JP6597242B2 - Vibration control structure of static induction equipment - Google Patents

Vibration control structure of static induction equipment Download PDF

Info

Publication number
JP6597242B2
JP6597242B2 JP2015235476A JP2015235476A JP6597242B2 JP 6597242 B2 JP6597242 B2 JP 6597242B2 JP 2015235476 A JP2015235476 A JP 2015235476A JP 2015235476 A JP2015235476 A JP 2015235476A JP 6597242 B2 JP6597242 B2 JP 6597242B2
Authority
JP
Japan
Prior art keywords
contents
bottom wall
vibration
vibration damping
induction device
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
JP2015235476A
Other languages
Japanese (ja)
Other versions
JP2017103348A (en
Inventor
一寿 櫛木
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Meidensha Corp
Original Assignee
Meidensha Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Meidensha Corp filed Critical Meidensha Corp
Priority to JP2015235476A priority Critical patent/JP6597242B2/en
Publication of JP2017103348A publication Critical patent/JP2017103348A/en
Application granted granted Critical
Publication of JP6597242B2 publication Critical patent/JP6597242B2/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Regulation Of General Use Transformers (AREA)
  • Housings And Mounting Of Transformers (AREA)

Description

本発明は、種々の電力設備等に適用されている変圧器やリアクトル等の静止誘導機器の制振構造に関するものである。   The present invention relates to a vibration damping structure for a stationary induction device such as a transformer or a reactor that is applied to various power facilities.

電力設備等に適用されている変圧器やリアクトル等の静止誘導機器としては、鉄心および当該鉄心に装着された巻線を有する静止誘導機器の中身(以下、単に中身と適宜称する)を、絶縁媒体(絶縁油や絶縁ガス等)とともに当該静止誘導機器の容器(以下、単に容器と適宜称する)に収容し、中身を絶縁媒体中に配置(例えば絶縁油中に含浸)した構成が知られている。   As static induction devices such as transformers and reactors applied to electric power facilities, the contents of static induction devices having an iron core and windings attached to the iron core (hereinafter simply referred to as “contents” as appropriate) are used as insulating media. A configuration is known in which a stationary induction device container (hereinafter simply referred to as a container) is housed together with (insulating oil, insulating gas, etc.) and the contents are placed in an insulating medium (for example, impregnated in insulating oil). .

このような静止誘導機器を稼動すると、巻線に電流が流れ通電する事によって生じる電磁力により、中身が振動(巻線の振動や鉄心の励磁振動)し、その振動が容器に伝達して騒音を引き起こし得る。この振動の伝播としては、絶縁媒体を介した伝播(油中伝播等)や、固体伝播(中身を支持する中身支持台等を介した伝達)等が挙げられる。   When such a stationary induction device is operated, the electromagnetic force generated when a current flows through the windings causes the contents to vibrate (winding vibrations and iron core excitation vibrations), and the vibrations are transmitted to the container to generate noise. Can cause. Examples of the propagation of this vibration include propagation through an insulating medium (propagation in oil, etc.), solid propagation (transmission through a content support stand that supports the contents), and the like.

静止誘導機器の振動や騒音を抑制する手法としては、例えば図8,図9に示す静止誘導機器8のように、中身2や絶縁媒体3を収容する容器81の外周側に防音壁82を設置したり、容器81外側面に防音パネル83を取り付けることが、従来から知られている。更に、特許文献1に示すように、容器の底壁内側面と中身(または中身の支持台)との両者間にバネ機構(ヘリカルアイソレータや板バネ等)を介在させて制振性を得る手法も知られている。   As a method for suppressing vibration and noise of the stationary induction device, for example, a soundproof wall 82 is installed on the outer peripheral side of the container 81 that houses the contents 2 and the insulating medium 3 as in the stationary induction device 8 shown in FIGS. It is conventionally known to attach the soundproof panel 83 to the outer surface of the container 81. Furthermore, as shown in Patent Document 1, a method for obtaining vibration damping properties by interposing a spring mechanism (helical isolator, leaf spring, etc.) between the inner surface of the bottom wall of the container and the contents (or the support base for the contents). Is also known.

特開平8−316061号公報JP-A-8-316061

単に前述のようなバネ機構を容器の底壁内側面と中身(または中身の支持台)との両者間に介在させて振動や騒音を抑制する場合、容器が大きくなってしまい(例えば両者間方向に大きくなってしまい)、静止誘導機器の大型化を招く虞がある。   If the spring mechanism as described above is simply interposed between the inner surface of the bottom wall of the container and the contents (or the support base for the contents) to suppress vibration and noise, the container becomes large (for example, the direction between them) May increase the size of the stationary induction device.

本発明は、かかる技術的課題に鑑みてなされたものであって、振動や騒音の抑制だけでなく、静止誘導機器の小型化に貢献可能な静止誘導機器の制振構造を提供することを目的としている。   The present invention has been made in view of such technical problems, and it is an object of the present invention to provide a damping structure for a stationary induction device that can contribute to downsizing of the stationary guidance device as well as suppression of vibration and noise. It is said.

この発明に係る静止誘導機器の制振構造は、前記の課題を解決できる創作であり、その一態様は、鉄心および当該鉄心に巻回された巻線を有した静止誘導機器の中身と、底壁および当該底壁内側面の周縁から立設した側壁を有し、中身を絶縁媒体と共に収容した静止誘導機器の容器と、底壁から容器内側に延出し中身を支持した制振支持部と、を備え、制振支持部は、底壁と中身との両者間方向に弾性伸縮自在なバネ機能と、当該バネ機能の弾性伸縮を減衰するダンパ機能と、を有したことを特徴とする。   The vibration suppression structure for a stationary induction device according to the present invention is a creation that can solve the above-described problems, and one aspect thereof includes an iron core and the contents of the stationary induction device having a winding wound around the iron core, and a bottom. A stationary induction device container including a wall and a side wall erected from the peripheral edge of the inner surface of the bottom wall, and containing the contents together with an insulating medium; and a vibration damping support portion extending from the bottom wall to the inside of the container to support the contents; The vibration damping support portion has a spring function that can be elastically expanded and contracted in the direction between the bottom wall and the contents, and a damper function that attenuates the elastic expansion and contraction of the spring function.

