, when the lifting member is in the closed position, a pressing member that presses the lifting member toward the duct and eliminates the gap between the lifting member and the duct is provided. There is no leakage of sealing gas.

以上のように、第1室側から第2室側へのシールガスの進入が低減し、第1室側または第2室側から中間室へのシールガスの漏れが無くなる。
このため、中間室からガスを排気して、中間室の圧力を第1室と第2室より低く維持することができ、第1室と第2室の雰囲気ガスの混合を有効に防止することができる。
また、各室のガス雰囲気を変更することができ、鋼板の表面を調整することができる。
さらに、各室のガス雰囲気が完全に分離されるので、安全性が向上するうえ、各室での急加熱や急冷却が可能となる。
As described above, the entry of the seal gas from the first chamber side to the second chamber side is reduced, and the leakage of the seal gas from the first chamber side or the second chamber side to the intermediate chamber is eliminated.
For this reason, it is possible to exhaust the gas from the intermediate chamber so that the pressure in the intermediate chamber can be kept lower than that in the first chamber and the second chamber, and to effectively prevent the mixing of the atmospheric gas in the first chamber and the second chamber. Can do.
Moreover, the gas atmosphere of each chamber can be changed and the surface of a steel plate can be adjusted.
Furthermore, since the gas atmosphere in each chamber is completely separated, safety is improved, and rapid heating and rapid cooling in each chamber are possible.

以下、本発明の実施の形態を添付図面に従って説明する。   Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings.

図1は、本発明に係るシール装置を適用した鋼板の連続熱処理炉を示す。この連続熱処理炉は、鋼板Sの流れの上流側(図1において左側)に第1室1、下流側(図1において右側)に第2室2が設けられ、第1室1と第2室2の間にシール装置3が設けられている。第1室1は、窒素ガス雰囲気に保持され、第2室2は、水素と窒素からなるガス雰囲気に保持されている。第1室1で予熱された鋼板Sは、ロール4,5によりシール装置3を通過し、さらにロール6,7により第2室2に導かれ、該第2室2で還元加熱された後、次の工程に搬送される。 FIG. 1 shows a continuous heat treatment furnace for steel plates to which a sealing device according to the present invention is applied. The continuous heat treatment furnace, an upstream side of the flow of the steel sheet S first chamber (the left side in FIG. 1) 1, the second chamber 2 is provided on the downstream side (right side in FIG. 1), the first chamber 1 and the second chamber A sealing device 3 is provided between the two. The first chamber 1 is maintained in a nitrogen gas atmosphere, and the second chamber 2 is maintained in a gas atmosphere composed of hydrogen and nitrogen. The steel plate S preheated in the first chamber 1 passes through the sealing device 3 by the rolls 4 and 5, is further guided to the second chamber 2 by the rolls 6 and 7, and is reduced and heated in the second chamber 2. It is conveyed to the next process.

前記シール装置3は、図2に示すように、第1室1と第2室2に連続した中間室8と、該中間室8の上流側と下流側にそれぞれ設けられた第1ダクト9a、第2ダクト9bと、該第1ダクト9aの下流側と第2ダクト9bの上流側にそれぞれ設けられた第1昇降部材10a、第2昇降部材10bと、該第1昇降部材10aの下流側と第2昇降部材10bの上流側にそれぞれ設けられた第1押付け部材11a、第2押付け部材11bとからなっている。   As shown in FIG. 2, the sealing device 3 includes an intermediate chamber 8 that is continuous with the first chamber 1 and the second chamber 2, and first ducts 9a provided on the upstream side and the downstream side of the intermediate chamber 8, respectively. A second duct 9b, a first elevating member 10a and a second elevating member 10b provided on the downstream side of the first duct 9a and the upstream side of the second duct 9b, and the downstream side of the first elevating member 10a, The first pressing member 11a and the second pressing member 11b are provided on the upstream side of the second elevating member 10b.

図2に示すように、中間室8は、第1室1、第2室2と連続した炉体により形成されている。中間室8には排気口12が形成され、該排気口12に排気ライン13が接続されている。   As shown in FIG. 2, the intermediate chamber 8 is formed by a furnace body continuous with the first chamber 1 and the second chamber 2. An exhaust port 12 is formed in the intermediate chamber 8, and an exhaust line 13 is connected to the exhaust port 12.

