JP7096124B2 - Electric gas valve device - Google Patents

Electric gas valve device Download PDF

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JP7096124B2
JP7096124B2 JP2018188805A JP2018188805A JP7096124B2 JP 7096124 B2 JP7096124 B2 JP 7096124B2 JP 2018188805 A JP2018188805 A JP 2018188805A JP 2018188805 A JP2018188805 A JP 2018188805A JP 7096124 B2 JP7096124 B2 JP 7096124B2
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valve
valve seat
control valve
electric motor
gas
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JP2020056554A (en
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聖也 加藤
秀幸 近藤
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Rinnai Corp
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Description

本発明は、バーナへのガス供給路に介設される電動式ガス弁装置に関する。 The present invention relates to an electric gas valve device installed in a gas supply path to a burner.

従来、この種の電動式ガス弁装置として、バルブケーシング内に、電磁安全弁と、流量調節弁と、電動モータにより連動機構を介して軸方向に駆動される操作ロッドと、バルブケーシング内の空間を軸方向一方の一次側ガス室と軸方向他方の二次側ガス室とに仕切る軸方向に移動自在な弁座部材とを設けたものが知られている(例えば、特許文献1参照)。ここで、軸方向一方を往動方向、軸方向他方を復動方向として、電磁安全弁は、弁座部材に設けられた一次側ガス室に面する安全弁用弁座と、安全弁用弁座に対向する安全弁用弁体と、安全弁用弁体を復動方向に付勢して安全弁用弁座に着座させる弁バネと、安全弁用弁体に往動方向にのびる弁軸を介して連結した吸着片と、吸着片に対向する電磁石とを備え、流量調節弁は、弁座部材に設けられた二次側ガス室に面する調節弁用弁座と、操作ロッドと一体に軸方向に移動する、調節弁用弁座に着座可能な調節弁用弁体とを備えている。また、バルブケーシング内に、弁座部材の復動方向への移動を所定の復動端位置で制止する弁座ストッパと、弁座部材を復動方向に付勢する弁座バネとが設けられている。 Conventionally, as this type of electric gas valve device, an electromagnetic safety valve, a flow control valve, an operation rod driven axially via an interlocking mechanism by an electric motor, and a space inside the valve casing are provided in the valve casing. A valve seat member that is movable in the axial direction and is partitioned between a primary gas chamber on one axial direction and a gas chamber on the secondary side in the axial direction is provided (see, for example, Patent Document 1). Here, with one axial direction as the forward direction and the other axial direction as the return direction, the electromagnetic safety valve faces the safety valve valve seat facing the primary gas chamber provided in the valve seat member and the safety valve valve seat. A valve body for the safety valve, a valve spring that urges the valve body for the safety valve to be seated on the valve seat for the safety valve, and a suction piece connected to the valve body for the safety valve via a valve shaft extending in the forward direction. The flow control valve is provided with an electromagnet facing the suction piece, and the flow control valve moves in the axial direction integrally with the valve seat for the control valve facing the secondary gas chamber provided in the valve seat member and the operation rod. It is equipped with a valve body for a control valve that can be seated on the valve seat for the control valve. Further, in the valve casing, a valve seat stopper for stopping the movement of the valve seat member in the recovery direction at a predetermined recovery end position and a valve seat spring for urging the valve seat member in the recovery direction are provided. ing.

上記従来例では、電動モータを正転させて操作ロッドを往動方向に移動させることにより、調節弁用弁体を調節弁用弁座に着座させて、弁座部材を復動端位置から往動方向に押動させ、安全弁用弁座を安全弁用弁体に当接させて、安全弁用弁体を電磁石に吸着片が当接する開弁位置まで弁バネの付勢力に抗して押動させ、この状態で電磁石に通電することにより安全弁用弁体を開弁位置に吸着保持する。その後、電動モータを逆転させて操作ロッドを復動方向に移動させることにより、弁座部材を復動方向に移動させ、安全弁用弁座を開弁位置に吸着保持される安全弁用弁体から離隔させて、電磁安全弁を開弁させると共に、弁座部材が復動端位置に到達した後の更なる操作ロッドの復動方向への移動により調節弁用弁体が調節弁用弁座から離れて、バーナへのガス供給量が次第に増加するようにしている。 In the above-mentioned conventional example, the control valve valve body is seated on the control valve valve seat by rotating the electric motor in the normal direction to move the operation rod in the forward movement direction, and the valve seat member is moved forward from the return end position. It is pushed in the direction of movement, the valve seat for the safety valve is brought into contact with the valve body for the safety valve, and the valve body for the safety valve is pushed against the urging force of the valve spring to the valve opening position where the attracted piece abuts on the electromagnet. By energizing the electromagnet in this state, the valve body for the safety valve is attracted and held at the valve opening position. After that, by reversing the electric motor and moving the operation rod in the recovery direction, the valve seat member is moved in the recovery direction, and the safety valve valve seat is separated from the safety valve valve body which is attracted and held at the valve opening position. The electromagnetic safety valve is opened, and the control valve valve body is separated from the control valve seat by further movement of the operation rod in the recovery direction after the valve seat member reaches the recovery end position. , The gas supply to the burner is gradually increasing.

また、流量調節弁は、調節弁用弁座に調節弁用弁体が着座した状態でも一次側ガス室から二次側ガス室にガスを流すバイパス路を有している。ここで、バーナ燃焼中にバーナへのガス供給量をバイパス路で規定される最小量に絞るときに、電動モータを、復動端位置に存する弁座部材の調節弁用弁座に調節弁用弁体が着座する回転位置で停止させるようにしたのでは、弁座部材の寸法公差や弁座ストッパの位置公差等により、調節弁用弁座に調節弁用弁体が着座する前に電動モータが停止して、バーナへのガス供給量をバイパス路で規定される最小量まで絞れなくなることがある。そこで、従来、バーナ燃焼中にバーナへのガス供給量をバイパス路で規定される最小量に絞るときは、電動モータを、復動端位置に存する弁座部材の調節弁用弁座に調節弁用弁体が着座する回転位置である第1の回転位置よりも正転方向に所定角度ずれた第2の回転位置まで正転させるようにしている。 Further, the flow rate control valve has a bypass path for flowing gas from the primary side gas chamber to the secondary side gas chamber even when the control valve body is seated on the control valve seat. Here, when the amount of gas supplied to the burner is reduced to the minimum amount specified by the bypass path during burner combustion, the electric motor is used for the control valve for the control valve of the valve seat member located at the return end position. If the valve body is stopped at the rotational position where it sits, the electric motor is used before the control valve body is seated on the control valve seat due to the dimensional tolerance of the valve seat member and the position tolerance of the valve seat stopper. May stop and the gas supply to the burner may not be reduced to the minimum specified by the bypass path. Therefore, conventionally, when the amount of gas supplied to the burner is reduced to the minimum amount specified by the bypass path during burner combustion, the electric motor is adjusted to the valve seat for the control valve of the valve seat member located at the return end position. The valve body is rotated forward to a second rotation position deviated by a predetermined angle in the normal rotation direction from the first rotation position, which is the rotation position where the valve body is seated.

