TW202117189A - Turbo molecular pump and dustproof rotor element thereof - Google Patents

Turbo molecular pump and dustproof rotor element thereof Download PDF

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TW202117189A
TW202117189A TW108138341A TW108138341A TW202117189A TW 202117189 A TW202117189 A TW 202117189A TW 108138341 A TW108138341 A TW 108138341A TW 108138341 A TW108138341 A TW 108138341A TW 202117189 A TW202117189 A TW 202117189A
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Taiwan
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cover
dust
positioning structure
rotor
connecting chamber
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TW108138341A
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Chinese (zh)
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TWI730470B (en
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戴暐城
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致揚科技股份有限公司
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Abstract

A turbo molecular pump and a dustproof rotor element thereof are provided. The dustproof rotor element includes a rotor body, a plurality of rotor blade assembly and a dustproof cover. The rotor body has an exposed connection space. The dustproof cover is configured to seal the connection space and includes a cover body and a positioning structure. The cover body has two pressure-balancing holes that are in air communication with the connection space. The positioning structure extends from the cover body into the connection space, so as to seal the connection space. When the turbo molecular pump is in use, the dustproof cover can prevent particle substances from depositing in the connection space of the rotor body, and can eliminate the pressure difference between the inside and outside of the connection space.

Description

渦輪分子幫浦及其防塵式轉子元件Turbo molecular pump and its dust-proof rotor element

本發明涉及一種真空幫浦及其轉子,特別是涉及一種渦輪分子幫浦及其防塵式轉子。The invention relates to a vacuum pump and its rotor, in particular to a turbomolecular pump and its dust-proof rotor.

目前主要的半導體製程例如離子佈植、爐管、薄膜濺鍍、電漿蝕刻、化學機械研磨等,都需要在高真空的製程中的空腔體內進行;因此,係空腔體的真空環境是影響製程良率的關鍵因素之一,而潔淨穩定的真空環境有助於提高製程良率。渦輪分子幫浦作為真空系統的心臟,是利用轉子相對於定子進行高速旋轉,將氣體排出製程空腔體而產生高真空環境。At present, the main semiconductor manufacturing processes such as ion implantation, furnace tube, thin film sputtering, plasma etching, chemical mechanical polishing, etc., all need to be carried out in the cavity of the high vacuum process; therefore, the vacuum environment of the cavity is One of the key factors affecting the process yield, and a clean and stable vacuum environment helps to improve the process yield. As the heart of the vacuum system, the turbomolecular pump uses the rotor to rotate at a high speed relative to the stator to discharge the gas out of the process cavity to create a high vacuum environment.

然而,一些半導體製程會於幫浦內產生大量微粒,這些微粒很容易在接觸氣體的地方(如轉子及排氣口)堆積,造成排氣效率降低而影響抽真空效率。此外,這些微粒也很容易在一些外露的鎖固區域堆積,並在壓力發生變化時隨著不穩定的氣流飛揚移動而回到製程空腔體內造成汙染。However, some semiconductor manufacturing processes will generate a large number of particles in the pump. These particles are easy to accumulate in the gas-contacting places (such as the rotor and the exhaust port), which reduces the exhaust efficiency and affects the vacuum efficiency. In addition, these particles are also easy to accumulate in some exposed locking areas, and when the pressure changes, they move with the unstable airflow and return to the process cavity to cause pollution.

故,如何通過結構設計的改良,來提升渦輪分子幫浦的可靠性,以及提高製程良率,已成為該項事業所欲解決的重要課題之一。Therefore, how to improve the reliability of turbomolecular pumps and increase the process yield through structural design improvements has become one of the important issues that this business intends to solve.

本發明所要解決的技術問題在於,針對現有技術的不足提供一種防塵式轉子,其能兼顧製程良率與幫浦內部的壓力平衡。並且,提供一種使用此防塵式轉子的渦輪分子幫浦。The technical problem to be solved by the present invention is to provide a dust-proof rotor in view of the shortcomings of the prior art, which can take into account the process yield and the pressure balance inside the pump. In addition, a turbomolecular pump using the dust-proof rotor is provided.

為了解決上述的技術問題,本發明所採用的其中一技術方案是,提供一種防塵式轉子元件,其包括一轉子座、多個轉子葉片組以及一防塵蓋。所述轉子座具有外露的一連接室,多個所述轉子葉片組連接於所述轉子座且呈間隔排列,所述防塵蓋用以密封所述連接室;其中所述防塵蓋包括一蓋體以及一定位結構,所述蓋體具有兩個相對設置且與所述連接室氣體連通的氣壓平衡孔,所述定位結構從所述蓋體的底部延伸進入所述連接室,且與所述連接室之間形成密封。In order to solve the above technical problems, one of the technical solutions adopted by the present invention is to provide a dust-proof rotor element, which includes a rotor seat, a plurality of rotor blade groups, and a dust cover. The rotor base has an exposed connecting chamber, a plurality of the rotor blade groups are connected to the rotor base and arranged at intervals, and the dust cover is used to seal the connecting chamber; wherein the dust cover includes a cover body And a positioning structure, the cover body has two pressure balance holes arranged oppositely and in gas communication with the connecting chamber, and the positioning structure extends from the bottom of the cover body into the connecting chamber and is connected to the connecting chamber. A seal is formed between the chambers.

為了解決上述的技術問題,本發明所採用的另外一技術方案是,提供一種渦輪分子幫浦,其包括一外殼、一定子元件、一防塵式轉子元件以及一高速轉軸。所述外殼具有一空腔體,所述定子元件設置於所述空腔體內,且包括多個呈間隔排列的定子葉片組,所述種防塵式轉子元件設置於所述空腔體內,且包括一轉子座、多個轉子葉片組以及一防塵蓋,所述高速轉軸用以驅動所述防塵式轉子元件相對於所述定子元件轉動;所述轉子座具有外露的一連接室,多個所述轉子葉片組連接於所述轉子座,且與多個所述定子葉片組上下交替排列,所述防塵蓋用以密封所述連接室;其中所述防塵蓋包括一蓋體以及一定位結構,所述蓋體具有兩個相對設置且與所述連接室氣體連通的氣壓平衡孔,所述定位結構從所述蓋體的底部延伸進入所述連接室,且與所述連接室之間形成密封。In order to solve the above technical problem, another technical solution adopted by the present invention is to provide a turbomolecular pump, which includes a casing, a stator element, a dust-proof rotor element and a high-speed rotating shaft. The housing has a cavity, the stator element is arranged in the cavity, and includes a plurality of stator blade groups arranged at intervals, and the dust-proof rotor element is arranged in the cavity and includes a A rotor base, a plurality of rotor blade groups, and a dust cover, the high-speed rotating shaft is used to drive the dust-proof rotor element to rotate relative to the stator element; the rotor base has an exposed connecting chamber, and a plurality of the rotors The blade group is connected to the rotor seat and is arranged alternately up and down with a plurality of the stator blade groups. The dust cover is used to seal the connection chamber; wherein the dust cover includes a cover body and a positioning structure. The cover body has two gas pressure balance holes which are arranged oppositely and are in gas communication with the connecting chamber. The positioning structure extends from the bottom of the cover body into the connecting chamber and forms a seal with the connecting chamber.

