JP2007253224A - Device and method for heating billet stock - Google Patents

Device and method for heating billet stock Download PDF

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JP2007253224A
JP2007253224A JP2006084225A JP2006084225A JP2007253224A JP 2007253224 A JP2007253224 A JP 2007253224A JP 2006084225 A JP2006084225 A JP 2006084225A JP 2006084225 A JP2006084225 A JP 2006084225A JP 2007253224 A JP2007253224 A JP 2007253224A
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heating
billet material
billet
temperature
forging device
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JP4797736B2 (en
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Takeshi Hiroyasu
武 廣安
Akihiko Ikeda
明彦 池田
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Nissan Motor Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a device for heating a billet, in which, even after a forging press is temporarily stopped, the billet is sent into the restarted forging press at a state heated to a specified temperature without wastefully discharging billet when re-operation. <P>SOLUTION: A plurality of induction heaters 3a-3d are arranged in parallel at the terminal part of a supplying route S. When a forging press 2 is temporarily stopped, heating of the billets B placed in every induction heaters is retained. When the forging press 2 is operated again, heating of the billets B is restarted in such a way that the temperatures of the billets B in every induction heaters are measured during the re-operation of the forging press 2, a period of time for heating the billets B having the highest temperature to a predetermined temperature is predicted, and the other billet B are successively heated to the predetermined temperature in a prescribed cycle time based on the predicted period of time. Thus, the temperatures of the billets B are individually controlled one by one, and generation of bypass materials is eliminated. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、鍛造装置に送り込むビレット材を設定温度に加熱する加熱炉を備え、特に、鍛造装置が一時的に停止した後にバイパス材を発生させることなくビレット材を加熱するようにしたビレット材の加熱装置および加熱方法に関する。   The present invention includes a heating furnace that heats a billet material fed to a forging device to a set temperature, and in particular, a billet material that heats the billet material without generating a bypass material after the forging device temporarily stops. The present invention relates to a heating device and a heating method.

鍛造装置としてのプレス機にビレット材を送り込む際に、そのビレット材を電磁誘導加熱式の加熱炉(インダクションヒータ)で設定温度に加熱するようになっており、従来ではその加熱炉を直列に複数配置して、それら複数の加熱炉に複数のビレット材を直列に並べて順次通過させるようになっている。この場合、ビレット材は入り口側の加熱炉から徐々に加熱されて、出口側の加熱炉で最終的に設定温度(鍛造加工するに最適なビレット材の温度)となるように加熱される(例えば、特許文献1参照)。
特公平6−65118号公報
When a billet material is fed into a press machine as a forging device, the billet material is heated to a set temperature by an electromagnetic induction heating furnace (induction heater). Conventionally, a plurality of heating furnaces are connected in series. It arrange | positions and it arrange | positions a several billet material in series in these several heating furnaces, and is made to pass sequentially. In this case, the billet material is gradually heated from the heating furnace on the entrance side, and finally heated in the heating furnace on the exit side so as to reach the set temperature (the temperature of the billet material optimal for forging) (for example, , See Patent Document 1).
Japanese Examined Patent Publication No. 6-65118

しかしながら、かかる従来のビレット材の加熱装置では、鍛造プレス機や付帯設備に軽微な故障が発生してラインが一時的に停止した場合、ビレット材の送り込みは一時停止されることになる。また、一時停止中は、ビレット材の加熱も一時停止することとなるが、加熱装置内の複数のビレット材は温度低下してしまい、再稼働時も通常稼働時の装置内温度を再現できず、バイパス材として鍛造プレス機にかけることなく加熱炉から排出(払い出し)しなければならない。   However, in such a conventional billet material heating apparatus, when a minor failure occurs in the forging press machine or incidental equipment and the line is temporarily stopped, the feeding of the billet material is temporarily stopped. In addition, during the temporary stop, heating of the billet material will also be temporarily stopped, but the temperature of the plurality of billet materials in the heating device will drop, and the internal temperature during normal operation cannot be reproduced even during re-operation. It must be discharged (dispensed) from the heating furnace without being subjected to a forging press as a bypass material.