然し、これでは、以下の不具合を生ずる。即ち、電動モータを第2の回転位置まで正転させると、調節弁用弁体が復動端位置に存する弁座部材の調節弁用弁座に着座してから更に往動方向に移動し、弁座部材が調節用弁体に押されて往動方向に移動してしまう。そして、この移動により二次側ガス室の容積が拡大して、二次側ガス室内のガス圧が一時的に低下し、バーナへのガス供給量が一時的に最小量を下回る量までアンダーシュートし、失火してしまうことがある。 However, this causes the following problems. That is, when the electric motor is rotated forward to the second rotation position, the valve body for the control valve is seated on the valve seat for the control valve of the valve seat member located at the return end position, and then moves further in the forward movement direction. The valve seat member is pushed by the adjusting valve body and moves in the forward movement direction. Then, due to this movement, the volume of the secondary gas chamber expands, the gas pressure in the secondary gas chamber temporarily drops, and the amount of gas supplied to the burner temporarily undershoots to an amount below the minimum amount. However, it may cause a misfire.

特開2018-13251号公報Japanese Unexamined Patent Publication No. 2018-13251

本発明は、以上の点に鑑み、バーナ燃焼中にバーナへのガス供給量を最小量まで絞る際の失火を防止できるようにした電動式ガス弁装置を提供することをその課題としている。 In view of the above points, it is an object of the present invention to provide an electric gas valve device capable of preventing misfire when the gas supply amount to the burner is reduced to the minimum amount during burner combustion.

上記課題を解決するために、本発明は、バーナへのガス供給路に介設される電動式ガス弁装置であって、バルブケーシング内に、電磁安全弁と、流量調節弁と、電動モータにより連動機構を介して軸方向に駆動される操作ロッドと、バルブケーシング内の空間を軸方向一方の一次側ガス室と軸方向他方の二次側ガス室とに仕切る軸方向に移動自在な弁座部材とが設けられ、軸方向一方を往動方向、軸方向他方を復動方向として、電磁安全弁は、弁座部材に設けられた一次側ガス室に面する安全弁用弁座と、安全弁用弁座に対向する安全弁用弁体と、安全弁用弁体を復動方向に付勢して安全弁用弁座に着座させる弁バネと、安全弁用弁体に往動方向にのびる弁軸を介して連結した吸着片と、吸着片に対向する電磁石とを備え、流量調節弁は、弁座部材に設けられた二次側ガス室に面する調節弁用弁座と、操作ロッドと一体に軸方向に移動する、調節弁用弁座に着座可能な調節弁用弁体と、調節弁用弁座に調節弁用弁体が着座した状態でも一次側ガス室から二次側ガス室にガスを流すバイパス路とを備え、バルブケーシング内に、弁座部材の復動方向への移動を所定の復動端位置で制止する弁座ストッパと、弁座部材を復動方向に付勢する弁座バネとが設けられ、電動モータを正転させて操作ロッドを往動方向に移動させることにより、調節弁用弁体を調節弁用弁座に着座させて、弁座部材を復動端位置から往動方向に押動させ、安全弁用弁座を安全弁用弁体に当接させて、安全弁用弁体を電磁石に吸着片が当接する開弁位置まで弁バネの付勢力に抗して押動させ、この状態で電磁石に通電することにより安全弁用弁体を開弁位置に吸着保持し、その後、電動モータを逆転させて操作ロッドを復動方向に移動させることにより、弁座部材を復動方向に移動させ、安全弁用弁座を開弁位置に吸着保持される安全弁用弁体から離隔させて、電磁安全弁を開弁させると共に、弁座部材が復動端位置に到達した後の更なる操作ロッドの復動方向への移動により調節弁用弁体が調節弁用弁座から離れて、バーナへのガス供給量が次第に増加するようにし、更に、バーナ燃焼中にバーナへのガス供給量をバイパス路で規定される最小量に絞るときは、電動モータを、復動端位置に存する弁座部材の調節弁用弁座に調節弁用弁体が着座する回転位置である第1の回転位置よりも正転方向に所定角度ずれた第2の回転位置まで正転させるものにおいて、電動モータを、調節弁用弁体が調節弁用弁座から離隔している回転位置からバーナへのガス供給量を最小量に絞るために第2の回転位置まで正転させる際に、電動モータの駆動力を、操作ロッドを介して調節弁用弁体に作用する往動方向への押圧力が弁座バネの付勢力以下となるように制限する駆動力制限手段を備えることを特徴とする。 In order to solve the above problems, the present invention is an electric gas valve device interposed in a gas supply path to a burner, in which an electromagnetic safety valve, a flow control valve, and an electric motor are interlocked in the valve casing. An axially movable valve seat member that partitions the space inside the valve casing between the operation rod driven axially via the mechanism and the primary gas chamber on one axial side and the secondary gas chamber on the other axial direction. The electromagnetic safety valve is provided with a safety valve valve seat facing the primary gas chamber provided in the valve seat member and a safety valve valve seat with one axial direction as the forward direction and the other axial direction as the return direction. The valve body for the safety valve facing the valve body, the valve spring that urges the valve body for the safety valve in the recovery direction to sit on the valve seat for the safety valve, and the valve body for the safety valve are connected via a valve shaft extending in the forward direction. A suction piece and an electromagnet facing the suction piece are provided, and the flow control valve moves in the axial direction integrally with the valve seat for the control valve facing the secondary gas chamber provided in the valve seat member and the operation rod. A control valve valve body that can be seated on the control valve valve seat and a bypass path that allows gas to flow from the primary gas chamber to the secondary gas chamber even when the control valve valve body is seated on the control valve valve seat. In the valve casing, there is a valve seat stopper that stops the movement of the valve seat member in the recovery direction at a predetermined recovery end position, and a valve seat spring that urges the valve seat member in the recovery direction. The valve seat for the control valve is seated on the valve seat for the control valve by rotating the electric motor in the normal direction to move the operation rod in the forward direction, and the valve seat member is moved in the forward direction from the position of the return end. The safety valve valve seat is brought into contact with the safety valve valve body, and the safety valve valve body is pushed against the urging force of the valve spring to the valve opening position where the attracted piece abuts on the electromagnet. By energizing the electromagnet in this state, the valve body for the safety valve is attracted and held at the valve opening position, and then the valve seat member is moved in the recovery direction by reversing the electric motor and moving the operation rod in the recovery direction. The valve seat for the safety valve is separated from the valve body for the safety valve that is attracted and held at the valve opening position to open the electromagnetic safety valve, and further operation rod after the valve seat member reaches the return end position. By moving in the return direction, the valve body for the control valve is separated from the valve seat for the control valve so that the amount of gas supplied to the burner gradually increases, and the amount of gas supplied to the burner is bypassed during burner combustion. When narrowing down to the minimum amount specified in, the electric motor is moved from the first rotation position, which is the rotation position where the control valve valve body is seated on the control valve seat of the valve seat member located at the return end position. For those that rotate forward to the second rotation position that is deviated by a predetermined angle in the normal rotation direction When the electric motor is rotated forward from the rotation position where the valve body for the control valve is separated from the valve seat for the control valve to the second rotation position in order to reduce the amount of gas supplied to the burner to the minimum amount. It is characterized by being provided with a driving force limiting means for limiting the driving force of the electric motor so that the pressing force acting on the valve body for the control valve via the operation rod in the outward movement direction is equal to or less than the urging force of the valve seat spring. And.