在本發明的一實施例中,所述轉子座的內部具有一隔板用以界定出所述連接室,且所述隔板上設有一連通所述連接室的連接通道;所述高速轉軸包括一軸體以及一從所述軸體延伸形成的延伸部,且所述延伸部的位置對應所述連接通道;所述防塵蓋還包括一連接結構,其設置於所述定位結構的內側,且所述連接結構與所述高速轉軸的所述延伸部固定在一起。In an embodiment of the present invention, a partition is provided inside the rotor base to define the connecting chamber, and a connecting passage communicating with the connecting chamber is provided on the partition; the high-speed rotating shaft It includes a shaft body and an extension part extending from the shaft body, and the position of the extension part corresponds to the connecting channel; the dust-proof cover also includes a connecting structure, which is arranged on the inner side of the positioning structure, and The connecting structure is fixed together with the extension part of the high-speed rotating shaft.

在本發明的一實施例中,所述軸體具有一中央區域以及一環繞所述中央區域的周邊區域,所述延伸部是從所述中央區域延伸進入所述連接通道。In an embodiment of the present invention, the shaft body has a central area and a peripheral area surrounding the central area, and the extension portion extends from the central area into the connecting passage.

在本發明的一實施例中,所述蓋體蓋合於所述連接室上。In an embodiment of the present invention, the cover is closed on the connecting chamber.

在本發明的一實施例中,兩個所述氣壓平衡孔內各具有一柱狀體,兩個所述柱狀體能被施加外力,以使所述防塵蓋相對於所述轉子座轉動。In an embodiment of the present invention, each of the two air pressure balance holes has a columnar body, and the two columnar bodies can be applied with external force to make the dust cover rotate relative to the rotor base.

在本發明的一實施例中,所述防塵蓋還包括一彈性密封環,其設置於所述定位結構上。In an embodiment of the present invention, the dust cover further includes an elastic sealing ring, which is arranged on the positioning structure.

在本發明的一實施例中,所述定位結構具有一卡槽,且所述彈性密封環藉由所述卡槽固定於所述定位結構上。In an embodiment of the present invention, the positioning structure has a groove, and the elastic sealing ring is fixed on the positioning structure by the groove.

在本發明的一實施例中,所述蓋體具有一外側表面,所述定位結構具有一相對於所述外側表面的內側表面,且兩個所述氣壓平衡孔從所述外側表面延伸至所述內側表面。In an embodiment of the present invention, the cover has an outer surface, the positioning structure has an inner surface opposite to the outer surface, and the two air pressure balance holes extend from the outer surface to the outer surface. Mentioned inner surface.

在本發明的一實施例中,所述蓋體還具有兩個相對設置的配重孔。In an embodiment of the present invention, the cover body further has two counterweight holes arranged oppositely.

在本發明的一實施例中,所述定位結構具有一倒勾部,所述倒勾部與所述蓋體之間存在一間隙,且具有一面向所述連接室的邊界的導引面;其中所述導引面為一斜面。In an embodiment of the present invention, the positioning structure has an undercut portion, a gap exists between the undercut portion and the cover, and a guide surface facing the boundary of the connecting chamber; The guiding surface is an inclined surface.

本發明的其中一有益效果在於,本發明所提供的防塵式轉子元件,其能通過“轉子座具有一連接室用以組接高速轉軸,防塵蓋包括一蓋體及一定位結構,其中蓋體具有兩個相對設置且與連接室氣體連通的氣壓平衡孔,定位結構從蓋體的底部延伸進入連接室,且與連接室之間形成密封”的技術方案,以防止製程產生的微粒沉積於連接室,並確保連接室的壓力與幫浦內部壓力平衡一致,避免產生不穩定的氣流將微粒帶回到製程空腔體內造成汙染。One of the beneficial effects of the present invention is that the dust-proof rotor element provided by the present invention can be connected to a high-speed rotating shaft through a connecting chamber of the rotor base. The dust-proof cover includes a cover body and a positioning structure, wherein the cover body There are two pressure balance holes arranged oppositely and connected to the connecting chamber. The positioning structure extends from the bottom of the cover into the connecting chamber and forms a seal with the connecting chamber to prevent the particles generated in the process from being deposited on the connecting chamber. Make sure that the pressure of the connecting chamber is consistent with the internal pressure of the pump to avoid generating unstable airflow to bring the particles back into the process cavity and cause pollution.

為使能更進一步瞭解本發明的特徵及技術內容,請參閱以下有關本發明的詳細說明與圖式,然而所提供的圖式僅用於提供參考與說明,並非用來對本發明加以限制。In order to further understand the features and technical content of the present invention, please refer to the following detailed description and drawings about the present invention. However, the drawings provided are only for reference and description, and are not used to limit the present invention.

在半導體製造過程中,許多製程階段都存在由隨機微粒缺陷引起的良率損失問題,因此本發明提供一種用於對製程空腔體抽真空的渦輪分子幫浦,其改良在於採用防塵式轉子元件;使用時,防塵式轉子元件不僅能防止製程產生的微粒沉積於其與轉軸的連接室,而且還能確保連接室的壓力與幫浦內部壓力平衡一致,以防止微粒飛揚移動回到製程空腔體內造成汙染。In the semiconductor manufacturing process, many process stages have the problem of yield loss caused by random particle defects. Therefore, the present invention provides a turbomolecular pump for vacuuming the process cavity. The improvement lies in the use of dust-proof rotor elements. ; When in use, the dust-proof rotor element can not only prevent the particles generated by the process from being deposited in the connecting chamber with the shaft, but also ensure that the pressure in the connecting chamber is balanced with the internal pressure of the pump to prevent the particles from flying and moving back to the process cavity Pollution in the body.

