TWM462785U - Pneumatic powered door - Google Patents
Pneumatic powered door Download PDFInfo
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- TWM462785U TWM462785U TW102205424U TW102205424U TWM462785U TW M462785 U TWM462785 U TW M462785U TW 102205424 U TW102205424 U TW 102205424U TW 102205424 U TW102205424 U TW 102205424U TW M462785 U TWM462785 U TW M462785U
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Abstract
Description
本新型涉及一種自動門,尤其是一種環保氣壓動力門。The invention relates to an automatic door, in particular to an environmentally friendly pneumatic power door.
一般現有的電動自動門多半以無線感應裝置搭配電力開啟,當使用者站立或靠近於電動自動門時,無線感應裝置偵測到訊號後,使電動自動門藉由傳動機構開啟,然而現有的電動自動門之無線感應裝置的感應靈敏度不一,有些時候在未靠近門口就先行打開,不斷開啟的電動自動門可能造成內部的冷氣不斷外洩,容易造成能源的浪費,而有些則容易因感應狀況不佳,而造成門口不易開啟;由於近年來油、電價節節高升,節能減碳的意識在使用者的心中比重愈來愈高,因此,對於現有的電動自動門誤開造成能源浪費或誤關造成使用者不便的情況,仍有待改善加強之處。Generally, the existing electric automatic door is mostly opened with a wireless sensing device. When the user stands or approaches the electric automatic door, the wireless sensing device detects the signal and causes the electric automatic door to be opened by the transmission mechanism, but the existing electric motor The wireless sensor of the automatic door has different sensing sensitivities. Sometimes it is opened before it is close to the door. The continuously opened electric automatic door may cause the internal air to leak continuously, which is easy to cause energy waste, while others are easy to be inductive. Poor, but the door is not easy to open; due to the high oil and electricity prices in recent years, the awareness of energy saving and carbon reduction is getting higher and higher in the minds of users. Therefore, the existing electric automatic doors are misused to cause energy waste or mistake. In the case of user inconvenience, there is still room for improvement.
為了解決現有的電動自動門的感應效果不佳,容易造成自動門誤開產生浪費能源,或誤關造成使用者不便的問題,本新型的主要目的在於提供一種環保氣壓動力門,其以踩踏產生重量感應的方式,產生壓縮空氣動力將 門開啟,無需使用電力及無線感應裝置,更為精準有效並且環保節能。In order to solve the problem that the existing electric automatic door has poor induction effect, it is easy to cause the automatic door to be mis-opened to generate waste energy, or the error is caused by the user's inconvenience. The main purpose of the present invention is to provide an environmentally-friendly pneumatic power door which is generated by pedaling. The way of weight sensing, generating compressed air power will The door is opened, eliminating the need for power and wireless sensing devices, making it more accurate, efficient, and environmentally friendly.
本新型所運用的技術手段在於提供一種環保氣壓動力門,包括有一活動門本體、兩氣流控制單元及兩進氣踏階;其中,該活動門本體包括有一門框、一滑動門板及一氣壓裝置,該門框具有一進出口,並於該門框內側的上、下端分別設有一軌道,該滑動門板可滑動地設置於該兩軌道之間,並可遮擋該進出口,該氣壓裝置設置於該門框之內側,並與該滑動門板呈平行設置且以一端連接;該兩氣流控制單元分別設置於該活動門本體的兩側,並以管線連接至該活動門本體之氣壓裝置;該兩進氣踏階分別設置於該活動門本體的兩側,並對正於該活動門本體之進出口,於該進氣踏階之內部設有一氣囊,該進氣踏階可利用重力壓縮該氣囊產生壓縮氣體,且該氣流控制單元以管線連接至該氣囊。The technical method used in the present invention is to provide an environmentally-friendly pneumatic power door, comprising a movable door body, two air flow control units and two air intake steps; wherein the movable door body comprises a door frame, a sliding door plate and a pneumatic device. The door frame has an inlet and an outlet, and a rail is disposed on the upper and lower ends of the door frame. The sliding door panel is slidably disposed between the two rails and can block the inlet and outlet. The air pressure device is disposed on the door frame. The inner side is disposed parallel to the sliding door panel and connected at one end; the two air flow control units are respectively disposed on two sides of the movable door body, and are connected to the air pressure device of the movable door body by a pipeline; the two air intake steps Separatingly disposed on two sides of the movable door body, and being disposed at an inlet and outlet of the movable door body, an air bag is disposed inside the air intake step, and the air intake step can compress the air bag to generate compressed gas by gravity. And the airflow control unit is connected to the airbag by a pipeline.