或いは、加熱装置は稼働し続けビレット材をパイパス専用ラインに送り続ける方法もあるが、この場合、再稼働時のタイムロスは少なくなるが、バイパス材は多く発生してしまうこととなる。また、再稼働時までの加熱炉の熱量が無駄となって、多大なエネルギーロスが発生してしまう。   Alternatively, there is a method in which the heating device continues to operate and the billet material continues to be sent to the bypass line, but in this case, time loss at the time of re-operation is reduced, but a large amount of bypass material is generated. Moreover, the amount of heat of the heating furnace until the time of re-operation is wasted, and a great energy loss occurs.

そこで、本発明は、鍛造装置が一時的に停止した場合でも、再稼働時に無駄にビレット材を払い出す必要がなく、再稼働した鍛造装置に所定温度としたビレット材を送り込むことができるビレット材の加熱装置および加熱方法を提供するものである。   Therefore, the present invention eliminates the need to waste the billet material during re-operation even when the forging device is temporarily stopped, and allows the billet material to be sent to the re-activated forging device at a predetermined temperature. A heating apparatus and a heating method are provided.

本発明は、鍛造装置に送り込むビレット材の供給経路に、それぞれ単一のビレット材を収納して所定のサイクルタイムで設定温度に加熱する複数の加熱炉を並列に設け、それら複数の加熱炉から設定温度に加熱されたビレット材を順次鍛造装置に送り込むビレット材の加熱装置であって、鍛造装置が一時的に停止された時に、各加熱炉内のビレット材の加熱を抑制するビレット材過加熱防止手段と、鍛造装置が再稼働された時に、各加熱炉内に存在するビレット材の温度を測定するビレット材温度測定手段と、最も温度の高いビレット材が設定温度に達するための加熱時間を予測し、その予測時間を基に他のビレット材を所定のサイクルタイムで順に設定温度に加熱する炉内熱量設定手段と、を備えたことを特徴とする。   According to the present invention, a plurality of heating furnaces are provided in parallel in the supply path of billet materials to be fed into the forging device, each of which stores a single billet material and heats it to a set temperature at a predetermined cycle time. Billet material heating device that sequentially feeds the billet material heated to the set temperature to the forging device, and when the forging device is temporarily stopped, the billet material overheating suppresses the heating of the billet material in each heating furnace. Prevention means, billet temperature measuring means for measuring the temperature of the billet material existing in each heating furnace when the forging device is restarted, and the heating time for the highest temperature billet material to reach the set temperature. And a furnace heat quantity setting means for predicting and heating other billet materials to a set temperature in order at a predetermined cycle time based on the predicted time.

本発明によれば、鍛造装置が一時的に停止された時に、ビレット材過加熱防止手段によってビレット材の加熱が抑制され、その後、鍛造装置が再稼働された時に、ビレット材温度測定手段で測定した各加熱炉内のビレット材の温度に基づいて、炉内熱量設定手段では最も温度の高いビレット材が設定温度に達するための加熱時間を予測して、その予測時間を基に他のビレット材を所定のサイクルタイムで順に設定温度に加熱するようにしたので、鍛造装置が再稼働された際に、ビレット材過加熱防止手段によって加熱が抑制された状態にあるビレット材の加熱が再開されることになる。   According to the present invention, when the forging device is temporarily stopped, the billet material is prevented from being heated by the billet material overheating preventing means, and then measured by the billet material temperature measuring means when the forging device is restarted. Based on the temperature of the billet material in each heating furnace, the heat quantity setting means in the furnace predicts the heating time for the highest temperature billet material to reach the set temperature, and other billet materials based on the predicted time Are sequentially heated to the set temperature at a predetermined cycle time, so that when the forging device is restarted, the heating of the billet material in a state where the heating is suppressed by the billet material overheating preventing means is resumed. It will be.

従って、鍛造装置の再稼働に伴ってビレット材が加熱再開された際に、並列に設けた複数の加熱炉内のビレット材の温度をひとつづつ個別に制御できるため、無駄となるバイパス材の発生を無くすことが可能となり、ひいては、エネルギーロスを最小限に抑えることができる。   Therefore, when the billet material is restarted when the forging machine is restarted, the temperature of the billet material in the multiple heating furnaces provided in parallel can be individually controlled one by one, resulting in the generation of wasted bypass material. Can be eliminated, and as a result, energy loss can be minimized.