以下是通過特定的具體實施例來說明本發明所公開有關“渦輪分子幫浦及其防塵式轉子元件”的實施方式,本領域技術人員可由本說明書所公開的內容瞭解本發明的優點與效果。本發明可通過其他不同的具體實施例加以施行或應用,本說明書中的各項細節也可基於不同觀點與應用,在不悖離本發明的構思下進行各種修改與變更。另外,本發明的附圖僅為簡單示意說明,並非依實際尺寸的描繪,事先聲明。以下的實施方式將進一步詳細說明本發明的相關技術內容,但所公開的內容並非用以限制本發明的保護範圍。The following is a specific embodiment to illustrate the implementation of the “turbomolecular pump and its dust-proof rotor element” disclosed in the present invention. Those skilled in the art can understand the advantages and effects of the present invention from the content disclosed in this specification. The present invention can be implemented or applied through other different specific embodiments, and various details in this specification can also be based on different viewpoints and applications, and various modifications and changes can be made without departing from the concept of the present invention. In addition, the drawings of the present invention are merely schematic illustrations, and are not drawn according to actual dimensions, and are stated in advance. The following embodiments will further describe the related technical content of the present invention in detail, but the disclosed content is not intended to limit the protection scope of the present invention.

應當可以理解的是,雖然本文中可能會使用到“第一”、“第二”、“第三”等術語來描述各種元件或者信號,但這些元件或者信號不應受這些術語的限制。這些術語主要是用以區分一元件與另一元件,或者一信號與另一信號。另外,本文中所使用的術語“或”,應視實際情況可能包括相關聯的列出項目中的任一個或者多個的組合。It should be understood that although terms such as "first", "second", and "third" may be used herein to describe various elements or signals, these elements or signals should not be limited by these terms. These terms are mainly used to distinguish one element from another, or one signal from another signal. In addition, the term "or" used in this document may include any one or a combination of more of the associated listed items depending on the actual situation.

[第一實施例][First Embodiment]

參閱圖1至圖4所示,本發明的渦輪分子幫浦Z主要包括一外殼1、一定子元件2、一防塵式轉子元件3及一高速轉軸4。外殼1具有一空腔體100,定子元件2、防塵式轉子元件3與高速轉軸4都設置於空腔體100內,且防塵式轉子元件3能被高速轉軸4帶動而相對於定子元件2高速轉動。渦輪分子幫浦Z可通過管線連接到一半導體製程設備的處理腔室(圖未室),將處理腔室抽至特定半導體製程(如蝕刻製程)所需的真空度,但本發明並不限制於此。1 to 4, the turbomolecular pump Z of the present invention mainly includes a housing 1, a stator element 2, a dust-proof rotor element 3, and a high-speed rotating shaft 4. The housing 1 has a cavity 100. The stator element 2, the dust-proof rotor element 3 and the high-speed rotating shaft 4 are all arranged in the cavity 100, and the dust-proof rotor element 3 can be driven by the high-speed rotating shaft 4 to rotate at a high speed relative to the stator element 2 . The turbomolecular pump Z can be connected to a processing chamber (not shown in the figure) of a semiconductor process equipment through a pipeline to pump the processing chamber to the vacuum required for a specific semiconductor process (such as an etching process), but the present invention is not limited Here.

實際應用時,渦輪分子幫浦Z還包括一底座5,用以組立外殼1、定子元件2、防塵式轉子元件3與高速轉軸4。底座5上設有一排氣口500,且底座5包括一軸承機構51及一驅動單元52(如馬達),高速轉軸4設置於軸承機構51上,軸承機構51能產生磁力以支撐高速轉軸4,驅動單元52能驅動高速轉軸4進行高速轉動。關於軸承機構51的組成,包括機械軸承、徑向磁軸承及軸向磁軸承等,為本領域技術人員所熟知,故在此不加以贅述。In practical applications, the turbomolecular pump Z also includes a base 5 for assembling the housing 1, the stator element 2, the dust-proof rotor element 3, and the high-speed rotating shaft 4. An exhaust port 500 is provided on the base 5, and the base 5 includes a bearing mechanism 51 and a driving unit 52 (such as a motor). The high-speed rotating shaft 4 is arranged on the bearing mechanism 51. The bearing mechanism 51 can generate magnetic force to support the high-speed rotating shaft 4. The driving unit 52 can drive the high-speed rotating shaft 4 for high-speed rotation. The composition of the bearing mechanism 51, including mechanical bearings, radial magnetic bearings, axial magnetic bearings, etc., is well known to those skilled in the art, so it will not be repeated here.

外殼1為兩件式外殼,其包括一第一殼體11及一第二殼體12;第一殼體11例如為上殼體,第二殼體12例如為下殼體,且第一殼體11與第二殼體12可通過鎖固方式結合成為一體;第一殼體11與第二殼體12的主要部分呈圓筒狀,且共同圍構形成空腔體100。進一步而言,第一殼體11與第二殼體12具有氣體導引功能,其中第一殼體11界定出空腔體100的上游區域,且第一殼體11具有一連通於空腔體100的進氣口111;另外,第二殼體12界定出空腔體100的下游區域,第二殼體12的內壁設有一螺紋狀的導氣槽121。然而,這些細節只是在描述外殼1的可行的實施方案而並非用以限定本發明。在一些實施例中,根據實際需要,外殼1也可為一件式外殼。The housing 1 is a two-piece housing, which includes a first housing 11 and a second housing 12; the first housing 11 is, for example, an upper housing, the second housing 12 is, for example, a lower housing, and the first housing The body 11 and the second shell 12 can be combined into one body by a locking method; the main parts of the first shell 11 and the second shell 12 are cylindrical, and they jointly form a cavity body 100. Furthermore, the first housing 11 and the second housing 12 have a gas guiding function, wherein the first housing 11 defines an upstream area of the cavity 100, and the first housing 11 has a communication with the cavity In addition, the second housing 12 defines the downstream area of the cavity 100, and the inner wall of the second housing 12 is provided with a threaded air guide groove 121. However, these details are only for describing possible embodiments of the housing 1 and are not intended to limit the present invention. In some embodiments, the housing 1 may also be a one-piece housing according to actual needs.

當渦輪分子幫浦Z進行抽真空時,氣體會從進氣口111流入空腔體100,並流經由外殼1、定子元件2與防塵式轉子元件3之間的通道,再於導氣槽121被壓縮後從排氣口500排出。When the turbomolecular pump Z is evacuated, the gas will flow into the cavity 100 from the air inlet 111, and flow through the passage between the housing 1, the stator element 2 and the dust-proof rotor element 3, and then enter the air guide groove 121 After being compressed, it is discharged from the exhaust port 500.