前述之環保氣壓動力門,其中該兩氣流控制單元分別於內部設有一出氣閥及一進氣閥,該出氣閥與該進氣閥呈並排設置,於該出氣閥連接有一第一管線,並於該第一管線的另一端連接至該活動門本體之該氣壓裝置,於進氣閥則連接有一第二管線。In the above-mentioned environmentally-friendly pneumatic power gate, the two airflow control units are respectively provided with an air outlet valve and an air inlet valve, and the air outlet valve is arranged side by side with the air inlet valve, and a first pipeline is connected to the air outlet valve, and The other end of the first line is connected to the air pressure device of the movable door body, and a second line is connected to the intake valve.
前述之環保氣壓動力門,其中該第一管線及該第二管線於連接該出氣閥之開口大於連接於該進氣閥之開口。In the above-mentioned environmentally-friendly pneumatic power door, the opening of the first line and the second line connecting the outlet valve is larger than the opening connected to the intake valve.
本新型利用所提供的環保氣壓動力門,可以獲得的功效增進在於使用者能夠踩踏於進氣踏階上,並以自 身重量壓縮進氣踏階內部的氣囊產生壓縮空氣,並傳入活動門本體並開啟滑動門板,直覺且易於使用,並且無需使用電力及無線感應裝置,可達到節能減碳的環保效果。The utility model utilizes the provided environmentally-friendly pneumatic power door, and the improved effect can be obtained by the user being able to step on the intake step and self-determining The body weight compresses the airbag inside the intake step to generate compressed air, and is introduced into the movable door body and opens the sliding door panel, which is intuitive and easy to use, and does not require the use of electric power and wireless sensing devices, thereby achieving the environmental protection effect of energy saving and carbon reduction.
10‧‧‧活動門本體10‧‧‧ activity gate body
11‧‧‧門框11‧‧‧ door frame
111‧‧‧進出口111‧‧‧Import
12‧‧‧滑動門板12‧‧‧Sliding door panels
121‧‧‧滑動件121‧‧‧Sliding parts
13‧‧‧氣壓裝置13‧‧‧Air pressure device
131‧‧‧壓缸131‧‧‧pressure cylinder
132‧‧‧活塞桿132‧‧‧ piston rod
14‧‧‧拉門組件14‧‧‧Sliding door assembly
141‧‧‧定滑輪141‧‧‧ fixed pulley
142‧‧‧拉索142‧‧‧Laso
143‧‧‧重件143‧‧‧ Heavy pieces
20‧‧‧氣流控制單元20‧‧‧Airflow control unit
21‧‧‧出氣閥21‧‧‧Exhaust valve
22‧‧‧進氣閥22‧‧‧Intake valve
23‧‧‧第一管線23‧‧‧First pipeline
24‧‧‧第二管線24‧‧‧Second pipeline
30‧‧‧進氣踏階30‧‧‧Intake step
31‧‧‧容置箱31‧‧‧ 容箱
32‧‧‧氣囊32‧‧‧Airbag
33‧‧‧緩衝裝置33‧‧‧ buffer device
34‧‧‧壓蓋34‧‧‧Gland
A‧‧‧使用者A‧‧‧ user
圖1本新型較佳實施例的外觀圖。Figure 1 is an external view of the preferred embodiment of the present invention.
圖2本新型較佳實施例的內部示意圖。Figure 2 is an internal schematic view of the preferred embodiment of the present invention.