本発明によれば、バーナへのガス供給量を最小量に絞る際の電動モータの駆動力の制限により、電動モータを復動端位置に存する弁座部材の調節弁用弁座に調節弁用弁体が着座する第1の回転位置を超えて第2の回転位置まで正転させても、弁座部材が弁座バネの付勢力に抗して復動端位置から往動方向に動くことはない。従って、二次側ガス室の容積拡大に起因してガス供給量が最小量を下回る量にアンダーシュートすることを抑制でき、失火を防止できる。 According to the present invention, due to the limitation of the driving force of the electric motor when the amount of gas supplied to the burner is reduced to the minimum amount, the electric motor is used as a control valve for the control valve of the valve seat member located at the return end position. Even if the valve seat member is rotated forward to the second rotation position beyond the first rotation position where the valve body is seated, the valve seat member moves in the forward movement direction from the return end position against the urging force of the valve seat spring. There is no. Therefore, it is possible to prevent the gas supply amount from undershooting to an amount lower than the minimum amount due to the expansion of the volume of the secondary gas chamber, and it is possible to prevent misfire.

ここで、電動モータがステッピングモータで構成される場合、電動モータの駆動周波数を増加し、或いは、電動モータの励磁方式を2相励磁から1相励磁又は1-2相励磁に切換えると、モータ駆動力が減少する。従って、電動モータがステッピングモータで構成される場合、駆動力制限手段は、電動モータの駆動周波数を所定周波数以上に増加するように構成し、或いは、電動モータの励磁方式を2相励磁から1相励磁又は1-2相励磁に切換えるように構成すればよい。 Here, when the electric motor is composed of a stepping motor, if the drive frequency of the electric motor is increased or the excitation method of the electric motor is switched from 2-phase excitation to 1-phase excitation or 1-2-phase excitation, the motor is driven. Power is reduced. Therefore, when the electric motor is composed of a stepping motor, the driving force limiting means is configured to increase the driving frequency of the electric motor to a predetermined frequency or higher, or the excitation method of the electric motor is changed from two-phase excitation to one-phase. It may be configured to switch to excitation or 1-2 phase excitation.

本発明の実施形態の電動式ガス弁装置の切断側面図。The cut side view of the electric gas valve apparatus of embodiment of this invention. 実施形態の電動式ガス弁装置に設けられる連動機構の分解斜視図。An exploded perspective view of an interlocking mechanism provided in the electric gas valve device of the embodiment. (a)(b)実施形態の電動式ガス弁装置の作動を示す要部の切断側面図。(A) (b) A cut side view of a main part showing the operation of the electric gas valve device of the embodiment. 実施形態の電動式ガス弁装置で行う火力調節制御の内容を示すフロー図。The flow diagram which shows the content of the thermal power adjustment control performed by the electric gas valve device of embodiment.

図1を参照して、Aは、コンロに設けられるバーナBへのガス供給路Gに介設した本発明の実施形態の電動式ガス弁装置である。このガス弁装置Aは、ガス流入口1aとバーナBに連なるガス流出口1bとを有するバルブケーシング1を備えている。このバルブケーシング1内には、電磁安全弁2と、流量調節弁3と、ステッピングモータから成る電動モータ4により連動機構5を介して軸方向に駆動される操作ロッド6と、バルブケーシング1内の空間をガス流入口1aに連通する軸方向一方の一次側ガス室11とガス流出口1bに連通する軸方向他方の二次側ガス室12とに仕切る軸方向に移動自在な弁座部材7とが設けられている。尚、電動モータ4は、バルブケーシング1の軸方向他方の端部に連動機構5を囲うようにして取付けられるボックス13の外端に搭載されている。 Referring to FIG. 1, reference numeral A is an electric gas valve device according to an embodiment of the present invention, which is interposed in a gas supply path G to a burner B provided on a stove. The gas valve device A includes a valve casing 1 having a gas inlet 1a and a gas outlet 1b connected to the burner B. Inside the valve casing 1, an electromagnetic safety valve 2, a flow control valve 3, an operation rod 6 driven axially via an interlocking mechanism 5 by an electric motor 4 including a stepping motor, and a space inside the valve casing 1. A valve seat member 7 that is movable in the axial direction and is partitioned between a primary gas chamber 11 in the axial direction communicating with the gas inlet 1a and a secondary gas chamber 12 in the axial direction communicating with the gas outlet 1b. It is provided. The electric motor 4 is mounted on the outer end of the box 13 which is attached to the other end of the valve casing 1 in the axial direction so as to surround the interlocking mechanism 5.

軸方向一方を往動方向、軸方向他方を復動方向として、電磁安全弁2は、弁座部材7に設けられた一次側ガス室11に面する安全弁用弁座21と、安全弁用弁座21に対向する安全弁用弁体22と、安全弁用弁体22を復動方向に付勢して安全弁用弁座21に着座させる弁バネ23と、安全弁用弁体22に往動方向にのびる弁軸22aを介して連結した吸着片24と、吸着片24に対向する電磁石25とを備えている。そして、安全弁用弁体22を吸着片24が電磁石25に当接する開弁位置まで弁バネ23に抗して押動させた状態で電磁石25に通電することにより、安全弁用弁体22が開弁位置に吸着保持されるようにしている。また、バーナBに付設する図示省略した火炎検知素子により失火が検知されたときや、後述する点消火ボタン9を消火位置に押し込む消火操作を行ったときは、電磁石25への通電を停止し、安全弁用弁体22を弁バネ23により安全弁用弁座21に着座する閉弁位置に復帰させて、電磁安全弁2を閉弁する。 The electromagnetic safety valve 2 has a safety valve valve seat 21 facing the primary gas chamber 11 provided in the valve seat member 7 and a safety valve valve seat 21 with one axial direction as the forward direction and the other axial direction as the return direction. The safety valve valve body 22 facing the safety valve, the valve spring 23 that urges the safety valve valve body 22 in the recovery direction to sit on the safety valve valve seat 21, and the valve shaft extending in the forward movement direction to the safety valve valve body 22. A suction piece 24 connected via the 22a and an electromagnet 25 facing the suction piece 24 are provided. Then, the safety valve valve body 22 is opened by energizing the electromagnet 25 in a state where the suction piece 24 is pushed against the valve spring 23 to the valve opening position where the suction piece 24 abuts on the electromagnet 25. It is designed to be sucked and held at the position. Further, when a misfire is detected by the flame detection element (not shown) attached to the burner B, or when a fire extinguishing operation is performed by pushing the point fire extinguishing button 9 described later into the fire extinguishing position, the energization of the electromagnet 25 is stopped. The safety valve valve body 22 is returned to the valve closing position seated on the safety valve valve seat 21 by the valve spring 23, and the electromagnetic safety valve 2 is closed.