參閱圖1至圖4,配合圖5及圖6所示,定子元件2與防塵式轉子元件3的位置相對應,定子元件2包括多個間隔件21及多個定子葉片組22,其中多個定子葉片組22在徑向上延伸,且分別藉由多個間隔件21連接第一殼體11的內壁,而呈上下分層設置;間隔件21可呈環狀,但不限於此。防塵式轉子元件3包括一轉子座31、多個轉子葉片組32及一防塵蓋33,其中轉子座31具有外露的一連接室300,用以組接高速轉軸4;多個轉子葉片組32連接於轉子座31,多個轉子葉片組32也在徑向上延伸,且與多個定子葉片組22交替排列;防塵蓋33用以密封連接室300。Referring to Figures 1 to 4, in conjunction with Figures 5 and 6, the stator element 2 corresponds to the position of the dust-proof rotor element 3. The stator element 2 includes a plurality of spacers 21 and a plurality of stator blade groups 22. The stator blade group 22 extends in the radial direction, and is connected to the inner wall of the first housing 11 by a plurality of spacers 21 respectively, and is arranged in layers up and down; the spacers 21 may be ring-shaped, but are not limited thereto. The dust-proof rotor element 3 includes a rotor seat 31, a plurality of rotor blade groups 32, and a dust cover 33, wherein the rotor seat 31 has an exposed connecting chamber 300 for assembling the high-speed rotating shaft 4; the plurality of rotor blade groups 32 are connected In the rotor seat 31, a plurality of rotor blade groups 32 also extend in the radial direction and are alternately arranged with the plurality of stator blade groups 22; the dust cover 33 is used to seal the connecting chamber 300.

進一步而言,每一個定子葉片組22包括多個定子葉片221,每一個轉子葉片組32包括多個轉子葉片321;多個轉子葉片321的傾斜方向與多個定子葉片221的傾斜方向相反,並且,上層的定子葉片221的傾斜角度大於或等於下層的定子葉片221的傾斜角度,上層的轉子葉片321的傾斜角度大於或等於下層的轉子葉片321的傾斜角度。藉此,可以確保氣體分子不可逆地從進氣口111流動到排氣口500。然而,每一個定子葉片組22所包括定子葉片221的數量和傾斜角度,以及每一個轉子葉片組32所包括轉子葉片321的數量和傾斜角度沒有特別的限制。在一些實施例中,根據定子葉片組22所在的層級不同,定子葉片221的數量可以在16片至48片之間做選擇,而定子葉片221的傾斜角度可以在13度至45度之間做調整;類似地,根據轉子葉片組32所在的層級不同,轉子葉片321的數量可以在25片至56片之間做選擇,而轉子葉片321的傾斜角度可以在13度至45度之間做調整。Furthermore, each stator blade group 22 includes a plurality of stator blades 221, and each rotor blade group 32 includes a plurality of rotor blades 321; the inclination direction of the plurality of rotor blades 321 is opposite to the inclination direction of the plurality of stator blades 221, and The inclination angle of the upper stator blades 221 is greater than or equal to the inclination angle of the lower stator blades 221, and the inclination angle of the upper rotor blades 321 is greater than or equal to the inclination angle of the lower rotor blades 321. Thereby, it can be ensured that the gas molecules irreversibly flow from the air inlet 111 to the air outlet 500. However, the number and the inclination angle of the stator blades 221 included in each stator blade group 22 and the number and the inclination angle of the rotor blades 321 included in each rotor blade group 32 are not particularly limited. In some embodiments, depending on the level of the stator blade group 22, the number of stator blades 221 can be selected from 16 to 48, and the inclination angle of the stator blades 221 can be between 13 degrees and 45 degrees. Adjustment; similarly, according to the different levels of the rotor blade group 32, the number of rotor blades 321 can be selected from 25 to 56, and the inclination angle of the rotor blades 321 can be adjusted between 13 degrees and 45 degrees .

轉子座31包括一第一座體311及一第二座體312,第一座體311的位置對應第一殼體11,且第二座體312的位置對應第二殼體12;其中連接室300是從第一座體311的頂部向下凹陷形成,且位置對應第一殼體11的進氣口111,多個轉子葉片321是從第一座體311的外壁延伸形成。在本實施例中,多個轉子葉片組32、第一座體311與第二座體312為一體成型;第一座體311朝接近進氣口111的方向呈漸縮狀,第二座體312呈圓筒狀。然而,這些細節只是在描述定子元件2與防塵式轉子元件3的可行的實施方案而並非用以限定本發明。The rotor seat 31 includes a first seat body 311 and a second seat body 312. The position of the first seat body 311 corresponds to the first housing 11, and the position of the second seat body 312 corresponds to the second housing 12; 300 is formed by being recessed downward from the top of the first seat body 311, and the position corresponds to the air inlet 111 of the first housing 11, and a plurality of rotor blades 321 are formed by extending from the outer wall of the first seat body 311. In this embodiment, the plurality of rotor blade groups 32, the first seat body 311, and the second seat body 312 are integrally formed; the first seat body 311 is tapered toward the air inlet 111, and the second seat body 312 is cylindrical. However, these details are only to describe possible implementations of the stator element 2 and the dust-proof rotor element 3 and are not intended to limit the present invention.

參閱圖5至圖8所示,防塵蓋33包括一蓋體331、一定位結構332及一連接結構333,其中蓋體331蓋合於連接室300上,且具有至少兩個相對設置且與連接室300氣體連通的氣壓平衡孔H1,優選為兩個或四個;定位結構332從蓋體331的底部延伸進入連接室300,且與連接室300之間形成密封;連接結構333設置於定位結構332的內側,用以連接高速轉軸4,並使高速轉軸4處於直立狀態。值得注意的是,當防塵式轉子元件3高速轉動時,防塵蓋33能有效阻隔製程微粒進入連接室300,以及通過氣壓平衡孔H1使連接室300的壓力與幫浦內部壓力保持一致,以避免產生不穩定的氣流將微粒帶回到製程空腔體內造成汙染。5 to 8, the dust cover 33 includes a cover 331, a positioning structure 332 and a connecting structure 333, wherein the cover 331 covers the connecting chamber 300, and has at least two oppositely arranged and connected with The gas pressure balance holes H1 of the chamber 300 are preferably two or four; the positioning structure 332 extends from the bottom of the cover 331 into the connecting chamber 300 and forms a seal with the connecting chamber 300; the connecting structure 333 is arranged in the positioning structure The inner side of 332 is used to connect the high-speed shaft 4 and make the high-speed shaft 4 in an upright state. It is worth noting that when the dustproof rotor element 3 rotates at high speed, the dustproof cover 33 can effectively block the process particles from entering the connecting chamber 300, and keep the pressure of the connecting chamber 300 consistent with the internal pressure of the pump through the air pressure balance hole H1 to avoid An unstable air flow is generated to bring the particles back into the process cavity and cause pollution.