圖3本新型的氣流控制單元的內部示意圖。Figure 3 is an internal schematic view of the novel air flow control unit.
圖4本新型較佳實施例的進氣踏階的分解圖。Figure 4 is an exploded view of the intake step of the preferred embodiment of the present invention.
圖5本新型較佳實施例的使用狀態圖。Figure 5 is a diagram showing the state of use of the preferred embodiment of the present invention.
圖6本新型較佳實施例踩踏進氣踏階造成滑動門板開啟的實施狀態圖。Fig. 6 is a view showing an implementation state in which the sliding door panel is opened by stepping on the intake step in the preferred embodiment of the present invention.
為能詳細瞭解本新型的技術特徵及實用功效,並可依照說明書的內容來實現,玆進一步以如圖式所示的較佳實施例,詳細說明如后:本新型一種環保氣壓動力門,請參閱圖1至圖3的較佳實施例,其包括一活動門本體10、兩氣流控制單元20及兩進氣踏階30。In order to understand the technical features and practical functions of the present invention in detail, and in accordance with the contents of the specification, the following is a detailed description of the preferred embodiment as shown in the following: a new type of environmentally friendly pneumatic power door, please Referring to the preferred embodiment of FIGS. 1 through 3, a movable door body 10, two airflow control units 20, and two intake steps 30 are included.
如圖1及圖2所示,該活動門本體10包括有一門框11、一滑動門板12、一氣壓裝置13及一拉門組件14,於該門框11內側的上、下兩端分別設置有一軌道110,該門框11於其中一側形成一進出口111,該滑動門板12可滑動地設置於該門框11之內部,並且可滑動遮擋於該進出口111,於該滑動門板12之上、下端分別設置有兩 滑動件121,該滑動門板12以該兩滑動件121可滑動地設置於該門框11之軌道110內,該氣壓裝置13設置於該門框11之內側,且與該滑動門板12呈平行設置,該氣壓裝置13包括有一壓缸131及一活塞桿132,該壓缸131固定於該門框11之內側,該活塞桿132以呈桿狀的一端凸出於該壓缸131的外側,並連接結合於該滑動門板12,該拉門組件14設置於該門框11的內側,且設置於該滑動門板12與該氣壓裝置13之間,該拉門組件14包括有一定滑輪141、一拉索142及一重件143,該定滑輪141固設於該門框11內側靠近該進出口111的上方位置,該拉索142以一端連接至該滑動門板12之其中之一滑動件121,並以另一端結合該重件143後,掛置於該定滑輪141的上方,使該滑動門板12能夠藉由該重件143拉回至原定位。As shown in FIG. 1 and FIG. 2, the movable door body 10 includes a door frame 11, a sliding door panel 12, a pneumatic device 13, and a sliding door assembly 14, and a track is disposed on the upper and lower ends of the door frame 11 respectively. 110. The door frame 11 defines an inlet and outlet 111 on one side thereof. The sliding door panel 12 is slidably disposed inside the door frame 11 and is slidably shielded from the inlet and outlet 111. The upper and lower ends of the sliding door panel 12 are respectively There are two settings The sliding member 121 is slidably disposed in the rail 110 of the door frame 11 by the two sliding members 121. The air pressure device 13 is disposed inside the door frame 11 and disposed parallel to the sliding door panel 12, The air pressure device 13 includes a pressure cylinder 131 and a piston rod 132. The pressure cylinder 131 is fixed to the inner side of the door frame 11. The piston rod 132 protrudes from the outer side of the pressure cylinder 131 at one end of the rod shape, and is coupled and coupled. The sliding door panel 12 is disposed on the inner side of the door frame 11 and disposed between the sliding door panel 12 and the air pressure device 13. The sliding door assembly 14 includes a certain pulley 141, a cable 142 and a weight. The fixed pulley 141 is fixed on the inner side of the door frame 11 near the inlet and outlet 111, and the cable 142 is connected at one end to one of the slide members 121 of the sliding door panel 12, and the other end is coupled to the weight After the piece 143, it is hung above the fixed pulley 141, so that the sliding door panel 12 can be pulled back to the original position by the weight 143.
