JP2008298261A - Sealing material for dovetail groove - Google Patents

Sealing material for dovetail groove Download PDF

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JP2008298261A
JP2008298261A JP2007148034A JP2007148034A JP2008298261A JP 2008298261 A JP2008298261 A JP 2008298261A JP 2007148034 A JP2007148034 A JP 2007148034A JP 2007148034 A JP2007148034 A JP 2007148034A JP 2008298261 A JP2008298261 A JP 2008298261A
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groove
dovetail
dovetail groove
sealing material
opening
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JP4871217B2 (en
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Katsuji Obana
克二 尾花
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MASUOKA SANGYO KK
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MASUOKA SANGYO KK
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Abstract

<P>PROBLEM TO BE SOLVED: To reduce a defective occurrence ratio of a product by restraining the generation of a particle by avoiding a metal touch. <P>SOLUTION: This sealing material 11 for a dovetail groove is used by being fitted in a dovetail 21. In the sealing material 11 for the dovetail groove, a head 13 projecting from an opening 22 of the dovetail groove 21 is formed at a groove storage part 21 stored in the dovetail groove 21 in a cross-sectional shape of the sealing material 11 for the dovetail groove, and the head 13 is formed with overhang parts 18 and 18 overhanging outside both external sides of the groove width direction of the dovetail groove 21, and the head 13 is formed in a shade shape of a mushroom as a whole. <P>COPYRIGHT: (C)2009,JPO&INPIT

Description

この発明は、たとえば半導体製造や液晶製造等において用いられる真空装置に好適に使用されるアリ溝用シール材に関する。   The present invention relates to a dovetail seal material suitably used in a vacuum apparatus used in, for example, semiconductor manufacturing and liquid crystal manufacturing.

このようなアリ溝用シール材として、下記特許文献1の装置を案出した。   As such a dovetail seal material, the device of Patent Document 1 below has been devised.

このアリ溝用シール材は、断面形状が左右対称に形成され、断面形状における下端部が平らに形成されるとともに、この下端部の幅がアリ溝の開口部の幅よりも狭く形成されている。そして、下端部の両側から上に向けてテーパ状の傾斜面が形成され、アリ溝の深さ内において断面形状のうち最も幅広の最大幅部が形成されている。この最大幅部の幅寸法は、アリ溝も開口部の幅よりも幅広に設定され、最大幅部の上に、アリ溝の開口部より下側の面に当接して抜け止めされる抜け止め部が形成される。そして、この抜け止め部の上には、アリ溝の開口部から突出する円弧状の湾曲面が形成されている。   This dovetail seal material is formed so that the cross-sectional shape is symmetrical, the lower end of the cross-sectional shape is formed flat, and the width of the lower end is narrower than the width of the opening of the dovetail . And the taper-shaped inclined surface is formed toward the upper side from the both sides of a lower end part, and the widest largest width part is formed among cross-sectional shapes within the depth of a dovetail groove. The width dimension of the maximum width portion is set so that the dovetail groove is also wider than the width of the opening portion, and is prevented from coming off by contacting the surface below the opening portion of the dovetail groove on the maximum width portion. Part is formed. An arcuate curved surface protruding from the opening of the dovetail groove is formed on the retaining portion.

このような断面形状をなすアリ溝用シール材によれば、下端部がアリ溝の開口部よりも幅狭で、その上に傾斜面が形成されているので、装着に際しては傾斜面がガイドになるため、装着性が良好である。また、シール時に、アリ溝の開口部から突出している湾曲面部分が圧縮されると、抜け止め部がアリ溝の開口部より下側の面に当接するとともに、湾曲面部分がアリ溝の開口部における最も幅狭の部分を塞ぐように圧縮変形するので、脱落が防止される。さらに、アリ溝内に対する装着時には、下端部と抜け止め部との3箇所で接触してアリ溝内に収まるので、安定性が良好で、開閉時の変位による捩れや、真空差圧による捩れを防止することができ、確実に高気密性を得ることができ、その上、シール材自体の摩耗を抑えることができる。これらの結果、高清浄空間を得ることができるという良好な効果が得られた。   According to the dovetail seal material having such a cross-sectional shape, the lower end portion is narrower than the opening portion of the dovetail groove, and an inclined surface is formed on the lower end portion. Therefore, the wearability is good. In addition, when the curved surface portion protruding from the opening of the dovetail is compressed during sealing, the retaining portion comes into contact with the surface below the opening of the dovetail and the curved surface portion opens to the dovetail. Since it compresses and deforms so as to close the narrowest part of the part, it is prevented from falling off. In addition, when installed in the dovetail groove, the lower end portion and the retaining portion come into contact with each other and fit in the dovetail groove, so that stability is good, and twisting due to displacement during opening and closing and twisting due to vacuum differential pressure In addition, it is possible to prevent the sealing material itself from being worn, and to prevent the sealing material itself from being worn. As a result, a good effect that a highly clean space can be obtained was obtained.