此外,氣壓平衡孔H1也能達到調整轉子動平衡配重的效果,即,氣壓平衡孔H1能減少配重,以提高轉子的動平衡精度。根據實際需要,蓋體331上避開氣壓平衡孔H1所在位置另外可具有至少兩個相對設置的配重孔H2,如圖5所示。在本實施例中,氣壓平衡孔H1貫穿蓋體331的外側表面S1與定位結構332的內側表面S2,即,從蓋體331的外側表面S1延伸至定位結構332的內側表面S2,如圖7所示,但不限於此。實際應用時,配重孔H2可以貫穿或不貫穿蓋體331的外側表面S1與定位結構332的內側表面S2,只要不影響轉子的高速動平衡即可。In addition, the air pressure balance hole H1 can also achieve the effect of adjusting the rotor's dynamic balance weight, that is, the air pressure balance hole H1 can reduce the weight to improve the dynamic balance accuracy of the rotor. According to actual needs, the cover 331 may have at least two counterweight holes H2 opposite to the position where the air balance hole H1 is located, as shown in FIG. 5. In this embodiment, the air pressure balance hole H1 penetrates the outer surface S1 of the cover 331 and the inner surface S2 of the positioning structure 332, that is, extends from the outer surface S1 of the cover 331 to the inner surface S2 of the positioning structure 332, as shown in FIG. Shown, but not limited to this. In practical applications, the counterweight hole H2 may or may not penetrate the outer surface S1 of the cover 331 and the inner surface S2 of the positioning structure 332, as long as it does not affect the high-speed dynamic balance of the rotor.

進一步而言,定位結構332可為一環形凸肋,連接結構333可包括一圓筒部3331及一結合於圓筒部3331上的連接部3332;圓筒部3331與連接部3332可為兩個分開的部位,如此防塵蓋33能夠適應不同型號的轉軸,以及增加轉子的結構強度。圓筒部3331與連接部3332可以螺接方式結合,即,圓筒部3331具有一內螺紋且連接部3332具有一外螺紋,但本發明並不限制於此。在一些實施例中,圓筒部3331與連接部可為一體成型。值得注意的是,蓋體331具有一中央最高點T,且蓋體331的高度由中央最高點T向外以特定的斜率或曲率漸減;藉此,蓋體331能發揮導引氣體的功能,即,從第一殼體11的進氣口111流入的氣體能順著蓋體331的上表面流向轉子和定子葉片321、221所在的區域,以及避免微粒沉積於蓋體331上。Furthermore, the positioning structure 332 may be an annular rib, and the connecting structure 333 may include a cylindrical portion 3331 and a connecting portion 3332 coupled to the cylindrical portion 3331; the cylindrical portion 3331 and the connecting portion 3332 may be two separate parts. In this way, the dust cover 33 can adapt to different types of shafts and increase the structural strength of the rotor. The cylindrical portion 3331 and the connecting portion 3332 can be combined by screwing, that is, the cylindrical portion 3331 has an internal thread and the connecting portion 3332 has an external thread, but the present invention is not limited to this. In some embodiments, the cylindrical portion 3331 and the connecting portion may be integrally formed. It is worth noting that the cover 331 has a central highest point T, and the height of the cover 331 gradually decreases from the central highest point T outwards with a specific slope or curvature; thereby, the cover 331 can perform the function of guiding gas. That is, the gas flowing in from the air inlet 111 of the first housing 11 can flow along the upper surface of the cover 331 to the area where the rotor and stator blades 321 and 221 are located, and particles are prevented from being deposited on the cover 331.

參閱圖4至圖6,配合圖7及圖8所示,為了提高或更好地保持連接室300的密封效果,優選於定位結構332上設置一彈性密封環34。進一步而言,定位結構332的外壁可設有一卡槽R,且彈性密封環34藉由卡槽R固定於定位結構332的外壁上。此外,在彈性密封環34的存在下,定位結構332會受到彈性密封環34所提供彈性作用力的約束,使得防塵蓋33的軸心始終保持在高速轉軸4定義的軸線上。Referring to FIGS. 4 to 6, as shown in FIGS. 7 and 8, in order to improve or better maintain the sealing effect of the connecting chamber 300, it is preferable to provide an elastic sealing ring 34 on the positioning structure 332. Furthermore, the outer wall of the positioning structure 332 may be provided with a groove R, and the elastic sealing ring 34 is fixed on the outer wall of the positioning structure 332 by the groove R. In addition, in the presence of the elastic sealing ring 34, the positioning structure 332 will be constrained by the elastic force provided by the elastic sealing ring 34, so that the axis of the dust cover 33 is always maintained on the axis defined by the high-speed rotating shaft 4.

為了將防塵式轉子元件3與高速轉軸4組裝在一起,如圖6所示,轉子座31的第一座體311的內部具有一隔板3111用以界定出連接室300,且隔板3111上設有一連通連接室300的連接通道3112,其位置對應防塵蓋33的連接結構333;高速轉軸4包括一軸體41及一從軸體41延伸形成的延伸部42,其中延伸部42沿軸體41的軸線延伸,且其位置對應連接通道3112,以與防塵蓋33的連接結構333固定在一起。進一步而言,如圖4所示,軸體41具有一中央區域411及一環繞中央區域411的周邊區域412,延伸部42即是從中央區域411延伸通過連接通道3112進入連接室300;延伸部42與連接部3332可以螺接方式結合,即,延伸部42具有一內螺紋且連接部3332具有一外螺紋。然而,這些細節只是在描述高速轉軸4的可行的實施方案而並非用以限定本發明。在一些實施例中,延伸部42可以只延伸至連接通道3112而未進入連接室300。In order to assemble the dust-proof rotor element 3 and the high-speed rotating shaft 4, as shown in FIG. 6, a partition 3111 is provided inside the first seat body 311 of the rotor seat 31 to define the connecting chamber 300, and the partition 3111 is There is a connecting passage 3112 communicating with the connecting chamber 300, and its position corresponds to the connecting structure 333 of the dust cover 33; the high-speed rotating shaft 4 includes a shaft 41 and an extension 42 extending from the shaft 41, wherein the extension 42 is along the shaft The axis of 41 extends and its position corresponds to the connecting channel 3112 to be fixed with the connecting structure 333 of the dust cover 33. Furthermore, as shown in FIG. 4, the shaft 41 has a central area 411 and a peripheral area 412 surrounding the central area 411. The extension 42 extends from the central area 411 through the connecting passage 3112 into the connecting chamber 300; 42 and the connecting portion 3332 can be combined by screwing, that is, the extension portion 42 has an internal thread and the connecting portion 3332 has an external thread. However, these details are only for describing possible implementations of the high-speed rotating shaft 4 and are not intended to limit the present invention. In some embodiments, the extension 42 may only extend to the connection channel 3112 without entering the connection chamber 300.