如圖2及圖3所示,該兩氣流控制單元20分別設置於該活動門本體10的兩側,該兩氣流控制單元20分別於內部設有一出氣閥21及一進氣閥22,該出氣閥21與該進氣閥22呈並排設置,且該出氣閥21與該進氣閥22均為單向閥,僅能由一端進出,於該出氣閥21連接有一第一管線23,並於該第一管線23的另一端連接至該活動門本體10之該氣壓裝置13,於進氣閥22則連接有一第二管線24,且該第一管線23及該第二管線24於連接該出氣閥21之開口大於連接於該進氣閥22之開口。As shown in FIG. 2 and FIG. 3, the two airflow control units 20 are respectively disposed on two sides of the movable door body 10. The airflow control unit 20 is internally provided with an air outlet valve 21 and an intake valve 22, respectively. The valve 21 and the intake valve 22 are arranged side by side, and the outlet valve 21 and the intake valve 22 are both one-way valves, and can only enter and exit from one end, and a first line 23 is connected to the outlet valve 21, and The other end of the first line 23 is connected to the air pressure device 13 of the movable door body 10, and a second line 24 is connected to the intake valve 22, and the first line 23 and the second line 24 are connected to the air outlet valve. The opening of 21 is larger than the opening connected to the intake valve 22.
如圖2及圖4所示,該兩進氣踏階30分別設置於該活動門本體10之兩側,並對正於該活動門本體10之進出口111的位置,該兩進氣踏階30包括有一容置箱 31、一氣囊32、四個緩衝裝置33及一壓蓋34,該容置箱31為一矩形箱體並於內部設有該氣囊32及該四緩衝裝置33,該氣囊32連接有該第二管線24,且該氣囊32之容積與該壓缸131之容積呈15:1的比例,該四緩衝裝置33設置於該容置箱31的各角落,該四緩衝裝置33利用彈簧之彈性來減輕震蘯,該壓蓋34蓋合於該容置箱31,並抵靠於該氣囊32及該四緩衝裝置33。As shown in FIG. 2 and FIG. 4, the two intake steps 30 are respectively disposed on two sides of the movable door body 10, and the two intake steps are located at the position of the inlet and outlet 111 of the movable door body 10. 30 includes a housing box 31. An air bag 32, four buffering devices 33 and a gland 34. The receiving box 31 is a rectangular box body and is internally provided with the air bag 32 and the four buffering device 33. The air bag 32 is connected to the second bag. The pipeline 24 has a ratio of a volume of the airbag 32 to a volume of the cylinder 131 of 15:1. The four buffering device 33 is disposed at each corner of the accommodating case 31, and the four damper device 33 is relieved by the elasticity of the spring. The pressure cover 34 is covered by the receiving box 31 and abuts against the air bag 32 and the four buffering device 33.
