JP3228548U - Closing plug - Google Patents

Closing plug Download PDF

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JP3228548U
JP3228548U JP2020003032U JP2020003032U JP3228548U JP 3228548 U JP3228548 U JP 3228548U JP 2020003032 U JP2020003032 U JP 2020003032U JP 2020003032 U JP2020003032 U JP 2020003032U JP 3228548 U JP3228548 U JP 3228548U
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head
shaft portion
plug
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hexagonal
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好照 佐古
好照 佐古
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阪村産業株式会社
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Abstract

【課題】軸部と共に一体形成される六角形状頭部の底面部において切削加工なしでオイルの滲みを防止するための幾何公差平面度が得られるようにした閉栓プラグを提供する。【解決手段】外周にねじを有する軸部2と、軸部の一端に一体に設けられた外周が六角形状を呈する頭部3とを備え、頭部の上面に、中心軸部31とこの中心軸部を除いた残りの部分に頭部の輪郭形状に符合する小形の六角形状を呈する打込み凹所部32とを形成すると共に、頭部の底面部に、オイルの滲みを防止するための幾何公差平面度を有する環状平座面33を形成した。【選択図】図4PROBLEM TO BE SOLVED: To provide a plug for closing a plug so as to obtain a geometrical tolerance flatness for preventing oil bleeding without cutting at a bottom surface portion of a hexagonal head integrally formed with a shaft portion. SOLUTION: A shaft portion 2 having a screw on the outer circumference and a head portion 3 integrally provided at one end of the shaft portion having a hexagonal outer circumference are provided, and a central shaft portion 31 and a center thereof are provided on the upper surface of the head portion. A geometry for preventing oil bleeding is formed on the bottom surface of the head while forming a driving recess 32 having a small hexagonal shape that matches the contour shape of the head in the remaining portion excluding the shaft portion. An annular flat seat surface 33 having a tolerance flatness was formed. [Selection diagram] Fig. 4

Description

本考案は、主としてオイルタンクの底部に着脱可能に閉栓する閉栓プラグに関する。 The present invention mainly relates to a plug that can be detachably closed to the bottom of an oil tank.

従来、この種の閉栓プラグは、例えば外周にねじを有する軸部と、軸部の一端に設けられた例えば外周が六角形状の頭部と、該頭部と軸部との境界部に設けられた周溝とを備えたプラグ本体を形成し、使用時には、周溝に別部材からなる油漏れ防止用のパッキンを装着し、その装着状態でオイルタンクの底部に螺着して閉栓するようになされている。
また、閉栓プラグ本体の製造方法としては、量産化を図るため多段式圧造成形機により棒状ブランクを圧造成形して軸部と六角形状の頭部とでなるプラグ成形体を一体に成形し、その後、切削加工によりプラグ成形体の頭部と軸部との境界部にパッキン装着用の周溝を形成し、さらに、軸部の外周にねじを形成していた。
Conventionally, this type of plug is provided at, for example, a shaft portion having a screw on the outer circumference, a head portion provided at one end of the shaft portion having a hexagonal outer circumference, and a boundary portion between the head portion and the shaft portion. A plug body with a peripheral groove is formed, and when in use, a packing for preventing oil leakage, which is made of a separate member, is attached to the peripheral groove and screwed to the bottom of the oil tank to close the plug. It has been done.
In addition, as a manufacturing method of the plug main body, a rod-shaped blank is press-molded by a multi-stage pressure forming machine to integrally form a plug molded body consisting of a shaft portion and a hexagonal head in order to mass-produce the plug. By cutting, a peripheral groove for mounting the packing was formed at the boundary between the head and the shaft of the plug molded body, and a screw was further formed on the outer periphery of the shaft.