このような一態様において、底壁は、底壁内側面における中身と対向する位置で窪んだ有底筒状の周壁が形成され、当該周壁の底部外側面が静止誘導機器の被設置面と接するベース部を備え、制振支持部は、周壁の底部内側面から容器内側に延出した形状であっても良い。また、制振支持部は、中身のベース部側に設けられた支持台を介して当該中身を支持し、支持台は、両者間方向に交差した方向に延在し周壁の開口部よりも大きい形状であって、当該開口部と中身との間に位置したものであっても良い。また、制振支持部は、中身のベース部側に設けられた支持台を介して当該中身を支持し、周壁は、側部内周面に縮径部が形成され、支持台は、両者間方向に交差した方向に延在し開口部よりも小さく縮径部の内径側形状よりも大きい形状であって、開口部と縮径部との間に位置したものであっても良い。   In such an aspect, the bottom wall is formed with a bottomed cylindrical peripheral wall that is recessed at a position facing the contents on the inner surface of the bottom wall, and the bottom outer surface of the peripheral wall is in contact with the installation surface of the stationary induction device. The vibration suppression support portion may include a base portion and may have a shape extending from the inner surface of the bottom portion of the peripheral wall to the inside of the container. Further, the vibration damping support portion supports the contents via a support stand provided on the base portion side of the contents, and the support stand extends in a direction intersecting the direction between the two and is larger than the opening portion of the peripheral wall. It may be a shape and located between the opening and the contents. Further, the vibration damping support part supports the contents via a support base provided on the base part side of the contents, the peripheral wall is formed with a reduced diameter part on the inner peripheral surface of the side part, The shape may be a shape that extends in a direction intersecting with and smaller than the opening and larger than the inner diameter side shape of the reduced diameter portion, and is located between the opening and the reduced diameter portion.

また、両者間方向に交差した方向における中身の揺動を規制する揺動規制材が底壁内側面に設けられ、揺動規制材は、中身と底壁内側面との間に介在し当該中身の両者間方向と対向して位置したものであっても良い。あるいは、両者間方向に交差した方向における中身の揺動を規制する揺動規制材が支持台に設けられ、揺動規制材は、支持台と側部内周面との間に介在し当該側部内周面と対向して位置したものであっても良い。   In addition, a rocking restricting material that restricts rocking of the contents in the direction intersecting the direction between the two is provided on the inner surface of the bottom wall, and the rocking restricting material is interposed between the contents and the inner surface of the bottom wall. It may be located opposite to the direction between the two. Alternatively, a rocking restricting material for restricting the rocking of the contents in the direction intersecting the direction between the two is provided on the support base, and the rocking restricting material is interposed between the support base and the inner peripheral surface of the side portion and is disposed in the side portion. It may be positioned facing the peripheral surface.

また、制振支持部は、両者間方向に弾性伸縮自在なバネと、バネの弾性伸縮を減衰するダンパ機能を有したダンパ(例えばピストン型ダンパ)と、を備えたものであっても良い。あるいは、制振支持部は、両者間方向に弾性伸縮自在で当該弾性伸縮を減衰する防振ゴムを、備えたものであっても良い。   Further, the vibration damping support portion may include a spring that is elastically stretchable in the direction between the two and a damper (for example, a piston-type damper) having a damper function that attenuates the elastic expansion and contraction of the spring. Alternatively, the vibration damping support portion may be provided with an anti-vibration rubber that is elastically stretchable in the direction between the two and attenuates the elastic expansion and contraction.

以上示したように本発明によれば、静止誘導機器の小型化、および静止誘導機器に係る振動,騒音の抑制に貢献可能となる。   As described above, according to the present invention, it is possible to contribute to downsizing of a static induction device and suppression of vibration and noise related to the static induction device.

本実施形態の変圧器1Aを説明するものであって容器1等を図2のX−X線で断面して内部を臨んだ概略断面図。FIG. 3 is a schematic cross-sectional view illustrating the transformer 1 </ b> A of the present embodiment, with the container 1 and the like taken along the line XX in FIG. 2 and facing the inside. 本実施形態の変圧器1Aを説明するものであって容器1等を図1のY−Y線で断面して内部を臨んだ概略断面図。BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a schematic cross-sectional view illustrating a transformer 1A according to the present embodiment, in which a container 1 and the like are cut along a line YY in FIG. 図2のベース部4等を拡大して説明する概略断面図。The schematic sectional drawing which expands and demonstrates the base part 4 grade | etc., Of FIG. バネ51と支持台6との固定例を説明する概略説明図。The schematic explanatory drawing explaining the example of fixation with the spring 51 and the support stand 6. FIG. 変圧器1Aにおいて防振ゴム50を適用した場合の概略断面図(図1と同様の概略断面図)。The schematic sectional drawing at the time of applying anti-vibration rubber 50 in transformer 1A (schematic sectional drawing similar to Drawing 1). 変圧器1Aのベース部4において縮径部43を形成した場合の概略断面図(図2と同様の概略断面図であって要部を拡大した図)。The schematic sectional drawing at the time of forming the reduced diameter part 43 in the base part 4 of 1 A of transformers (The schematic sectional drawing similar to FIG. 2, the figure which expanded the principal part). 変圧器1Aにおいて揺動規制材7を適用した場合の概略断面図((A)は図1と同様の概略断面図、(B)は図2と同様の概略断面図)。The schematic sectional drawing at the time of applying the rocking | fluctuation control material 7 in 1 A of transformers ((A) is a schematic sectional drawing similar to FIG. 1, (B) is a schematic sectional drawing similar to FIG. 2). 一般的な静止誘導機器の概略説明図。Schematic explanatory drawing of a general stationary induction device. 一般的な静止誘導機器の概略説明図。Schematic explanatory drawing of a general stationary induction device. 一般的な静止誘導機器の概略説明図。Schematic explanatory drawing of a general stationary induction device.

本発明の実施形態の静止誘導機器の制振構造は、容器の底壁と中身との両者間に単なるバネを用いたバネ機構を介在させた構成とは異なるものであって、当該両者間方向に弾性伸縮自在なバネ機能と、当該バネ機能の弾性伸縮を減衰するダンパ機能と、を有した制振支持部を備えた構成である。   The vibration suppression structure of the stationary induction device according to the embodiment of the present invention is different from a configuration in which a spring mechanism using a simple spring is interposed between the bottom wall and the contents of the container, and the direction between the two It is the structure provided with the damping support part which has a spring function which can be elastically expanded and contracted, and a damper function which attenuates elastic expansion and contraction of the spring function concerned.

