TWI711781B - Pendulum valve - Google Patents

Pendulum valve Download PDF

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Publication number
TWI711781B
TWI711781B TW109101274A TW109101274A TWI711781B TW I711781 B TWI711781 B TW I711781B TW 109101274 A TW109101274 A TW 109101274A TW 109101274 A TW109101274 A TW 109101274A TW I711781 B TWI711781 B TW I711781B
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Taiwan
Prior art keywords
gate
rotating shaft
cylinder
pneumatic cylinder
valve port
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TW109101274A
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Chinese (zh)
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TW202126934A (en
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林賜民
許俊樹
陳冠華
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日揚科技股份有限公司
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Priority to TW109101274A priority Critical patent/TWI711781B/en
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Publication of TWI711781B publication Critical patent/TWI711781B/en
Publication of TW202126934A publication Critical patent/TW202126934A/en

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Abstract

A pendulum valve is disclosed. The pendulum valve comprises: a valve body, a gate plate, a rotation shaft, a first drive mechanism, and a second drive mechanism. The valve body is hollow and has a first opening. The gate plate is movably located inside the valve body. The rotation shaft is connected to the gate plate. The first drive mechanism is designed to rotate the gate plate via the rotation shaft such that the position of is gate plate is shifted to aim at the first opening or be away from the first opening. The second drive mechanism is designed to raise up or down the gate plate such that the gate plate can close or open the first opening.

Description

鐘擺閥 Pendulum valve

本創作是有關於一種閥,特別是有關於一種鐘擺閥。 This creation is about a kind of valve, especially a kind of pendulum valve.

閥(valve)類裝置常使用於流體管路間,其主要作為管路中流體之流量、壓力控制、調節、轉向、止回、啟動或停止流動等等。閥的種類相當多,亦會因使用於水管、油壓或氣壓等流體種類不同或預設產生的功能不同,而各有其適用的閥門種類。以目前常用之真空閥門的構造而言,主要分為直進式開閉動作之閘閥(gate valve)、轉動式開閉動作之蝶閥(butterfly valve)以及搖臂式開閉動作之鐘擺閥(pendulum valve)等。 Valve type devices are often used between fluid pipelines. They are mainly used for flow, pressure control, adjustment, steering, check, start or stop flow, etc. of the fluid in the pipeline. There are quite a few types of valves, and each type of valve is applicable due to different types of fluids used in water pipes, oil pressure or air pressure, or different preset functions. In terms of the structure of commonly used vacuum valves, they are mainly divided into gate valves with straight opening and closing actions, butterfly valves with rotary opening and closing actions, and pendulum valves with rocker opening and closing actions.

然而,大型鐘擺閥因為閘板重量較重,經多次轉動閘板後,容易因傾斜造成封合效果不佳,影響氣密效果。 However, due to the heavy weight of the gate, the large pendulum valve is likely to have a poor sealing effect due to tilting and affect the air-tight effect after rotating the gate many times.

有鑑於上述習知技藝之問題,本創作之一目的就是在提供一種鐘擺閥,以解決閘板因傾斜造成封合效果不佳的問題。 In view of the above-mentioned problems of the prior art, one purpose of this creation is to provide a pendulum valve to solve the problem of poor sealing effect caused by the tilt of the gate.

為達前述目的,本創作提出一種鐘擺閥至少包含閥體、閘板、轉動軸、第一驅動機構以及第二驅動機構。閥體為中空且至少具有第一閥口。閘 板可動式設於閥體中。轉動軸連接閘板。第一驅動機構經由驅動轉動軸轉動以轉動閘板,藉以使得閘板之位置對應於第一閥口或遠離第一閥口。第二驅動機構則係經由驅動轉動軸升降以升降閘板,藉以使得閘板抵接或遠離第一閥口而關閉或開啟第一閥口。 To achieve the foregoing objective, this creation proposes a pendulum valve at least including a valve body, a gate, a rotating shaft, a first driving mechanism and a second driving mechanism. The valve body is hollow and has at least a first valve port. brake The plate is movable in the valve body. The rotating shaft is connected to the gate. The first driving mechanism rotates through the driving rotating shaft to rotate the gate, so that the position of the gate corresponds to the first valve port or is far away from the first valve port. The second driving mechanism lifts and lowers the gate through the driving rotation shaft, so that the gate abuts against or away from the first valve port to close or open the first valve port.

其中,第一驅動機構及/或第二驅動機構係氣壓缸。 Wherein, the first driving mechanism and/or the second driving mechanism are pneumatic cylinders.

其中,第二驅動機構至少包含第一氣壓缸設於閥體上,第一氣壓缸之第一活塞板係用以抵頂轉動軸以驅使轉動軸及閘板朝著遠離第一閥口之方向縱向位移。 Wherein, the second driving mechanism includes at least a first pneumatic cylinder arranged on the valve body, and the first piston plate of the first pneumatic cylinder is used to abut the rotating shaft to drive the rotating shaft and the gate in a direction away from the first valve port Longitudinal displacement.

其中,轉動軸與第一活塞板之間更設有波浪彈簧,且第一氣壓缸之第一活塞板係經由波浪彈簧推移該轉動軸。 Wherein, a wave spring is further provided between the rotating shaft and the first piston plate, and the first piston plate of the first pneumatic cylinder pushes the rotating shaft through the wave spring.

其中,鐘擺閥更包含至少止推軸承,其中當轉動軸連動閘板縱向位移以開啟第一閥口以及橫向位移以遠離第一閥口時,止推軸承係承受轉動軸之至少一撐抵部之推頂。 Wherein, the pendulum valve further includes at least a thrust bearing, wherein when the rotating shaft is linked with the gate plate to move longitudinally to open the first valve port and to move laterally away from the first valve port, the thrust bearing bears at least one supporting portion of the rotating shaft The push top.

其中,第一氣壓缸具有第一缸體,轉動軸係作為第一缸體之第一活塞桿,當第一缸體中充氣時,第一氣壓缸之第一活塞板係受氣體壓力推頂以驅使轉動軸及閘板朝著遠離第一閥口之方向縱向位移。 Among them, the first pneumatic cylinder has a first cylinder, and the rotating shaft is used as the first piston rod of the first cylinder. When the first cylinder is inflated, the first piston plate of the first pneumatic cylinder is pushed up by the gas pressure To drive the rotating shaft and the gate to move longitudinally away from the first valve port.

其中,第一氣壓缸具有第一缸體及第二缸體,轉動軸係同時作為第一缸體及第二缸體之第一活塞桿,當第一缸體及第二缸體充氣時,第一缸體中之第一活塞板及第二缸體中之轉動軸之撐抵部係受氣體壓力推頂令轉動軸之撐抵部及第一氣壓缸之第一活塞板縱向位移。 Wherein, the first pneumatic cylinder has a first cylinder and a second cylinder, and the rotating shaft is used as the first piston rod of the first cylinder and the second cylinder at the same time. When the first cylinder and the second cylinder are inflated, The first piston plate in the first cylinder and the supporting part of the rotating shaft in the second cylinder are pushed up by gas pressure to cause the supporting part of the rotating shaft and the first piston plate of the first pneumatic cylinder to move longitudinally.

其中,第二驅動機構包含第二氣壓缸設於閥體上,第二氣壓缸之第二活塞桿係選擇性推頂閘板或離開閘板之移動路徑。 Wherein, the second driving mechanism includes a second air cylinder arranged on the valve body, and the second piston rod of the second air cylinder selectively pushes up the gate or leaves the moving path of the gate.