本新型較佳的實施方式如圖5所示,當一使用者A尚未站上其中之一該進氣踏階30之壓蓋34時,此時該滑動門板12呈緊閉狀態,如圖4及圖6所示,當該使用者踏上該進氣踏階30之壓蓋34時,由於該氣囊32與該氣壓裝置13的容積比不同,故能藉由該使用者之體重將該進氣踏階30之氣囊32壓縮並產生壓縮空氣,如圖3所示,壓縮空氣由該第二管線24流出該出氣閥21,並經由該第一管線23流入該氣壓裝置13並推動該滑動門板12,使該使用者得以進入該活動門本體10;如圖3及圖5所示,當該使用者離開該進氣踏階30後,使該拉門組件14將該滑動門板12拉回至原定位後,該氣壓裝置13之氣體將會受到該拉門組件14的重力作用,而經由該第一管線23流回至該進氣閥22,並經由該第二管線22回充至該氣囊32,由於前述之出氣時的出口大於進氣時的入口,故該滑動門板12於開啟時進入的空氣較多,而使開啟速度較快,而在關閉時流出的空氣較少,而使關閉的速度較慢。A preferred embodiment of the present invention is shown in FIG. 5. When a user A has not yet reached one of the glands 34 of the intake step 30, the sliding door panel 12 is in a closed state, as shown in FIG. As shown in FIG. 6, when the user steps on the gland 34 of the air intake step 30, since the volume ratio of the air bag 32 to the air pressure device 13 is different, the user can gain the weight by the weight of the user. The air bag 32 of the air step 30 compresses and generates compressed air. As shown in FIG. 3, compressed air flows out of the air outlet valve 21 from the second line 24, and flows into the air pressure device 13 via the first line 23 and pushes the sliding door panel. 12, the user is allowed to enter the movable door body 10; as shown in FIG. 3 and FIG. 5, after the user leaves the intake step 30, the sliding door assembly 14 pulls the sliding door panel 12 back to After the original positioning, the gas of the pneumatic device 13 will be subjected to the gravity of the sliding door assembly 14, and will flow back to the intake valve 22 via the first line 23, and be recharged to the air bag via the second line 22. 32. Since the outlet at the time of the outgasing is larger than the inlet at the time of intake, the sliding door panel 12 enters the space when it is opened. More, the open faster, and less air flows at the time of closing, the closing speed is slow.
因此,本新型僅需藉由使用者的本身之重量即 能夠將該活動門本體10開啟,較佳的至少要重達40公斤以上,可確保該活動門本體10的開啟,無需於外部連接使用任何的電力及無線感應裝置,在使用上更為直覺簡易,且能夠節能減碳,相當地實用方便。Therefore, the present invention only needs to be by the weight of the user itself. The movable door body 10 can be opened, preferably at least 40 kg or more, to ensure the opening of the movable door body 10, without using any electric power and wireless sensing device for external connection, and is more intuitive and simple to use. And it can save energy and reduce carbon, which is quite practical and convenient.
以上所述,僅是本新型的較佳實施例,並非對本新型作任何形式上的限制,任何所屬技術領域中具有通常知識者,若在不脫離本新型所提技術特徵的範圍內,利用本新型所揭示技術內容所作出局部更動或修飾的等效實施例,均仍屬於本新型技術特徵的範圍內。The above description is only a preferred embodiment of the present invention, and is not intended to limit the present invention in any way. Any person having ordinary knowledge in the art can use the present invention without departing from the technical features of the present invention. Equivalent embodiments of the novel modifications or modifications made by the novel teachings are still within the scope of the novel features.
10‧‧‧活動門本體10‧‧‧ activity gate body
20‧‧‧氣流控制單元20‧‧‧Airflow control unit
30‧‧‧進氣踏階30‧‧‧Intake step
Claims (5)
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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TW102205424U TWM462785U (en) | 2013-03-25 | 2013-03-25 | Pneumatic powered door |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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TW102205424U TWM462785U (en) | 2013-03-25 | 2013-03-25 | Pneumatic powered door |
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TW102205424U TWM462785U (en) | 2013-03-25 | 2013-03-25 | Pneumatic powered door |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109707281A (en) * | 2018-12-29 | 2019-05-03 | 重庆鑫奇门业有限公司 | A kind of environmental protection Pneumatic pressure power timber |
CN117477385A (en) * | 2023-12-27 | 2024-01-30 | 滨州市华亿电器设备有限公司 | Power distribution cabinet electric leakage detection device |
-
2013
- 2013-03-25 TW TW102205424U patent/TWM462785U/en not_active IP Right Cessation
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109707281A (en) * | 2018-12-29 | 2019-05-03 | 重庆鑫奇门业有限公司 | A kind of environmental protection Pneumatic pressure power timber |
CN117477385A (en) * | 2023-12-27 | 2024-01-30 | 滨州市华亿电器设备有限公司 | Power distribution cabinet electric leakage detection device |
CN117477385B (en) * | 2023-12-27 | 2024-03-22 | 滨州市华亿电器设备有限公司 | Power distribution cabinet electric leakage detection device |
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