バルブケーシング1内には、弁座部材7の復動方向への移動を安全弁用弁体22が着座可能な所定の復動端位置で制止する、バルブケーシング1の内面に形成した突起部から成る弁座ストッパ71と、弁座部材7を復動方向に付勢して復動端位置に弾力的に保持する弁座バネ72とが設けられている。また、弁座部材7の外側で一次側ガス室11と二次側ガス室12との間にガスが流れることを防止するためにベロフラム73を設けている。 The inside of the valve casing 1 is composed of a protrusion formed on the inner surface of the valve casing 1 that restrains the movement of the valve seat member 7 in the recovery direction at a predetermined return end position where the safety valve valve body 22 can be seated. A valve seat stopper 71 and a valve seat spring 72 that urges the valve seat member 7 in the recovery direction and elastically holds the valve seat member 7 at the recovery end position are provided. Further, a belfram 73 is provided on the outside of the valve seat member 7 in order to prevent gas from flowing between the primary gas chamber 11 and the secondary gas chamber 12.

流量調節弁3は、弁座部材7に設けられた二次側ガス室12に面する調節弁用弁座31と、操作ロッド6と一体に軸方向に移動する調節弁用弁体32とを備えている。調節弁用弁体32は、調節弁用弁座31に開設した弁孔31aを閉塞するように調節弁用弁座31に着座可能な閉塞弁部32aと、弁孔31aに復動方向から挿入可能なニードル部32bとを有している。また、流量調節弁3は、調節弁用弁座31に閉塞弁部32aが着座した状態でも一次側ガス室11から二次側ガス室12にガスを流すバイパス路33を備えている。尚、本実施形態では、バイパス路33を調節弁用弁体32に形成しているが、弁座部材7にバイパス路33を形成することも可能である。また、本実施形態では、調節弁用弁体32を操作ロッド6に一体に形成しているが、調節弁用弁体32を操作ロッド6と別体として、これを操作ロッド6に取付けてもよい。 The flow rate control valve 3 includes a control valve valve seat 31 facing the secondary gas chamber 12 provided in the valve seat member 7, and a control valve valve body 32 that moves in the axial direction integrally with the operation rod 6. I have. The control valve valve body 32 is inserted into the valve hole 31a from the reaction direction and the closing valve portion 32a that can be seated in the control valve valve seat 31 so as to close the valve hole 31a opened in the control valve valve seat 31. It has a possible needle portion 32b. Further, the flow rate control valve 3 is provided with a bypass path 33 for flowing gas from the primary side gas chamber 11 to the secondary side gas chamber 12 even when the closing valve portion 32a is seated on the control valve seat 31. In the present embodiment, the bypass path 33 is formed in the valve body 32 for the control valve, but it is also possible to form the bypass path 33 in the valve seat member 7. Further, in the present embodiment, the control valve valve body 32 is integrally formed with the operation rod 6, but the control valve valve body 32 may be separated from the operation rod 6 and attached to the operation rod 6. good.

図2も参照して、連動機構5は、電動モータ4により回転駆動される、操作ロッド6と同心の筒状のカム体54と、カム体54に形成した螺旋状のカム溝54aに係合する、操作ロッド6に固定したピン55とを有し、カム体54の正転と逆転とでカム溝54aからピン55を介して作用する軸方向推力により操作ロッド6が往動方向と復動方向とに移動するようにしたカム機構で構成されている。電動モータ4とカム体54との間には、モータケース内に組み込んだ減速歯車列51と、減速歯車列51の出力側の回転軸52と、回転軸52とカム体54とを連結する連結子53とが設けられている。連結子53は、断面が非円形の回転軸52に嵌合する非円形の孔53aを有し、回転軸52と一緒に回転する。また、連結子53には、カム体54の復動方向側端部に形成した切欠き部54bに係合して回転力を伝達する突片部53bが設けられている。カム体54には、バルブケーシング1から復動方向に延出したガイド筒56が挿入されている。ガイド筒56には、軸方向に長手の長孔56aが形成されており、この長孔56aにピン55を軸方向に摺動自在に係合させている。また、カム体54の往動方向の端をボックス13の端壁で構成されるカムストッパ57に当接した状態に付勢保持するカムバネ58を設けている。 With reference to FIG. 2, the interlocking mechanism 5 engages with a cylindrical cam body 54 concentric with the operation rod 6 driven to be rotated by an electric motor 4 and a spiral cam groove 54a formed in the cam body 54. The operation rod 6 has a pin 55 fixed to the operation rod 6, and the operation rod 6 moves in the forward direction and the reverse direction by the axial thrust acting from the cam groove 54a through the pin 55 in the forward rotation and the reverse rotation of the cam body 54. It is composed of a cam mechanism that moves in the direction. Between the electric motor 4 and the cam body 54, a reduction gear train 51 incorporated in the motor case, a rotary shaft 52 on the output side of the reduction gear train 51, and a connection connecting the rotary shaft 52 and the cam body 54 are connected. A child 53 is provided. The connector 53 has a non-circular hole 53a that fits into the rotating shaft 52 having a non-circular cross section, and rotates together with the rotating shaft 52. Further, the connector 53 is provided with a projecting piece portion 53b that engages with a notch portion 54b formed at the end of the cam body 54 on the recovery direction side to transmit a rotational force. A guide cylinder 56 extending in the recovery direction from the valve casing 1 is inserted into the cam body 54. A long hole 56a long in the axial direction is formed in the guide cylinder 56, and a pin 55 is slidably engaged with the long hole 56a in the axial direction. Further, a cam spring 58 is provided to urge and hold the end of the cam body 54 in the forward direction in a state of being in contact with the cam stopper 57 formed of the end wall of the box 13.