第1ダクト9aは、第1室1と中間室8を仕切るように炉体に挿入されている。図3に示すように、第1ダクト9aには、第1室1と中間室8を連通する細長い開口部14が形成され、該開口部14を通して鋼板Sが通過するようになっている。開口部14の上縁と下縁には、図2に示すように、第1ダクト9a内部から第1室1側に向かって斜めにガス吹出口15が形成されている。第1ダクト9aには第1室1内の雰囲気ガスが図示しない循環ファンによってガス導入ライン16aを介してシールガスとして導入され、該シールガスはガス吹出口15から開口部14を通過する鋼板Sに向かって吹き出される。第2ダクト9bは、第1ダクト9aと同様の構成である。   The first duct 9 a is inserted into the furnace body so as to partition the first chamber 1 and the intermediate chamber 8. As shown in FIG. 3, the first duct 9 a is formed with an elongated opening 14 that communicates the first chamber 1 and the intermediate chamber 8, and the steel sheet S passes through the opening 14. As shown in FIG. 2, gas blowout ports 15 are formed obliquely from the inside of the first duct 9 a toward the first chamber 1 side at the upper edge and the lower edge of the opening 14. The atmosphere gas in the first chamber 1 is introduced into the first duct 9a as a seal gas through a gas introduction line 16a by a circulation fan (not shown), and the seal gas passes through the opening 14 from the gas outlet 15a. It is blown out toward. The second duct 9b has the same configuration as the first duct 9a.

第1昇降部材10aは、前記第1ダクト9aの中間室8側に配置されている。図4,5に示すように、第1昇降部材10aは、前記第1ダクト9aの開口部14とほぼ同じ又はそれ以上の幅を有し、前記第1ダクト9aに沿って昇降する上部材17と下部材18とからなっている。上部材17の上端には3本のロッド19が取り付けられ、各ロッド19は炉体を貫通して外部に突出し、それぞれ気圧シリンダ20に連結されている。同様に、下部材18の下端には3本のロッド21が取り付けられ、各ロッド21は炉体を貫通して外部に突出し、それぞれ気圧シリンダ22に連結されている。そして、気圧シリンダ20,22を作動させることで、上部材17と下部材18は、前記第1ダクト9aの開口部14を開く開放位置と、前記開口部14を鋼板Sが通過する程度に閉じる閉鎖位置とに移動可能になっている。第2昇降部材10bは、第1昇降部材10aと同様の構成である。 The first elevating member 10a is disposed on the intermediate chamber 8 side of the first duct 9a. As shown in FIGS. 4 and 5, the first elevating member 10a has a width substantially equal to or greater than the opening 14 of the first duct 9a, and the upper member 17 moves up and down along the first duct 9a. And the lower member 18. Three rods 19 are attached to the upper end of the upper member 17, and each rod 19 protrudes outside through the furnace body and is connected to the atmospheric pressure cylinder 20. Similarly, three rods 21 are attached to the lower end of the lower member 18, and each rod 21 protrudes outside through the furnace body and is connected to the atmospheric pressure cylinder 22. Then, by operating the pneumatic cylinders 20 and 22, the upper member 17 and the lower member 18 are closed to an opening position where the opening 14 of the first duct 9a is opened and to the extent that the steel sheet S passes through the opening 14. It can be moved to the closed position. The 2nd raising / lowering member 10b is the structure similar to the 1st raising / lowering member 10a.

第1押付け部材11aは、前記第1昇降部材10aの中間室8側に配置され、第1昇降部材10aの上部材17に対して2つ設けられ、下部材18に対しても2つ設けられている。図6に示すように、各第1押付け部材11aは、先端にテーパ面23を有し、後端に雄ねじ24が形成された丸棒状のシャフト25からなっている。シャフト25は炉体を貫通し、ガイド管26内を通ってガイド管26の先端に設けたナット27に螺合し、その先端にハンドル28が取り付けられている。第1押付け部材11aは、ハンドル28を手動で回転操作することで、軸方向に移動し、そのテーパ面23を第1昇降部材10aの第1ダクト9aと対向する面と反対側の面に接触させることにより、第1昇降部材10aを第1ダクト9aに向かって図中矢印P方向に押し付けるようになっている。第1押付け部材11aは、ハンドル28の代わりに、電動モータを取り付けて、自動的に移動させてもよい。また、第1押付け部材11aの駆動機構は、ねじに限らず、ラック&ピニオン機構を用いてもよい。第2押付け部材11bは、第1押付け部材11aと同様の構成である。   The first pressing member 11a is disposed on the intermediate chamber 8 side of the first elevating member 10a, and two are provided for the upper member 17 of the first elevating member 10a, and two are also provided for the lower member 18. ing. As shown in FIG. 6, each first pressing member 11 a includes a round shaft 25 having a tapered surface 23 at the tip and a male screw 24 formed at the rear end. The shaft 25 passes through the furnace body, passes through the guide tube 26 and is screwed into a nut 27 provided at the distal end of the guide tube 26, and a handle 28 is attached to the distal end. The first pressing member 11a moves in the axial direction by manually rotating the handle 28, and the tapered surface 23 of the first pressing member 11a comes into contact with the surface opposite to the surface facing the first duct 9a of the first elevating member 10a. By doing so, the first elevating member 10a is pressed toward the first duct 9a in the direction of arrow P in the figure. The first pressing member 11a may be automatically moved by attaching an electric motor instead of the handle 28. Further, the drive mechanism of the first pressing member 11a is not limited to a screw, and a rack and pinion mechanism may be used. The second pressing member 11b has the same configuration as the first pressing member 11a.

