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TWD189935S - Fluid pressure cylinder - Google Patents

Fluid pressure cylinder

Info

Publication number
TWD189935S
TWD189935S TW106303406F TW106303406F TWD189935S TW D189935 S TWD189935 S TW D189935S TW 106303406 F TW106303406 F TW 106303406F TW 106303406 F TW106303406 F TW 106303406F TW D189935 S TWD189935 S TW D189935S
Authority
TW
Taiwan
Prior art keywords
piston
pressure fluid
cylinder tube
lead
cylinder
Prior art date
Application number
TW106303406F
Other languages
Chinese (zh)
Inventor
門田謙吾
Original Assignee
Smc股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Smc股份有限公司 filed Critical Smc股份有限公司
Publication of TWD189935S publication Critical patent/TWD189935S/en

Links

Abstract

【物品用途】;本物品係一種流體壓力缸,係在壓力流體的供給作用下,使被收納在缸管內之未圖示的活塞沿著軸線方向前進後退,而使連結於前述活塞之活塞桿直線狀地往復動作。;在使用時,首先,透過接頭,將壓力流體供給源連接於壓力流體導出導入通口。接著,調整內建於速度控制器之節流閥的開放程度。接著,當在未圖示的電磁閥之切換作動下,將壓力流體從一方之壓力流體導出導入通口導入前述缸管內,而透過前述節流閥使另一方之壓力流體導出導入通口成為大氣壓開放狀態時,由於此壓力流體之壓力,前述活塞就會以對應於節流閥之開放程度的速度於缸室內從頭蓋側向桿蓋側朝軸線方向移動。同樣地,當使前述電磁閥作動,而透過前述節流閥使一方之壓力流體導出導入通口成為大氣壓開放狀態,並將壓力流體從另一方之壓力流體導出導入通口導入於前述缸管內時,前述活塞就會於前述缸室內從前述桿蓋側向前述頭蓋側朝軸線方向移動。如此,連結於前述活塞之前述活塞桿會對應於前述活塞之移動而沿著前述缸管之軸線方向直線狀地往復動作。;【設計說明】;本設計之流體壓力缸係具有:缸管;活塞桿,與以在形成於前述缸管之缸室的內部前進後退自如的方式設置之活塞一體地位移;桿蓋,供前述活塞桿插通並且封閉缸室之一方的開口部;頭蓋,封閉另一方的開口部;及固定環,將前述頭蓋固定於前述缸管。;在前述缸管的側面,以與前述缸管之軸線方向平行的方式設有剖面大致圓形之開關安裝溝。如顯示使用狀態之參考立體圖所示,在該開關安裝溝安裝有活塞位置檢測開關,該活塞位置檢測開關係檢測沿著前述缸管之軸線方向位移之活塞的位置。在前述開關安裝溝之前述桿蓋側的端部附近,係設有用以安裝未圖示的螺栓之大徑的螺栓安裝孔。;於位在前述桿蓋之外周方向的前述缸管之隅角部,係設有用以安裝未圖示的螺栓之小徑的螺栓安裝孔。另一方面,於位在前述頭蓋之外周方向的前述缸管之隅角部,係設有:接頭,用以對未圖示的壓力流體導出導入通口連接未圖示的壓力流體供給源;速度控制器,對應於未圖示的節流閥之開放程度來調整壓力流體之供給及排出的流量;及小徑的螺栓安裝孔,用以安裝未圖示的螺栓。;本設計之創作特徵在於「流體壓力缸」的整體形狀。[Use of the article] This article is a fluid pressure cylinder, which, under the supply of pressure fluid, causes the piston (not shown) contained in the cylinder tube to move forward and backward along the axis direction, so that the piston connected to the piston is moved forward and backward. The rod reciprocates linearly. ;When in use, first, connect the pressure fluid supply source to the pressure fluid lead-in port through the connector. Next, adjust the opening degree of the throttle valve built into the speed controller. Next, when the solenoid valve (not shown) is switched, the pressure fluid is introduced into the cylinder tube from one of the pressure fluid lead-in and lead-out ports, and the other pressure fluid lead-in and lead-out port is formed through the throttle valve. When the atmospheric pressure is open, due to the pressure of the pressure fluid, the piston will move in the cylinder chamber from the head cover side to the rod cover side in the axial direction at a speed corresponding to the opening degree of the throttle valve. Similarly, when the solenoid valve is actuated, one of the pressure fluid lead-in and lead-out ports is opened to atmospheric pressure through the throttle valve, and the pressure fluid is introduced into the cylinder tube from the other pressure fluid lead-in and lead-out port. When the piston moves, the piston will move in the axial direction from the rod cover side to the head cover side in the cylinder chamber. In this way, the piston rod connected to the piston linearly reciprocates along the axial direction of the cylinder tube in response to the movement of the piston. ;[Design description];The fluid pressure cylinder of this design has: a cylinder tube; a piston rod, which is integrally displaced with a piston arranged to move forward and backward freely inside the cylinder chamber formed in the cylinder tube; a rod cover, which is provided for The piston rod is inserted into and closes one opening of the cylinder chamber; the head cover closes the other opening; and the fixing ring fixes the head cover to the cylinder tube. ; On the side of the cylinder tube, a switch mounting groove with a substantially circular cross-section is provided parallel to the axis direction of the cylinder tube. As shown in the reference perspective view showing the use state, a piston position detection switch is installed in the switch installation groove, and the piston position detection switch detects the position of the piston displaced along the axis of the cylinder tube. A large-diameter bolt mounting hole for mounting a bolt (not shown) is provided near the end of the switch mounting groove on the lever cover side. ; A small-diameter bolt mounting hole for mounting a bolt (not shown) is provided at the corner of the cylinder tube located in the outer circumferential direction of the rod cover. On the other hand, at the corner of the cylinder tube located in the outer circumferential direction of the head cover, there is provided: a connector for connecting a pressure fluid supply source (not shown) to a pressure fluid lead-in and lead-out port (not shown); The speed controller adjusts the supply and discharge flow rates of the pressure fluid in response to the opening degree of the throttle valve (not shown); and the small-diameter bolt mounting holes are used to install bolts (not shown). ;The creative characteristic of this design lies in the overall shape of the "fluid pressure cylinder".