単なるバネ機構を備えた構成、例えば図10に示すように、容器81の底壁81aと中身2(図中では支持台6)との両者間に単なるコイル状のバネ84を介在させた構成の場合、たとえ所望の制振性が得られ振動や騒音を抑制できたとしても、静止誘導機器8の大型化(例えばバネの形状によって大型化)を招く虞がある。また、弾性伸縮が減衰し難い等(例えばバネ84の周期振動が収束し難い等)の理由により、振動や騒音を十分抑制できなくなる虞もある。   For example, as shown in FIG. 10, a simple coil-shaped spring 84 is interposed between the bottom wall 81a of the container 81 and the contents 2 (the support base 6 in the figure). In this case, even if the desired vibration damping property is obtained and vibration and noise can be suppressed, the stationary induction device 8 may be increased in size (for example, increased in size due to the shape of the spring). Moreover, there is a possibility that vibration and noise cannot be sufficiently suppressed due to the reason that the elastic expansion and contraction is difficult to attenuate (for example, the periodic vibration of the spring 84 is difficult to converge).

一方、本実施形態のようにバネ機能とダンパ機能とを併用した制振支持部を適用した構成によれば、ダンパ機能が、バネ機能の弾性伸縮を減衰し易くする作用を有し、バネ機能と同様に弾性力を持たせることもでき、固有振動数が小さく所望の制振性(減衰性能等)を有する構成となる。この本実施形態の制振支持部により所望の制振性を得ること自体は、例えば周知の防振設計理論に基づき加振周波数や固有振動数等を考慮して適宜設計することにより十分実現可能である。   On the other hand, according to the configuration in which the vibration damping support portion using both the spring function and the damper function is applied as in the present embodiment, the damper function has an effect of easily reducing the elastic expansion and contraction of the spring function. Similarly, the elastic force can be given, and the natural frequency is small and the desired vibration damping property (damping performance or the like) is obtained. Obtaining the desired vibration damping performance by the vibration damping support portion of this embodiment itself can be sufficiently realized by, for example, designing appropriately in consideration of the excitation frequency and natural frequency based on the well-known vibration isolation design theory. It is.

したがって、本実施形態によれば、前述のような単なるバネを用いたバネ機構を用いた構成と比較して、静止誘導機器の振動や騒音を効率良く十分抑制しながら中身を支持することが可能となり、当該静止誘導機器の小型化に貢献することも可能となる。   Therefore, according to this embodiment, it is possible to support the contents while efficiently and sufficiently suppressing the vibration and noise of the stationary induction device as compared with the configuration using the spring mechanism using a simple spring as described above. Thus, it is possible to contribute to downsizing of the stationary induction device.

静止誘導機器においては、容器の底壁外側面をコンクリート基礎等の被設置面1aに直付けして設置するのではなく、例えば図8,図9に示すように容器81の底壁81aの外側面81abに設けた設置用ベース材85(例えば図10に示すようなH鋼等)を介して設置する構成が知られている。しかしながら、ベース材85を設けた構成は、静止誘導機器90や設置スペースが設置高さ方向等に大きくなる傾向となり、底壁81aと中身2との間にバネ84等を介在させた構成の場合には、当該傾向が顕著になる虞がある。   In the stationary induction device, the outer surface of the bottom wall of the container is not directly attached to the installation surface 1a such as a concrete foundation, but is installed outside the bottom wall 81a of the container 81 as shown in FIGS. A configuration is known in which installation is performed via an installation base member 85 (for example, H steel as shown in FIG. 10) provided on the side surface 81ab. However, the configuration in which the base member 85 is provided tends to increase the stationary induction device 90 and the installation space in the installation height direction and the like, and a configuration in which a spring 84 or the like is interposed between the bottom wall 81a and the contents 2. There is a possibility that the tendency becomes remarkable.

このような傾向を想定し、本実施形態では、前述のようなベース材85を適用する替わりに、例えば後述の図1〜図3に示す容器1のように、底壁11の内側面11aにおける中身2と対向する位置で窪んだ有底筒状の周壁40を形成することにより、当該周壁40の底部外側面41bが被設置面1aと接するベース部4を構成し、そのベース部4の周壁40の底部内側面41aに制振支持部5を設けることとしても良い。このベース部4を備えた構成によれば、ベース材85が不要になるだけでなく、ベース部4を有効利用した構成(制振支持部5の設置スペースとベース材85とを共用した構成)となる。したがって、本実施形態によれば、静止誘導機器のコストを低減したり、当該静止誘導機器や設置スペースの小型化に貢献可能となる。   Assuming such a tendency, in this embodiment, instead of applying the base material 85 as described above, for example, in the inner surface 11a of the bottom wall 11 as in a container 1 shown in FIGS. By forming the bottomed cylindrical peripheral wall 40 that is depressed at a position facing the contents 2, the bottom outer surface 41 b of the peripheral wall 40 constitutes the base portion 4 in contact with the installation surface 1 a, and the peripheral wall of the base portion 4 The damping support 5 may be provided on the bottom inner side surface 41a of 40. According to the configuration including the base portion 4, not only the base material 85 is unnecessary, but also the configuration in which the base portion 4 is effectively used (configuration in which the installation space for the vibration damping support portion 5 and the base material 85 are shared). It becomes. Therefore, according to the present embodiment, it is possible to reduce the cost of the stationary induction device and contribute to the downsizing of the stationary induction device and the installation space.

本実施形態の静止誘導機器の制振構造は、前述のようにバネ機能とダンパ機能とを有する制振支持部を適用した構成であれば、種々の分野の技術常識を適宜適用して変形することが可能であり、その一例として以下に示すものが挙げられる。   If the vibration suppression structure of the stationary induction device according to the present embodiment is configured to apply the vibration suppression support portion having the spring function and the damper function as described above, it is modified by appropriately applying technical common sense in various fields. Examples of which are shown below.

≪静止誘導機器の制振構造の一例≫
図1〜図7の概略説明図は、本実施形態による変圧器1Aの制振構造を説明するものである。なお、図8〜図10と同様のものには同一符号を付する等により、その詳細な説明を適宜省略する。
≪Example of damping structure of stationary induction device≫
The schematic explanatory diagrams of FIGS. 1 to 7 illustrate the vibration damping structure of the transformer 1A according to the present embodiment. In addition, the detailed description is abbreviate | omitted suitably by attaching | subjecting the same code | symbol etc. to the thing similar to FIGS.