ところで、上記したように多段式圧造成形機により軸部と六角形状の頭部とをその輪郭形状に合わせて単に圧造成形しただけのプラグ成形体にあっては、その圧造成形に際し六角形状の頭部における底面部(座面)が成形後のヒケにより波打つことになる。その結果、頭部の底面部においてオイルの滲みを防止するための幾何公差平面度が得られず、波打つ底面部分からオイルが滲み出る問題があった。 By the way, as described above, in the case of a plug molded body in which the shaft portion and the hexagonal head are simply pressed according to the contour shape by the multi-stage pressure forming machine, the hexagonal head is formed during the pressing. The bottom surface (seat surface) of the portion will be wavy due to sink marks after molding. As a result, the geometrical tolerance flatness for preventing oil bleeding cannot be obtained at the bottom surface portion of the head, and there is a problem that oil oozes out from the wavy bottom surface portion.

そこで、従来では、上記したように圧造成形後、特別に切削加工により頭部と軸部との境界部にオイルの滲み防止用のパッキンを装着するための周溝を形成し、この周溝にパッキンを嵌め込み装着したうえで閉栓プラグをオイルタンクの底部に螺着して閉栓し、パッキンによりオイルの滲みを防止するようにしている。 Therefore, conventionally, after the pressure forming as described above, a peripheral groove for mounting a packing for preventing oil bleeding is formed at the boundary between the head and the shaft by special cutting, and the peripheral groove is formed. After the packing is fitted and attached, the plug is screwed onto the bottom of the oil tank to close the plug, and the packing prevents oil from seeping.

しかし、このように周溝を形成しかつパッキンを装着する閉栓プラグでは、プラグ成形体の圧造成形後、後工程として特別に頭部と軸部との境界部に周溝形成するといった複雑で手間のかかる切削工程が必要であるし、また、パッキンの周溝への面倒な嵌め込み作業が必要となる問題があった。 However, in the case of a plug that forms a peripheral groove and attaches a packing in this way, it is complicated and troublesome to form a peripheral groove at the boundary between the head and the shaft as a post-process after the pressure molding of the plug molded body. There is a problem that a cutting process is required, and a troublesome fitting operation of the packing into the peripheral groove is required.

また、上記した頭部のヒケにより波打つ底面部分からのオイルの滲みを防止する別の手段としては、オイルタンクとドレンプラグの間に銅やアルミなどの薄い平ワッシャーを挟み込みオイルタンクとドレンプラグの隙間を無くすようにしてオイルの滲みを防止するようにしたものが知られている。
しかし、この場合においても、波打つヒケにより底面部分における密着が悪くなってしまうのであり、これが原因で強いトルクで締め込んでもオイルが滲むといった現象が依然として残り、採用しづらいものであった。
そのため、オイルの滲みを解決する手段として、底面における座面部分の波打つヒケを除去しなければならないことから、プラグ成形体の圧造成形後、後工程として特別に六角形状の頭部における底面部(座面)に複雑で手間のかかる高精度な切削加工を行うことが必要となっているのが現状である。
In addition, as another means of preventing oil bleeding from the bottom part that undulates due to the sink mark on the head, a thin flat washer made of copper or aluminum is sandwiched between the oil tank and the drain plug to form the oil tank and the drain plug. It is known that the oil is prevented from bleeding by eliminating the gap.
However, even in this case, the adhesion at the bottom surface is deteriorated due to the wavy sink marks, and due to this, the phenomenon that the oil oozes even when tightened with a strong torque still remains, and it is difficult to adopt.
Therefore, as a means of resolving oil bleeding, it is necessary to remove the wavy sink marks on the seat surface on the bottom surface. Therefore, after the plug molding, the bottom surface portion on the hexagonal head is specially used as a post-process. The current situation is that it is necessary to perform complicated and time-consuming high-precision cutting on the seat surface.

そこで本考案は、上記した問題を解決するため、多角形状頭部の上面形状を工夫することにより、軸部と共に一体形成される多角形状頭部底面おいてオイルの滲みを防止するための幾何公差平面度が得られるように形成して、従来のように特別な切削加工を不要にし、圧造成形だけでオイルが滲み出るのを防止する機能を備えた高品質でコスト安価な閉栓プラグの提供を課題とする。 Therefore, in order to solve the above-mentioned problem, the present invention devises the upper surface shape of the polygonal head to prevent oil bleeding on the bottom surface of the polygonal head integrally formed with the shaft portion. Providing a high-quality, inexpensive plug that is formed so that flatness can be obtained, eliminates the need for special cutting as in the past, and has the function of preventing oil from seeping out only by pressure molding. Make it an issue.