參閱圖9所示,在氣壓平衡孔H1的存在下,可以不需要使用任何工具,就直接將防塵蓋33結合於轉子座31上。進一步而言,可於兩個相對的氣壓平衡孔H1分別置入一柱狀體6(如插銷),並同時施加外力於兩個柱狀體6,以使防塵蓋33相對於轉子座31轉動,進而將連接部3332插入高速轉軸4的延伸部42。Referring to FIG. 9, in the presence of the air pressure balance hole H1, the dust cover 33 can be directly connected to the rotor base 31 without using any tools. Furthermore, a cylindrical body 6 (such as a latch) can be respectively inserted into the two opposite air pressure balance holes H1, and an external force can be applied to the two cylindrical bodies 6 at the same time to make the dust cover 33 rotate relative to the rotor base 31 , And then insert the connecting portion 3332 into the extension portion 42 of the high-speed rotating shaft 4.

[第二實施例][Second Embodiment]

參閱圖10及圖11所示,第二實施例與第一實施例的差異主要在於,防塵蓋33的定位結構332具有一倒勾部3321,其中倒勾部3321具有一面向連接室300的邊界的導引面S3,且倒勾部3321與蓋體331之間存在一間隙G;導引面S3可為一斜面,但不限於此。藉此,在組裝過程中,可以減少定位結構332與連接室300的邊界之間的干涉,使防塵蓋33更容易被組裝於轉子座31上。組裝完成後,倒勾部3321可抵壓連接室300的內表面(未標號)以產生迫緊作用,同時部分的倒勾部332會被擠壓到間隙G中,如此防塵蓋33的軸心能始終保持在高速轉軸4定義的軸線上。10 and 11, the difference between the second embodiment and the first embodiment is mainly that the positioning structure 332 of the dust cover 33 has an undercut portion 3321, wherein the undercut portion 3321 has a boundary facing the connecting chamber 300 There is a gap G between the undercut portion 3321 and the cover 331; the guiding surface S3 can be an inclined surface, but is not limited to this. Thereby, during the assembly process, the interference between the positioning structure 332 and the boundary of the connecting chamber 300 can be reduced, so that the dust cover 33 can be assembled on the rotor base 31 more easily. After the assembly is completed, the undercut portion 3321 can press against the inner surface (not labeled) of the connecting chamber 300 to produce a pressing effect, and at the same time, part of the undercut portion 332 will be squeezed into the gap G, so that the axis of the dust cover 33 It can always remain on the axis defined by the high-speed rotating shaft 4.

[實施例的有益效果][Beneficial effects of the embodiment]

本發明的其中一有益效果在於,本發明所提供的防塵式轉子元件,其能通過“轉子座具有一連接室用以組接高速轉軸,防塵蓋包括一蓋體及一定位結構,其中蓋體具有兩個相對設置且與連接室氣體連通的氣壓平衡孔,定位結構從蓋體的底部延伸進入連接室,且與連接室之間形成密封”的技術方案,以防止製程產生的微粒沉積於連接室,並確保連接室的壓力與幫浦內部壓力平衡一致,避免產生不穩定的氣流將微粒帶回到製程空腔體內造成汙染。One of the beneficial effects of the present invention is that the dust-proof rotor element provided by the present invention can be connected to a high-speed rotating shaft through a connecting chamber of the rotor base. The dust-proof cover includes a cover body and a positioning structure, wherein the cover body There are two pressure balance holes arranged oppositely and connected to the connecting chamber. The positioning structure extends from the bottom of the cover into the connecting chamber and forms a seal with the connecting chamber to prevent the particles generated in the process from being deposited on the connecting chamber. Make sure that the pressure of the connecting chamber is consistent with the internal pressure of the pump to avoid generating unstable airflow to bring the particles back into the process cavity and cause pollution.

更進一步來說,在氣壓平衡孔的存在下,可以不需要使用任何工具,而直接將防塵蓋結合於轉子座上,因此在使用上更加便利。Furthermore, in the presence of the air pressure balance hole, there is no need to use any tools, and the dust cover is directly connected to the rotor seat, so it is more convenient to use.

更進一步來說,防塵蓋的定位結構上可具有一彈性密封環,以提高或更好地保持連接室的密封效果。此外,在彈性密封環的存在下,定位結構會受到彈性密封環所提供彈性作用力的約束,使得防塵蓋始終保持在高速轉軸的軸線上。Furthermore, the positioning structure of the dust cover may have an elastic sealing ring to improve or better maintain the sealing effect of the connecting chamber. In addition, in the presence of the elastic sealing ring, the positioning structure will be restricted by the elastic force provided by the elastic sealing ring, so that the dust cover is always kept on the axis of the high-speed rotating shaft.

更進一步來說,為了使防塵蓋更容易被組裝到轉子座上,並保持防塵蓋的軸心於轉軸的軸線上,防塵蓋的定位結構可具有一倒勾部,其中倒勾部具有一面向連接室的邊界的導引面,且倒勾部與蓋體之間存在一間隙。Furthermore, in order to make it easier to assemble the dust cover on the rotor base and keep the axis of the dust cover on the axis of the rotating shaft, the positioning structure of the dust cover may have an undercut part, wherein the undercut part has a facing The guide surface is connected to the boundary of the chamber, and there is a gap between the undercut part and the cover.

以上所公開的內容僅為本發明的優選可行實施例,並非因此侷限本發明的申請專利範圍,所以凡是運用本發明說明書及圖式內容所做的等效技術變化,均包含於本發明的申請專利範圍內。The content disclosed above is only the preferred and feasible embodiments of the present invention, and does not limit the scope of the patent application of the present invention. Therefore, all equivalent technical changes made by using the description and schematic content of the present invention are included in the application of the present invention. Within the scope of the patent.