そのとき、前記ビレット材温度測定手段および上記炉内熱量設定手段を設けたことによって、それぞれの加熱炉内のビレット材を設定温度に加熱するための熱量が最小で済み、かつ、最短時間で設定温度まで上昇させることができるため、鍛造装置の再稼働時のビレット材の送り込みを迅速に行うことができる。   At that time, by providing the billet material temperature measuring means and the in-furnace heat quantity setting means, the amount of heat for heating the billet material in each heating furnace to the set temperature can be minimized and set in the shortest time. Since the temperature can be raised to a temperature, the billet material can be quickly fed when the forging device is restarted.

以下、本発明を適用した具体的な実施形態を図面を参照しながら詳細に説明する。図1〜図3は本発明にかかるビレット材の加熱装置の一実施形態を示し、図1は加熱装置を用いた鍛造装置の概略構成図、図2は加熱装置を温度制御するための流れを示す説明図、図3は鍛造装置が一時停止された際に複数の加熱装置を温度制御するタイムチャートである。   Hereinafter, specific embodiments to which the present invention is applied will be described in detail with reference to the drawings. 1 to 3 show an embodiment of a heating device for a billet material according to the present invention, FIG. 1 is a schematic configuration diagram of a forging device using the heating device, and FIG. 2 shows a flow for controlling the temperature of the heating device. FIG. 3 is a time chart for controlling the temperature of a plurality of heating devices when the forging device is temporarily stopped.

本実施形態のビレット材の加熱装置1は、図1に示すように鍛造装置としての鍛造プレス機2にビレット材Bを送り込む供給経路S(S1〜S4)に設けられ、その加熱装置1は加熱炉としての複数(本実施形態では4個)の第1〜第4インダクションヒータ3a,3b,3c,3dを備えている。   The billet material heating device 1 of the present embodiment is provided in a supply path S (S1 to S4) for feeding the billet material B to a forging press machine 2 as a forging device as shown in FIG. A plurality of (four in this embodiment) first to fourth induction heaters 3a, 3b, 3c, 3d as a furnace are provided.

複数のインダクションヒータ3a〜3dは、それぞれ単一のビレット材Bを収納して電磁誘導加熱するようになっており、それらインダクションヒータ3a〜3dは供給経路Sの終端部(鍛造プレス機2への入り口部分)にそれぞれ並列に配置されている。   The plurality of induction heaters 3a to 3d each accommodates a single billet material B and is heated by electromagnetic induction. These induction heaters 3a to 3d are connected to the end portion of the supply path S (to the forging press 2). They are arranged in parallel at the entrance part).

従って、前記供給経路Sはそれぞれのインダクションヒータ3a〜3dを終端とする複数列の分岐経路S1,S2,S3,S4が設けられ、各分岐経路S1〜S4にそれぞれ複数のビレット材Bが直列に整列されて待機し、各インダクションヒータ3a〜3dからビレット材Bが鍛造プレス機2に送り込まれた後、後続のレット材Bが1つづつ空となったインダクションヒータ3a〜3dに送られる。各インダクションヒータ3a〜3dでは、ビレット材Bを設定温度(ビレット材を鍛造するのに最適な温度、例えば1250゜C)に加熱した後に鍛造プレス機2に送り込むようになっている。   Accordingly, the supply path S is provided with a plurality of rows of branch paths S1, S2, S3, and S4 that terminate at the induction heaters 3a to 3d, and a plurality of billet materials B are connected in series to each of the branch paths S1 to S4. The billet material B is sent from the induction heaters 3a to 3d to the forging press 2 and then the subsequent let materials B are sent one by one to the induction heaters 3a to 3d that are empty. In each of the induction heaters 3a to 3d, the billet material B is heated to a set temperature (a temperature optimum for forging the billet material, for example, 1250 ° C.) and then fed into the forging press machine 2.