本願の請求項1記載の考案は、外周にねじを有する軸部と、軸部の一端に一体に設けられた外周が多角形状を呈する頭部とを備える一方、頭部の上面には、中心軸部と、この中心軸部を除いた残りの部分に頭部外周の輪郭形状に符合する小形の多角形状を呈する打込み凹所部とが形成されていると共に、頭部の底面部には、オイルの滲みを防止するための幾何公差平面度を有する環状平座面が形成されていることを特徴とする。 The invention according to claim 1 of the present application includes a shaft portion having a screw on the outer periphery and a head portion integrally provided at one end of the shaft portion having a polygonal outer circumference, while the upper surface of the head portion has a center. A shaft portion and a recessed portion having a small polygonal shape that matches the contour shape of the outer circumference of the head are formed in the remaining portion excluding the central shaft portion, and the bottom surface portion of the head is formed. It is characterized in that an annular flat seat surface having a geometrical tolerance flatness for preventing oil bleeding is formed.

本願の請求項2記載の考案は、上記請求項1記載の構成に加えて、頭部の上面における中心軸部が円形軸状に形成されていると共に、打ち込み凹所部が中心軸部の外周から頭部の外周近くにわたって形成されており、かつ、打ち込み凹所部の中心軸部側が深く頭部の外周側に至るほど次第に浅くなるようテーパ状に形成されていることを特徴とする。 In the invention according to claim 2 of the present application, in addition to the configuration according to claim 1, the central shaft portion on the upper surface of the head is formed in a circular shaft shape, and the driving recess portion is the outer circumference of the central shaft portion. It is characterized in that it is formed from near the outer periphery of the head, and is formed in a tapered shape so that the central axis side of the driving recess is deeper and gradually becomes shallower toward the outer periphery of the head.

本考案の閉栓プラグは、上記した構成ように例えば六角形状を呈する頭部の上面に中心軸部と、この中心軸部部分を除いた状態で頭部外周の六角形状に相似する小形の六角形状を呈する打込み凹所部とが形成されていると共に、頭部の底面部には、オイルの滲みを防止するための幾何公差平面度を有する環状平扁座面が形成されているので、従来のように特別な切削加工を不要にできながら、頭部の底面部に形成した環状平扁座面でオイルが滲み出るのを確実に防止することができる。その上、多段式圧造成形機による量産も簡単容易でコスト安価に製造できる。 The plug of the present invention has a small hexagonal shape similar to the hexagonal shape of the outer circumference of the head, for example, with the central shaft portion on the upper surface of the head having a hexagonal shape and the central shaft portion removed as described above. In addition to the formation of the driving recessed portion, the bottom surface of the head is formed with an annular flat flat seat surface having a geometrical tolerance flatness for preventing oil bleeding. While it is possible to eliminate the need for special cutting processing, it is possible to reliably prevent oil from seeping out on the annular flat seat surface formed on the bottom surface of the head. In addition, mass production by a multi-stage pressure forming machine is easy and easy, and can be manufactured at low cost.

また、頭部の上面における中心軸部を円形軸状に形成すると共に、打ち込み凹所部を中心軸部の外周から頭部の外周近くまで形成し、かつ、打ち込み凹所部の中心軸部側が深く頭部の外周側に至るほど次第に浅くなるようテーパ状に形成する構成とすれば、例えば六角形状を呈する頭部の上面に六角形状を呈する打込み凹所部を打ち込み加工により形成する際、中心軸部周りの肉厚部分を効果的に外周側に逃し無理なく円滑に塑性変形させて高精度に圧造成形することができる。その結果、この六角形状の打ち込み加工に伴い頭部のフランジとなる底面部、つまり環状平座面の幾何公差平面度を著しく向上させることができ、オイルが滲み出るのを確実に防止することができる。 Further, the central shaft portion on the upper surface of the head is formed in a circular shaft shape, the driving recess portion is formed from the outer periphery of the central shaft portion to the vicinity of the outer circumference of the head, and the central shaft portion side of the driving recess portion is formed. If the structure is formed in a tapered shape so as to be deeper toward the outer peripheral side of the head, for example, when a hexagonal driven recess is formed on the upper surface of the hexagonal head by driving, the center is formed. The thick portion around the shaft portion can be effectively escaped to the outer peripheral side and plastically deformed smoothly without difficulty to perform heading molding with high accuracy. As a result, it is possible to remarkably improve the geometrical tolerance flatness of the bottom surface portion that becomes the flange of the head, that is, the annular flat seat surface, due to this hexagonal driving process, and it is possible to reliably prevent oil from seeping out. it can.