其中,第二氣壓缸更包含復位彈簧,當第二氣壓缸洩氣時,復位彈簧係令第二氣壓缸之第二活塞桿向外突伸以推頂閘板,當第二氣壓缸充氣時,第二氣壓缸之第二活塞桿係縮回以離開閘板之移動路徑。 The second pneumatic cylinder further includes a return spring. When the second pneumatic cylinder is deflated, the return spring causes the second piston rod of the second pneumatic cylinder to protrude outward to push up the gate. When the second pneumatic cylinder is inflated, The second piston rod of the second pneumatic cylinder is retracted to leave the moving path of the gate.

其中,閘板具有密封件,且復位彈簧係經由密封件推頂閘板。 Among them, the gate has a sealing element, and the return spring pushes the gate through the sealing element.

綜上所述,本創作之鐘擺閥可具有一或多個下述優點: In summary, the pendulum valve of this creation can have one or more of the following advantages:

(1)本創作之鐘擺閥透過兩段式驅動閘板作動,來開啟或關閉閥口。欲關閉閥口時,先水平式轉動閘板來讓閘板的位置對應於閥口,再垂直式升降閘板的高度,以氣密式關閉閥口。 (1) The pendulum valve of this creation is actuated by a two-stage drive gate to open or close the valve port. When you want to close the valve port, first rotate the gate horizontally to make the position of the gate correspond to the valve port, and then vertically raise the height of the gate to close the valve port in an airtight manner.

(2)透過單一的轉動軸來轉動閘板及升降閘板,成本低且能有效利用閥體之容置槽空間。 (2) Rotate the gate and lift the gate through a single rotating shaft, which has low cost and can effectively use the accommodating groove space of the valve body.

(3)藉由充氣/放氣來移動氣壓缸的活塞桿,可以帶動轉動軸及閘板升降。而且,復位彈簧可以在閘板遠離閥口時累積彈簧壓縮力,使得當第二氣壓缸充氣時,復位彈簧會提供復位力(所累積的壓縮力),以令閘板更能緊密地關閉閥口。 (3) The piston rod of the pneumatic cylinder can be moved by inflation/deflation, which can drive the rotating shaft and the gate to rise and fall. Moreover, the return spring can accumulate spring compression force when the gate is away from the valve port, so that when the second pneumatic cylinder is inflated, the return spring will provide a return force (accumulated compression force), so that the gate can close the valve more tightly. mouth.

(4)適用於大型鐘擺閥。 (4) Suitable for large pendulum valves.

茲為使鈞審對本創作的技術特徵及所能達到的技術功效有更進一步的瞭解與認識,謹佐以較佳的實施例及配合詳細的說明如後。 In order to enable Junshen to have a further understanding and understanding of the technical features of this creation and the technical effects that can be achieved, I would like to provide a better embodiment and detailed explanation as follows.

10:閥體 10: Valve body

11:第一閥口 11: The first valve port

12:第二閥口 12: The second valve port

13:容置槽 13: holding tank

15:第一半部 15: The first half

17:第二半部 17: second half

19:穿孔 19: Piercing

20:閘板 20: Ram

30:第一驅動機構 30: The first drive mechanism

41:第一氣壓缸 41: The first pneumatic cylinder

410:第一缸體 410: First cylinder

411:第一活塞板 411: First Piston Plate

412:波浪彈簧 412: Wave Spring

413:止推軸承 413: Thrust bearing

413、423、433:氣室 413, 423, 433: air chamber

415:止推軸承 415: Thrust bearing

42:第二氣壓缸 42: The second pneumatic cylinder

420:第二缸體 420: second cylinder

421:第二活塞桿 421: second piston rod

430:第三缸體 430: Third cylinder

50:轉動軸 50: rotating shaft

51:撐抵部 51: Support Department

52:限位滑槽 52: limit chute

53:指示件 53: indicator

62:復位彈簧 62: return spring

70:延伸板 70: Extension board

80:連接元件 80: connecting element

86:弧形桿 86: curved rod

88:夾持件 88: clamp

L-L’:剖面線 L-L’: Section line

91:外蓋 91: Outer cover

圖1為本創作之鐘擺閥之立體分解示意圖。 Figure 1 is a three-dimensional exploded schematic diagram of the pendulum valve created.

圖2為本創作之鐘擺閥之上視示意圖。 Figure 2 is a schematic top view of the pendulum valve created.

圖3為本創作之鐘擺閥之上視示意圖,其中外蓋已移除。 Figure 3 is a schematic top view of the pendulum valve created, with the outer cover removed.

圖4為本創作之鐘擺閥之剖面示意圖,其中閘板的位置對應於第一閥口且抵接第一閥口(鐘擺閥關閉)。 Figure 4 is a schematic cross-sectional view of the pendulum valve created, in which the position of the gate corresponds to the first valve port and abuts against the first valve port (the pendulum valve is closed).

圖5為本創作之鐘擺閥之剖面示意圖,其中閘板的位置對應於第一閥口,但未抵接第一閥口(鐘擺閥開啟)。 Figure 5 is a schematic cross-sectional view of the pendulum valve created, in which the position of the gate corresponds to the first valve port, but does not abut the first valve port (the pendulum valve is open).

圖6本創作之鐘擺閥之剖面示意圖,其中閘板的位置未對應於第一閥口。 Figure 6 is a schematic cross-sectional view of the pendulum valve of this creation, where the position of the gate does not correspond to the first valve port.

圖7為圖4之局部放大圖。 Figure 7 is a partial enlarged view of Figure 4.

圖8為圖5之局部放大圖。 Fig. 8 is a partial enlarged view of Fig. 5.

為利瞭解本創作之技術特徵、內容與優點及其所能達成之功效,茲將本創作配合圖式,並以實施例之表達形式詳細說明如下,而其中所使用之圖式,其主旨僅為示意及輔助說明書之用,未必為本創作實施後之真實比例與精準配置,故不應就所附之圖式的比例與配置關係解讀、侷限本創作於實際實施上的權利範圍。此外,為使便於理解,下述實施例中的相同元件係以相同的符號標示來說明。且圖式所示的組件的尺寸比例僅為便於解釋各元件及其結構,並非用以限定。 In order to help understand the technical features, content and advantages of this creation and its achievable effects, this creation is combined with the diagrams, and detailed descriptions are given in the form of embodiments as follows, and the diagrams used therein are only To illustrate and supplement the manual, it may not be the true proportions and precise configuration after the implementation of this creation. Therefore, the proportion and configuration relationship of the attached drawings should not be interpreted or limited to the scope of rights of the creation in actual implementation. In addition, in order to facilitate understanding, the same elements in the following embodiments are indicated by the same symbols. In addition, the size ratios of the components shown in the drawings are only for the convenience of explaining the components and their structures, and are not for limitation.

另外,在全篇說明書與申請專利範圍所使用的用詞,除有特別註明外,通常具有每個用詞使用在此領域中、在此揭露的內容中與特殊內容中的平常意義。某些用以描述本創作的用詞將於下或在此說明書的別處討論,以提供本領域技術人員在有關本創作的描述上額外的引導。 In addition, the terms used in the entire specification and the scope of the patent application, unless otherwise specified, usually have the usual meaning of each term used in the field, in the content disclosed here, and in the special content. Some terms used to describe this creation will be discussed below or elsewhere in this specification to provide those skilled in the art with additional guidance on the description of this creation.