このとき、各インダクションヒータ3a〜3dは、所定のサイクルタイムTでビレット材Bを順に前記設定温度に加熱するようになっており、本実施形態では第1インダクションヒータ3aから第4インダクションヒータ3dへと一定の時間T間隔をもってビレット材Bを順次加熱し、そして、前記設定温度に到達した順にビレット材Bが1つづつ鍛造プレス機2に送り込まれる。   At this time, the induction heaters 3a to 3d are configured to sequentially heat the billet material B to the set temperature at a predetermined cycle time T. In the present embodiment, the first induction heater 3a to the fourth induction heater 3d. The billet material B is sequentially heated with a certain time T interval, and the billet material B is fed into the forging press 2 one by one in the order of reaching the set temperature.

ここで、本実施形態の加熱装置1では、図1に示すように鍛造プレス機2が一時的に停止された時に、各インダクションヒータ3a〜3d内のビレット材Bの加熱を抑制するビレット材過加熱防止手段10と、鍛造プレス機2が再稼働された時に、各インダクションヒータ3a〜3d内に存在するビレット材Bの温度を測定するビレット材温度測定手段11と、最も温度の高いビレット材Bが前記設定温度に達するための加熱時間を予測し、その予測時間を基に他のビレット材Bを所定のサイクルタイムで順に前記設定温度に加熱する炉内熱量設定手段12と、を設けてある。   Here, in the heating apparatus 1 of the present embodiment, when the forging press 2 is temporarily stopped as shown in FIG. 1, the billet material excessively suppresses the heating of the billet material B in the induction heaters 3a to 3d. The heating prevention means 10, the billet material temperature measuring means 11 for measuring the temperature of the billet material B existing in each of the induction heaters 3a to 3d when the forging press 2 is restarted, and the billet material B having the highest temperature. Predicting the heating time for reaching the set temperature, and based on the estimated time, there is provided in-furnace heat quantity setting means 12 for sequentially heating the other billet material B to the set temperature in a predetermined cycle time. .

そして、前記加熱装置1を用いたビレット材の加熱方法では、鍛造プレス機2が一時的に停止された後に再稼働された時に、各インダクションヒータ3a〜3d内に存在するビレット材Bのうち、最も温度の高いビレット材Bが設定温度に達するための加熱時間を予測し、その予測した時間を基に他のビレット材Bが所定のサイクルタイムTで順に設定温度に達するように加熱する。   And in the heating method of the billet material using the heating device 1, when the forging press machine 2 is temporarily stopped and then restarted, among the billet materials B present in the induction heaters 3a to 3d, The heating time for the billet material B having the highest temperature to reach the set temperature is predicted, and the other billet materials B are heated so as to sequentially reach the set temperature at a predetermined cycle time T based on the predicted time.

前記ビレット材過加熱防止手段10、前記ビレット材温度測定手段11および前記炉内熱量設定手段12は、図示を省略する制御装置で制御されており、前記鍛造プレス機2が一時的に停止された場合に、図2に示す如きビレット材Bの温度制御を実行するようになっている。   The billet material overheating preventing means 10, the billet material temperature measuring means 11 and the in-furnace heat quantity setting means 12 are controlled by a control device (not shown), and the forging press 2 is temporarily stopped. In this case, the temperature control of the billet material B as shown in FIG. 2 is executed.

以下、図2の温度制御の流れを図3のタイムチャートを参照しつつ説明すると、まず、図3に示すように第1〜第4インダクションヒータ3a〜3dによって、それぞれに収納したビレット材Bを第1〜第4の順に所定のサイクルタイム(ビレット材を鍛造した後、次のビレット材が鍛造されるまでの間の時間)Tで加熱する途中、P1時点で鍛造プレス機2が一時停止した場合、図2のステップS1では鍛造プレス機2の停止情報が入力される。   Hereinafter, the flow of temperature control in FIG. 2 will be described with reference to the time chart in FIG. 3. First, as shown in FIG. 3, the billet materials B housed in the first to fourth induction heaters 3 a to 3 d are respectively stored. The forging press machine 2 was temporarily stopped at the point P1 while heating at a predetermined cycle time (time from forging a billet material to forging the next billet material) T in the first to fourth order. In this case, stop information of the forging press 2 is input in step S1 of FIG.