Description

流體壓力缸 Fluid pressure cylinder

本物品係一種流體壓力缸,係在壓力流體的供給作用下,使被收納在缸管內之未圖示的活塞沿著軸線方向前進後退,而使連結於前述活塞之活塞桿直線狀地往復動作。 This product is a fluid pressure cylinder that reciprocates the piston (not shown) accommodated in the cylinder tube in the axial direction by the supply of the pressurized fluid, and reciprocates the piston rod connected to the piston linearly. action.

在使用時,首先,透過接頭,將壓力流體供給源連接於壓力流體導出導入通口。接著,調整內建於速度控制器之節流閥的開放程度。接著,當在未圖示的電磁閥之切換作動下,將壓力流體從一方之壓力流體導出導入通口導入前述缸管內,而透過前述節流閥使另一方之壓力流體導出導入通口成為大氣壓開放狀態時,由於此壓力流體之壓力,前述活塞就會以對應於節流閥之開放程度的速度於缸室內從頭蓋側向桿蓋側朝軸線方向移動。同樣地,當使前述電磁閥作動,而透過前述節流閥使一方之壓力流體導出導入通口成為大氣壓開放狀態,並將壓力流體從另一方之壓力流體導出導入通口導入於前述缸管內時,前述活塞就會於前述缸室內從前述桿蓋側向前述頭蓋側朝軸線方向移動。如此,連結於前述活塞之前述活塞桿會對應於前述活塞之移動而沿著前述缸管之軸線方向直線狀地往復動作。 In use, first, a pressure fluid supply source is connected to the pressure fluid outlet introduction port through the joint. Next, adjust the openness of the throttle valve built into the speed controller. Next, when a solenoid valve (not shown) is switched, pressure fluid is introduced into the cylinder tube from one of the pressure fluid outlet ports, and the other pressure fluid is led through the throttle valve to be introduced into the port. When the atmospheric pressure is in an open state, due to the pressure of the pressure fluid, the piston moves in the cylinder chamber from the head cover side to the rod cover side in the axial direction at a speed corresponding to the opening degree of the throttle valve. Similarly, when the solenoid valve is actuated, one of the pressure fluids is led out through the throttle valve to be introduced into the port to be in an atmospheric pressure open state, and the pressure fluid is led out from the other pressure fluid into the port and introduced into the cylinder tube. At this time, the piston moves in the axial direction from the side of the rod cover toward the side of the head cover in the cylinder chamber. In this manner, the piston rod coupled to the piston reciprocates linearly along the axial direction of the cylinder tube in response to the movement of the piston.

本設計之流體壓力缸係具有:缸管;活塞桿,與以在形成於前述缸管之缸室的內部前進後退自如的方式設置之活塞一體地位移;桿蓋,供前述 活塞桿插通並且封閉缸室之一方的開口部;頭蓋,封閉另一方的開口部;及固定環,將前述頭蓋固定於前述缸管。 The fluid pressure cylinder of the present design has: a cylinder tube; a piston rod integrally displaced with a piston disposed in a forward and backward manner in a cylinder chamber formed in the cylinder tube; a lever cover for the foregoing The piston rod is inserted and closes an opening of one of the cylinder chambers; the head cover closes the other opening; and a fixing ring that fixes the head cover to the cylinder tube.

在前述缸管的側面,以與前述缸管之軸線方向平行的方式設有剖面大致圓形之開關安裝溝。如顯示使用狀態之參考立體圖所示,在該開關安裝溝安裝有活塞位置檢測開關,該活塞位置檢測開關係檢測沿著前述缸管之軸線方向位移之活塞的位置。在前述開關安裝溝之前述桿蓋側的端部附近,係設有用以安裝未圖示的螺栓之大徑的螺栓安裝孔。 A switch mounting groove having a substantially circular cross section is provided on a side surface of the cylinder tube so as to be parallel to the axial direction of the cylinder tube. As shown in the reference perspective view showing the state of use, a piston position detecting switch is mounted in the switch mounting groove, and the piston position detecting opening relationship detects the position of the piston displaced in the axial direction of the cylinder tube. A bolt mounting hole for attaching a large diameter of a bolt (not shown) is provided in the vicinity of the end portion of the switch mounting groove on the rod cover side.