本考案に係る閉栓プラグを示す正面図である。It is a front view which shows the closing plug which concerns on this invention. 同平面図である。It is the same plan view. 同底面図である。It is the same bottom view. 図2のA−A線断面図である。FIG. 2 is a sectional view taken along line AA of FIG. 図2のB−B線断面図である。FIG. 2 is a cross-sectional view taken along the line BB of FIG. 多段式圧造成形機で成形される閉栓プラグの中間成形品の成形状態を示す横断説明図である。It is a cross-sectional explanatory view which shows the molding state of the intermediate molded product of the plug which is molded by a multi-stage pressure forming machine. 多段式圧造成形機で成形された閉栓プラグの最終成形品の成形状態を示す横断説明図である。It is a cross-sectional explanatory view which shows the molding state of the final molded product of the plug closing plug molded by the multi-stage pressure forming machine.

以下本考案の実施の形態を図に基づいて説明する。 Hereinafter, embodiments of the present invention will be described with reference to the drawings.

図1〜図3は本考案に係る閉栓プラグを示し、この閉栓プラグ(ドレンプラグ)1は、オイルタンク(図示せず)の底部などに形成されるねじ孔付きの排出口に螺合可能なねじ21を外周に有する有底筒状の軸部2と、軸部2の一端に一体に設けられた外周が六角形状を呈する頭部3とを備えている。 1 to 3 show a plug according to the present invention, and the plug (drain plug) 1 can be screwed into a screw holed outlet formed at the bottom of an oil tank (not shown). It includes a bottomed tubular shaft portion 2 having a screw 21 on the outer circumference, and a head portion 3 integrally provided at one end of the shaft portion 2 and having a hexagonal outer circumference.

そして、頭部3の上面には、図2〜5に示すように円形状の中心軸部31と、この中心軸部31を除いた残りの部分に頭部3の輪郭形状に符合する小形の六角形状を呈する打込み凹所部32とが形成されていると共に、頭部3のフランジとなる底面部には、オイルの滲みを防止するための幾何公差平面度を有する環状平座面33が形成されている。その場合、環状平座面33は打込み凹所部32が打ち込み形成される際に同時に形成されるべく打込み凹所部32と上下においてほぼ対応するように配置されている。 Then, on the upper surface of the head 3, as shown in FIGS. 2 to 5, a circular central shaft portion 31 and a small portion that matches the contour shape of the head 3 on the remaining portion excluding the central shaft portion 31. A hexagonal driven recess 32 is formed, and an annular flat seat surface 33 having a geometrical tolerance flatness for preventing oil bleeding is formed on the bottom surface portion serving as a flange of the head 3. Has been done. In that case, the annular flat seat surface 33 is arranged so as to substantially correspond to the driving recessed portion 32 in the vertical direction so as to be formed at the same time when the driving recessed portion 32 is formed by driving.

打ち込み凹所部32は、中心軸部31の外周から頭部3の外周近くにわたって形成されていると共に、打ち込み凹所部32の中心軸部31側が深く頭部3の外周側に至るほど次第に浅くなるようテーパ状に形成されている。 The driving recess 32 is formed from the outer periphery of the central shaft portion 31 to the vicinity of the outer periphery of the head 3, and the central shaft 31 side of the driving recess 32 is deeper and gradually shallower toward the outer periphery of the head 3. It is formed in a tapered shape so as to be.

図中、符号34…34は頭部の六角外周周りにおいて上方に立ち上がる角エッジ部である。 In the figure, reference numerals 34 ... 34 are angular edge portions that rise upward around the hexagonal outer circumference of the head.