しかし、使用に伴って、アリ溝シール材を装着した蓋体と、この蓋体による開閉される部分同士の接触、すなわちメタルタッチによると思われる、粉塵の発生が起ることが判明した。   However, it has been found that, with use, dust generated as a result of contact between the lid mounted with the dovetail seal material and the parts opened and closed by the lid, that is, metal touch, occurs.

これまで、メタルタッチを防止するものとして、たとえば下記特許文献2に開示された弾性シールがある。   Until now, as an example of preventing metal touch, there is an elastic seal disclosed in Patent Document 2 below.

この弾性シールは、断面形状が、アリ溝内に入る胴部と、アリ溝の開口部から突出する頭部とからなり、頭部の上端面が、平らな頂面ストレート部で形成されている。また、胴部は、アリ溝の開口部の近傍で近接ないし当接する両肩部を備えるとともに、底面に、平らな底面ストレート部を有した形状である。   This elastic seal has a cross-sectional shape including a trunk portion that enters the dovetail groove and a head portion that protrudes from the opening portion of the dovetail groove, and the upper end surface of the head portion is formed by a flat top surface straight portion. . Further, the trunk portion has both shoulder portions that come close to or abut in the vicinity of the opening portion of the dovetail groove, and has a flat bottom straight portion on the bottom surface.

上記の頂面ストレート部と底面ストレート部との存在により、高荷重に耐えるようにしてメタルタッチを避けるというものである。   The presence of the top surface straight portion and the bottom surface straight portion described above avoids metal touch so as to withstand high loads.

しかし、このような構成でメタルタッチを避けるには、弾性シールとアリ溝とに極めて高い寸法精度が要求される。
特許第3590794号公報 特開2005−48876号公報
However, in order to avoid metal touch in such a configuration, extremely high dimensional accuracy is required for the elastic seal and the dovetail groove.
Japanese Patent No. 3590794 JP 2005-48876 A

そこで、この発明は、より一層確実にメタルタッチを防止でき、高清浄空間を得ることができるようにすることを主たる課題とする。   Accordingly, the main object of the present invention is to make it possible to prevent metal touch more reliably and to obtain a highly clean space.

そのための手段は、アリ溝に嵌め込んで使用されるアリ溝用シール材であって、当該アリ溝用シール材の断面形状におけるアリ溝内に収容される溝収容部の上に、アリ溝の開口部から突出する頭部が形成されるとともに、該頭部には、アリ溝の溝幅方向外側の側部に張り出す張り出し部が形成されたアリ溝用シール材である。   The means for that is a dovetail seal material that is used by being fitted into the dovetail groove, and the dovetail groove is accommodated on the dovetail groove accommodated in the dovetail groove in the cross-sectional shape of the dovetail groove seal material. The head is a dovetail seal material in which a head projecting from the opening is formed, and an overhanging portion is formed on the head so as to project to the side portion on the outer side in the groove width direction of the dovetail.

この構成によれば、溝収容部はアリ溝内に収まって、アリ溝用シール材が嵌め込まれた状態を保持するとともに、頭部とその張り出し部が、アリ溝の開口部高さよりも上の位置で、アリ溝開口部の幅方向側部の上面と、これに対向する部位との間に介在してシールを行う。このため、メタルタッチを確実に防止できる。   According to this configuration, the groove accommodating portion is accommodated in the dovetail groove and maintains the state in which the dovetail groove sealing material is fitted, and the head portion and the overhanging portion are above the opening height of the dovetail groove. At the position, sealing is performed by interposing between the upper surface of the side portion in the width direction of the dovetail groove opening portion and the portion facing this. For this reason, metal touch can be reliably prevented.

以上のように、この発明によれば、メタルタッチを確実に防止できるので、高清浄空間を得ることが可能である。   As described above, according to the present invention, metal touch can be reliably prevented, and thus a highly clean space can be obtained.

この発明を実施するための一形態を、以下図面を用いて説明する。
図1は、アリ溝用シール材11(以下、「シール材」という。)と、このシール材11が取付けられるアリ溝21とを示す断面図であり、図2は、シール材11の使用状態を示す説明図である。すなわち、図2(a)は、半導体製造等において用いられ、内部空間を真空にする真空装置31の一部を示す断面図である。図2(b)は、この真空装置に開閉可能に取付けられる蓋体の内側面を示す正面図である。このように、シール材11は、蓋体32の内側面に装着され、真空装置31内の気密性を得るのに使用される。
An embodiment for carrying out the present invention will be described below with reference to the drawings.
FIG. 1 is a cross-sectional view showing a dovetail seal material 11 (hereinafter referred to as “seal material”) and a dovetail groove 21 to which the seal material 11 is attached. FIG. It is explanatory drawing which shows. That is, FIG. 2A is a cross-sectional view showing a part of a vacuum device 31 that is used in semiconductor manufacturing or the like and evacuates the internal space. FIG.2 (b) is a front view which shows the inner surface of the cover body attached to this vacuum device so that opening and closing is possible. As described above, the sealing material 11 is attached to the inner side surface of the lid 32 and is used to obtain airtightness in the vacuum device 31.