關於本文中如使用“第一”、“第二”、“第三”等,並非特別指稱次序或順位的意思,亦非用以限定本創作,其僅僅是為了區別以相同技術用語描述的組件或操作而已。 Regarding the use of "first", "second", "third", etc. in this article, it does not specifically refer to the order or sequence, nor is it used to limit the creation, but only to distinguish components described in the same technical terms Or operation only.

其次,在本文中如使用用詞“包含”、“包括”、“具有”、“含有”等,其均為開放性的用語,即意指包含但不限於。 Secondly, if the terms "including", "including", "having", "containing", etc. are used in this article, they are all open terms, which means including but not limited to.

請一併參閱圖1至圖8,圖1為本創作之鐘擺閥之立體分解示意圖;圖2為本創作之鐘擺閥之上視示意圖;圖3為本創作之鐘擺閥之上視示意圖,其中外蓋已移除;圖4為本創作之鐘擺閥之剖面示意圖,其中閘板的位置對應於第一閥口且抵接第一閥口(鐘擺閥關閉);圖5為本創作之鐘擺閥之剖面示意圖,其中閘板的位置對應於第一閥口,但未抵接第一閥口(鐘擺閥開啟);圖6本創作之鐘擺閥之剖面示意圖,其中閘板的位置未對應於第一閥口;圖7為圖4之局部放大圖;圖8為圖5之局部放大圖。其中,圖4至圖8係沿圖2中剖面線L-L’所得之剖面示意圖。 Please refer to Figures 1 to 8 together. Figure 1 is a three-dimensional exploded schematic diagram of the pendulum valve created; Figure 2 is a schematic top view of the pendulum valve created; Figure 3 is a schematic top view of the pendulum valve created. The outer cover has been removed; Figure 4 is a schematic cross-sectional view of the pendulum valve created, in which the position of the gate corresponds to and abuts the first valve port (the pendulum valve is closed); Figure 5 is the pendulum valve created The cross-sectional schematic diagram of the pendulum valve, where the position of the gate plate corresponds to the first valve port, but does not abut the first valve port (the pendulum valve is open); Figure 6 is a schematic cross-sectional view of the pendulum valve in this creation, where the position of the gate plate does not correspond to the first valve port A valve port; Figure 7 is a partial enlarged view of Figure 4; Figure 8 is a partial enlarged view of Figure 5. Among them, Figures 4 to 8 are schematic cross-sectional views taken along the section line L-L' in Figure 2.

本創作之鐘擺閥至少包含閥體10、閘板20、轉動軸50、第一驅動機構30及第二驅動機構。閥體10為中空且具有容置槽13、第一閥口11及第二閥口12,其中第一閥口11及第二閥口12連通容置槽13之相對兩側。而且,閥體10可例如為單一結構或組合式結構。舉例而言,閥體10例如為由第一半部15及第二半部17氣密式組合而成,第一閥口11及第二閥口12例如位於第二半部17上。閘板20係可動式設於閥體10的容置槽13中。本創作之閘板20係可於閥體10的容置槽13中縱向位移,藉由升降高度及橫向位移以移動位置。本創作之一項特色為閘板20係設於轉動軸50之一端且經由轉動軸50之轉動及轉動軸50之縱向(垂直)升降,而達成開啟或封閉第一閥口11之目的。亦即,閘板20與轉動軸50之相 對位置不會變動,但閘板20與轉動軸50相對於閥體20之第一閥口11之相對位置則會變動。 The pendulum valve of this creation at least includes a valve body 10, a gate 20, a rotating shaft 50, a first driving mechanism 30 and a second driving mechanism. The valve body 10 is hollow and has an accommodation groove 13, a first valve port 11 and a second valve port 12, wherein the first valve port 11 and the second valve port 12 communicate with two opposite sides of the accommodation groove 13. Moreover, the valve body 10 may be, for example, a single structure or a combined structure. For example, the valve body 10 is formed by an airtight combination of the first half 15 and the second half 17, and the first valve port 11 and the second valve port 12 are located on the second half 17, for example. The gate 20 is movably arranged in the containing groove 13 of the valve body 10. The gate 20 of the present invention can be longitudinally displaced in the accommodating groove 13 of the valve body 10, and the position can be moved by lifting height and lateral displacement. A feature of this creation is that the gate 20 is arranged at one end of the rotating shaft 50 and is moved by the rotation of the rotating shaft 50 and the vertical (vertical) lifting of the rotating shaft 50 to achieve the purpose of opening or closing the first valve port 11. That is, the phase between the gate 20 and the rotating shaft 50 The position will not change, but the relative position of the gate 20 and the rotating shaft 50 with respect to the first valve port 11 of the valve body 20 will change.

本創作之轉動軸50係藉由第一驅動機構30之驅動而轉動,藉以連帶使得閘板20同步轉動,亦即使得閘板20橫向位移而移動位置。所以,第一驅動機構30可用以使得閘板20之位置對應於第一閥口11或非對應於第一閥口11。 The rotation shaft 50 of the present creation is driven by the first driving mechanism 30 to rotate, so that the gate 20 is rotated synchronously, that is, the gate 20 is moved laterally to move the position. Therefore, the first driving mechanism 30 can be used to make the position of the gate 20 correspond to the first valve port 11 or not correspond to the first valve port 11.

此外,轉動軸50係藉由第二驅動機構之驅動而縱向位移,藉以使得閘板20同步縱向位移。亦即,當轉動軸50朝向靠近第一閥口11之方向位移時,閘板20將可密封式抵接第一閥口11,用以關閉第一閥口11。當轉動軸50朝向遠離第一閥口11之方向位移時,將使得閘板20遠離第一閥口11,用以開啟第一閥口11。 In addition, the rotating shaft 50 is longitudinally displaced by the driving of the second driving mechanism, so that the gate 20 is longitudinally displaced synchronously. That is, when the rotating shaft 50 is displaced in a direction close to the first valve port 11, the gate 20 will sealably abut the first valve port 11 to close the first valve port 11. When the rotating shaft 50 is displaced in a direction away from the first valve port 11, the gate 20 will be moved away from the first valve port 11 to open the first valve port 11.

本創作之鐘擺閥之第二驅動機構包含第一氣壓缸41及第二氣壓缸42,且第二驅動機構係用以經由轉動軸50驅動閘板20升降式移動,即經由驅動轉動軸50縱向位移以驅動閘板20沿另一平面(例如YZ平面)升降。換言之,欲關閉鐘擺閥之第一閥口11時,則第一驅動機構30先經由轉動軸50驅動閘板20轉動,且使得閘板20之位置對應於第一閥口11,然後第二驅動機構再經由轉動軸50驅動閘板20垂直移動,藉以使得閘板20密封式抵接第一閥口11處之閥體10。反之,欲開啟鐘擺閥之第一閥口11時,則第二驅動機構先經由轉動軸50驅動閘板20垂直移動,藉以使得閘板20相距第一閥口11處之閥體10一段距離,然後第一驅動機構30再經由轉動軸50驅動閘板20轉動,使得閘板20之位置不對應於第一閥口11,且例如使得閘板20由第二半部17移至第一半部15。 The second driving mechanism of the pendulum valve of this creation includes a first pneumatic cylinder 41 and a second pneumatic cylinder 42, and the second driving mechanism is used to drive the gate 20 to move up and down via the rotating shaft 50, that is, to drive the rotating shaft 50 longitudinally. The displacement is used to drive the shutter 20 to move up and down along another plane (for example, the YZ plane). In other words, when the first valve port 11 of the pendulum valve is to be closed, the first driving mechanism 30 first drives the gate 20 to rotate via the rotating shaft 50, and makes the position of the gate 20 correspond to the first valve port 11, and then drives the second The mechanism then drives the gate 20 to move vertically via the rotating shaft 50 so that the gate 20 sealingly abuts against the valve body 10 at the first valve port 11. Conversely, when the first valve port 11 of the pendulum valve is to be opened, the second driving mechanism first drives the gate plate 20 to move vertically through the rotating shaft 50, so that the gate plate 20 is a certain distance from the valve body 10 at the first valve port 11. Then the first driving mechanism 30 drives the gate 20 to rotate via the rotating shaft 50, so that the position of the gate 20 does not correspond to the first valve port 11, and for example, makes the gate 20 move from the second half 17 to the first half 15.