上記のように構成される閉栓プラグは、図6及び図7に示すように横型多段式圧造成形機10により1個のブランクから一貫した複数の圧造工程で中軸軸部と頭部とを一体に成形して製造される。 As shown in FIGS. 6 and 7, the closing plug configured as described above has the central shaft portion and the head integrally integrated from one blank by a plurality of consistent pressing processes by the horizontal multi-stage pressure forming machine 10. Manufactured by molding.

具体的は、図6示すように、横型多段式圧造成形機10における中心部に成形ピン11を備えたダイ12と、円柱状パンチ13とを備えた第1圧造ステーションS1において、円柱状パンチ13のダイ12内への打込みにより円柱状素材(図示せず)に対して圧造成形を行い、図6に示すような底部に成形ピン11により有底穴部A1が成形された中間成形品Aを形成する。 Specifically, as shown in FIG. 6, in the first squeezing station S1 provided with the die 12 having the forming pin 11 at the center and the columnar punch 13 in the horizontal multi-stage squeezing molding machine 10, the columnar punch 13 An intermediate molded product A in which a columnar material (not shown) is pressure-molded by driving into the die 12 and a bottomed hole A1 is formed on the bottom by a molding pin 11 as shown in FIG. Form.

次に、図7示すように、中心部に成形ピン14を備えたダイ15と、上面成形パンチ16とを備えた最終圧造ステーションS2において、円柱状パンチ16のダイ15内への打込みにより上記中間成形品Aに対して圧造成形を行い、図7に示すような有底筒状の軸部2と、軸部2の一端に一体に設けられた外周が六角形状を呈する頭部3とを備えた最終成形品Bを形成する。 Next, as shown in FIG. 7, at the final stamping station S2 provided with the die 15 having the forming pin 14 at the center and the upper surface forming punch 16, the columnar punch 16 is driven into the die 15 to be intermediate. A molded product A is forged and molded, and has a bottomed tubular shaft portion 2 as shown in FIG. 7 and a head portion 3 integrally provided at one end of the shaft portion 2 and having a hexagonal outer circumference. The final molded product B is formed.

その場合、上面成形パンチ16の打ち込みで、頭部3の上面に円形軸状の中心軸部31と、この中心軸部31部分を除いた残りの頭部3の輪郭形状に符合する小形の六角形状を呈する打込み凹所部32とが形成される。この六角形状を呈する打込み凹所部32を形成するための打込みを行うことにより、頭部3の底面部にオイルの滲みを防止するための幾何公差平面度を有する環状平座面33が同時的にかつ高精度に形成される。 In that case, when the upper surface forming punch 16 is driven, a small hexagon that matches the contour shape of the circular shaft-shaped central shaft portion 31 on the upper surface of the head 3 and the remaining head portion 3 excluding the central shaft portion 31 portion. A driving recess 32 having a shape is formed. By driving to form the driving recess 32 having a hexagonal shape, the annular flat seat surface 33 having a geometrical tolerance flatness to prevent oil bleeding is simultaneously formed on the bottom surface of the head 3. It is formed with high precision.

ここで、打ち込み凹所部32は、中心軸部31の外周から頭部3の外周近くまで形成され、かつ、打ち込み凹所部32の中心軸部側が深く頭部3の外周側に至るほど次第に浅くなるようテーパ状に形成される。このように外周側に至るほど次第に浅くなるテーパ形状とすることにより、六角形状を呈する頭部3の上面に六角形状を呈する打込み凹所部32を形成する際、中心軸部31周りの肉厚部分を効果的に外周側に逃がし、かつ頭部3の六角外周周りの角エッジ部34…34が上方へ立ち上がるように無理なく円滑に塑性変形させて高精度に圧造成形することができる。その結果、六角形状を呈する頭部3の上面への六角形状を呈する打ち込み凹所部32の打ち込み加工に伴い頭部3の底面部、つまり環状平座面33にオイルの滲みを防止するための幾何公差平面度を向上させることができる。 Here, the driving recessed portion 32 is formed from the outer periphery of the central shaft portion 31 to near the outer periphery of the head portion 3, and the central shaft portion side of the driving recessed portion 32 becomes deeper and gradually reaches the outer peripheral side of the head portion 3. It is formed in a tapered shape so as to be shallow. By forming the tapered shape that gradually becomes shallower toward the outer peripheral side in this way, when the hexagonal driven recess portion 32 is formed on the upper surface of the hexagonal head 3, the wall thickness around the central shaft portion 31 is formed. The portion can be effectively released to the outer peripheral side, and the square edge portions 34 ... 34 around the hexagonal outer circumference of the head 3 can be plastically deformed smoothly and reasonably so as to rise upward, and can be forged with high accuracy. As a result, in order to prevent oil from seeping into the bottom surface of the head 3, that is, the annular flat seat surface 33 due to the driving process of the hexagonal driving recess 32 on the upper surface of the hexagonal head 3. The geometrical tolerance flatness can be improved.