図1〜図7に示す符号1は、例えば普通鋼板等の金属材料を用いて形成することが可能な容器であって、略平板状(例えば円盤状,楕円状,矩形状等)の底壁11と、その底壁11の一端面(図1中では後述の内側面11a)の周縁から立設した筒状の側壁(図1中では一部(底壁11側)が縮径された側壁)12と、を備え、中身2および絶縁媒体3を収容できる構成となっている。側壁12の一端側には、容器1内に対して中身2,絶縁媒体3を出し入れ可能にする開口部12aが形成され、その開口部12aには当該開口部12aを開閉可能な蓋13が設けられている。   1 to 7 is a container that can be formed using a metal material such as a normal steel plate, for example, and has a substantially flat bottom wall (for example, a disk shape, an elliptical shape, a rectangular shape, etc.). 11 and a cylindrical side wall (a part of the bottom wall 11 in FIG. 1 (the bottom wall 11 side) is reduced in diameter from a peripheral edge of one end surface of the bottom wall 11 (an inner surface 11a described later in FIG. 1). ) 12 and can accommodate the contents 2 and the insulating medium 3. An opening 12a that allows the contents 2 and the insulating medium 3 to be taken in and out of the container 1 is formed at one end of the side wall 12, and a lid 13 that can open and close the opening 12a is provided in the opening 12a. It has been.

中身2は、例えばケイ素鋼板やアモルファス磁性材料を用いて成る鉄心21と、その鉄心21に巻回された巻線22と、を備え、開口部12aを介して容器1内に収容され、後述する制振支持部5を介して底壁11に支持される。図1〜図3に示す中身2の鉄心21においては、それぞれ垂直方向に延在するように立設して並列した3つの鉄心脚21aと、それぞれ各鉄心脚21aの上端側,下端側に設けられ水平方向に延在する上端側ヨーク21b,下端側ヨーク21cと、当該上端側ヨーク21b,下端側ヨーク21cを締め付ける締付板21bb,21ccと、を備え、各鉄心脚21aに巻線22が巻回されて3相3脚構造をなした構成となっている。   The contents 2 includes an iron core 21 made of, for example, a silicon steel plate or an amorphous magnetic material, and a winding 22 wound around the iron core 21, and is accommodated in the container 1 through the opening 12a, which will be described later. It is supported on the bottom wall 11 via the vibration damping support 5. The core 2 of the contents 2 shown in FIG. 1 to FIG. 3 is provided with three core legs 21a standing in parallel so as to extend in the vertical direction, and provided on the upper end side and the lower end side of each core leg 21a, respectively. The upper end side yoke 21b and the lower end side yoke 21c that extend in the horizontal direction, and the fastening plates 21bb and 21cc that fasten the upper end side yoke 21b and the lower end side yoke 21c are provided. The structure is wound to form a three-phase three-legged structure.

そして、開口部12aを介して容器1内に絶縁媒体3を充填することにより、容器1内に収容した中身2が絶縁媒体3に浸漬した状態となる。中身2と容器1外周側(例えば図外の制御盤等)との間においては、例えば蓋13に設けられる引出端子(図示省略)を介して接続することが可能である。   Then, by filling the container 1 with the insulating medium 3 through the opening 12a, the contents 2 accommodated in the container 1 are immersed in the insulating medium 3. It is possible to connect between the contents 2 and the outer peripheral side of the container 1 (for example, a control panel, etc., not shown) via an extraction terminal (not shown) provided on the lid 13, for example.

符号4は、底壁11に形成されたベース部であって、底壁11の内側面11aにおける中身2と対向する位置で窪んだ有底筒状の周壁40を有し、その周壁40の底部41の外側面41bが変圧器1Aの被設置面(例えばコンクリート基礎等の表面)1aと接する構成となっている。ベース部4は、例えば図外の基礎ボルト等により被設置面1aに固定することも可能である。   Reference numeral 4 denotes a base portion formed on the bottom wall 11, which has a bottomed cylindrical peripheral wall 40 that is recessed at a position facing the contents 2 on the inner surface 11 a of the bottom wall 11, and a bottom portion of the peripheral wall 40. The outer surface 41b of 41 is in contact with the installation surface (for example, the surface of a concrete foundation or the like) 1a of the transformer 1A. The base part 4 can also be fixed to the installation surface 1a, for example, with a foundation bolt or the like not shown.

符号5は、底壁11(図1〜図3では後述の内側面41a)から容器1内側に延出して中身2を支持する制振支持部を示すものであり、底壁11と中身2との両者間方向(以下、単に両者間方向と適宜称する)に弾性伸縮自在なバネ機能と、当該バネ機能の弾性伸縮を減衰するダンパ機能と、を有した構成となっている。このような制振支持部5により、中身2は、底壁11から離反する方向に付勢された状態で支持されることとなる。   Reference numeral 5 denotes a vibration damping support portion that extends from the bottom wall 11 (an inner side surface 41a described later in FIGS. 1 to 3) to the inside of the container 1 to support the contents 2, and the bottom wall 11 and the contents 2 This has a spring function that can be elastically expanded and contracted in the direction between the two (hereinafter, simply referred to as the direction between the two as appropriate) and a damper function that attenuates the elastic expansion and contraction of the spring function. The contents 2 are supported by such a vibration suppression support portion 5 in a state of being biased in a direction away from the bottom wall 11.

図1〜図3の制振支持部5の場合、周壁40の底部41の内側面41aに設けられて当該内側面41aから容器1内側に延出し、中身2に対向した側の端部が周壁40の開口部4aから突出して、中身2(図1〜図3では後述する支持台6)を底部41の内側面41aから離反する方向に付勢した状態で支持(例えば図3に示すように底壁11との間に間隙Sを形成できるように支持)する構成となっている。   In the case of the vibration damping support 5 of FIGS. 1 to 3, the end provided on the inner side 41 a of the bottom 41 of the peripheral wall 40 extends from the inner side 41 a to the inside of the container 1, and the end on the side facing the contents 2 is the peripheral wall. 40, which protrudes from the opening 4a of the 40 and supports the contents 2 (a support base 6 which will be described later in FIGS. 1 to 3) in a state of being urged away from the inner side surface 41a of the bottom 41 (for example, as shown in FIG. 3). It is configured to support the gap S with the bottom wall 11.