在本創作中,第一驅動機構30係驅動閘板20轉動式移動(透過轉動來移動閘板20的位置),即驅動閘板20於一平面(例如XY平面)轉動。在轉動的過 程中,閘板20恆位於第一閥口11及第二閥口12之間,彼此保持一段距離,即閘板20不與第一閥口11及第二閥口12接觸,避免摩擦損耗。轉動軸50及閘板20轉動之方向實質垂直於轉動軸50及閘板20升降之方向。舉例來說,如前所述,轉動軸50及閘板20可於XY平面轉動而於YZ平面升降。前述轉動及升降的平面僅為舉例,本創作並不限定於此。 In this creation, the first driving mechanism 30 drives the shutter 20 to move in a rotational manner (moving the position of the shutter 20 through rotation), that is, drives the shutter 20 to rotate on a plane (such as an XY plane). Turning over During the process, the gate 20 is constantly located between the first valve port 11 and the second valve port 12, keeping a distance from each other, that is, the gate 20 does not contact the first valve port 11 and the second valve port 12 to avoid friction loss. The direction in which the rotating shaft 50 and the gate 20 rotate is substantially perpendicular to the direction in which the rotating shaft 50 and the gate 20 rise and fall. For example, as mentioned above, the rotating shaft 50 and the shutter 20 can be rotated on the XY plane and raised and lowered on the YZ plane. The aforementioned rotating and lifting planes are only examples, and this creation is not limited to this.

其中,第一驅動機構30及/或第二驅動機構可例如為氣壓缸,但不限定於此。第一驅動機構30及/或第二驅動機構也可例如為液壓缸或其他適當驅動方式的驅動機構。本創作之第一驅動機構30係穩固地設於閥體10上,且本創作之第一驅動機構30係例如以活塞桿呈直線運動之氣壓缸為例。本創作之第一驅動機構30之活塞桿係樞接一連接元件80,且第一驅動機構30係經由此連接元件80滑動式夾持轉動軸50之軸體,因此呈直線運動之活塞桿可轉動轉動軸50。而且,連接元件80滑動式夾持轉動軸50之軸體,因此轉動軸50可獨自升降。 Wherein, the first driving mechanism 30 and/or the second driving mechanism may be, for example, a pneumatic cylinder, but it is not limited thereto. The first driving mechanism 30 and/or the second driving mechanism may also be, for example, hydraulic cylinders or other suitable driving mechanisms. The first driving mechanism 30 of the present invention is firmly arranged on the valve body 10, and the first driving mechanism 30 of the present invention is, for example, a pneumatic cylinder whose piston rod moves linearly. The piston rod of the first driving mechanism 30 of this invention is pivotally connected to a connecting element 80, and the first driving mechanism 30 slidably clamps the shaft of the rotating shaft 50 through the connecting element 80, so the piston rod that moves in a straight line can Turn the rotating shaft 50. Moreover, the connecting element 80 slidably clamps the shaft body of the rotating shaft 50, so the rotating shaft 50 can be raised and lowered independently.

本創作之另一項特色在於轉動軸50可藉由第二驅動機構之驅動,而使得轉動軸50獨立於連接元件80進行縱向位移。亦即,當轉動軸50進行縱向位移時,轉動軸50與連接元件80之相對位置會隨著轉動軸50之縱向位移程度而改變。但是,如同前述,當轉動軸50進行轉動時,轉動軸50與連接元件80之相對位置則是固定不變。 Another feature of this creation is that the rotating shaft 50 can be driven by the second driving mechanism, so that the rotating shaft 50 can be longitudinally displaced independently of the connecting element 80. That is, when the rotating shaft 50 is longitudinally displaced, the relative position of the rotating shaft 50 and the connecting element 80 will change with the degree of the longitudinal displacement of the rotating shaft 50. However, as mentioned above, when the rotating shaft 50 rotates, the relative position of the rotating shaft 50 and the connecting element 80 is fixed.

本創作係透過轉動軸50來轉動閘板20,其中閘板20係以轉動軸50之軸心為轉動軸心,藉以進行轉動(橫向位移)。其中,閘板20之形狀及尺寸係依據閥體10及其第一閥口11之形狀與尺寸而定,故本創作之閘板20之並不侷限於特定形狀及尺寸。在本創作之鐘擺閥中,轉動軸50的設置位置較佳為距離第一閥口11一段距離,且轉動軸50較佳為經由閥體10之穿孔19連接閘板20。此外, 閘板20可以直接或間接連接轉動軸50。舉例來說,轉動軸50可例如經由螺接、鎖接、卡接或套接等方式可拆卸式連接延伸板70,藉以經由延伸板70而連接閘板20。或者,閘板20也可例如經由一體成形或焊接等方式而固接有延伸板70,藉以經由延伸板70而連接閘板20。其中,延伸板70之長度值例如,但不限於,相同於轉動軸50與第一閥口11之間的距離值。 In this creation, the shutter 20 is rotated through the rotation shaft 50, wherein the shutter 20 is rotated (lateral displacement) by taking the axis of the rotation shaft 50 as the rotation axis. The shape and size of the gate 20 are determined by the shape and size of the valve body 10 and its first valve port 11, so the gate 20 of the present invention is not limited to a specific shape and size. In the pendulum valve of the present invention, the rotation shaft 50 is preferably arranged at a distance from the first valve port 11, and the rotation shaft 50 is preferably connected to the gate 20 through the through hole 19 of the valve body 10. In addition, The shutter 20 can be directly or indirectly connected to the rotating shaft 50. For example, the rotating shaft 50 can be detachably connected to the extension plate 70 through screwing, locking, snapping, or socketing, so as to connect the gate 20 through the extension plate 70. Alternatively, the shutter 20 may also be fixedly connected to the extension plate 70 by means of integral molding or welding, so that the shutter 20 is connected via the extension plate 70. The length value of the extension plate 70 is, for example, but not limited to, the same as the value of the distance between the rotating shaft 50 and the first valve port 11.

本創作之另一特色係透過轉動軸50來升降式移動閘板20,且第二驅動機構可以經由驅動轉動軸50升降高度,藉以帶動閘板20於閥體10的容置槽13中抵接或遠離第一閥口11。雖然本文中以關閉或開啟第一閥口11為例,應能理解的是,閘板20也可以設計用來關閉或開啟第二閥口12。此外,轉動軸50之外側或一側可選擇性設置固定不動之指示件53,例如為設於第一驅動機構30之外殼上,且設在轉動軸50之周圍,轉動軸50之表面可例如具有標示部(如箭頭),藉由轉動軸50之轉動即可顯示本創作之鐘擺閥之第一閥口11為開啟(open)或關閉(close)狀態。 Another feature of this creation is that the gate 20 is moved up and down through the rotating shaft 50, and the second driving mechanism can raise and lower the height through the driving rotating shaft 50, thereby driving the gate 20 to abut against the receiving groove 13 of the valve body 10 Or away from the first valve port 11. Although the closing or opening of the first valve port 11 is taken as an example in this article, it should be understood that the gate 20 can also be designed to close or open the second valve port 12. In addition, a fixed indicator 53 can be selectively provided on the outer side or one side of the rotating shaft 50, such as on the housing of the first driving mechanism 30 and around the rotating shaft 50. The surface of the rotating shaft 50 can be, for example, With a marking part (such as an arrow), the first valve port 11 of the pendulum valve of the present invention can be displayed in an open or closed state by rotating the rotating shaft 50.