その後、最終成形品Cは後工程で軸部2の外周に転造又は切削によりねじ21が形成され、これにより図1〜図5に示される製品としての閉栓プラグ1が形成される。 After that, in the final molded product C, a screw 21 is formed on the outer periphery of the shaft portion 2 by rolling or cutting in a post-process, whereby the plug 1 as a product shown in FIGS. 1 to 5 is formed.

次に、以上のように構成した本考案に係る閉栓プラグの作用について説明する。 Next, the operation of the closing plug according to the present invention configured as described above will be described.

本考案に係る閉栓プラグによれば、上記した構成ように六角形状の頭部3の上面に中心軸部31と、この中心軸部31部分を除いた状態で頭部外周の六角形状に相似する小形の六角形状を呈する打込み凹所部32とが形成されていると共に、頭部3の底面部にオイルの滲みを防止するための幾何公差平面度を有する環状平扁座面33が形成されているので、従来のように特別な切削加工を不要にできながら、頭部の底面部に形成した環状平扁座面でオイルの滲みを確実に防止することができる。その上、多段式圧造成形機による量産も簡単容易でコスト安価に製造できる。 According to the plug according to the present invention, the central shaft portion 31 on the upper surface of the hexagonal head 3 and the central shaft portion 31 portion are removed to resemble the hexagonal shape of the outer periphery of the head as described above. A small hexagonal driven recess 32 is formed, and an annular flat flat seat surface 33 having a geometrical tolerance flatness for preventing oil bleeding is formed on the bottom surface of the head 3. Therefore, it is possible to reliably prevent oil bleeding on the annular flat seat surface formed on the bottom surface of the head, while eliminating the need for special cutting as in the conventional case. In addition, mass production by a multi-stage pressure forming machine is easy and easy, and can be manufactured at low cost.

また、頭部3の上面における中心軸部31を円形軸状に形成すると共に、打ち込み凹所部32を中心軸部31の外周から頭部3の外周近くまで形成し、かつ、打ち込み凹所部31の中心軸部31側が深く頭部3の外周側に至るほど次第に浅くなるようテーパ状に形成していることにより、六角形状を呈する頭部3の上面に六角形状を呈する打込み凹所部32を打ち込み加工により形成する際、中心軸部31周りの肉厚部分を効果的に外周側に逃し、かつ頭部3の六角外周周りの角エッジ部34…34が上方へ立ち上がるように無理なく円滑に塑性変形させて高精度に圧造成形することができる。その結果、この六角形状の打ち込み加工に伴い頭部3の底面部、つまり環状平座面33の幾何公差平面度を著しく向上させることができ、オイルの滲みを確実に防止することができる。 Further, the central shaft portion 31 on the upper surface of the head portion 3 is formed in a circular shaft shape, the driving recess portion 32 is formed from the outer periphery of the central shaft portion 31 to the vicinity of the outer circumference of the head 3, and the driving recess portion is formed. Since the central shaft portion 31 side of the 31 is formed in a tapered shape so as to be deeper and gradually becomes shallower toward the outer peripheral side of the head portion 3, the driving recess portion 32 having a hexagonal shape is formed on the upper surface of the head portion 3 having a hexagonal shape. Is formed by driving, the thick portion around the central shaft portion 31 is effectively released to the outer peripheral side, and the square edge portions 34 ... 34 around the hexagonal outer circumference of the head 3 are reasonably smooth so as to rise upward. It can be plastically deformed to be forged with high precision. As a result, the geometrical tolerance flatness of the bottom surface portion of the head portion 3, that is, the annular flat seat surface 33 can be remarkably improved by the hexagonal driving process, and oil bleeding can be reliably prevented.