Z:渦輪分子幫浦 1:外殼 100:空腔體 11:第一殼體 111:進氣口 12:第二殼體 121:導氣槽 2:定子元件 21:間隔件 22:定子葉片組 221:定子葉片 3:防塵式轉子元件 300:連接室 31:轉子座 311:第一座體 3111:隔板 3112:連接通道 312:第二座體 32:轉子葉片組 321:轉子葉片 33:防塵蓋 331:蓋體 H1:氣壓平衡孔 H2:配重孔 S1:外側表面 T:中央最高點 332:定位結構 3321:倒鉤部 S2:內側表面 S3:導引面 R:卡槽 G:間隙 333:連接結構 3331:圓筒部 3332:連接部 34:彈性密封環 4:高速轉軸 41:軸體 411:中央區域 412:周邊區域 42:延伸部 5:底座 500:排氣口 51:軸承機構 52:驅動單元 6:柱狀體Z: Turbomolecular pump 1: shell 100: cavity 11: The first shell 111: air inlet 12: The second shell 121: air guide groove 2: stator element 21: Spacer 22: Stator blade group 221: Stator blades 3: Dust-proof rotor element 300: connecting room 31: Rotor seat 311: First Block 3111: partition 3112: connection channel 312: Second Block 32: Rotor blade group 321: rotor blade 33: Dust cover 331: Lid H1: Air pressure balance hole H2: Counterweight hole S1: Outer surface T: The highest point in the center 332: positioning structure 3321: Barb S2: Inside surface S3: Guide surface R: card slot G: gap 333: connection structure 3331: Cylinder 3332: connecting part 34: Elastic sealing ring 4: High-speed shaft 41: Shaft 411: Central Area 412: Surrounding Area 42: Extension 5: Base 500: exhaust port 51: bearing mechanism 52: drive unit 6: Cylinder

圖1為本發明第一實施例的渦輪分子幫浦的立體組合示意圖。FIG. 1 is a schematic diagram of the three-dimensional assembly of the turbomolecular pump according to the first embodiment of the present invention.

圖2為本發明第一實施例的渦輪分子幫浦的其中一立體分解示意圖。FIG. 2 is a three-dimensional exploded schematic diagram of the turbomolecular pump according to the first embodiment of the present invention.

圖3為本發明第一實施例的渦輪分子幫浦的另外一立體分解示意圖。FIG. 3 is another three-dimensional exploded schematic diagram of the turbomolecular pump according to the first embodiment of the present invention.

圖4為圖1的IV-IV剖面的剖面示意圖。Fig. 4 is a schematic cross-sectional view of the IV-IV section of Fig. 1.

圖5為本發明第一實施例的防塵式轉子元件的立體示意圖。Fig. 5 is a three-dimensional schematic diagram of the dust-proof rotor element according to the first embodiment of the present invention.

圖6為本發明第一實施例的防塵式轉子元件的平面示意圖。Fig. 6 is a schematic plan view of the dust-proof rotor element of the first embodiment of the present invention.

圖7為本發明第一實施例的防塵蓋的其中一結構示意圖。FIG. 7 is a schematic diagram of one of the structures of the dust cover of the first embodiment of the present invention.

圖8為本發明第一實施例的防塵蓋的另外一結構示意圖。FIG. 8 is another schematic diagram of the structure of the dust cover of the first embodiment of the present invention.

圖9顯示本發明第一實施例的防塵蓋與轉子座及高速轉軸的組裝過程。Fig. 9 shows the assembly process of the dust cover with the rotor base and the high-speed rotating shaft according to the first embodiment of the present invention.

圖10為本發明第二實施例的防塵蓋的結構示意圖。FIG. 10 is a schematic diagram of the structure of the dust cover of the second embodiment of the present invention.

圖11顯示本發明第二實施例的防塵蓋與轉子座的組裝過程。Fig. 11 shows the assembly process of the dust cover and the rotor base of the second embodiment of the present invention.

Z:渦輪分子幫浦Z: Turbomolecular pump

1:外殼1: shell

11:第一殼體11: The first shell

111:進氣口111: air inlet

12:第二殼體12: The second shell

33:防塵蓋33: Dust cover

5:底座5: Base

500:排氣口500: exhaust port

Claims (18)