図1〜図3に示したような変圧器1Aによれば、巻線22への通電による電磁力で中身2が振動し当該振動が容器1に伝達し得る状況等の場合、当該振動は制振支持部5によって減衰する。すなわち、変圧器1Aに係る振動や騒音においては、制振支持部5により抑制されることとなる。   According to the transformer 1A as shown in FIGS. 1 to 3, in a situation where the contents 2 vibrate and can be transmitted to the container 1 due to electromagnetic force generated by energizing the winding 22, the vibration is suppressed. It is attenuated by the vibration support part 5. That is, vibration and noise related to the transformer 1 </ b> A are suppressed by the vibration suppression support unit 5.

≪制振支持部の一例≫
制振支持部5においては、前述のように底壁11から容器1内側に延出し、中身2を底壁11(図中では底部41の内側面41a)から離反する方向に付勢した状態で支持できる構成であれば、種々の形態を適用することが可能である。また、制振支持部5は、例えば防振設計理論に基づき、制振支持部5が持つ制振性(バネや防振ゴムの固有振動数が低いことによる振動伝達の低減およびダンパ機能による制振性)や、中身2の形状等(大きさや質量等)に応じて適宜設けることができ、単に1個を設けるのではなく、複数個設けても良い。図1〜図3の場合、底壁11における各鉄心脚21aの延在方向の位置にベース部4がそれぞれ形成され、それら各ベース部4の底部41の内側面41aに、それぞれ3個の制振支持部5が並列して配置された構成となっている。
≪Example of vibration control support part≫
As described above, the vibration damping support portion 5 extends from the bottom wall 11 to the inside of the container 1 and urges the contents 2 in a direction away from the bottom wall 11 (inner surface 41a of the bottom portion 41 in the drawing). As long as the configuration can be supported, various forms can be applied. Further, the vibration damping support unit 5 is based on, for example, a vibration damping design theory. The vibration damping support unit 5 has a vibration damping property (reduction of vibration transmission due to the low natural frequency of the spring and vibration damping rubber and the damping function). Vibration properties) and the shape (size, mass, etc.) of the contents 2 can be provided as appropriate, and a plurality of them may be provided instead of just one. In the case of FIGS. 1 to 3, base portions 4 are respectively formed at positions in the extending direction of the respective core legs 21 a on the bottom wall 11, and three restraints are respectively formed on the inner side surfaces 41 a of the bottom portions 41 of the respective base portions 4. The vibration support 5 is arranged in parallel.

制振支持部5の具体例としては、例えば図1〜図3に示すように、両者間方向に弾性伸縮自在なバネ51と、バネ51の弾性伸縮を減衰するダンパ機能を有したダンパ52と、を備えた構成(以下、機械式構成と適宜称する)が挙げられる。バネ51の具体例としては、例えば図4に示すように、両者間方向に対しコイル状に延在したコイル型バネであって、支持台6に対し締結手段(ボルト等)51aを介して固定可能なものが挙げられる。   As a specific example of the vibration damping support portion 5, for example, as shown in FIGS. 1 to 3, a spring 51 that is elastically expandable / contractible in the direction between them, and a damper 52 having a damper function that attenuates elastic expansion / contraction of the spring 51, (Hereinafter, referred to as a mechanical configuration as appropriate). As a specific example of the spring 51, for example, as shown in FIG. 4, it is a coil-type spring extending in a coil shape in the direction between the two, and is fixed to the support base 6 via fastening means (bolts or the like) 51a. Possible ones.

ダンパ52としては、流体物が充填されるシリンダや、当該シリンダから伸縮するピストンロッドを備えたショックアブソーバ(単筒式や複筒式等のピストン型ダンパ)が挙げられる。シリンダ内に充填される流体は、オイル,ガス,空気等の種々のものを適用することが可能であり、容器1内の絶縁媒体が絶縁油の場合には、当該絶縁油を流用することも可能である。また、前述のようなコイル状のバネ51がショックアブソーバの外周側で同心状に延在した構成のものも適用可能である。   Examples of the damper 52 include a cylinder filled with a fluid and a shock absorber (a piston type damper such as a single cylinder type or a double cylinder type) provided with a piston rod extending and contracting from the cylinder. Various fluids such as oil, gas, and air can be applied as the fluid filled in the cylinder. When the insulating medium in the container 1 is insulating oil, the insulating oil can be used. Is possible. A configuration in which the coiled spring 51 as described above extends concentrically on the outer peripheral side of the shock absorber is also applicable.

機械式構成の他には、例えば図5に示すように、ゴム材料等を用いて成りバネ機能やダンパ機能を有する防振ゴム50を備えた防振ゴム構成を適用しても良い。この防振ゴム構成に適用する防振ゴム50としては、種々の形態のものが適用可能であり、例えば耐震機能を要する構造物(建築物等)にも多く適用されている形態を適用することが挙げられる。   In addition to the mechanical configuration, for example, as shown in FIG. 5, an anti-vibration rubber configuration including an anti-vibration rubber 50 made of a rubber material or the like and having a spring function or a damper function may be applied. As the anti-vibration rubber 50 applied to this anti-vibration rubber configuration, various forms can be applied, for example, an application that is often applied to structures (such as buildings) that require an earthquake-resistant function is applied. Is mentioned.

≪支持台,ベース部の一例≫
中身2は、制振支持部5により単に直接的に支持するのではなく、支持台(鉄心台)6を介して間接的に支持しても良い。支持台としては、例えば図1〜図5に示すように、中身2と制振支持部5との間に介在でき、両者間方向と交差する方向に延在した平板状の形態を適用することが挙げられる。
≪Example of support base and base part≫
The contents 2 may not be directly supported directly by the vibration damping support portion 5 but may be indirectly supported via a support base (iron core base) 6. As the support base, for example, as shown in FIGS. 1 to 5, a flat plate shape that can be interposed between the contents 2 and the vibration suppression support portion 5 and extends in a direction crossing the direction between the two is applied. Is mentioned.

ベース部4においては、前述のように有底筒状の周壁40の底部41の内側面41aに制振支持部5を設けることができ、当該底部41の外側面41bを被設置面1aに設置できる構成であれば、種々の形態のものが挙げられる。例えば図3(および後述の図6)に示すように、周壁40の底部41を側部42よりも大径形状にし、被設置面1aに対する接触面積を大きくしても良い。   In the base portion 4, the vibration damping support portion 5 can be provided on the inner side surface 41 a of the bottom portion 41 of the bottomed cylindrical peripheral wall 40 as described above, and the outer side surface 41 b of the bottom portion 41 is installed on the installation surface 1 a. Various configurations are possible as long as they can be configured. For example, as shown in FIG. 3 (and FIG. 6 to be described later), the bottom 41 of the peripheral wall 40 may have a larger diameter than the side 42 to increase the contact area with the installation surface 1a.