シール材11は、適宜のゴム材等の弾性材料で環状(無端状)に形成されている。環状の形態は、装着位置の形態に応じて、図示例のような長方形のほかに正方形、円形などもある。   The sealing material 11 is formed in an annular shape (endless shape) with an elastic material such as an appropriate rubber material. In addition to the rectangular shape shown in the illustrated example, the annular shape includes a square, a circle, and the like, depending on the shape of the mounting position.

まず、アリ溝21は、周知の通り、断面鳩尾形の溝であり(図1参照)、上端の開口部22より内側の底面23の方が幅広で、ハの字型をなす傾斜面24,24を有した形である。このアリ溝21は、開口部22の口縁部22aと底面23の角部分がアール状に形成されている。   First, as is well known, the dovetail groove 21 is a groove having a dovetail cross section (see FIG. 1), the inner bottom surface 23 is wider than the opening 22 at the upper end, and an inclined surface 24 having a square shape. 24. In the dovetail groove 21, the corner portion of the mouth edge 22 a of the opening 22 and the bottom 23 is formed in a rounded shape.

ここで、図1に示したように、アリ溝21の開口部における最も幅狭の部分の寸法をw1、アリ溝21の最も幅広の部分の寸法をw2、アリ溝21の深さをd1とする。   Here, as shown in FIG. 1, the dimension of the narrowest part in the opening of the dovetail groove 21 is w1, the dimension of the widest part of the dovetail groove 21 is w2, and the depth of the dovetail groove 21 is d1. To do.

つぎに、シール材11の断面形状について説明する。
シール材11は、左右対称形状で、アリ溝21内に収容される溝収容部12と、この溝収容部12の上に一体に形成され、アリ溝21の開口部22から突出してアリ溝21の幅方向の両側に張り出す頭部13とを有する。
Next, the cross-sectional shape of the sealing material 11 will be described.
The sealing material 11 has a symmetrical shape, is integrally formed on the groove accommodating portion 12 accommodated in the dovetail groove 21 and the groove accommodating portion 12, protrudes from the opening 22 of the dovetail groove 21 and protrudes from the dovetail groove 21. And a head portion 13 projecting on both sides in the width direction.

上記の溝収容部12は、下端に位置する底面部14と、底面部14から上方に先太りなるように傾く嵌め込み傾斜面15,15と、嵌め込み傾斜面15,15の上方において幅方向に張り出して最も幅広となる最大幅部16aを形成する湾曲部16と、湾曲部16から先細るように上に延びてアリ溝21の開口部22より下側の傾斜面24に当接する抜け止め傾斜面17,17とを有する。   The groove accommodating portion 12 includes a bottom surface portion 14 positioned at the lower end, fitting inclined surfaces 15 and 15 inclined so as to taper upward from the bottom surface portion 14, and projecting in the width direction above the fitting inclined surfaces 15 and 15. A curved portion 16 that forms the widest maximum width portion 16a, and a retaining inclined surface that extends upward so as to taper from the curved portion 16 and abuts against an inclined surface 24 below the opening 22 of the dovetail groove 21 17 and 17.

底面部14は、アリ溝21の底面23に平面で面接触するように平坦に形成され、その幅W1は、アリ溝21の開口部22の幅w1と同一またはそれよりも狭く形成される。図示したように幅狭であるほうが、装着性の点で好ましい。   The bottom surface portion 14 is formed flat so as to be in plane contact with the bottom surface 23 of the dovetail groove 21, and its width W <b> 1 is formed equal to or narrower than the width w <b> 1 of the opening portion 22 of the dovetail groove 21. As shown in the drawing, a narrow width is preferable in terms of wearability.

嵌め込み傾斜面15の傾斜角度は適宜設定されるが、設定に際しては、上記底面部14の幅W1や最大幅部16a、アリ溝21の深さd1等の寸法に基づいて、嵌め込み操作性が考慮される。   The inclination angle of the fitting inclined surface 15 is appropriately set. In setting, the fitting operability is considered based on the dimensions such as the width W1 of the bottom surface portion 14 and the maximum width portion 16a and the depth d1 of the dovetail groove 21. Is done.

最大幅部16aの幅W2は、アリ溝21の開口部22における最も幅狭の部分の寸法w1よりも幅広で、アリ溝21の最も幅広の部分の寸法w2よりも狭い適宜の値に設定される。また、この最大幅部16aを形成する湾曲部16の湾曲は、アリ溝21に対する装着性を考慮すると、抜け止め傾斜面17を形成可能な範囲で、比較的大きなアールであるのが好ましい。   The width W2 of the maximum width portion 16a is set to an appropriate value that is wider than the dimension w1 of the narrowest portion of the opening 22 of the dovetail groove 21 and narrower than the dimension w2 of the widest portion of the dovetail groove 21. The In addition, the bending of the bending portion 16 forming the maximum width portion 16a is preferably a relatively large radius within a range in which the retaining slope 17 can be formed in consideration of the mounting property with respect to the dovetail groove 21.