次に、前記構成からなるシール装置3の作用を説明する。   Next, the operation of the sealing device 3 having the above configuration will be described.

連続熱処理炉の運転に先だってシール装置3に鋼板Sを挿通するために、まず、ハンドル28を操作してシャフト25を後退させることにより第1押付け部材11a、第2押付け部材11bのテーパ面23を第1昇降部材10a、第2昇降部材10bから離隔する。また、気圧シリンダ20,22を作動させて、第1昇降部材10a、第2昇降部材10bを開口位置に移動し、第1ダクト9aと第2ダクト9bの開口部14を開く。   In order to insert the steel plate S into the sealing device 3 prior to the operation of the continuous heat treatment furnace, first, the handle 28 is operated to retract the shaft 25 to thereby reduce the tapered surfaces 23 of the first pressing member 11a and the second pressing member 11b. The first elevating member 10a and the second elevating member 10b are separated from each other. Further, the pneumatic cylinders 20 and 22 are operated to move the first elevating member 10a and the second elevating member 10b to the opening positions, and the opening portions 14 of the first duct 9a and the second duct 9b are opened.

連続熱処理炉を運転するときは、気圧シリンダ20,22を作動させて、第1昇降部材10a、第2昇降部材10bを閉鎖に移動し、第1ダクト9aと第2ダクト9bの開口部14を鋼板Sが通過する程度に閉じる。また、ハンドル28を操作してシャフト25を前進させることにより、第1押付け部材11a、第2押付け部材11bのテーパ面23を第1昇降部材10a、第2昇降部材10bに接触させ、第1昇降部材10a、第2昇降部材10bをそれぞれ第1ダクト9a、第2ダクト9bに押し付ける。   When operating the continuous heat treatment furnace, the atmospheric pressure cylinders 20 and 22 are operated to move the first elevating member 10a and the second elevating member 10b to the closed state, and the openings 14 of the first duct 9a and the second duct 9b are opened. Close to the extent that the steel sheet S passes. Further, by operating the handle 28 to advance the shaft 25, the tapered surfaces 23 of the first pressing member 11a and the second pressing member 11b are brought into contact with the first elevating member 10a and the second elevating member 10b, and the first elevating member is moved. The member 10a and the second elevating member 10b are pressed against the first duct 9a and the second duct 9b, respectively.

そして、第1室1内の雰囲気ガスを図示しない循環ファンによってガス導入ライン16aを介して第1ダクト9aにシールガスとして導入し、該シールガスをガス吹出口15から開口部14を通過する鋼板Sに向かって第1室1側に吹き出す。また、第2室2内の雰囲気ガスを16bを介して第2ダクト9bにシールガスとして導入し、該シールガスをガス吹出口15から開口部14を通過する鋼板Sに向かって第2室2側に吹き出す。   And the atmospheric gas in the 1st chamber 1 is introduce | transduced as sealing gas to the 1st duct 9a via the gas introduction line 16a with the circulation fan which is not shown in figure, and this sealing gas passes the opening part 14 from the gas blower outlet 15 Blow out toward the first chamber 1 toward S. In addition, the atmospheric gas in the second chamber 2 is introduced as a seal gas into the second duct 9b through 16b, and the seal gas is directed from the gas outlet 15 toward the steel plate S passing through the opening 14 in the second chamber 2. Blow out to the side.

このとき、閉鎖位置にある第1昇降部材10a、第2昇降部材10bにより、第1ダクト9aの開口部14と鋼板Sの間の隙間が少なくなっているので、第1ダクト9aから第1室1側に吹き出されたシールガスが鋼板Sの流れに巻き込まれて中間室8に進入し、さらに第2室2側に流れるのが低減される。 At this time, since the gap between the opening 14 of the first duct 9a and the steel plate S is reduced by the first elevating member 10a and the second elevating member 10b in the closed position, the first chamber 9 extends from the first duct 9a to the first chamber. It is reduced that the seal gas blown to the 1 side is caught in the flow of the steel sheet S and enters the intermediate chamber 8 and further flows to the second chamber 2 side.