周壁40は、制振支持部5を設けることができる形状(例えば制振支持部5の下端側(内側面41aに設ける側)を受容できる形状)とすることが挙げられる。例えば図1〜図5に示したように、開口部4aを支持台6よりも小さい形状(例えば開口部4aの開口径が支持台6よりも径)とした構成の場合、制振支持部5が損傷し中身2を支持できない状態(以下、損傷状態と適宜称する)となっても、支持台6は開口部4a縁面に当接して支持されることとなり、当該開口部4aは封止されることとなる。そして、制振支持部5の損傷物(以下、損傷物と適宜称する)は、周壁40内側の領域に留められ、当該領域から容器1中央部側への飛散が抑制される。 For example, the peripheral wall 40 may have a shape capable of providing the vibration damping support portion 5 (for example, a shape capable of receiving the lower end side (the side provided on the inner side surface 41a) of the vibration damping support portion 5). For example, as shown in FIGS. 1 to 5, in the configuration shape smaller (the opening diameter of, for example, the opening 4a is smaller diameter than the support table 6) than the support base 6 of the opening 4a and the damping support part Even if 5 is damaged and cannot support the contents 2 (hereinafter referred to as a damaged state as appropriate), the support base 6 is supported in contact with the edge of the opening 4a, and the opening 4a is sealed. Will be. And the damage object (henceforth a damage object suitably) of the vibration suppression support part 5 is stopped by the area | region inside the surrounding wall 40, and scattering to the container 1 center part side from the said area | region is suppressed.

支持台6の大きさが開口部4aよりも小さくても(開口部4aの開口径よりも小径でも)、図6に示すように周壁40の側部42の内周面42aに縮径部43が形成され、支持台6が縮径部43の内径側形状よりも大きい形状であれば、当該周壁40内側における縮径部43と内側面41aとの間の領域(以下、縮径部43側領域と適宜称する)に損傷物を留めて、当該縮径部43側領域から容器1中央部側への飛散が抑制されることとなる。図6の縮径部43においては、周壁40の側部42の内周面42a(内側面41aと開口部4aとの間)から周壁40の軸心側に突出し、当該内周面42aの周方向に沿って延在した形状であって、開口部4a側に段差面43aを有した構成となっている。この構成により、損傷状態の場合には、支持台6が縮径部43(段差面43a)に当接して支持され、縮径部43側領域が封止されることとなる。   Even if the size of the support base 6 is smaller than the opening 4a (even if it is smaller than the opening diameter of the opening 4a), the reduced diameter portion 43 is formed on the inner peripheral surface 42a of the side portion 42 of the peripheral wall 40 as shown in FIG. And the support base 6 is larger than the inner diameter side shape of the reduced diameter portion 43, the region between the reduced diameter portion 43 and the inner side surface 41a inside the peripheral wall 40 (hereinafter referred to as the reduced diameter portion 43 side). A damaged object is fastened to the region (appropriately referred to as a region), and scattering from the region of the reduced diameter portion 43 side to the central portion of the container 1 is suppressed. In the reduced diameter part 43 of FIG. 6, it protrudes in the axial center side of the surrounding wall 40 from the inner peripheral surface 42a (between the inner side surface 41a and the opening part 4a) of the side part 42 of the surrounding wall 40, and the circumference | surroundings of the said inner peripheral surface 42a The shape extends along the direction and has a step surface 43a on the opening 4a side. With this configuration, in the case of a damage state, the support base 6 is supported in contact with the reduced diameter portion 43 (step surface 43a), and the reduced diameter portion 43 side region is sealed.

縮径部43は、底部41の内側面41aに設けられる制振支持部5と干渉しない形状であって、損傷状態における支持台6が当接して縮径部43側領域が封止される構成であれば良い。また、縮径部43は、図6に示すように側部42の内周面42aに沿って延在して連続した形状ではなく、例えば内周面42aに沿って断続的に延在した形状であっても、前述のように損傷状態における支持台6によって縮径部43側領域が封止されれば良い。   The reduced diameter portion 43 has a shape that does not interfere with the vibration damping support portion 5 provided on the inner side surface 41a of the bottom portion 41, and is configured so that the support base 6 in contact with the damaged state contacts and the region on the reduced diameter portion 43 side is sealed. If it is good. Further, the reduced diameter portion 43 does not have a continuous shape extending along the inner peripheral surface 42a of the side portion 42 as shown in FIG. 6, but, for example, a shape extending intermittently along the inner peripheral surface 42a. Even so, it suffices if the reduced diameter portion 43 side region is sealed by the support base 6 in the damaged state as described above.

≪その他≫
以上示したような変圧器1Aを移動(輸送や設置等)する場合、当該変圧器1Aにおいて加速度が発生し、中身2においては、例えば両者間方向に交差した方向に対して加重が加わって揺動し、中身2の転倒や位置ズレ等を引き起こす虞がある。そこで、中身2の揺動を抑制する手法として、例えば図1,図5,図7(A)に示すように側壁12の一部(底壁11側)を縮径した形状にして当該側壁12と中身2との間隙を小さくする他に、両者間方向に交差した方向における中身2の揺動を規制する揺動規制材(いわゆる振り止め材)7を適宜設けることが挙げられる。
≪Others≫
When the transformer 1A as described above is moved (transported, installed, etc.), acceleration occurs in the transformer 1A, and in the contents 2, for example, a weight is applied to the direction intersecting the direction between the two to shake. There is a risk of causing the contents 2 to fall over or be displaced. Therefore, as a method for suppressing the swing of the contents 2, for example, as shown in FIGS. 1, 5, and 7 (A), a part of the side wall 12 (bottom wall 11 side) is reduced in diameter to form the side wall 12. In addition to reducing the gap between the contents 2 and the contents 2, it is possible to appropriately provide a rocking restricting material (so-called anti-swing material) 7 that restricts the rocking of the contents 2 in the direction intersecting the direction between the two.

揺動規制材7は、中身2の揺動を抑制できるものであれば特に限定されるものではなく、容器1と同様の材料からなるもの(容器1に一体形成したもの等)の他に、例えばゴム材料等の弾性を有する材料からなるものを適用することが挙げられるが、絶縁媒体3に対する耐久性を有するものを適用することが好ましい。   The swing restricting material 7 is not particularly limited as long as the swing of the contents 2 can be suppressed. In addition to a material made of the same material as the container 1 (such as one integrally formed with the container 1), For example, a material made of an elastic material such as a rubber material can be used, but a material having durability against the insulating medium 3 is preferably applied.