抜け止め傾斜面17の角度は、アリ溝21の傾斜面24と同程度の角度に設定される。   The angle of the retaining slope 17 is set to the same angle as the slope 24 of the dovetail 21.

上記の頭部13は、茸の笠状に形成されている。具体的には、頭部13における溝収容部12より張り出す張り出し部18,18の下面18aは、平面に形成され、頭部13の上面19は、円弧状に形成されている。上記下面18aは、アリ溝21開口部22の両外側縁部の上面に密着する部分で、溝幅方向の外側に向けて下がるように傾斜している。傾斜角度θは、僅かでよく、たとえば3度くらいでよい。   The head 13 is formed in the shape of a cocoon. Specifically, the lower surface 18a of the projecting portions 18 and 18 projecting from the groove accommodating portion 12 in the head 13 is formed in a flat surface, and the upper surface 19 of the head 13 is formed in an arc shape. The lower surface 18 a is a portion that is in close contact with the upper surfaces of both outer edge portions of the dovetail groove 21 opening 22, and is inclined so as to descend toward the outer side in the groove width direction. The inclination angle θ may be small, for example, about 3 degrees.

頭部13の高さH1は、圧縮変形時の変形量に基づいて適宜設定される。また、幅W3は、張り出し部18がアリ溝21の開口部22よりも両側に適宜長さL1張り出すように設定される。   The height H1 of the head 13 is appropriately set based on the amount of deformation during compression deformation. The width W3 is set so that the overhanging portion 18 overhangs the length L1 as appropriate on both sides of the opening portion 22 of the dovetail groove 21.

また、シール材11は、アリ溝21内に収容された非加圧状態で、溝収容部12の下端面である底面部14がアリ溝21の底面23から浮いて、抜け止め傾斜面17,17がアリ溝21の傾斜面24,24に当接するように形成される。すなわち、溝収容部12の高さH2がアリ溝21の深さd1よりも低い、或いは、頭部13における傾斜した下面18aの仮想延長線を結んだ位置と、底面部14との間の高さH3がアリ溝21の深さd1と同一またはそれよりも低く設定される。   Further, the sealing material 11 is in a non-pressurized state accommodated in the dovetail groove 21, and the bottom surface portion 14, which is the lower end surface of the groove accommodating portion 12, floats from the bottom surface 23 of the dovetail groove 21. 17 is formed so as to contact the inclined surfaces 24, 24 of the dovetail groove 21. In other words, the height H2 of the groove housing portion 12 is lower than the depth d1 of the dovetail groove 21 or the height between the position connecting the virtual extension line of the inclined lower surface 18a in the head 13 and the bottom surface portion 14. The height H3 is set equal to or lower than the depth d1 of the dovetail groove 21.

さらに、頭部13の下端、すなわち溝収容部12の上端部分の幅W4は、アリ溝21の開口部22の幅w1よりも幅狭である。   Furthermore, the width W 4 of the lower end of the head 13, that is, the upper end portion of the groove accommodating portion 12 is narrower than the width w 1 of the opening 22 of the dovetail 21.

好ましくは、W1はw1の50〜70%程度に、W2はw1の110〜120%程度、W3はw1の150〜170%程度に設定し、H3をd1と同程度、最大幅部の位置を、d1の半分程度の高さに設定し、H1をH3の50〜60%程度の設定する。W4はw1の95〜99%程度に設定する。   Preferably, W1 is set to about 50 to 70% of w1, W2 is set to about 110 to 120% of w1, W3 is set to about 150 to 170% of w1, H3 is set to about the same as d1, and the position of the maximum width portion is set. , D1 is set to about half the height, and H1 is set to about 50 to 60% of H3. W4 is set to about 95 to 99% of w1.

このような断面形状に形成されたシール材11は、その溝収容部12をアリ溝21に対して嵌め込んで、図3(a)に示したように装着される。   The sealing material 11 formed in such a cross-sectional shape is mounted as shown in FIG. 3A by fitting the groove accommodating portion 12 into the dovetail groove 21.

この装着に際しては、シール材11の底面部14の幅W1がアリ溝21の開口部の幅w1よりも狭く、また底面部14の上側には嵌め込み傾斜面15,15があるので、これらの傾斜面15,15がシール材11の最大幅部16aを押し縮めるためのガイドとなり、円滑に装着できる。そのうえ、底面部14が平らであるので、装着に際してシール材11が不測に捩れてしまうことを防止できる。つまり、装着が簡単かつ確実に行える。   In this mounting, the width W1 of the bottom surface portion 14 of the sealing material 11 is narrower than the width w1 of the opening portion of the dovetail groove 21 and the fitting inclined surfaces 15 and 15 are provided on the upper side of the bottom surface portion 14, so these inclinations The surfaces 15 and 15 serve as a guide for compressing and shrinking the maximum width portion 16a of the sealing material 11, and can be smoothly mounted. In addition, since the bottom surface portion 14 is flat, the sealing material 11 can be prevented from being twisted unexpectedly during mounting. That is, it can be easily and reliably mounted.