また、電動式ガス弁装置Aを制御するコントローラ8が設けられている。コントローラ8には、コンロの操作パネル部に設けられた点消火ボタン9からの操作信号が入力される。点消火ボタン9は、プッシュプッシュ式であって、操作パネル部の表面とほぼ面一の消火位置から一旦押し込んで押し込み解除することにより操作パネル部の表面から突出した点火位置に変位し、この状態で火力調節のために回動操作することができる。そして、点消火ボタン9を点火位置に突出させる点火操作を行ったときに、コントローラ8はモータ駆動回路41を介して電動モータ4を正転させる。これによれば、連動機構5を介して操作ロッド6が往動方向に移動し、先ず、調節弁用弁体32の閉塞弁部32aが弁座ストッパ71で制止される復動端位置に存する弁座部材7の調節弁用弁座31に着座し、以後、弁座部材7が調節弁用弁体32に押されて往動方向に移動する。そして、安全弁用弁座21が安全弁用弁体22に当接して、安全弁用弁体22が開弁位置に押動される(図3(a)に示す状態)。この状態で電磁石25に通電して安全弁用弁体22を開弁位置に吸着保持する。その後、電動モータ4を逆転させて、操作ロッド6を復動方向に移動させると共に、図示省略したイグナイタに通電する。この際、弁座部材7は、復動端位置まで操作ロッド6に追従して復動方向に移動し、安全弁用弁座21が開弁位置に吸着保持される安全弁用弁体22から離れて、電磁安全弁72が開弁され、バーナBへのガス供給が開始される。その後、復動端位置に制止される弁座部材7に対し調節弁用弁体32を更に復動方向に移動させ、閉塞弁部32aを調節弁用弁座31から離して、バーナBへのガス供給量を次第に増加させ、バーナBに点火する。バーナ点火後、調節弁用弁体32が往動方向に移動して、復動端位置に存する弁座部材7の調節弁用弁座31に調節用弁用弁体32(正確には閉塞弁部32a)が着座すれば(図3(b)の状態)、バイパス路33のみを介してガスが流れて、バーナBへのガス供給量が最小量になる。 Further, a controller 8 for controlling the electric gas valve device A is provided. An operation signal from the point fire extinguishing button 9 provided on the operation panel of the stove is input to the controller 8. The point fire extinguishing button 9 is a push-push type, and is displaced to an ignition position protruding from the surface of the operation panel portion by once pushing in from a fire extinguishing position substantially flush with the surface of the operation panel portion and releasing the push-in. It can be rotated to adjust the heating power. Then, when the ignition operation for projecting the point fire extinguishing button 9 to the ignition position is performed, the controller 8 rotates the electric motor 4 in the normal direction via the motor drive circuit 41. According to this, the operation rod 6 moves in the forward movement direction via the interlocking mechanism 5, and first, the block valve portion 32a of the control valve valve body 32 is located at the return end position where the valve seat stopper 71 stops. The valve seat member 7 is seated on the control valve seat 31, and thereafter, the valve seat member 7 is pushed by the control valve valve body 32 and moves in the forward movement direction. Then, the safety valve valve seat 21 comes into contact with the safety valve valve body 22, and the safety valve valve body 22 is pushed to the valve opening position (state shown in FIG. 3A). In this state, the electromagnet 25 is energized to attract and hold the safety valve valve body 22 at the valve opening position. After that, the electric motor 4 is reversed to move the operation rod 6 in the return direction, and the igniter (not shown) is energized. At this time, the valve seat member 7 moves in the recovery direction following the operation rod 6 to the recovery end position, and separates from the safety valve valve body 22 in which the safety valve valve seat 21 is attracted and held at the valve opening position. , The electromagnetic safety valve 72 is opened, and the gas supply to the burner B is started. After that, the control valve valve body 32 is further moved in the recovery direction with respect to the valve seat member 7 restrained at the return end position, the block valve portion 32a is separated from the control valve valve seat 31, and the burner B is moved. Gradually increase the gas supply and ignite the burner B. After the burner is ignited, the control valve valve body 32 moves in the forward movement direction, and the control valve valve body 32 (to be exact, the closing valve) is attached to the control valve valve seat 31 of the valve seat member 7 located at the return end position. When the portion 32a) is seated (state of FIG. 3B), the gas flows only through the bypass path 33, and the amount of gas supplied to the burner B becomes the minimum amount.

但し、電動モータ4を、復動端位置に存する弁座部材7の調節弁用弁座31に調節弁用弁体32が着座する回転位置で停止させるようにしたのでは、弁座部材7の寸法公差や弁座ストッパ71の位置公差等により、調節弁用弁座31に調節弁用弁体32が着座する前に電動モータ4が停止して、バーナBへのガス供給量をバイパス路33で規定される最小量まで絞れなくなることがある。そこで、バーナ燃焼中に点消火ボタン9により指示される火力が最小火力に変更されて、バーナBへのガス供給量をバイパス路33で規定される最小量に絞るときは、電動モータ4を、復動端位置に存する弁座部材7の調節弁用弁座31に調節弁用弁体32が着座する回転位置である第1の回転位置よりも正転方向に所定角度ずれた第2の回転位置まで正転させるようにしている。 However, if the electric motor 4 is stopped at the rotational position where the control valve valve body 32 is seated on the control valve seat 31 of the valve seat member 7 located at the return end position, the valve seat member 7 may be stopped. Due to dimensional tolerances, position tolerances of the valve seat stopper 71, etc., the electric motor 4 stops before the control valve valve body 32 is seated on the control valve valve seat 31, and the gas supply amount to the burner B is reduced to the bypass path 33. It may not be possible to squeeze to the minimum amount specified in. Therefore, when the thermal power indicated by the point fire extinguishing button 9 is changed to the minimum thermal power during burner combustion and the amount of gas supplied to the burner B is reduced to the minimum amount specified by the bypass path 33, the electric motor 4 is used. A second rotation deviated by a predetermined angle in the normal rotation direction from the first rotation position, which is the rotation position where the control valve valve body 32 is seated on the control valve seat 31 of the valve seat member 7 located at the return end position. I try to rotate it to the position.

然し、電動モータ4の第1の回転位置から第2の回転位置への正転で調節弁用弁体32に押されて弁座部材7が復動端位置から往動方向に移動してしまうと、二次側ガス室12の容積が拡大して、二次側ガス室12内のガス圧が一時的に低下し、バーナBへのガス供給量が一時的に最小量を下回る量までアンダーシュートし、失火してしまうことがある。 However, the valve seat member 7 is pushed by the valve body 32 for the control valve in the normal rotation from the first rotation position to the second rotation position of the electric motor 4, and the valve seat member 7 moves in the forward movement direction from the return end position. As a result, the volume of the secondary gas chamber 12 expands, the gas pressure in the secondary gas chamber 12 temporarily drops, and the amount of gas supplied to the burner B temporarily falls below the minimum amount. It may shoot and misfire.