すると、次のステップS2ではビレット材過加熱防止手段10が働いてインダクションヒータ3a〜3dの保温設定を起動する。この場合、本実施形態の保温設定では、ビレット材Bを一定温度αに保持するようになっており、ビレット材Bの温度が前記一定温度αよりも高い場合(図3中第1・第2インダクションヒータ3a,3b)は、その高くなったインダクションヒータ3a,3bの電源をオフにする一方、ビレット材Bの温度が一定温度αよりも低い場合(図3中第3・第4インダクションヒータ3c,3d)は電源を継続してオンにしておく。   Then, in the next step S2, the billet material overheating preventing means 10 is activated to start the heat retention setting of the induction heaters 3a to 3d. In this case, in the heat retention setting of the present embodiment, the billet material B is held at a constant temperature α, and the temperature of the billet material B is higher than the constant temperature α (first and second in FIG. 3). The induction heaters 3a and 3b) turn off the power of the increased induction heaters 3a and 3b, while the temperature of the billet material B is lower than the constant temperature α (the third and fourth induction heaters 3c in FIG. 3). , 3d), the power is continuously turned on.

従って、第3・第4インダクションヒータ3c,3dでは、鍛造プレス機2の一時停止後もビレット材Bの温度(インダクションヒータ内温度)が前記一定温度αに達するまで加熱が継続される。   Therefore, in the third and fourth induction heaters 3c and 3d, heating is continued until the temperature of the billet material B (induction heater internal temperature) reaches the constant temperature α even after the forging press 2 is temporarily stopped.

そして、ステップS3で鍛造プレス機2が再稼働(図3中P2位置)された情報が入力されると、ステップS4ではビレット材温度測定手段11が働いて各インダクションヒータ3a〜3dの温度、つまり、それらインダクションヒータ3a〜3d内のビレット材Bの温度を測定して、次のステップS5では鍛造プレス機2に送り込むビレット材Bの順序(ビレット材Bの温度が高い順)を決定する。   Then, when information indicating that the forging press 2 has been restarted (P2 position in FIG. 3) is input in step S3, the billet material temperature measuring means 11 operates in step S4, that is, the temperatures of the induction heaters 3a to 3d, that is, Then, the temperature of the billet material B in the induction heaters 3a to 3d is measured, and in the next step S5, the order of the billet material B to be fed into the forging press machine 2 (the order in which the temperature of the billet material B is high) is determined.

次に、ステップS6では炉内熱量設定手段12が働き、図3に示すようにインダクションヒータ3a〜3dのうち最も温度の高いビレット材B(第1インダクションヒータ3a)が、通常の駆動電圧をもって設定温度(1250゜C)に達するための加熱時間Tfを予測し、その予測時間Tfから他のビレット材Bを所定のサイクルタイムTで設定温度(1250゜C)に加熱するための電圧V1〜V4(V1>V2>V3>V4)をそれぞれ演算する。   Next, in step S6, the furnace heat quantity setting means 12 operates, and the billet material B (first induction heater 3a) having the highest temperature among the induction heaters 3a to 3d is set with a normal driving voltage as shown in FIG. The heating time Tf for reaching the temperature (1250 ° C) is predicted, and the voltages V1 to V4 for heating the other billet material B to the set temperature (1250 ° C) at the predetermined cycle time T from the predicted time Tf. (V1> V2> V3> V4) are respectively calculated.

このように、各インダクションヒータ3a〜3dの駆動電圧が決定されると、図2のステップS7では、それらインダクションヒータ3a〜3dを決定された駆動電圧V1〜V4に基づいて再起動する。   Thus, when the drive voltage of each induction heater 3a-3d is determined, in step S7 of FIG. 2, these induction heaters 3a-3d are restarted based on the determined drive voltage V1-V4.

すると、図3に示すように第1インダクションヒータ3a内温度が最も早く立ち上がって、P3位置で設定温度(1250゜C)に到達し、この時点で第1インダクションヒータ3a内のビレット材Bが鍛造プレス機2に送り込まれる。   Then, as shown in FIG. 3, the temperature in the first induction heater 3a rises earliest and reaches the set temperature (1250 ° C.) at the P3 position. At this point, the billet material B in the first induction heater 3a is forged. It is sent to the press machine 2.