しかも、溝収容部12がアリ溝21に収まると、底面部14がアリ溝21の底面23に面接触するとともに、溝収容部12の抜け止め傾斜面17,17がアリ溝21の傾斜面24に当接して抜け止めがなされる。そして、頭部13における左右両側の張り出し部18,18が、アリ溝21両外側の上面に密着する。このように各部の働きにより、アリ溝21内での姿勢が安定するとともに、底面部14とアリ溝21との面接触により、接触抵抗が大きく、高荷重に耐え得るとともに、装着状態が強力である。   In addition, when the groove accommodating portion 12 is accommodated in the dovetail groove 21, the bottom surface portion 14 comes into surface contact with the bottom surface 23 of the dovetail groove 21, and the retaining slopes 17 and 17 of the groove accommodating portion 12 are inclined surfaces 24 of the dovetail groove 21. It comes into contact with and is prevented from coming off. And the overhang | projection parts 18 and 18 of the right and left both sides in the head 13 closely_contact | adhere to the upper surface of both the dovetail grooves 21 outside. Thus, the action of each part stabilizes the posture in the dovetail groove 21, and the contact between the bottom surface part 14 and the dovetail groove 21 has a large contact resistance and can withstand high loads, and the mounting state is strong. is there.

このような状態に装着した後、蓋体32を閉じると、図3(b)に示したように、シール材11は圧縮され、変形する。つまり、シール材11の頭部13が、蓋体13とその対向部との間で圧縮され変形するとともに、その変形による圧力が溝収容部12にかかって、溝収容部12も変形する。これによって、溝収容部12の上端部分や抜け止め傾斜面17,17、底面部14が、アリ溝21の対向部に圧接する。溝収容部12の上端部分、あるいは頭部13の下端部分は、アリ溝21の開口部22の口縁に接するが、アリ溝21の開口部22の口縁部22aは、アール状に形成され、また両者の間には隙間があるので、シール材11が徒に傷付いたり過度に擦れたりすることを回避できる。   When the lid 32 is closed after mounting in such a state, the sealing material 11 is compressed and deformed as shown in FIG. That is, the head portion 13 of the sealing material 11 is compressed and deformed between the lid body 13 and the facing portion thereof, and the pressure due to the deformation is applied to the groove accommodating portion 12 so that the groove accommodating portion 12 is also deformed. As a result, the upper end portion of the groove accommodating portion 12, the retaining slopes 17 and 17, and the bottom surface portion 14 are in pressure contact with the opposing portion of the dovetail groove 21. The upper end portion of the groove accommodating portion 12 or the lower end portion of the head portion 13 is in contact with the mouth edge of the opening portion 22 of the dovetail groove 21, but the mouth edge portion 22 a of the opening portion 22 of the dovetail groove 21 is formed in a round shape. Moreover, since there is a gap between the two, it is possible to avoid the seal material 11 from being damaged or rubbed excessively.

溝収容部12の圧縮変形により、抜け止め傾斜面17,17では圧力が高まり、アリ溝21の傾斜面24,24を下方から押圧するとともに、底面部14では、両側に向けて張るように圧力がかかる。このため、シール材11は、アリ溝21内に強力に固定された状態となる。   Due to the compression deformation of the groove accommodating portion 12, pressure is increased on the retaining slopes 17 and 17, and the slopes 24 and 24 of the dovetail groove 21 are pressed from below, and the bottom surface 14 is pressured toward both sides. It takes. For this reason, the sealing material 11 will be in the state firmly fixed in the dovetail groove 21.

また、溝収容部12がアリ溝21の底面23から浮くように形成されているので、頭部13が受ける荷重を溝収容部12側に良好に逃がすことができ、頭部13のみが極度の高荷重を受けることを回避して、耐久性のある良好なシール性を得ることができる。   Moreover, since the groove accommodating part 12 is formed so that it floats from the bottom face 23 of the dovetail 21, the load which the head 13 receives can be escaped favorably to the groove accommodating part 12 side, and only the head 13 is extreme. By avoiding receiving a high load, a durable and good sealing property can be obtained.

さらに、頭部13は、蓋体32とこれに対向する部分との間に介在し、その存在がなくなることはないので、如何に圧縮されようとも、蓋体32とその対向部とが相互に接触(メタルタッチ)することを皆無にすることができる。また、多少の寸法の誤差があったとしても、メタルタッチを防止することに影響はない。   Furthermore, since the head 13 is interposed between the lid 32 and the portion facing the lid 32 and does not lose its presence, the lid 32 and the facing portion are mutually connected regardless of how they are compressed. It is possible to eliminate contact (metal touch). Further, even if there are some dimensional errors, there is no effect on preventing metal touch.