そこで、本実施形態では、電動モータ4を、調節弁用弁体32が調節弁用弁座31から離隔している回転位置からバーナBへの供給ガス量を最小量に絞るために第2の回転位置まで正転させる際に、電動モータ4の駆動力を、操作ロッド6を介して調節弁用弁体32に作用する往動方向への押圧力が弁座バネ72の付勢力以下となるように制限する駆動力制限手段を設けている。 Therefore, in the present embodiment, the electric motor 4 is seconded in order to minimize the amount of gas supplied to the burner B from the rotational position where the control valve valve body 32 is separated from the control valve valve seat 31. When the motor 4 is rotated forward to the rotation position, the pushing force in the outward direction acting on the control valve valve body 32 via the operation rod 6 is equal to or less than the urging force of the valve seat spring 72. A driving force limiting means for limiting the driving force is provided.

より具体的に説明すると、電動モータ4を本実施形態の如くステッピングモータで構成する場合、モータ駆動回路41から出力される駆動パルスの周波数(駆動周波数)が増加すると、電動モータ4の駆動力は減少する。そこで、モータ駆動回路41に周波数切換部42を組み込み、駆動周波数を、操作ロッド6を介して調節弁用弁体32に作用する往動方向への押圧力が弁座バネ72の付勢力を上回る第1設定周波数(例えば、300Hz)と、上記押圧力が弁座バネ72の付勢力以下となる所定周波数以上の第2設定周波数(例えば、600Hz)とにコントローラ8からの指令で切換えられるようにしている。そして、バーナ燃焼中は図4に示す火力調節制御を行うようにした。 More specifically, when the electric motor 4 is composed of a stepping motor as in the present embodiment, when the frequency (drive frequency) of the drive pulse output from the motor drive circuit 41 increases, the driving force of the electric motor 4 increases. Decrease. Therefore, the frequency switching unit 42 is incorporated in the motor drive circuit 41, and the pressing force in the forward direction acting on the valve body 32 for the control valve via the operation rod 6 exceeds the urging force of the valve seat spring 72. The first set frequency (for example, 300 Hz) and the second set frequency (for example, 600 Hz) whose pressing force is equal to or less than the urging force of the valve seat spring 72 and which is equal to or higher than the predetermined frequency can be switched by a command from the controller 8. ing. Then, during the burner combustion, the thermal power adjustment control shown in FIG. 4 was performed.

この火力調節制御では、先ず、STEP1において、点消火ボタン9の回動操作が行われたか否か、即ち、指示火力が変更されたか否かを判別し、変更されたときは、STEP2で指示火力が最小火力に変更されたか否かを判別する。指示火力が最小火力以外の火力に変更された場合は、STEP3に進み、駆動周波数を第1設定周波数として電動モータ4を駆動する。そして、STEP4で電動モータ4の回転位置が指示火力に対応する回転位置に到達したと判別されたときに、STEP7に進んで電動モータ4を停止する。尚、点火操作が行われたときも、駆動周波数を第1設定周波数として電動モータ4を駆動し、弁座部材7を復動端位置から往動方向に押動できるようにする。 In this thermal power adjustment control, first, in STEP 1, it is determined whether or not the rotation operation of the point fire extinguishing button 9 is performed, that is, whether or not the indicated thermal power is changed, and when it is changed, the indicated thermal power is changed in STEP 2. Determines if has been changed to the minimum firepower. When the indicated thermal power is changed to a thermal power other than the minimum thermal power, the process proceeds to STEP 3 and the electric motor 4 is driven with the drive frequency as the first set frequency. Then, when it is determined in STEP 4 that the rotational position of the electric motor 4 has reached the rotational position corresponding to the indicated thermal power, the process proceeds to STEP 7 and the electric motor 4 is stopped. Even when the ignition operation is performed, the electric motor 4 is driven with the drive frequency as the first set frequency so that the valve seat member 7 can be pushed in the forward direction from the return end position.

一方、指示火力が最小火力に変更された場合は、STEP2からSTEP5に進み、駆動周波数を第2設定周波数として電動モータ4を駆動する。そして、STEP6で電動モータ4の回転位置が第2の回転位置に到達したと判別されたときに、STEP7に進んで電動モータ4を停止する。尚、電動モータ4の回転位置は、出力された駆動パルスの数に基づいて算出する。 On the other hand, when the indicated thermal power is changed to the minimum thermal power, the process proceeds from STEP 2 to STEP 5, and the electric motor 4 is driven with the drive frequency as the second set frequency. Then, when it is determined in STEP 6 that the rotational position of the electric motor 4 has reached the second rotational position, the process proceeds to STEP 7 and the electric motor 4 is stopped. The rotation position of the electric motor 4 is calculated based on the number of output drive pulses.

本実施形態によれば、バーナBの火力を最小火力に絞る際、電動モータ4の駆動力は、操作ロッド6を介して調節弁用弁体32に作用する往動方向への押圧力が弁座バネ72の付勢力以下となるように制限される。そのため、電動モータ4を復動端位置に存する弁座部材7の調節弁用弁座31に調節弁用弁体32が着座する第1の回転位置を超えて第2の回転位置まで正転させても、弁座部材7が弁座バネ72の付勢力に抗して復動端位置から往動方向に動くことはない。従って、二次側ガス室12の容積拡大に起因してガス供給量が最小量を下回る量にアンダーシュートすることを抑制でき、失火を防止できる。 According to the present embodiment, when the thermal power of the burner B is reduced to the minimum thermal power, the driving force of the electric motor 4 is a pressing force acting on the valve body 32 for the control valve via the operation rod 6 in the forward direction. It is restricted to be less than or equal to the urging force of the seat spring 72. Therefore, the electric motor 4 is rotated forward to the second rotation position beyond the first rotation position where the control valve valve body 32 is seated on the control valve valve seat 31 of the valve seat member 7 located at the return end position. However, the valve seat member 7 does not move in the forward direction from the return end position against the urging force of the valve seat spring 72. Therefore, it is possible to prevent the gas supply amount from undershooting to an amount lower than the minimum amount due to the volume expansion of the secondary side gas chamber 12, and it is possible to prevent misfire.