詳細來說,如圖所示,本創作之轉動軸50之軸體係貫穿閥體10之穿孔19且由外部延伸至閥體10的容置槽13中,藉以連接閘板20。本創作之連接元件80可例如包含弧形桿86及夾持件88。連接元件80之夾持件88之一端係滑動式夾持轉動軸50之限位滑槽52。夾持件88之另一端係樞接於弧形桿86之一端,且弧形桿86之另一端係樞接於第一驅動機構30之活塞桿,因此透過第一驅動機構30之活塞桿之直線運動可驅使轉動軸50進行轉動,藉以連動閘板20進行轉動(橫向位移)。 In detail, as shown in the figure, the shaft system of the rotating shaft 50 of the present creation penetrates the perforation 19 of the valve body 10 and extends from the outside to the accommodating groove 13 of the valve body 10 to connect the gate 20. The connecting element 80 of the present invention may include an arc-shaped rod 86 and a clamping member 88, for example. One end of the clamping member 88 of the connecting element 80 is a limit sliding groove 52 that slidably clamps the rotating shaft 50. The other end of the clamping member 88 is pivotally connected to one end of the arc-shaped rod 86, and the other end of the arc-shaped rod 86 is pivotally connected to the piston rod of the first driving mechanism 30, so through the piston rod of the first driving mechanism 30 The linear motion can drive the rotating shaft 50 to rotate, thereby linking the gate 20 to rotate (lateral displacement).

本創作之第二驅動機構包含第一氣壓缸41設於閥體10上。第一氣壓缸41可例如為具有第一缸體410及第一活塞板411。轉動軸50係作為第一氣壓 缸41之第一活塞桿。第一氣壓缸41之第一缸體中具有可活動位移之第一活塞板411,且轉動軸50係例如貫穿第一氣壓缸41之第一活塞板411。第一氣壓缸41之第一活塞板411係抵頂轉動軸50,藉以縱向位移轉動軸50。舉例而言,當第一氣壓缸41之氣室413充氣時,即氣體被供應至第一氣壓缸41之第一活塞板411的下方時,則第一活塞板411會被氣體壓力往上推移,藉以推動轉動軸50往上移動。本創作之又一特色在於轉動軸50與第一活塞板411之間更選擇性設有波浪彈簧412。因此,第一氣壓缸41之第一活塞板411可經由波浪彈簧412縱向推移轉動軸50。藉由波浪彈簧412輔助,不僅可確保轉動軸50能夠垂直升降,且可避免閘板20受力不均而變形。 The second driving mechanism of the present invention includes a first pneumatic cylinder 41 arranged on the valve body 10. The first pneumatic cylinder 41 may, for example, have a first cylinder 410 and a first piston plate 411. Rotating shaft 50 is used as the first air pressure The first piston rod of the cylinder 41. The first cylinder body of the first pneumatic cylinder 41 has a movable first piston plate 411, and the rotating shaft 50 penetrates the first piston plate 411 of the first pneumatic cylinder 41, for example. The first piston plate 411 of the first pneumatic cylinder 41 abuts against the rotating shaft 50 to thereby move the rotating shaft 50 longitudinally. For example, when the air chamber 413 of the first pneumatic cylinder 41 is inflated, that is, when the gas is supplied below the first piston plate 411 of the first pneumatic cylinder 41, the first piston plate 411 will be pushed up by the gas pressure , Thereby pushing the rotating shaft 50 to move upward. Another feature of this creation is that a wave spring 412 is optionally provided between the rotating shaft 50 and the first piston plate 411. Therefore, the first piston plate 411 of the first pneumatic cylinder 41 can longitudinally push the rotating shaft 50 via the wave spring 412. With the assistance of the wave spring 412, not only can the rotating shaft 50 be vertically raised and lowered, but also the gate plate 20 can be prevented from being deformed due to uneven force.

本創作之又一特色在於更選擇性具有至少一止推軸承415,止推軸承415設於閘體10之穿孔19外部之周圍上且位於閘體10與轉動軸50之撐抵部51之間。因此,當轉動軸50縱向移動一段距離後,止推軸承415可承受轉動軸50之至少一撐抵部51之推頂,藉以連動閘板20縱向移動以開啟第一閥口11且使得閘板20可保持在此高度。而且,當轉動軸50連動閘板20進行橫向位移,藉以遠離第一閥口11時,止推軸承415同樣係承受轉動軸50之撐抵部51之推頂,藉以使得閘板20可保持在此高度。 Another feature of this creation is to have at least one thrust bearing 415 more selectively. The thrust bearing 415 is provided on the periphery of the perforation 19 of the gate body 10 and is located between the gate body 10 and the abutment portion 51 of the rotating shaft 50 . Therefore, when the rotating shaft 50 moves longitudinally for a certain distance, the thrust bearing 415 can bear the push of the at least one abutment portion 51 of the rotating shaft 50, thereby linking the longitudinal movement of the gate 20 to open the first valve port 11 and make the gate 20 can be maintained at this height. Moreover, when the rotating shaft 50 moves the gate 20 to move laterally so as to move away from the first valve port 11, the thrust bearing 415 also bears the push of the supporting portion 51 of the rotating shaft 50, so that the gate 20 can be held at This height.

本創作之第二驅動機構之第一氣壓缸41還可選擇性包含一第三缸體430,其中轉動軸50係同時作為第一缸體410及第三缸體430之活塞桿。即,轉動軸50係同時貫穿第一缸體410及第三缸體430。撐抵部51係突出於轉動軸50之表面,且撐抵部51係位於第三缸體430中,以作為第三缸體430之活塞板。因此,當氣體被供應至第三缸體430之氣室433中時,轉動軸50之撐抵部51會被氣體壓力往上推移直至抵頂止推軸承415。由於,本創作之閘板20會被轉動軸50推 移而開啟第一閥口11,且閘板20還會隨著轉動軸50之轉動而移動位置,因此藉由上述的止推軸承415就可使得轉動軸50在保持抵頂的狀態下同時進行轉動。 The first pneumatic cylinder 41 of the second driving mechanism of the present invention can also optionally include a third cylinder 430, wherein the rotating shaft 50 serves as the piston rod of the first cylinder 410 and the third cylinder 430 at the same time. That is, the rotating shaft 50 penetrates the first cylinder 410 and the third cylinder 430 at the same time. The abutting portion 51 protrudes from the surface of the rotating shaft 50, and the abutting portion 51 is located in the third cylinder 430 to serve as a piston plate of the third cylinder 430. Therefore, when gas is supplied to the gas chamber 433 of the third cylinder 430, the supporting portion 51 of the rotating shaft 50 will be pushed upward by the gas pressure until it abuts the thrust bearing 415. Because the shutter 20 of this creation will be pushed by the rotating shaft 50 The first valve port 11 is moved to open, and the gate 20 will also move with the rotation of the rotating shaft 50. Therefore, the above-mentioned thrust bearing 415 can make the rotating shaft 50 perform at the same time while maintaining the top position. Rotate.