また、揺動規制材7は、容器1内側において種々の位置に設置することが可能である。その一例としては、図2に示したように、底壁11の内側面11a(図2中では開口部4a縁面であって支持台6の外周側)に揺動規制材7を設けることにより、当該揺動規制材7を中身2と内側面11aとの間に介在し当該中身2の両者間方向と対向して位置させた構成が挙げられる
また、図7(B)に示したように、支持台6(図7(B)では支持台6における内側面41a側)に対して揺動規制材7を設けることにより、当該揺動規制材7を支持台6と内周面42aとの間に介在し当該内周面42aと対向して位置させた構成であっても良い。
Further, the swing restricting member 7 can be installed at various positions inside the container 1. As an example, as shown in FIG. 2, by providing a rocking restricting material 7 on the inner surface 11a of the bottom wall 11 (in FIG. 2, the edge surface of the opening 4a and the outer peripheral side of the support base 6). Further, there is a configuration in which the swing restricting material 7 is interposed between the contents 2 and the inner side surface 11a and is positioned opposite to the direction between the contents 2 as shown in FIG. 7B. By providing the swing restricting material 7 on the support base 6 (in FIG. 7B, the inner surface 41a side of the support base 6), the swing restricting material 7 is connected to the support base 6 and the inner peripheral surface 42a. It may be configured to be interposed between the inner peripheral surface 42a and the inner peripheral surface 42a.

以上、本発明において、記載された具体例に対してのみ詳細に説明したが、本発明の技術思想の範囲で多彩な変更等が可能であることは、当業者にとって明白なことであり、このような変更等が特許請求の範囲に属することは当然のことである。例えば、本実施形態の静止誘導機器の具体例について、変圧器1Aを示す図面等を用いて説明したが、本発明は変圧器に限定されるものではなく、リアクトル等その他の静止誘導機器にも適用可能なものであり、それぞれ同様の作用効果を奏することが可能である。   Although the present invention has been described in detail only for the specific examples described above, it is obvious to those skilled in the art that various modifications can be made within the scope of the technical idea of the present invention. It is natural that such changes and the like belong to the scope of the claims. For example, a specific example of the static induction device according to the present embodiment has been described with reference to the drawings and the like showing the transformer 1A. However, the present invention is not limited to the transformer, and may be applied to other static induction devices such as a reactor. It is possible to apply the same effects.

1…容器
1a…被設置面
1A…変圧器
11…底壁
11a…底壁11の内側面
11b…底壁11の外側面
2…中身
3…絶縁媒体
4…ベース部
4a…開口部
40…周壁
41…底部
41a…底部41の内側面
41b…底部41の外側面
42…側部
42a…内周面
43…縮径部
5…制振支持部
50…防振ゴム
51…バネ
52…ダンパ
6…支持台
7…揺動規制材
DESCRIPTION OF SYMBOLS 1 ... Container 1a ... Installation surface 1A ... Transformer 11 ... Bottom wall 11a ... Inner side surface of the bottom wall 11b ... Outer side surface of the bottom wall 11 ... Contents 3 ... Insulating medium 4 ... Base part 4a ... Opening part 40 ... Perimeter wall DESCRIPTION OF SYMBOLS 41 ... Bottom part 41a ... Inner side surface of bottom part 41b ... Outer side surface of bottom part 41 ... Side part 42a ... Inner peripheral surface 43 ... Reduced diameter part 5 ... Damping support part 50 ... Anti-vibration rubber 51 ... Spring 52 ... Damper 6 ... Support stand 7 ... Swing restricting material

Claims (5)

鉄心および当該鉄心に巻回された巻線を有した静止誘導機器の中身と、
底壁および当該底壁内側面の周縁から立設した側壁を有し、中身を絶縁媒体と共に収容した静止誘導機器の容器と、
底壁から容器内側に延出し中身を支持した制振支持部と、を備え、
底壁は、
底壁内側面における中身と対向する位置で窪んだ有底筒状の周壁が形成され、
当該周壁の側部内周面に縮径部が形成され、
当該周壁の底部外側面が静止誘導機器の被設置面と接するベース部を備え、
制振支持部は、
底壁と中身との両者間方向に弾性伸縮自在なバネ機能と、当該バネ機能の弾性伸縮を減衰するダンパ機能と、を有すると共に、
周壁の底部内側面から容器内側に延出した形状であり、かつ
中身のベース部側に設けられた支持台を介して当該中身を支持し、
支持台は、
両者間方向に交差した方向に延在すると共に、前記有底筒状の周壁における開口部よりも小さく縮径部の内径側形状よりも大きい形状であって、当該開口部と縮径部との間に位置した、
ことを特徴とする静止誘導機器の制振構造。
The contents of a stationary induction device having an iron core and a winding wound around the iron core;
A container of a stationary induction device having a bottom wall and a side wall erected from the peripheral edge of the inner surface of the bottom wall, and containing the contents together with an insulating medium;
A vibration damping support portion extending from the bottom wall to the inside of the container and supporting the contents,
The bottom wall
A bottomed cylindrical peripheral wall that is recessed at a position facing the contents on the inner surface of the bottom wall is formed,
A reduced diameter portion is formed on the inner peripheral surface of the side portion of the peripheral wall,
A base portion where the bottom outer surface of the peripheral wall is in contact with the installation surface of the stationary induction device;
The vibration suppression support section
A spring function that is elastically stretchable in the direction between the bottom wall and the contents, and a damper function that attenuates elastic expansion and contraction of the spring function,
It is a shape that extends from the inner side surface of the bottom of the peripheral wall to the inside of the container, and supports the contents via a support base provided on the base side of the contents,
The support base is
While extending in a direction intersecting the both direction between the a shape larger than the inner diameter side shape of smaller reduced diameter portion than the opening in the bottomed cylindrical peripheral wall, with the opening and reduced diameter portion Located between,
A vibration control structure for static induction equipment.
両者間方向に交差した方向における中身の揺動を規制する揺動規制材が底壁内側面に設けられ、
揺動規制材は、中身と底壁内側面との間に介在し当該中身の両者間方向と対向して位置したことを特徴とする請求項1記載の静止誘導機器の制振構造。
A rocking regulation material for regulating rocking of the contents in the direction intersecting the direction between the two is provided on the inner surface of the bottom wall,
2. The vibration damping structure for a stationary induction device according to claim 1, wherein the swing restricting member is interposed between the contents and the inner side surface of the bottom wall and is positioned to face the direction between the contents.
両者間方向に交差した方向における中身の揺動を規制する揺動規制材が支持台に設けられ、
揺動規制材は、支持台と側部内周面との間に介在し当該側部内周面と対向して位置したことを特徴とする請求項1記載の静止誘導機器の制振構造。
A rocking regulation material for regulating rocking of the contents in the direction intersecting the direction between the two is provided on the support base,
2. The vibration damping structure for a stationary induction device according to claim 1, wherein the swing restricting member is interposed between the support base and the side inner peripheral surface and is positioned to face the side inner peripheral surface.
制振支持部は、両者間方向に弾性伸縮自在なバネと、バネの弾性伸縮を減衰するダンパ機能を有したダンパと、を備えたことを特徴とする請求項1〜3の何れかに記載の静止誘導機器の制振構造。   The vibration damping support portion includes a spring that is elastically expandable and contractible in a direction between the two and a damper having a damper function that attenuates the elastic expansion and contraction of the spring. Damping structure for stationary induction equipment. 制振支持部は、両者間方向に弾性伸縮自在で当該弾性伸縮を減衰する防振ゴムを、備えたことを特徴とする請求項1〜3の何れかに記載の静止誘導機器の制振構造。   The vibration damping support portion according to any one of claims 1 to 3, wherein the vibration damping support portion includes a vibration-proof rubber that is elastically stretchable in a direction between the two and that attenuates the elastic expansion and contraction. .
JP2015235476A 2015-12-02 2015-12-02 Vibration control structure of static induction equipment Active JP6597242B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2015235476A JP6597242B2 (en) 2015-12-02 2015-12-02 Vibration control structure of static induction equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2015235476A JP6597242B2 (en) 2015-12-02 2015-12-02 Vibration control structure of static induction equipment