他のインダクションヒータ3b〜3dは、これらの順に大きくなった温度の立ち上がり傾きをもって加熱され、第2インダクションヒータ3b内のビレット材Bは、第1インダクションヒータ3aから所定のサイクルタイムTの後に設定温度(1250゜C)に到達して鍛造プレス機2に送り込まれ、以下、同様にして第3インダクションヒータ3c内のビレット材Bおよび第4インダクションヒータ3d内のビレット材Bが順に所定のサイクルタイムT後に設定温度(1250゜C)に到達して鍛造プレス機2に送り込まれる。   The other induction heaters 3b to 3d are heated with the rising slope of the temperature increasing in this order, and the billet material B in the second induction heater 3b is set to a set temperature after a predetermined cycle time T from the first induction heater 3a. (1250 ° C.) is reached and sent to the forging press 2, and thereafter, the billet material B in the third induction heater 3c and the billet material B in the fourth induction heater 3d are sequentially supplied to the predetermined cycle time T in the same manner. Later, it reaches the set temperature (1250 ° C.) and is fed into the forging press 2.

勿論、このように鍛造プレス機2の一時停止後に、各インダクションヒータ3a〜3dの温度制御が一巡した後は、それぞれのインダクションヒータ3a〜3dは通常の駆動電圧Vをもって加熱されることになり、このときの温度の立ち上がり傾きは全てのインダクションヒータ3a〜3dで一定となる。   Of course, after the temperature control of the induction heaters 3a to 3d is completed after the temporary stop of the forging press 2, the induction heaters 3a to 3d are heated with a normal driving voltage V. The rising slope of the temperature at this time is constant for all the induction heaters 3a to 3d.

以上の構成により本実施形態のビレット材Bの加熱装置1および加熱方法によれば、並列に設けた複数のインダクションヒータ3a〜3dにはそれぞれ単一のビレット材Bのみが収納されて、それぞれのビレット材Bは所定のサイクルタイムTで設定温度に加熱されるようになっており、鍛造プレス機2が一時的に停止された時にビレット材過加熱防止手段10によってビレット材Bの加熱が抑制される。   According to the heating apparatus 1 and the heating method of the billet material B of the present embodiment having the above configuration, only the single billet material B is accommodated in each of the plurality of induction heaters 3a to 3d provided in parallel. The billet material B is heated to a set temperature at a predetermined cycle time T, and when the forging press 2 is temporarily stopped, the billet material B is prevented from being heated by the billet material overheating preventing means 10. The

その後、鍛造プレス機2が再稼働された時に、ビレット材温度測定手段11で測定した各インダクションヒータ3a〜3d内のビレット材Bの温度に基づいて、炉内熱量設定手段12では最も温度の高いビレット材Bが設定温度に達するための加熱時間Tfを予測して、その予測時間Tfを基に他のビレット材Bを所定のサイクルタイムTで順に設定温度に加熱するようにしたので、鍛造プレス機2が再稼働された際に、ビレット材過加熱防止手段10によって加熱が抑制された状態にあるビレット材Bの加熱が再開されて、複数のインダクションヒータ3a〜3d内のビレット材Bの温度をひとつづつ個別に制御できるため、無駄となるバイパス材の発生を無くすことが可能となり、ひいては、エネルギーロスを最小限に抑えることができる。   Thereafter, when the forging press machine 2 is restarted, the temperature in the furnace heat quantity setting means 12 is the highest based on the temperature of the billet material B in each induction heater 3a to 3d measured by the billet material temperature measuring means 11. Since the heating time Tf for the billet material B to reach the set temperature is predicted, the other billet materials B are sequentially heated to the set temperature at the predetermined cycle time T based on the predicted time Tf. When the machine 2 is restarted, the heating of the billet material B in a state where the heating is suppressed by the billet material overheating preventing means 10 is resumed, and the temperature of the billet material B in the plurality of induction heaters 3a to 3d. Can be controlled individually one by one, so that it is possible to eliminate the generation of wasted bypass material, which in turn can minimize energy loss. .