尚、上記実施形態において、駆動力制限手段は、コントローラ8と周波数切換部42とにより、最小火力に絞る際に、電動モータ4の駆動周波数を所定周波数以上の第2設定周波数に増加するように構成されているが、電動モータ4の励磁方式を2相励磁から1相励磁又は1-2相励磁に切換えるように駆動力制限手段を構成してもよい。即ち、電動モータ4をステッピングモータで構成する場合、電動モータ4の励磁方式を2相励磁から1相励磁又は1-2相励磁に切換えると、モータ駆動力が減少する。そして、駆動パルスの電圧レベルを、2相励磁では、操作ロッド6を介して調節弁用弁体32に作用する往動方向への押圧力が弁座バネ72の付勢力を上回り、1相励磁又は1-2相励磁では、上記押圧力が弁座バネ72の付勢力以下になるように設定しておく。これによれば、バーナBの火力を最小火力に絞る際に、2相励磁から1相励磁又は1-2相励磁に切換えることで、電動モータ4を第2の回転位置まで正転させても、弁座部材7が復動端位置か往動方向に動くことはなく、上記実施形態と同様の効果を得られる。尚、この場合は、モータ駆動回路41に、上記実施形態の周波数切換部42に代えて、励磁方式を2相励磁と1相励磁又は1-2相励磁に切換える励磁方式切換部を組み込む。 In the above embodiment, the driving force limiting means increases the driving frequency of the electric motor 4 to a second set frequency equal to or higher than a predetermined frequency when the controller 8 and the frequency switching unit 42 reduce the driving force to the minimum thermal power. Although it is configured, the driving force limiting means may be configured so as to switch the excitation method of the electric motor 4 from 2-phase excitation to 1-phase excitation or 1-2-phase excitation. That is, when the electric motor 4 is composed of a stepping motor, switching the excitation method of the electric motor 4 from 2-phase excitation to 1-phase excitation or 1-2-phase excitation reduces the motor driving force. Then, in the two-phase excitation of the voltage level of the drive pulse, the pressing force acting on the valve body 32 for the control valve via the operation rod 6 in the forward direction exceeds the urging force of the valve seat spring 72, and the one-phase excitation is performed. Alternatively, in 1-2 phase excitation, the pressing force is set so as to be equal to or less than the urging force of the valve seat spring 72. According to this, when the thermal power of the burner B is reduced to the minimum thermal power, even if the electric motor 4 is rotated forward to the second rotation position by switching from 2-phase excitation to 1-phase excitation or 1-2-phase excitation. The valve seat member 7 does not move to the return end position or the forward direction, and the same effect as that of the above embodiment can be obtained. In this case, instead of the frequency switching unit 42 of the above embodiment, the motor drive circuit 41 incorporates an excitation method switching unit that switches the excitation method between two-phase excitation and one-phase excitation or 1-2-phase excitation.

以上、本発明の実施形態について図面を参照して説明したが、本発明はこれに限定されない。例えば、電動モータ4をステッピングモータ以外のモータで構成することも可能である。また、駆動力制限手段は、操作ロッド6を介して調節弁用弁体32に作用する往動方向への押圧力が弁座バネ72の付勢力以下となるようにモータ電流を減少させる構成とすることもできる。更に、上記実施形態では、連動機構5を筒状のカム体54を有するカム機構で構成しているが、送りねじ機構で連動機構を構成することも可能である。また、電動モータをバルブケーシングに対し軸方向に直交するように配置し、連動機構を操作ロッドに連結されたラックと、ラックに噛合するモータ駆動のピニオンとから成るラックピニオン機構で構成することも可能である。 Although the embodiments of the present invention have been described above with reference to the drawings, the present invention is not limited thereto. For example, the electric motor 4 can be configured by a motor other than the stepping motor. Further, the driving force limiting means is configured to reduce the motor current so that the pressing force acting on the valve body 32 for the control valve via the operating rod 6 in the outward direction is equal to or less than the urging force of the valve seat spring 72. You can also do it. Further, in the above embodiment, the interlocking mechanism 5 is composed of a cam mechanism having a tubular cam body 54, but the interlocking mechanism can also be configured by a feed screw mechanism. It is also possible to arrange the electric motor so as to be orthogonal to the valve casing in the axial direction, and to configure the interlocking mechanism with a rack and pinion mechanism consisting of a rack connected to the operation rod and a motor-driven pinion that meshes with the rack. It is possible.

更に、上記実施形態では、点消火ボタン9による指示火力に応じてバーナBへのガス供給量を調節しているが、バーナBに付設する鍋底温度センサの検出温度に応じてバーナBへのガス供給量を調節する場合にも、上記と同様の火力調節制御を行うことができる。また、コンロ用バーナ以外のバーナへのガス供給路に介設する電動式ガス弁装置にも同様に本発明を適用できる。 Further, in the above embodiment, the gas supply amount to the burner B is adjusted according to the indicated thermal power by the point fire extinguishing button 9, but the gas to the burner B is adjusted according to the detection temperature of the pot bottom temperature sensor attached to the burner B. When adjusting the supply amount, the same thermal power adjustment control as described above can be performed. Further, the present invention can be similarly applied to an electric gas valve device interposed in a gas supply path to a burner other than a burner for a stove.

A…電動式ガス弁装置、B…バーナ、G…ガス供給路、1…バルブケーシング、11…一次側ガス室、12…二次側ガス室、2…電磁安全弁、21…安全弁用弁座、22…安全弁用弁体、22a…弁軸、23…弁バネ、24…吸着片、25…電磁石、3…流量調節弁、31…調節弁用弁座、32…調節弁用弁体、33…バイパス路、4…電動モータ、42…周波数切換部(駆動力制限手段)、5…連動機構、6…操作ロッド、7…弁座部材、71…弁座ストッパ、72…弁座バネ、8…コントローラ(駆動力制限手段)。 A ... electric gas valve device, B ... burner, G ... gas supply path, 1 ... valve casing, 11 ... primary side gas chamber, 12 ... secondary side gas chamber, 2 ... electromagnetic safety valve, 21 ... safety valve valve seat, 22 ... Safety valve valve body, 22a ... Valve shaft, 23 ... Valve spring, 24 ... Suction piece, 25 ... Electromagnet, 3 ... Flow control valve, 31 ... Control valve valve seat, 32 ... Control valve valve body, 33 ... Bypass path, 4 ... Electric motor, 42 ... Frequency switching unit (driving force limiting means), 5 ... Interlocking mechanism, 6 ... Operation rod, 7 ... Valve seat member, 71 ... Valve seat stopper, 72 ... Valve seat spring, 8 ... Controller (driving force limiting means).