Publications (2)

Publication Number Publication Date
JP2017103348A JP2017103348A (en) 2017-06-08
JP6597242B2 true JP6597242B2 (en) 2019-10-30

Family

ID=59016818

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2015235476A Active JP6597242B2 (en) 2015-12-02 2015-12-02 Vibration control structure of static induction equipment

Country Status (1)

Country Link
JP (1) JP6597242B2 (en)

Families Citing this family (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6799301B2 (en) 2017-05-25 2020-12-16 日本電気株式会社 Information processing equipment, control methods, and programs
CN107161524A (en) * 2017-06-30 2017-09-15 方敏 A kind of transport fixing device of watt-hour meter scale
CN107369529A (en) * 2017-09-18 2017-11-21 合肥慕智信息技术有限公司 A kind of transformer installs support base
CN107452477A (en) * 2017-09-27 2017-12-08 洛阳市星合特种变压器有限公司 A kind of drop resistant antihunting transformer fuel tank
CN107808741B (en) * 2017-11-23 2019-07-19 国网山东省电力公司烟台供电公司 A kind of reactor having noise detection device
CN107768085A (en) * 2017-12-01 2018-03-06 黄久兰 A kind of AC transformer of good damping effect
KR102069976B1 (en) * 2018-07-09 2020-01-23 손성국 Anti-vibration module for outdoor type transformer
CN110534296A (en) * 2019-08-01 2019-12-03 颜菁 A kind of efficient resistance to compression damping device of for transformer
CN111009387B (en) * 2019-12-26 2021-03-16 丽水市智汇佳科技有限公司 A power transformer installation device for building engineering
WO2021176567A1 (en) * 2020-03-03 2021-09-10 三菱電機株式会社 Transformer
CN111599334B (en) * 2020-06-19 2024-04-12 上海咨盛压缩机有限公司 Novel noise reduction box and control method
CN116936223B (en) * 2023-08-18 2024-02-02 河北振泰电力设备有限公司 Low-noise transformer structure with noise reduction function

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5529532U (en) * 1978-08-17 1980-02-26
JPS62162320A (en) * 1986-01-13 1987-07-18 Toshiba Corp Reactor device
JPH08316061A (en) * 1995-05-24 1996-11-29 Meidensha Corp Stationary induction machine
JP2000133524A (en) * 1998-10-27 2000-05-12 Matsushita Electric Ind Co Ltd Static induction electromagnetic equipment

Also Published As

Publication number Publication date
JP2017103348A (en) 2017-06-08

Similar Documents

Publication Publication Date Title
JP6597242B2 (en) Vibration control structure of static induction equipment
JP6036143B2 (en) Power generator
US9534656B2 (en) Method for controlling structural acoustic transmission on basis of combined-type vibration isolation device
KR101325640B1 (en) Smart earthquake resistant switch gear
KR101407949B1 (en) Apparatus for buffering smart earthquake resistant
KR101471148B1 (en) Vibration shielding apparatus and earthquake-proof generator having the same
KR101518810B1 (en) Switch gear having a earthquake resistant device
KR20110108913A (en) 2-directional tuned mass damper for earthquake response reduction of electric cabinet
KR101746129B1 (en) pole transformer for noise reduction
JP6033591B2 (en) Seismic reduction device
CN110835886A (en) Pier damping device
KR101783370B1 (en) Earthquake-proof mold transformer
KR20200044067A (en) Eddy current damper
CN104179868A (en) Active and passive integrated electromagnetic vibration isolation device
JP5411760B2 (en) Vibration isolator
JP2013207156A (en) Mold transformer with earthquake-resistant structure
JP2018066432A (en) Vibration control device
Ao et al. Evaluation of optimal analysis, design, and testing of electromagnetic shunt damper for vibration control of a civil structure
JP4918619B1 (en) Isolation device
JP2012108355A (en) Noise control device for electric equipment
JP6641970B2 (en) Unit-type vibration damping device and vibration-isolation gantry equipped with the unit-type vibration damping device
JP6420012B1 (en) Passive vibration control device for buildings
JP2017174856A (en) Transformer toppling prevention device
JP2006161985A (en) Electronic device
JP4543784B2 (en) Long stroke damper

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20181026

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20190212

A521 Written amendment

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20190415

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20190611

A521 Written amendment

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20190808

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20190903

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20190916

R150 Certificate of patent or registration of utility model

Ref document number: 6597242

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150