一種防塵式轉子元件,其包括: 一轉子座,具有外露的一連接室; 多個轉子葉片組,連接於所述轉子座且呈間隔排列;以及 一防塵蓋,用以密封所述連接室,其中所述防塵蓋包括一蓋體以及一定位結構,所述蓋體具有兩個相對設置且與所述連接室氣體連通的氣壓平衡孔,所述定位結構從所述蓋體的底部延伸進入所述連接室,且與所述連接室之間形成密封。A dust-proof rotor element, which includes: A rotor seat with an exposed connecting chamber; A plurality of rotor blade groups connected to the rotor base and arranged at intervals; and A dustproof cover for sealing the connecting chamber, wherein the dustproof cover includes a cover body and a positioning structure, the cover body has two pressure balance holes arranged oppositely and in gas communication with the connecting chamber, the The positioning structure extends from the bottom of the cover body into the connecting chamber, and forms a seal with the connecting chamber. 如申請專利範圍第1項所述的防塵式轉子元件,其中,所述蓋體蓋合於所述連接室上。According to the dust-proof rotor element described in item 1 of the scope of patent application, the cover body is closed on the connecting chamber. 如申請專利範圍第2項所述的防塵式轉子元件,其中,兩個所述氣壓平衡孔內各具有一柱狀體,兩個所述柱狀體能被施加外力,以使所述防塵蓋相對於所述轉子座轉動。The dust-proof rotor element described in item 2 of the scope of patent application, wherein each of the two air pressure balance holes has a columnar body, and the two columnar bodies can be applied with external force to make the dust cover face each other. Rotate on the rotor base. 如申請專利範圍第2項所述的防塵式轉子元件,其中,所述防塵蓋還包括一彈性密封環,其設置於所述定位結構上。According to the dust-proof rotor element described in item 2 of the scope of patent application, the dust-proof cover further includes an elastic sealing ring arranged on the positioning structure. 如申請專利範圍第4項所述的防塵式轉子元件,其中,所述定位結構具有一卡槽,且所述彈性密封環藉由所述卡槽固定於所述定位結構上。According to the dust-proof rotor element described in item 4 of the scope of patent application, the positioning structure has a groove, and the elastic sealing ring is fixed on the positioning structure by the groove. 如申請專利範圍第1項所述的防塵式轉子元件,其中,所述蓋體具有一外側表面,所述定位結構具有一相對於所述外側表面的內側表面,且兩個所述氣壓平衡孔從所述外側表面延伸至所述內側表面。According to the dust-proof rotor element described in claim 1, wherein the cover has an outer surface, the positioning structure has an inner surface opposite to the outer surface, and two air pressure balance holes Extending from the outer surface to the inner surface. 如申請專利範圍第1項所述的防塵式轉子元件,其中,所述蓋體還具有兩個相對設置的配重孔。According to the dust-proof rotor element described in item 1 of the scope of patent application, the cover body further has two counterweight holes arranged oppositely. 如申請專利範圍第1項所述的防塵式轉子元件,其中,所述定位結構具有一倒勾部,所述倒勾部與所述蓋體之間存在一間隙,且具有一面向所述連接室的邊界的導引面;其中,所述導引面為一斜面。The dust-proof rotor element according to the first item of the scope of patent application, wherein the positioning structure has an undercut portion, a gap exists between the undercut portion and the cover, and there is a connection facing the The guiding surface of the boundary of the chamber; wherein the guiding surface is an inclined surface. 一種渦輪分子幫浦,其包括: 一外殼,具有一空腔體; 一定子元件,設置於所述空腔體內,且包括多個呈間隔排列的定子葉片組; 一防塵式轉子元件,設置於所述空腔體內,其中所述防塵式轉子元件包括: 一轉子座,具有外露的一連接室; 多個轉子葉片組,連接於所述轉子座,且與多個所述定子葉片組上下交替排列;以及 一防塵蓋,用以密封所述連接室,其中所述防塵蓋包括一蓋體以及一定位結構,所述蓋體具有兩個相對設置且與所述連接室氣體連通的氣壓平衡孔,所述定位結構從所述蓋體的底部延伸進入所述連接室,且與所述連接室之間形成密封;以及 一高速轉軸,用以驅動所述防塵式轉子元件相對於所述定子元件轉動。A turbomolecular pump, which includes: A shell with a cavity; The stator element is arranged in the cavity and includes a plurality of stator blade groups arranged at intervals; A dust-proof rotor element arranged in the cavity, wherein the dust-proof rotor element includes: A rotor seat with an exposed connecting chamber; A plurality of rotor blade groups are connected to the rotor base and are alternately arranged up and down with the plurality of stator blade groups; and A dustproof cover for sealing the connecting chamber, wherein the dustproof cover includes a cover body and a positioning structure, the cover body has two pressure balance holes arranged oppositely and in gas communication with the connecting chamber, the The positioning structure extends from the bottom of the cover body into the connecting chamber and forms a seal with the connecting chamber; and A high-speed rotating shaft is used to drive the dust-proof rotor element to rotate relative to the stator element. 如申請專利範圍第9項所述的渦輪分子幫浦,其中,所述轉子座的內部具有一隔板用以界定出所述連接室,且所述隔板上設有一連通所述連接室的連接通道;所述高速轉軸包括一軸體以及一從所述軸體延伸形成的延伸部,且所述延伸部的位置對應所述連接通道;所述防塵蓋還包括一連接結構,其設置於所述定位結構的內側,且所述連接結構與所述高速轉軸的所述延伸部固定在一起。The turbomolecular pump according to item 9 of the scope of patent application, wherein a partition is provided inside the rotor base to define the connecting chamber, and the partition is provided with a connecting chamber that communicates with the connecting chamber The connecting passage; the high-speed shaft includes a shaft body and an extension formed from the shaft body, and the location of the extension corresponds to the connecting passage; the dust cover also includes a connecting structure, which is arranged in The inner side of the positioning structure, and the connecting structure and the extension part of the high-speed rotating shaft are fixed together. 如申請專利範圍第10項所述的渦輪分子幫浦,其中,所述軸體具有一中央區域以及一環繞所述中央區域的周邊區域,所述延伸部是從所述中央區域延伸進入所述連接通道。The turbomolecular pump according to claim 10, wherein the shaft body has a central area and a peripheral area surrounding the central area, and the extension portion extends from the central area into the Connect the channel. 如申請專利範圍第9項所述的渦輪分子幫浦,其中,所述蓋體蓋合於所述連接室上。The turbomolecular pump according to item 9 of the scope of patent application, wherein the cover is covered on the connecting chamber. 如申請專利範圍第12項所述的渦輪分子幫浦,其中,兩個所述氣壓平衡孔內各具有一柱狀體,兩個所述柱狀體能被施加外力,以使所述防塵蓋相對於所述轉子座轉動。The turbomolecular pump described in item 12 of the scope of patent application, wherein each of the two air pressure balance holes has a columnar body, and the two columnar bodies can be applied with external force to make the dust cover face each other. Rotate on the rotor base. 如申請專利範圍第12項所述的渦輪分子幫浦,其中,所述防塵蓋還包括一彈性密封環,其設置於所述定位結構上。According to the turbomolecular pump described in item 12 of the scope of patent application, the dust cover further includes an elastic sealing ring disposed on the positioning structure. 如申請專利範圍第14項所述的渦輪分子幫浦,其中,所述定位結構具有一卡槽,且所述彈性密封環藉由所述卡槽固定於所述定位結構上。According to the turbomolecular pump described in claim 14, wherein the positioning structure has a groove, and the elastic sealing ring is fixed on the positioning structure by the groove. 如申請專利範圍第9項所述的渦輪分子幫浦,其中,所述蓋體具有一外側表面,所述定位結構具有一相對於所述外側表面的內側表面,且兩個所述氣壓平衡孔從所述外側表面延伸至所述內側表面。The turbomolecular pump according to claim 9, wherein the cover has an outer surface, the positioning structure has an inner surface opposite to the outer surface, and two air pressure balance holes Extending from the outer surface to the inner surface. 如申請專利範圍第9項所述的渦輪分子幫浦,其中,所述蓋體還具有兩個相對設置的配重孔。The turbomolecular pump according to item 9 of the scope of patent application, wherein the cover body further has two counterweight holes arranged opposite to each other. 如申請專利範圍第9項所述的渦輪分子幫浦,其中,所述定位結構具有一倒勾部,所述倒勾部與所述蓋體之間存在一間隙,且具有一面向所述連接室的邊界的導引面;其中,所述導引面為一斜面。The turbomolecular pump according to item 9 of the scope of patent application, wherein the positioning structure has an undercut portion, and there is a gap between the undercut portion and the cover, and has a connection facing the The guiding surface of the boundary of the chamber; wherein the guiding surface is an inclined surface.
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114576181A (en) * 2022-05-05 2022-06-03 成都高真科技有限公司 High vacuum turbo molecular pump

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4934089B2 (en) * 2008-04-09 2012-05-16 株式会社荏原製作所 Turbo molecular pump
US9512848B2 (en) * 2011-09-14 2016-12-06 Texas Capital Semiconductor, Inc. Turbine cap for turbo-molecular pump
TWM523003U (en) * 2015-12-28 2016-06-01 Highlight Tech Corp Improved rotor lid for turbomolecular vacuum pump
CN108474383B (en) * 2016-02-12 2020-12-11 埃地沃兹日本有限公司 Vacuum pump and flexible cover and rotor for the same
JP6664269B2 (en) * 2016-04-14 2020-03-13 東京エレクトロン株式会社 Heating device and turbo molecular pump
JP2018035684A (en) * 2016-08-29 2018-03-08 株式会社島津製作所 Vacuum pump
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Cited By (2)

* Cited by examiner, † Cited by third party
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CN114576181A (en) * 2022-05-05 2022-06-03 成都高真科技有限公司 High vacuum turbo molecular pump
CN114576181B (en) * 2022-05-05 2022-07-05 成都高真科技有限公司 High vacuum turbo molecular pump

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