於位在前述桿蓋之外周方向的前述缸管之隅角部,係設有用以安裝未圖示的螺栓之小徑的螺栓安裝孔。另一方面,於位在前述頭蓋之外周方向的前述缸管之隅角部,係設有:接頭,用以對未圖示的壓力流體導出導入通口連接未圖示的壓力流體供給源;速度控制器,對應於未圖示的節流閥之開放程度來調整壓力流體之供給及排出的流量;及小徑的螺栓安裝孔,用以安裝未圖示的螺栓。 A bolt mounting hole for attaching a small diameter of a bolt (not shown) to a corner portion of the cylinder tube in the outer circumferential direction of the rod cover is provided. On the other hand, a corner portion of the cylinder tube located in the outer circumferential direction of the head cover is provided with a joint for connecting a pressure fluid supply source (not shown) to a pressure fluid outlet introduction port (not shown); The speed controller adjusts the flow rate of supply and discharge of the pressure fluid in accordance with the degree of opening of the throttle valve (not shown), and the bolt mounting hole of a small diameter for attaching a bolt (not shown).

本設計之創作特徵在於「流體壓力缸」的整體形狀。 The design of this design is characterized by the overall shape of the "fluid pressure cylinder".

TW106303406F 2016-12-27 2017-06-19 Fluid pressure cylinder TWD189935S (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2016-028164 2016-12-27
JPD2016-28164F JP1575593S (en) 2016-12-27 2016-12-27

Publications (1)

Publication Number Publication Date
TWD189935S true TWD189935S (en) 2018-04-21

Family

ID=58645650

Family Applications (1)

Application Number Title Priority Date Filing Date
TW106303406F TWD189935S (en) 2016-12-27 2017-06-19 Fluid pressure cylinder

Country Status (3)

Country Link
US (1) USD825616S1 (en)
JP (1) JP1575593S (en)
TW (1) TWD189935S (en)

Cited By (4)

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TWD205389S (en) 2019-03-29 2020-06-21 日商Smc股份有限公司 Fluid pressure cylinder
TWD205391S (en) 2019-03-29 2020-06-21 日商Smc股份有限公司 Fluid pressure cylinder
TWD205576S (en) 2019-03-29 2020-07-01 日商Smc股份有限公司 Fluid pressure cylinder
TWD215387S (en) 2019-12-27 2021-11-21 丹麥商葛蘭富控股公司 Pump for liquids

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USD861042S1 (en) * 2016-12-28 2019-09-24 Smc Corporation Fluid pressure cylinder
USD861041S1 (en) * 2016-12-28 2019-09-24 Smc Corporation Fluid pressure cylinder
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USD894965S1 (en) * 2017-08-21 2020-09-01 Smc Corporation Fluid pressure cylinder
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JP1629150S (en) * 2018-08-03 2019-04-15
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USD370683S (en) * 1995-07-05 1996-06-11 The Aro Corporation Pneumatic cylinder
USD378680S (en) * 1995-09-22 1997-04-01 Smc Kabushiki Kaisha Cylinder
USD378214S (en) * 1995-09-22 1997-02-25 Smc Kabushiki Kaisha Cylinder
USD417457S (en) * 1998-03-27 1999-12-07 Smc Kabushiki Kaisha Fluid pressure cylinder
USD420683S (en) * 1998-10-30 2000-02-15 Smc Kabushiki Kaisha Fluid pressure cylinder
USD428617S (en) * 1998-12-17 2000-07-25 Smc Corporation Air cylinder
USD499348S1 (en) 2003-03-04 2004-12-07 Smc Corporation Fluid pressure cylinder
TWD147579S1 (en) * 2010-07-21 2012-06-11 Smc股份有限公司 Multi-position cylinder
USD757120S1 (en) * 2014-10-02 2016-05-24 Smc Corporation Fluid pressure cylinder
USD805559S1 (en) * 2016-03-18 2017-12-19 Smc Corporation Fluid pressure cylinder

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWD205389S (en) 2019-03-29 2020-06-21 日商Smc股份有限公司 Fluid pressure cylinder
TWD205390S (en) 2019-03-29 2020-06-21 日商Smc股份有限公司 Fluid pressure cylinder
TWD205391S (en) 2019-03-29 2020-06-21 日商Smc股份有限公司 Fluid pressure cylinder
TWD205576S (en) 2019-03-29 2020-07-01 日商Smc股份有限公司 Fluid pressure cylinder
TWD215387S (en) 2019-12-27 2021-11-21 丹麥商葛蘭富控股公司 Pump for liquids
USD978916S1 (en) 2019-12-27 2023-02-21 Grundfos Holding A/S Pump for liquids

Also Published As

Publication number Publication date
USD825616S1 (en) 2018-08-14
JP1575593S (en) 2017-05-08

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