そのとき、前記ビレット材温度測定手段11および上記炉内熱量設定手段12を設けたことによって、それぞれのインダクションヒータ3a〜3d内のビレット材Bを設定温度に加熱するための熱量が最小で済み、かつ、最短時間で設定温度まで上昇させることができるため、鍛造プレス機2の再稼働時のビレット材Bの送り込みを迅速に行うことができる。   At that time, by providing the billet material temperature measuring means 11 and the in-furnace heat quantity setting means 12, the amount of heat for heating the billet material B in each of the induction heaters 3a to 3d to a set temperature can be minimized. And since it can raise to preset temperature in the shortest time, feeding of the billet material B at the time of the re-operation of the forge press machine 2 can be performed rapidly.

尚、前記ビレット材温度測定手段11では、ビレット材Bの温度を測定するようにしたが、これに限ることなくインダクションヒータ3a〜3b内の温度も測定して、それぞれの加熱条件を加味させることにより、より精度の良い温度制御が可能となる。   Although the billet material temperature measuring means 11 measures the temperature of the billet material B, the temperature in the induction heaters 3a to 3b is also measured without being limited thereto, and each heating condition is taken into consideration. Thus, temperature control with higher accuracy becomes possible.

また、本実施形態のビレット材過加熱防止手段10では、鍛造プレス機2が一時停止された際に、各インダクションヒータ3a〜3b内のビレット材Bを一定温度αに保持するようにしたが、これに限ることなくインダクションヒータ3a〜3d内に存在するビレット材Bの鍛造プレス機2が一時停止された時の温度を、鍛造プレス機2が再稼働されるまで維持する構成とすることができる。   Further, in the billet material overheating preventing means 10 of the present embodiment, when the forging press machine 2 is temporarily stopped, the billet material B in each induction heater 3a to 3b is held at a constant temperature α. Without being limited thereto, the temperature at which the forging press 2 of the billet material B existing in the induction heaters 3a to 3d is temporarily stopped can be maintained until the forging press 2 is restarted. .

このように、ビレット材Bの鍛造プレス機2が一時停止された時の温度を、鍛造プレス機2が再稼働されるまで維持することにより、例えば、図3中破線で示すように、第1インダクションヒータ3aおよび第2インダクションヒータ3bでは一定温度αまで温度降下することなく、鍛造プレス機2の再稼働時にビレット材Bを設定温度(1250゜C)までより迅速に立ち上げることができる。   Thus, by maintaining the temperature at which the forging press 2 of the billet material B is temporarily stopped until the forging press 2 is restarted, for example, as shown by the broken line in FIG. In the induction heater 3a and the second induction heater 3b, the billet material B can be quickly started up to the set temperature (1250 ° C.) when the forging press machine 2 is restarted without lowering the temperature to the constant temperature α.

ところで、本発明は前記実施形態に例をとって説明したが、これら実施形態に限ることなく本発明の要旨を逸脱しない範囲で他の実施形態を各種採用することができる。   By the way, although this invention was demonstrated taking the example for the said embodiment, various other embodiment can be employ | adopted in the range which is not restricted to these embodiments and does not deviate from the summary of this invention.

本発明の一実施形態における加熱装置を用いた鍛造装置の概略構成図である。It is a schematic block diagram of the forging apparatus using the heating apparatus in one Embodiment of this invention. 本発明の一実施形態における加熱装置を温度制御するための処理を示す説明図である。It is explanatory drawing which shows the process for temperature-controlling the heating apparatus in one Embodiment of this invention. 本発明の一実施形態における鍛造装置が一時停止された際に複数の加熱装置を温度制御するタイムチャートである。It is a time chart which temperature-controls several heating apparatuses, when the forging apparatus in one Embodiment of this invention is stopped temporarily.

符号の説明Explanation of symbols

1 加熱装置
2 鍛造プレス機(鍛造装置)
3a〜3d 第1〜第4インダクションヒータ(加熱炉)
10 ビレット材過加熱防止手段
11 ビレット材温度測定手段
12 炉内熱量設定手段
B ビレット材
S 供給経路
1 Heating device 2 Forging press machine (forging device)
3a to 3d 1st to 4th induction heaters (heating furnace)
10 Billet material overheating prevention means 11 Billet material temperature measurement means 12 Furnace heat quantity setting means B Billet material S Supply path

Claims (5)