なお、上記した実施の形態では、閉栓プラグ1における頭部3の形状として、六角形状を呈するものについて説明したけれども、この六角形状に何ら限定されるものではなく、例えば四角や五角、或いは八角形状などの多角形状のものであってもよい。また、オイルタンクに設けられるドレン用の閉栓プラグについて説明したけれども、何らドレンタンクの閉栓プラグに限定されるものではなく、例えばオイルパンの閉栓プラグや冷却水交換用の閉栓プラグなどいろいろな用途の閉栓プラグにも幅広く使用できること勿論である。 In the above-described embodiment, the shape of the head 3 of the plug 1 has a hexagonal shape, but the shape is not limited to the hexagonal shape, and is not limited to the hexagonal shape, for example, a square shape, a pentagonal shape, or an octagonal shape. It may have a polygonal shape such as. In addition, although the drain plug provided in the oil tank has been described, it is not limited to the drain tank plug, and is used for various purposes such as an oil pan plug and a cooling water replacement plug. Of course, it can be widely used for closing plugs.

また、本考案の閉栓プラグ1によれば、頭部3の底面部に形成した環状平扁座面33自体で直接オイルの滲みを阻止する機能を充分に発揮できるものであるが、使用に際しては、オイルタンクと閉栓プラグの間に銅やアルミなどの薄い平ワッシャーを挟み込むようにして使用してもよいこと勿論である。 Further, according to the plug 1 of the present invention, the annular flat washer surface 33 itself formed on the bottom surface of the head 3 can sufficiently exert a function of directly preventing oil bleeding, but in use. Of course, a thin flat washer made of copper or aluminum may be sandwiched between the oil tank and the closing plug.

1 閉栓プラグ
2 軸部
21 ねじ
3 頭部
31 中心軸部
32 打込み凹所部
33 環状平座面
1 Closing plug 2 Shaft 21 Screw 3 Head 31 Central shaft 32 Driving recess 33 Circular flat seat surface

Claims (2)

外周にねじを有する軸部と、軸部の一端に一体に設けられた外周が多角形状を呈する頭部とを備える一方、頭部の上面には、中心軸部と、この中心軸部を除いた残りの部分に頭部外周の輪郭形状に符合する小形の多角形状を呈する打込み凹所部とが形成されていると共に、頭部の底面部には、オイルの滲みを防止するための幾何公差平面度を有する環状平座面が形成されていることを特徴とする閉栓プラグ。 A shaft portion having a screw on the outer circumference and a head portion integrally provided at one end of the shaft portion having a polygonal shape are provided, while the central shaft portion and the central shaft portion are excluded from the upper surface of the head portion. The remaining part is formed with a driving recess having a small polygonal shape that matches the contour shape of the outer circumference of the head, and the bottom surface of the head has a geometrical tolerance to prevent oil bleeding. A closing plug characterized in that an annular flat seat surface having flatness is formed. 頭部の上面における中心軸部が円形軸状に形成されていると共に、打ち込み凹所部が中心軸部の外周から頭部の外周近くにわたって形成されており、かつ、打ち込み凹所部の中心軸部側が深く頭部の外周側に至るほど次第に浅くなるようテーパ状に形成されていることを特徴とする請求項1記載の閉栓プラグ。 The central shaft portion on the upper surface of the head is formed in a circular shaft shape, the driving recess portion is formed from the outer periphery of the central shaft portion to the vicinity of the outer periphery of the head, and the central axis of the driving recess portion is formed. The plug according to claim 1, wherein the plug is formed in a tapered shape so that the portion side is deep and becomes gradually shallower toward the outer peripheral side of the head.
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