また、第1押付け部材11a、第2押付け部材11bにより、第1昇降部材10a、第2昇降部材10bが第1ダクト9a、第2ダクト9bに押し付けられているので、昇降部材10a,10bとダクト9a,9bの間の隙間から中間室8へのシールガスの漏れが無くなる。たとえ、中間室8へのシールガスの漏れがあっても、中間室8内に進入したシールガスは、排気口12から排気ライン13を介して排出される。   Further, since the first lifting member 10a and the second lifting member 10b are pressed against the first duct 9a and the second duct 9b by the first pressing member 11a and the second pressing member 11b, the lifting members 10a and 10b and the duct are pressed. Seal gas leakage from the gap between 9a and 9b to the intermediate chamber 8 is eliminated. Even if the seal gas leaks into the intermediate chamber 8, the seal gas that has entered the intermediate chamber 8 is discharged from the exhaust port 12 through the exhaust line 13.

中間室8からガスを排気することで、第1室1の圧力をP1、中間室8の圧力をP2、第2室2の圧力をP3とすると、P2<P1<P3に維持することができる。これにより、第1室1と第2室の2雰囲気ガスの混合を有効に防止することができる。   By exhausting the gas from the intermediate chamber 8, it is possible to maintain P2 <P1 <P3, where P1 is the pressure in the first chamber 1, P2 is the pressure in the intermediate chamber 8, and P3 is the pressure in the second chamber 2. . Thereby, mixing of the two atmosphere gases in the first chamber 1 and the second chamber can be effectively prevented.

本発明に係るシール装置を適用した鋼板の連続熱処理炉の断面図。Sectional drawing of the continuous heat processing furnace of the steel plate to which the sealing apparatus which concerns on this invention is applied. 図1のシール装置の拡大図。The enlarged view of the sealing device of FIG. 図2のIII―III線断面図。III-III sectional view taken on the line of FIG. 図2のIV―IV線断面図。FIG. 4 is a sectional view taken along line IV-IV in FIG. 2. 昇降部材の拡大図。The enlarged view of a raising / lowering member. 押付け部材の拡大図。The enlarged view of a pressing member.

1 第1室
2 第2室
3 シール装置
8 中間室
9a,9b ダクト
10a,10b 昇降部材
11a,11b 押付け部材
14 開口部
23 テーパ面
25 シャフト
鋼板
DESCRIPTION OF SYMBOLS 1 1st chamber 2 2nd chamber 3 Sealing device 8 Intermediate chamber 9a, 9b Duct 10a, 10b Lifting member 11a, 11b Pressing member 14 Opening 23 Tapered surface 25 Shaft S Steel plate

Claims (2)

鋼板の第1の熱処理工程を行う第1室と第2の熱処理工程を行う第2室との間に中間室を設け、前記中間室の上流側と下流側に、鋼板が通過する開口部を有し該開口部からシールガスを鋼板に向かって吹き出すダクトをそれぞれ設け、前記中間室からガスを排気する連続熱処理炉のシール装置において、
前記各ダクトに沿って昇降し、前記開口部を開く開放位置と、前記開口部を鋼板が通過する程度に閉じる閉鎖位置とに移動可能な昇降部材と、
前記昇降部材が閉鎖位置にあるときに、前記昇降部材を前記ダクトに向かって押し付け、前記昇降部材と前記ダクトの間の隙間を無くする押付け部材とを設けたことを特徴とする連続熱処理炉のシール装置。
An intermediate chamber is provided between the first chamber for performing the first heat treatment step of the steel plate and the second chamber for performing the second heat treatment step, and an opening through which the steel plate passes is provided on the upstream side and the downstream side of the intermediate chamber. In the sealing device of the continuous heat treatment furnace, each having a duct for blowing the sealing gas from the opening toward the steel plate , and exhausting the gas from the intermediate chamber,
A raising and lowering member movable up and down along each duct and movable to an open position that opens the opening and a closed position that closes the opening to the extent that a steel plate passes through the duct,
A continuous heat treatment furnace, comprising: a pressing member that presses the lifting member toward the duct when the lifting member is in a closed position, and eliminates a gap between the lifting member and the duct. Sealing device.
前記押付け部材は、先端にテーパ面を有する棒状の部材からなり、該棒状の部材を軸方向に移動させて、前記テーパ面を前記昇降部材の前記ダクトと対向する面と反対側の面に接触させることにより、前記昇降部材を前記ダクトに向かって押し付けることを特徴とする請求項1に記載の連続熱処理炉のシール装置。   The pressing member is composed of a rod-shaped member having a tapered surface at the tip, and the rod-shaped member is moved in the axial direction so that the tapered surface contacts the surface of the lifting member opposite to the surface facing the duct. 2. The sealing device for a continuous heat treatment furnace according to claim 1, wherein the elevating member is pressed toward the duct.
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KR1020070082578A KR100961031B1 (en) 2006-09-14 2007-08-17 Sealing apparatus for continuous heat-treating furnace
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