鍛造装置に送り込むビレット材の供給経路に、それぞれ単一のビレット材を収納して所定のサイクルタイムで設定温度に加熱する複数の加熱炉を並列に設け、それら複数の加熱炉から設定温度に加熱されたビレット材を順次鍛造装置に送り込むビレット材の加熱装置であって、
前記鍛造装置が一時的に停止された時に、前記各加熱炉内のビレット材の加熱を抑制するビレット材過加熱防止手段と、
前記鍛造装置が再稼働された時に、前記各加熱炉内に存在するビレット材の温度を測定するビレット材温度測定手段と、
最も温度の高いビレット材が前記設定温度に達するための加熱時間を予測し、その予測時間を基に他のビレット材を所定のサイクルタイムで順に前記設定温度に加熱する炉内熱量設定手段とを備えた
ことを特徴とするビレット材の加熱装置。
A plurality of heating furnaces for storing a single billet material and heating it to a set temperature at a predetermined cycle time are provided in parallel in the supply path of the billet material fed to the forging device, and the plurality of heating furnaces are heated to the set temperature. A billet material heating device that sequentially feeds the billet material to a forging device,
Billet material overheating preventing means for suppressing heating of the billet material in each heating furnace when the forging device is temporarily stopped;
Billet material temperature measuring means for measuring the temperature of the billet material existing in each heating furnace when the forging device is restarted;
Predicting the heating time for the billet material having the highest temperature to reach the set temperature, and based on the estimated time, heat quantity setting means in the furnace for heating other billet materials to the set temperature in order at a predetermined cycle time A billet heating device characterized by comprising:
請求項1に記載のビレット材の加熱装置であって、
前記ビレット材過加熱防止手段は、前記加熱炉内に存在するビレット材の鍛造装置が一時停止された時の温度を、前記鍛造装置が再稼働されるまで維持する
ことを特徴とするビレット材の加熱装置。
The billet heating apparatus according to claim 1,
The billet material overheating preventing means maintains the temperature when the forging device for the billet material existing in the heating furnace is temporarily stopped until the forging device is restarted. Heating device.
鍛造装置に送り込むビレット材の供給経路に、それぞれ単一のビレット材を収納して所定のサイクルタイムで設定温度に加熱する複数の加熱炉を並列に設け、それら複数の加熱炉から設定温度に加熱されたビレット材を順次鍛造装置に送り込むビレット材の加熱方法であって、
前記鍛造装置が一時的に停止された後に再稼働された時に、前記各加熱炉内に存在するビレット材のうち、最も温度の高いビレット材が前記設定温度に達するための加熱時間を予測し、その予測した時間を基に他のビレット材が所定のサイクルタイムで順に前記設定温度に達するように加熱する
ことを特徴とするビレット材の加熱方法。
A plurality of heating furnaces for storing a single billet material and heating it to a set temperature at a predetermined cycle time are provided in parallel in the supply path of the billet material fed to the forging device, and the plurality of heating furnaces are heated to the set temperature. A billet material heating method for sequentially feeding the billet material to a forging device,
When the forging device is temporarily stopped and then restarted, predict the heating time for the billet material having the highest temperature among the billet materials present in each heating furnace to reach the set temperature, The billet material heating method, wherein the other billet materials are heated so as to sequentially reach the set temperature at a predetermined cycle time based on the predicted time.
請求項3に記載のビレット材の加熱方法であって、
前記鍛造装置が再稼働された時に、前記各加熱炉内に存在するビレット材の温度及び前記各加熱炉内の温度を測定する
ことを特徴とするビレット材の加熱方法。
It is a heating method of the billet material according to claim 3,
The billet material heating method, wherein when the forging device is restarted, the temperature of the billet material existing in each heating furnace and the temperature in each heating furnace are measured.
請求項3または請求項4に記載のビレット材の加熱方法であって、
前記加熱炉内に存在するビレット材の前記鍛造装置が一時停止された時の温度を、該鍛造装置が再稼働されるまで維持する
ことを特徴とするビレット材の加熱方法。
It is a heating method of the billet material according to claim 3 or 4,
A method of heating a billet material, characterized in that the temperature at which the forging device for the billet material existing in the heating furnace is temporarily stopped is maintained until the forging device is restarted.
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