また、頭部13における張り出し部18,18の下面18aが平面であるので、装着時においては、吸盤作用により安定性よく装着状態が保持される。しかも、上記の下面18aは、外側に向けて下がるように傾斜しているので、効率よく吸盤作用が得られる。   Moreover, since the lower surface 18a of the overhanging portions 18 and 18 in the head 13 is a flat surface, the mounted state is maintained with good stability by the sucker action during mounting. In addition, since the lower surface 18a is inclined so as to be lowered toward the outside, the sucker action can be efficiently obtained.

このため、真空装置31内を真空にしたとき、頭部13は幅の広い安定した形態に圧縮変形されており、捩れを起すこともなく、高い気密性を得られる。しかも、頭部13の正面は円弧状に湾曲した曲面で形成されているので、開閉に伴う圧縮と解放、真空と大気圧の圧力変化に際して掛かる力の偏りが少なく、捩れが発生することはなく、常に高い気密状態と、高い耐久性を得られる。   For this reason, when the inside of the vacuum device 31 is evacuated, the head 13 is compressed and deformed into a wide and stable form, and high airtightness can be obtained without causing twisting. In addition, since the front surface of the head 13 is formed by a curved surface that is curved in an arc shape, there is little bias in force applied when compression and release, opening and closing, and pressure changes between vacuum and atmospheric pressure, and twisting does not occur. High airtightness and high durability can always be obtained.

また、シール材11の捩れが発生しないので、シール材11の摩耗を抑制し、摩耗によって生ずる異物が内部空間に混入することを抑制できる。この結果、内部空間を高清浄空間にできる。   Further, since the twist of the sealing material 11 does not occur, it is possible to suppress the wear of the sealing material 11 and to prevent foreign matters generated by the wear from being mixed into the internal space. As a result, the internal space can be made a highly clean space.

上記のような効果を確認すべく、図1に示した形状のシール材11(以下、「本実施品」という。)と、比較例として図4に示したような形状をなすシール材101(以下、「比較例品」という。)を1年間ずつ、真空装置としての真空チャンバに使用した時の、シール材11,101の状態と、真空チャンバ内での異物の数を調べた。
比較例品は、前記特許文献1に開示されたシール材101で、その断面形状は次のとおりである。
下端部102が平らで、その幅は、アリ溝21の開口部22のそれよりも狭い。また、下端部102の両側から上に向けてテーパ状の傾斜面103,103有し、アリ溝21の深さ内において断面形状のうち最も幅広の最大幅部104を有する。この最大幅部104の上には、アリ溝21の傾斜面24,24における開口部22の下側部分に面で当接して抜け止めする抜け止め部105,105が形成され、抜け止め部105からは、上へ滑らかに連続して湾曲し、アリ溝21の開口部22から突出する上端面106が形成されている。
In order to confirm the above effects, the sealing material 11 having the shape shown in FIG. 1 (hereinafter referred to as “the present product”) and the sealing material 101 having the shape shown in FIG. 4 as a comparative example ( Hereinafter, the state of the sealing materials 11 and 101 and the number of foreign matters in the vacuum chamber when the “comparative product”) was used in a vacuum chamber as a vacuum device for one year were examined.
The comparative product is the sealing material 101 disclosed in Patent Document 1, and the cross-sectional shape thereof is as follows.
The lower end 102 is flat and its width is narrower than that of the opening 22 of the dovetail 21. Moreover, it has the taper-like inclined surfaces 103 and 103 toward the upper side from the both sides of the lower end part 102, and has the widest largest width part 104 among cross-sectional shapes within the depth of the dovetail groove 21. FIG. On the maximum width portion 104, retaining portions 105, 105 that abut against the lower portions of the openings 22 in the inclined surfaces 24, 24 of the dovetail groove 21 and prevent the retaining portions 105, 105 are formed. From the top, an upper end surface 106 that is smoothly and continuously curved upward and protrudes from the opening 22 of the dovetail groove 21 is formed.

図5は、本実施品の取付け直後、すなわち、一度も使用していない状態を示す蓋体の写真である。図中(a)は、蓋体の内側面の正面図、(b)は、それの斜視図である。   FIG. 5 is a photograph of the lid immediately after installation of the present product, that is, a state in which the product has never been used. In the figure, (a) is a front view of the inner surface of the lid, and (b) is a perspective view thereof.

図6は、本実施品を一年間使用した後、開閉の回数で言えば約46万回開閉した後の蓋体の写真である。同様に、図中(a)は、蓋体の内側面の正面図、(b)は、それの斜視図である。   FIG. 6 is a photograph of the lid after using this product for one year and then opening and closing approximately 460,000 times. Similarly, (a) is a front view of the inner side surface of the lid, and (b) is a perspective view thereof.

図7は、比較例品を、同様に一年間使用した後、開閉の回数で言えば約46万回開閉した後の蓋体の写真である。図中(a)は、蓋体の内側面の正面図、(b)は、それの斜視図である。   FIG. 7 is a photograph of the lid after the comparative example product was similarly used for one year and then opened and closed approximately 460,000 times. In the figure, (a) is a front view of the inner surface of the lid, and (b) is a perspective view thereof.