Claims (3)

バーナへのガス供給路に介設される電動式ガス弁装置であって、バルブケーシング内に、電磁安全弁と、流量調節弁と、電動モータにより連動機構を介して軸方向に駆動される操作ロッドと、バルブケーシング内の空間を軸方向一方の一次側ガス室と軸方向他方の二次側ガス室とに仕切る軸方向に移動自在な弁座部材とが設けられ、軸方向一方を往動方向、軸方向他方を復動方向として、電磁安全弁は、弁座部材に設けられた一次側ガス室に面する安全弁用弁座と、安全弁用弁座に対向する安全弁用弁体と、安全弁用弁体を復動方向に付勢して安全弁用弁座に着座させる弁バネと、安全弁用弁体に往動方向にのびる弁軸を介して連結した吸着片と、吸着片に対向する電磁石とを備え、流量調節弁は、弁座部材に設けられた二次側ガス室に面する調節弁用弁座と、操作ロッドと一体に軸方向に移動する、調節弁用弁座に着座可能な調節弁用弁体と、調節弁用弁座に調節弁用弁体が着座した状態でも一次側ガス室から二次側ガス室にガスを流すバイパス路とを備え、
バルブケーシング内に、弁座部材の復動方向への移動を所定の復動端位置で制止する弁座ストッパと、弁座部材を復動方向に付勢する弁座バネとが設けられ、電動モータを正転させて操作ロッドを往動方向に移動させることにより、調節弁用弁体を調節弁用弁座に着座させて、弁座部材を復動端位置から往動方向に押動させ、安全弁用弁座を安全弁用弁体に当接させて、安全弁用弁体を電磁石に吸着片が当接する開弁位置まで弁バネの付勢力に抗して押動させ、この状態で電磁石に通電することにより安全弁用弁体を開弁位置に吸着保持し、その後、電動モータを逆転させて操作ロッドを復動方向に移動させることにより、弁座部材を復動方向に移動させ、安全弁用弁座を開弁位置に吸着保持される安全弁用弁体から離隔させて、電磁安全弁を開弁させると共に、弁座部材が復動端位置に到達した後の更なる操作ロッドの復動方向への移動により調節弁用弁体が調節弁用弁座から離れて、バーナへのガス供給量が次第に増加するようにし、
更に、バーナ燃焼中にバーナへのガス供給量をバイパス路で規定される最小量に絞るときは、電動モータを、復動端位置に存する弁座部材の調節弁用弁座に調節弁用弁体が着座する回転位置である第1の回転位置よりも正転方向に所定角度ずれた第2の回転位置まで正転させるものにおいて、
電動モータを、調節弁用弁体が調節弁用弁座から離隔している回転位置からバーナへのガス供給量を最小量に絞るために第2の回転位置まで正転させる際に、電動モータの駆動力を、操作ロッドを介して調節弁用弁体に作用する往動方向への押圧力が弁座バネの付勢力以下となるように制限する駆動力制限手段を備えることを特徴とする電動式ガス弁装置。
An electric gas valve device installed in the gas supply path to the burner. An electromagnetic safety valve, a flow control valve, and an operation rod driven axially by an electric motor via an interlocking mechanism in the valve casing. A valve seat member that is movable in the axial direction is provided to partition the space inside the valve casing into a primary gas chamber on one axial direction and a gas chamber on the secondary side in the other axial direction. The electromagnetic safety valve has a safety valve valve seat facing the primary gas chamber provided in the valve seat member, a safety valve valve body facing the safety valve valve seat, and a safety valve valve. A valve spring that urges the body in the recovery direction to sit on the valve seat for the safety valve, a suction piece connected to the valve body for the safety valve via a valve shaft extending in the forward direction, and an electromagnet facing the suction piece. The flow control valve is adjustable so that it can be seated on the valve seat for the control valve facing the secondary gas chamber provided in the valve seat member and the valve seat for the control valve that moves in the axial direction integrally with the operation rod. It is equipped with a valve body for a valve and a bypass path for flowing gas from the primary gas chamber to the secondary gas chamber even when the valve for the control valve is seated on the valve seat for the control valve.
Inside the valve casing, a valve seat stopper that stops the movement of the valve seat member in the recovery direction at a predetermined recovery end position and a valve seat spring that urges the valve seat member in the recovery direction are provided and are electrically operated. By rotating the motor in the normal direction and moving the operation rod in the forward movement direction, the valve body for the control valve is seated on the valve seat for the control valve, and the valve seat member is pushed in the forward movement direction from the return end position. , The valve seat for the safety valve is brought into contact with the valve body for the safety valve, and the valve body for the safety valve is pushed against the urging force of the valve spring to the valve opening position where the attracted piece abuts on the electric magnet. The valve body for the safety valve is attracted and held at the valve opening position by energizing, and then the valve seat member is moved in the recovery direction by reversing the electric motor and moving the operation rod in the recovery direction, for the safety valve. The valve seat is separated from the safety valve valve body that is attracted and held at the valve opening position to open the electromagnetic safety valve, and the valve seat member reaches the recovery end position, and then the operation rod is further moved in the recovery direction. The movement of the valve body of the control valve is separated from the valve seat of the control valve so that the amount of gas supplied to the burner gradually increases.
Furthermore, when limiting the amount of gas supplied to the burner to the minimum amount specified by the bypass path during burner combustion, the electric motor is placed on the control valve seat of the valve seat member located at the return end position. In a device that rotates forward to a second rotation position that is deviated by a predetermined angle in the normal rotation direction from the first rotation position, which is the rotation position where the body sits.
When the electric motor is rotated forward from the rotation position where the valve body for the control valve is separated from the valve seat for the control valve to the second rotation position in order to minimize the amount of gas supplied to the burner. It is characterized by providing a driving force limiting means for limiting the driving force of the valve seat spring so that the pressing force acting on the valve body for the control valve via the operation rod in the forward movement direction is equal to or less than the urging force of the valve seat spring. Electric gas valve device.
請求項1記載の電動式ガス弁装置であって、電動モータがステッピングモータで構成されるものにおいて、駆動力制限手段は、電動モータの駆動周波数を所定周波数以上に増加するように構成されることを特徴とする電動式ガス弁装置。 The electric gas valve device according to claim 1, wherein the electric motor is composed of a stepping motor, and the driving force limiting means is configured to increase the driving frequency of the electric motor to a predetermined frequency or more. An electric gas valve device featuring. 請求項1記載の電動式ガス弁装置であって、電動モータがステッピングモータで構成されるものにおいて、駆動力制限手段は、電動モータの励磁方式を2相励磁から1相励磁又は1-2相励磁に切換えるように構成されることを特徴とする電動式ガス弁装置。 The electric gas valve device according to claim 1, wherein the electric motor is composed of a stepping motor, the driving force limiting means changes the excitation method of the electric motor from two-phase excitation to one-phase excitation or 1-2 phase. An electric gas valve device characterized by being configured to switch to excitation.
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JP2015048966A (en) 2013-08-30 2015-03-16 株式会社パロマ Heating cooker
JP2018128198A (en) 2017-02-08 2018-08-16 リンナイ株式会社 Gas combustion apparatus

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JP2015048966A (en) 2013-08-30 2015-03-16 株式会社パロマ Heating cooker
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