在本創作中,由於第一氣壓缸41的位置在水平方向及垂直方向均不會移動,連接元件80的位置在垂直方向不會移動,而同時貫穿第一缸體410及第三缸體430之轉動軸50則會縱向位移及轉動。因此,本創作之另一特色在於轉動軸50具有至少一限位滑槽52,且轉動軸50於此限位滑槽52具有至少一平面,用以供連接元件80之夾持件88滑動式夾持,藉以轉動轉動軸50,故轉動軸50不僅可以被第一驅動機構30以連接元件80轉動,也可以被第二驅動機構驅動而相對於此連接元件80進行縱向位移。 In this creation, since the position of the first pneumatic cylinder 41 will not move in the horizontal direction and the vertical direction, the position of the connecting element 80 will not move in the vertical direction, and it penetrates the first cylinder 410 and the third cylinder 430 at the same time. The rotating shaft 50 is longitudinally displaced and rotated. Therefore, another feature of the present creation is that the rotating shaft 50 has at least one limiting chute 52, and the rotating shaft 50 has at least one flat surface in the limiting chute 52 for the clamping member 88 of the connecting element 80 to slide. Clamping is used to rotate the rotating shaft 50, so that the rotating shaft 50 can not only be rotated by the first driving mechanism 30 through the connecting element 80, but can also be driven by the second driving mechanism to move longitudinally relative to the connecting element 80.

如圖所示,本創作還可具有墊圈或O型環等密封件位於轉動軸50與第一氣壓缸41之間,以及位於轉動軸50與閥體10之穿孔19之間。舉例而言,轉動軸50於限位滑槽52之該平面以外的區域較佳為圓柱體,第一氣壓缸41較佳為環狀且較佳為環設於轉動軸50之周圍,又閥體10之穿孔19較佳為圓形,因此,藉由上述之密封件,本創作之鐘擺閥在轉動軸50轉動及升降的過程中,仍可保持氣密效果。 As shown in the figure, the present creation can also have seals such as gaskets or O-rings located between the rotating shaft 50 and the first pneumatic cylinder 41, and between the rotating shaft 50 and the perforation 19 of the valve body 10. For example, the area of the rotation shaft 50 outside the plane of the limit chute 52 is preferably a cylindrical body, the first pneumatic cylinder 41 is preferably ring-shaped and is preferably arranged around the rotation shaft 50, and the valve The perforation 19 of the body 10 is preferably circular. Therefore, with the above-mentioned seal, the pendulum valve of the present invention can still maintain an air-tight effect during the rotation and lifting of the rotating shaft 50.

另外,本創作之第二驅動機構進一步包含有第二氣壓缸42設於閥體10上。第二氣壓缸42具有第二缸體420、第二活塞桿421及復位彈簧62。第二活塞桿421例如為L字形或T字形。第二氣壓缸42較佳為環狀,且較佳為環設於閥體10之第二閥口12之周圍。當第二氣壓缸42中的氣體被排出時,第二氣壓缸42中的第二活塞桿421將會藉由復位彈簧62的回復力而向外突出,藉由抵頂閘板20上的O型環或墊片等密封件,進而使得閘板20密封式抵接第一閥口11以關閉第一 閥口11。此外,本創作還可具有墊圈或O型環等密封件位於第二氣壓缸42之第二活塞桿421與第二缸體420之間。 In addition, the second driving mechanism of the present invention further includes a second pneumatic cylinder 42 arranged on the valve body 10. The second pneumatic cylinder 42 has a second cylinder 420, a second piston rod 421 and a return spring 62. The second piston rod 421 is, for example, L-shaped or T-shaped. The second pneumatic cylinder 42 is preferably annular, and is preferably arranged around the second valve port 12 of the valve body 10. When the gas in the second pneumatic cylinder 42 is discharged, the second piston rod 421 in the second pneumatic cylinder 42 will protrude outward by the restoring force of the return spring 62, by pressing against the O on the gate 20 Seals such as ring or gasket, so that the gate 20 sealingly abuts the first valve port 11 to close the first Valve port 11. In addition, the present invention can also have seals such as gaskets or O-rings located between the second piston rod 421 of the second pneumatic cylinder 42 and the second cylinder 420.

此外,當第二氣壓缸42充氣時(將氣體充至第二氣壓缸42之氣室423),此時第二活塞桿421會內縮而離開閘板20之移動路徑,且使得復位彈簧62可累積彈簧壓縮力。惟,氣室423之設置位置及復位彈簧62之形式可視彈簧的復位運作而決定,本創作不限定於上述舉例。此外,第一氣壓缸41之氣室413及第二氣壓缸42之氣室423之充氣與排氣可例如藉由氣閥、氣體通道及氣體供應源而完成,惟為簡化圖示,故未繪示。惟,本創作所屬技術領域中具有通常知識者應可明瞭如何設置上述結構,故不再贅述。 In addition, when the second pneumatic cylinder 42 is inflated (to fill the air chamber 423 of the second pneumatic cylinder 42), the second piston rod 421 will retract and leave the moving path of the gate 20 at this time, and the return spring 62 Can accumulate spring compression force. However, the setting position of the air chamber 423 and the form of the return spring 62 can be determined by the return operation of the spring, and this creation is not limited to the above examples. In addition, the air chamber 413 of the first pneumatic cylinder 41 and the air chamber 423 of the second pneumatic cylinder 42 can be filled and exhausted by, for example, a valve, a gas passage, and a gas supply source. However, for the sake of simplification of the illustration, it is not Illustrated. However, those with ordinary knowledge in the technical field to which this creation belongs should be able to understand how to set up the above structure, so I will not repeat it.

本創作係令轉動軸50朝著遠離第一閥口1之方向移動位置,使得閘板20保持相距第一閥口11一段距離,藉以開啟第一閥口11。詳言之,轉動軸50及第二氣壓缸42之第二活塞桿421係朝同一方向位移,使得閘板20遠離第一閥口11而開啟第一閥口11。其中,轉動軸50與第二活塞桿412可例如是同步或不同步地上升或下降。舉例來說,在欲開啟第一閥口11時,可以先對第二氣壓缸42的氣室423充氣使得第二活塞桿421朝遠離第一閥口11的方向位移,再對第一氣壓缸41的氣室413充氣使得轉動軸50朝向第一閥口11移動位置,藉以帶動閘板20上升而可以開啟第一閥口11。隨後,再藉由第一驅動機構30來驅使轉動軸50轉動,以帶動閘板20轉動而使其位置遠離第一閥口11。 In this creation, the rotating shaft 50 is moved in a direction away from the first valve port 1 so that the gate 20 is kept at a distance from the first valve port 11 to open the first valve port 11. In detail, the rotating shaft 50 and the second piston rod 421 of the second pneumatic cylinder 42 are displaced in the same direction, so that the gate 20 is away from the first valve port 11 and opens the first valve port 11. Wherein, the rotating shaft 50 and the second piston rod 412 may rise or fall synchronously or asynchronously, for example. For example, when the first valve port 11 is to be opened, the air chamber 423 of the second pneumatic cylinder 42 can be inflated to make the second piston rod 421 move away from the first valve port 11, and then the first pneumatic cylinder The air chamber 413 of 41 is inflated so that the rotating shaft 50 moves toward the first valve port 11, thereby driving the gate 20 to rise to open the first valve port 11. Subsequently, the first driving mechanism 30 is used to drive the rotating shaft 50 to rotate, so as to drive the gate 20 to rotate so that its position is far away from the first valve port 11.