これらの写真(図7においては白抜きの楕円で囲った部分)に見られるように、比較例品の場合に、ほとんど捩れはないが、メタルタッチと、僅かだか発塵が確認できた。一方、本実施品の場合には、1年間使用した後も、使用前と同様に、シール材の捩れは見られず、メタルタッチや発塵、さらには偏摩耗、亀裂、変形も認められない。   As can be seen in these photographs (portion surrounded by a white oval in FIG. 7), in the case of the comparative example product, there was almost no twist, but metal touch and slight dust generation could be confirmed. On the other hand, in the case of this product, even after one year of use, as before the use, the seal material is not twisted, and metal touch and dust generation, as well as uneven wear, cracks, and deformation are not observed. .

このような違いは、図8に示したパーティクル数によっても、明らかである。
図8は、真空チャンバ内での異物の数を示すグラフで、たて軸に異物の数、よこ軸に日付をとったものである。グラフ中、「Cタイプ」とは、本実施品のことである。つまり、最初の1年間は比較例品を用いた場合で、後の1年間は本実施品を用いた場合である。
Such a difference is also apparent from the number of particles shown in FIG.
FIG. 8 is a graph showing the number of foreign objects in the vacuum chamber, wherein the vertical axis indicates the number of foreign objects and the horizontal axis indicates the date. In the graph, “C type” refers to this product. That is, the first year is the case where the comparative product is used, and the subsequent year is the case where the present product is used.

また、「搬送」は、空搬送の状態、すなわちチャンバ内で処理をしていない状態での異物の数を示しており、「AL」及び「TiN/Ti」は、チャンバ内で基板に対して膜形成を行っている状態でのそれぞれの異物の数を示しており、「逆スパッタ」は、チャンバ内で基板表面の不純物を除去している状態での異物の数を示している。   “Transport” indicates the number of foreign matters in an empty transport state, that is, in a state in which processing is not performed in the chamber, and “AL” and “TiN / Ti” are relative to the substrate in the chamber. The number of foreign matters in the state where film formation is performed is shown. “Reverse sputtering” shows the number of foreign matters in a state where impurities on the substrate surface are removed in the chamber.

なお、「搬送」、「AL」、「TiN/Ti」、「逆スパッタ」の各グラフにおいて、たて軸における個数の目盛り間隔が異なる。「搬送」の場合は、5個単位で30個まで、「AL」及び「TiN/Ti」の場合には10個単位で60個まで、「逆スパッタ」では5個単位で50個までの目盛りを有する。   It should be noted that the scale intervals of the number on the vertical axis are different in the graphs of “transport”, “AL”, “TiN / Ti”, and “reverse sputtering”. In the case of “Transfer”, the scale is up to 30 in units of 5; in the case of “AL” and “TiN / Ti”, the scale is up to 60 in units of 10; Have

これらのグラフから明らかなように、比較例品の場合には、パーティクルの数にバラツキがあり、突出する値が見られる。一方、本実施例品の場合には、比較例品の場合に比して、全体として安定しており、突出する値は見られない。   As is apparent from these graphs, in the case of the comparative example product, the number of particles varies, and a protruding value is seen. On the other hand, in the case of the product of this example, it is stable as a whole as compared with the case of the comparative product, and no protruding value is seen.

このように、パーティクルの個数に突出が見られない本実施品の場合には、チャンバ内でパーティクルが暴れまわるようなことなく、製品の不良発生率を抑えることができる。   In this way, in the case of the present product in which no protrusion is seen in the number of particles, it is possible to suppress the defect occurrence rate of the product without causing the particles to run out in the chamber.

なお、この発明は、上記の一形態の構成のみに限定されるものではなく、その他の形態を採用することができる。
たとえば、張り出し部は、アリ溝の溝幅方向の一方のみに張り出すように形成されるもよい。
また、溝収容部は、上記のような形態以外のものであるもよい。
In addition, this invention is not limited only to the structure of said one form, Other forms can be employ | adopted.
For example, the projecting portion may be formed so as to project only on one side in the groove width direction of the dovetail groove.
Further, the groove accommodating portion may be other than the above-described form.

アリ溝用シール材とアリ溝の断面図。Sectional drawing of the sealing material for dovetails and an dovetail. アリ溝用シール材の使用状態の説明図。Explanatory drawing of the use condition of the dovetail seal material. アリ溝用シール材の装着状態と作用状態の断面図。Sectional drawing of the mounting state and action state of the dovetail seal material. 比較例に係るシール材の断面図。Sectional drawing of the sealing material which concerns on a comparative example. 本実施品の装着状態の写真。A picture of the wearing state of this product. 本実施品を1年間使用した後の写真。Photo after using this product for one year. 比較例品を1年間使用した後の写真。Photo after using the comparative product for one year. 本実施品と比較例品でのパーティクル数の違いを示すグラフ。The graph which shows the difference in the number of particles with this execution product and a comparative example product.