或者,也可以同步對第一氣壓缸41的氣室413以及第二氣壓缸42的氣室423充氣,使得轉動軸50及第二活塞桿421同步上升,以帶動閘板20上升而遠離第一閥口11。其中,在轉動軸50轉動式移動閘板20時,閘板20較佳為相距第二氣壓缸42之第二活塞桿421一段間隙,藉以避免磨耗。其中,不管是同步 或非同步充氣,第二活塞桿421之移動距離均略大於轉動軸50之移動距離,藉以使得閘板20可懸空式位於第二活塞桿421與第一閥口11之間,且保持一段距離。 Alternatively, the air chamber 413 of the first pneumatic cylinder 41 and the air chamber 423 of the second pneumatic cylinder 42 can also be inflated synchronously, so that the rotating shaft 50 and the second piston rod 421 rise synchronously to drive the gate 20 to rise away from the first Valve port 11. Wherein, when the rotating shaft 50 moves the gate 20 in a rotating manner, the gate 20 is preferably a gap away from the second piston rod 421 of the second pneumatic cylinder 42 to avoid wear. Among them, whether it is synchronized Or asynchronous inflation, the movement distance of the second piston rod 421 is slightly greater than the movement distance of the rotating shaft 50, so that the gate 20 can be suspended between the second piston rod 421 and the first valve port 11, and maintain a certain distance .

在本創作中,第一驅動機構30及第一氣壓缸41之數量可例如為一,而第二氣壓缸42則可例如為一或複數個,但不限定於此。舉例來說,以單一的第二氣壓缸42為例,其可例如具有多個復位彈簧62平均分佈於第一閥口11周圍,藉此能夠以均等的力道來升降閘板20。 In this creation, the number of the first driving mechanism 30 and the first pneumatic cylinder 41 may be one, for example, and the second pneumatic cylinder 42 may be one or more, but it is not limited thereto. For example, taking a single second pneumatic cylinder 42 as an example, it may have a plurality of return springs 62 evenly distributed around the first valve port 11, so that the gate 20 can be raised and lowered with equal force.

本創作之鐘擺閥之運作方式可例如下所述:欲關閉第一閥口11時,先藉由第一驅動機構30驅使連接元件80帶動轉動軸50轉動,以水平式轉動閘板20,使得閘板20由第一閥口11的外側移動至對應於第一閥口11的位置,即使得閘板20對應於第一閥口11。為了避免妨礙閘板20之移動,因此欲轉動閘板20時,第二氣壓缸42之氣室423較佳為呈充氣狀態,藉以先將第二活塞桿421往內縮,再使閘板20轉動,使得第二活塞桿421避開閘板20之移動路徑,即第二活塞桿421未接觸閘板20。接著,使第二驅動機構中的第一氣壓缸41之氣室413及第二氣壓缸42之氣室423排氣,以藉由復位彈簧62之回復力令閘板20縱向移動直至抵接第一閥口11。 The operating mode of the pendulum valve of the present creation can be as follows: when the first valve port 11 is to be closed, the first drive mechanism 30 drives the connecting element 80 to drive the rotation shaft 50 to rotate, and the gate 20 is rotated horizontally, so that The gate 20 moves from the outside of the first valve port 11 to a position corresponding to the first valve port 11, that is, the gate 20 corresponds to the first valve port 11. In order to avoid hindering the movement of the gate 20, when the gate 20 is to be rotated, the air chamber 423 of the second pneumatic cylinder 42 is preferably in an inflated state, so that the second piston rod 421 is first retracted, and then the gate 20 The rotation makes the second piston rod 421 avoid the moving path of the gate 20, that is, the second piston rod 421 does not contact the gate 20. Then, the air chamber 413 of the first pneumatic cylinder 41 and the air chamber 423 of the second pneumatic cylinder 42 in the second driving mechanism are exhausted, and the gate 20 is moved longitudinally by the restoring force of the return spring 62 until it abuts against the first One valve port 11.

隨後,若欲開啟第一閥口11,則可令第一氣壓缸41充氣(氣室413充氣),藉由朝向第一閥口11之方向推動第一活塞板及其上之轉動軸50,可藉以連動閘板20朝著遠離第一閥口11之方向位移。此外,同時令第二氣壓缸42充氣(氣室423充氣),使得復位彈簧62向內縮(累積回復力),且使得第二活塞桿421向內位移而離開閘板20之移動路徑。而且,閘板20可相距閥體10及第二活塞桿421一段距離,即未相互接觸,所以轉動軸50只要再次轉動即可令閘板20轉動式移動位置。 Subsequently, if the first valve port 11 is to be opened, the first pneumatic cylinder 41 can be inflated (air chamber 413 is inflated), by pushing the first piston plate and the rotating shaft 50 thereon toward the first valve port 11, The interlocking gate 20 can be moved away from the first valve port 11. In addition, at the same time, the second pneumatic cylinder 42 is inflated (the air chamber 423 is inflated), so that the return spring 62 is contracted inward (accumulated restoring force), and the second piston rod 421 is displaced inwardly away from the moving path of the gate 20. Moreover, the gate 20 can be a distance away from the valve body 10 and the second piston rod 421, that is, they are not in contact with each other, so the rotating shaft 50 only needs to rotate again to make the gate 20 move in a rotary position.

另外,如前所述,由於復位彈簧62所累積的彈簧壓縮力,在閘板20朝向第一閥口11之方向位移時可以提供復位力,因此閘板20可以更緊密地密封第一閥口11。 In addition, as mentioned above, due to the spring compression force accumulated by the return spring 62, the return force can be provided when the gate 20 is displaced in the direction of the first valve port 11. Therefore, the gate 20 can seal the first valve port more tightly. 11.

在本創作中,閘板20、轉動軸50及第二活塞桿421上皆可選擇性設置有O型環或墊圈等氣密元件,以達良好的氣密效果。 In this creation, airtight elements such as O-rings or washers can be selectively provided on the gate 20, the rotating shaft 50 and the second piston rod 421 to achieve a good airtight effect.

綜上所述,本創作之鐘擺閥可具有一或多個下述優點:(1)本創作之鐘擺閥透過兩段式驅動閘板作動,來開啟或關閉閥口。欲關閉閥口時,先水平式轉動閘板來讓閘板的位置對應於閥口,再垂直式升降閘板的高度,以氣密式關閉閥口。(2)透過單一的轉動軸來轉動閘板及升降閘板,成本低且能有效利用閥體之容置槽空間。(3)藉由充氣/放氣來移動氣壓缸的活塞桿,可以帶動轉動軸及閘板升降。而且,復位彈簧可以在閘板遠離閥口時累積彈簧壓縮力,使得當第二氣壓缸充氣時,復位彈簧會提供復位力(所累積的壓縮力),以令閘板更能緊密地關閉閥口。(4)適用於大型鐘擺閥。 In summary, the pendulum valve of this creation can have one or more of the following advantages: (1) The pendulum valve of this creation is actuated by a two-stage drive gate to open or close the valve port. When you want to close the valve port, first rotate the gate horizontally to make the position of the gate correspond to the valve port, and then vertically raise the height of the gate to close the valve port in an airtight manner. (2) Rotate the gate and lift the gate through a single rotating shaft, which has low cost and can effectively use the accommodating groove space of the valve body. (3) The piston rod of the pneumatic cylinder can be moved by inflation/deflation, which can drive the rotating shaft and the gate to rise and fall. Moreover, the return spring can accumulate spring compression force when the gate is away from the valve port, so that when the second pneumatic cylinder is inflated, the return spring will provide a return force (accumulated compression force), so that the gate can close the valve more tightly. mouth. (4) Suitable for large pendulum valves.

以上所述僅為舉例性,而非為限制性者。任何未脫離本創作之精神與範疇,而對其進行之等效修改或變更,均應包含於後附之申請專利範圍中。 The above description is only illustrative, and not restrictive. Any equivalent modifications or changes that do not depart from the spirit and scope of this creation should be included in the attached scope of patent application.

10:閥體 10: Valve body

11:第一閥口 11: The first valve port

12:第二閥口 12: The second valve port

13:容置槽 13: holding tank

19:穿孔 19: Piercing

20:閘板 20: Ram

30:第一驅動機構 30: The first drive mechanism

41:第一氣壓缸 41: The first pneumatic cylinder

411:第一活塞板 411: First Piston Plate

412:波浪彈簧 412: Wave Spring

413、423、433:氣室 413, 423, 433: air chamber

415:止推軸承 415: Thrust bearing

42:第二氣壓缸 42: The second pneumatic cylinder

420:第二缸體 420: second cylinder

421:第二活塞桿 421: second piston rod

430:第三缸體 430: Third cylinder

50:轉動軸 50: rotating shaft

51:撐抵部 51: Support Department

53:指示件 53: indicator

62:復位彈簧 62: return spring

70:延伸板 70: Extension board

88:夾持件 88: clamp

91:外蓋 91: Outer cover

Claims (8)

一種鐘擺閥,至少包含:一閥體,該閥體為中空且至少具有一第一閥口;一閘板,可動式設於該閥體中;一轉動軸,該轉動軸連接該閘板;一第一驅動機構,經由驅動該轉動軸轉動以轉動該閘板,藉以使得該閘板之位置對應於該第一閥口或遠離該第一閥口;以及一第二驅動機構,經由驅動該轉動軸升降以升降該閘板,藉以使得該閘板抵接或遠離該第一閥口而關閉或開啟該第一閥口,其中該第二驅動機構至少包含一第一氣壓缸設於該閥體上,該第一氣壓缸之一第一活塞板係用以抵頂該轉動軸以驅使該轉動軸及該閘板朝著遠離該第一閥口之方向縱向位移,其中該轉動軸與該第一活塞板之間更設有一波浪彈簧,且該第一氣壓缸之該第一活塞板係經由該波浪彈簧推移該轉動軸。 A pendulum valve at least includes: a valve body, which is hollow and has at least a first valve port; a gate, which is movably arranged in the valve body; a rotating shaft, which is connected to the gate; A first driving mechanism rotates the gate by driving the rotation shaft to rotate, so that the position of the gate corresponds to the first valve port or away from the first valve port; and a second driving mechanism drives the gate The rotating shaft is raised and lowered to raise and lower the gate, so that the gate abuts against or away from the first valve port to close or open the first valve port, wherein the second driving mechanism includes at least a first pneumatic cylinder disposed on the valve Body, a first piston plate of the first pneumatic cylinder is used to abut the rotation shaft to drive the rotation shaft and the gate to move longitudinally away from the first valve port, wherein the rotation shaft and the A wave spring is further provided between the first piston plates, and the first piston plate of the first pneumatic cylinder pushes the rotating shaft through the wave spring. 如申請專利範圍第1項所述之鐘擺閥,其中該第一驅動機構及/或該第二驅動機構係氣壓缸。 For the pendulum valve described in item 1 of the scope of patent application, the first driving mechanism and/or the second driving mechanism are pneumatic cylinders. 如申請專利範圍第1項所述之鐘擺閥,更包含至少一止推軸承,其中當該轉動軸連動該閘板縱向位移以開啟該第一閥口時以及橫向位移以遠離該第一閥口時,該止推軸承係承受該轉動軸之至少一撐抵部之推頂。 The pendulum valve described in item 1 of the scope of patent application further includes at least one thrust bearing, wherein when the rotating shaft is linked to the longitudinal displacement of the gate to open the first valve port, and laterally displaced away from the first valve port At this time, the thrust bearing bears the push of at least one supporting part of the rotating shaft. 如申請專利範圍第3項所述之鐘擺閥,其中該第一氣壓缸具有一第一缸體,該轉動軸係作為該第一缸體之一第一活塞桿,當該第一缸體中充氣時,該第一氣壓缸之該第一活塞板係受氣體壓力推頂以驅使該轉動軸及該閘板朝著遠離該第一閥口之方向縱向位移。 The pendulum valve described in item 3 of the scope of patent application, wherein the first pneumatic cylinder has a first cylinder, and the rotation shaft is used as a first piston rod of the first cylinder. When inflating, the first piston plate of the first pneumatic cylinder is pushed up by gas pressure to drive the rotating shaft and the gate to move longitudinally away from the first valve port. 如申請專利範圍第3項所述之鐘擺閥,其中該第一氣壓缸具有一第一缸體及一第二缸體,該轉動軸係同時作為該第一缸體及該第二缸體之一第一活塞桿,當該第一缸體及該第二缸體充氣時,該第一缸體中之該第一活塞板及該第二缸體中之該轉動軸之該撐抵部係受氣體壓力推頂令該轉動軸之該撐抵部及該第一氣壓缸之該第一活塞板縱向位移。 The pendulum valve described in item 3 of the scope of patent application, wherein the first pneumatic cylinder has a first cylinder and a second cylinder, and the rotating shaft is simultaneously used as the first cylinder and the second cylinder A first piston rod. When the first cylinder and the second cylinder are inflated, the abutment portion of the first piston plate in the first cylinder and the rotation shaft in the second cylinder is Being pushed by the gas pressure causes the abutment portion of the rotating shaft and the first piston plate of the first pneumatic cylinder to move longitudinally. 如申請專利範圍第1項所述之鐘擺閥,其中該第二驅動機構包含一第二氣壓缸設於該閥體上,該第二氣壓缸之一第二活塞桿係選擇性推頂該閘板或離開該閘板之移動路徑。 As for the pendulum valve described in claim 1, wherein the second drive mechanism includes a second pneumatic cylinder arranged on the valve body, and a second piston rod of the second pneumatic cylinder selectively pushes the gate The movement path of the board or leaving the gate. 如申請專利範圍第6項所述之鐘擺閥,其中該第二氣壓缸更包含一復位彈簧,當該第二氣壓缸洩氣時,該復位彈簧係令該第二氣壓缸之該第二活塞桿向外突伸以推頂該閘板,當該第二氣壓缸充氣時,該第二氣壓缸之該第二活塞桿係縮回以離開該閘板之移動路徑。 The pendulum valve described in item 6 of the scope of patent application, wherein the second pneumatic cylinder further includes a return spring, and when the second pneumatic cylinder is deflated, the return spring makes the second piston rod of the second pneumatic cylinder When the second pneumatic cylinder is inflated, the second piston rod of the second pneumatic cylinder is retracted to leave the moving path of the gate. 如申請專利範圍第7項所述之鐘擺閥,其中該閘板具有一密封件,且該復位彈簧係經由該密封件推頂該閘板。 For the pendulum valve described in item 7 of the scope of patent application, the gate has a sealing element, and the return spring pushes the gate through the sealing element.
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