符号の説明Explanation of symbols

11…アリ溝用シール材
12…溝収容部
13…頭部
14…底面部
15…嵌め込み傾斜面
16…湾曲部
16a…最大幅部
17…抜け止め傾斜面
18…張り出し部
18a…下面
19…上面
21…アリ溝
22…開口部
23…底面
24…傾斜面
DESCRIPTION OF SYMBOLS 11 ... Sealing material for dovetails 12 ... Groove accommodating part 13 ... Head part 14 ... Bottom part 15 ... Insertion inclined surface 16 ... Curved part 16a ... Maximum width part 17 ... Retaining prevention inclined surface 18 ... Overhang part 18a ... Lower surface 19 ... Upper surface 21 ... Dovetail groove 22 ... Opening 23 ... Bottom 24 ... Inclined surface

Claims (7)

アリ溝に嵌め込んで使用されるアリ溝用シール材であって、
当該アリ溝用シール材の断面形状におけるアリ溝内に収容される溝収容部の上に、アリ溝の開口部から突出する頭部が形成されるとともに、
該頭部には、アリ溝の溝幅方向外側の側部に張り出す張り出し部が形成された
アリ溝用シール材。
It is a sealing material for dovetails used by fitting in dovetails,
On the groove accommodating portion accommodated in the dovetail groove in the cross-sectional shape of the dovetail seal material, a head protruding from the opening of the dovetail groove is formed,
The dovetail seal material, wherein the head is provided with an overhanging portion that projects to the outer side of the dovetail groove in the groove width direction.
前記頭部における溝収容部より張り出す部分の下面が、アリ溝の外側縁部の上面に密着する平面に形成された
請求項1に記載のアリ溝用シール材。
The dovetail groove sealing material according to claim 1, wherein a lower surface of a portion of the head protruding from the groove accommodating portion is formed on a flat surface that is in close contact with an upper surface of an outer edge portion of the dovetail groove.
前記頭部における溝収容部より張り出す部分の下面が、溝幅方向の外側に向けて下がるように傾斜する
請求項2に記載のアリ溝用シール材。
The dovetail seal material according to claim 2, wherein a lower surface of a portion of the head that protrudes from the groove housing portion is inclined so as to be lowered toward the outside in the groove width direction.
前記頭部の上面が、円弧状に形成された
請求項1から請求項3のうちのいずれか一項に記載のアリ溝用シール材。
The dovetail seal material according to any one of claims 1 to 3, wherein an upper surface of the head is formed in an arc shape.
前記溝収容部が、アリ溝内に収容された非加圧状態で、アリ溝の底面から浮くように形成された
請求項1から請求項4のうちのいずれか一項に記載のアリ溝用シール材。
The dovetail part according to any one of claims 1 to 4, wherein the groove housing part is formed so as to float from the bottom surface of the dovetail groove in a non-pressurized state housed in the dovetail groove. Seal material.
前記溝収容部が、アリ溝の開口部と同一またはそれよりも幅狭の底面部と、
該底面部から上方に先太りになるように傾く嵌め込み傾斜面と、
該嵌め込み傾斜面の上方において溝幅方向に張り出し、アリ溝の開口部よりも幅広で断面形状における最も幅広となる最大幅部を形成する湾曲部と、
該湾曲部から先細るように上に延びてアリ溝の開口部より下側の傾斜面に当接する抜け止め傾斜面とを有した
請求項1から請求項5のうちのいずれか一項に記載のアリ溝用シール材。
The groove accommodating portion is the same as or narrower than the opening of the dovetail groove, and a bottom surface portion;
A fitting inclined surface which is inclined so as to be tapered upward from the bottom surface portion;
A curved portion that extends in the groove width direction above the fitting inclined surface, forms a maximum width portion that is wider than the opening of the dovetail groove and is the widest in the cross-sectional shape, and
6. The retaining slope according to claim 1, further comprising a retaining slope that extends upward so as to taper from the curved portion and abuts against a slope that is lower than the opening of the dovetail. Sealing material for dovetail.
前記溝収容部の上端部分の幅が、アリ溝の開口部よりも幅狭である
請求項1から請求項6のうちのいずれか一項に記載のアリ溝用シール材。
The ant groove sealing material according to any one of claims 1 to 6, wherein a width of an upper end portion of the groove accommodating part is narrower than an opening part of the ant groove.
JP2007148034A 2007-06-04 2007-06-04 Dovetail seal material Active JP4871217B2 (en)

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WO2014057803A1 (en) * 2012-10-09 2014-04-17 日本バルカー工業株式会社 Composite seal
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CN109906502A (en) * 2016-11-10 2019-06-18 应用材料公司 Manufacture load port equipment, the system and method for electronic device
CN109906502B (en) * 2016-11-10 2023-10-17 应用材料公司 Load port apparatus, system and method of manufacturing electronic devices
US20210025497A1 (en) * 2019-07-26 2021-01-28 Valqua, Ltd. Support member

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