JP2013221649A5 - - Google Patents

Download PDF

Info

Publication number
JP2013221649A5
JP2013221649A5 JP2012092583A JP2012092583A JP2013221649A5 JP 2013221649 A5 JP2013221649 A5 JP 2013221649A5 JP 2012092583 A JP2012092583 A JP 2012092583A JP 2012092583 A JP2012092583 A JP 2012092583A JP 2013221649 A5 JP2013221649 A5 JP 2013221649A5
Authority
JP
Japan
Prior art keywords
air
nozzle
weight
opening
amount
Prior art date
Legal status (The legal status 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 status listed.)
Granted
Application number
JP2012092583A
Other languages
Japanese (ja)
Other versions
JP2013221649A (en
JP5688701B2 (en
Filing date
Publication date
Application filed filed Critical
Priority to JP2012092583A priority Critical patent/JP5688701B2/en
Priority claimed from JP2012092583A external-priority patent/JP5688701B2/en
Publication of JP2013221649A publication Critical patent/JP2013221649A/en
Publication of JP2013221649A5 publication Critical patent/JP2013221649A5/ja
Application granted granted Critical
Publication of JP5688701B2 publication Critical patent/JP5688701B2/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Description

又エアーシリンダーを利用し降下速度を調節する方法もある。その一つとして例をあげると(図11参照)この場合例えばエアーリング1はウェイトを含み約800グラムの自重とし、エアーシリンダー内のウェイト11を約200グラムとする。エアーリング1はエアーシリンダーの下部に設けられた開口部の吸気量により降下速度が設定される為、開口部を可動式の蓋となるスライド板13を移動する事により吸気量を調節する事ができエアーリング1の降下速度は任意の速度に設定可能となる。又手動にてエアーリング1を最上部へ移動する際エアー排気量が少ない為エアーシリンダー内のウェイト11の降下速度が遅くワイヤー12に弛みが生ずる。そこで排気専用の開口部を設け外側より排気弁を用いて塞ぐ事によりウェイト11が降下する際には排気弁14が開き排気量が増大する為ウェイト11速やかに降下しワイヤー12の弛みが生ずる事もない。 There is also a method of adjusting the descent speed using an air cylinder. As an example (see FIG. 11), for example, the air ring 1 includes a weight and has a weight of about 800 grams, and the weight 11 in the air cylinder is about 200 grams. Since the air ring 1 has a descending speed set by the amount of intake air in the opening provided at the lower part of the air cylinder, it is possible to adjust the intake air amount by moving the slide plate 13 serving as a movable lid through the opening. The descent speed of the air ring 1 can be set to an arbitrary speed. Further, when the air ring 1 is manually moved to the uppermost portion, the amount of air exhausted is small, so that the lowering speed of the weight 11 in the air cylinder is slow and the wire 12 is slackened. Therefore, when the weight 11 descends by providing an exhaust-only opening and closing with the exhaust valve from the outside, the exhaust valve 14 opens and the exhaust amount increases, so that the weight 11 quickly descends and the wire 12 becomes slack. Nor.

これらは1本の通気管によって各々のノズルより同時に空気を噴射及び送風し利用目的に適合させる方法である。又、各々のノズルを使い分ける方法としてノズルの吹出口の切り替えを内管(図8)状の開口部を設け、内管をスライドさせる事により開口部を利用ノズルの位置に合わせエアーノズル2とドライノズル8を使い分ける事ができる。しかし風圧の状態により双方の効果が十分得られない場合は、減圧弁等の利用により2本の空気圧の異なる通気管3を利用したり、又送風機を2台備え1台をコンプレッサーによる圧縮空気にてエアーノズル2へ供給し他の1台をファンによりドライノズル8へ送風する手段も考えられる。当然エアーリング1を2本装備し1本はエアーノズル2専用、他の1本はドライノズル8専用とする手段もある(図10参照)。   These are methods in which air is jetted and blown from each nozzle at the same time through a single air pipe so as to suit the purpose of use. In addition, as a method of selectively using each nozzle, the nozzle outlet is switched by providing an opening in the shape of the inner pipe (Fig. 8), and by sliding the inner pipe, the opening is aligned with the position of the nozzle to be used and dry. The nozzle 8 can be used properly. However, if both effects cannot be obtained sufficiently due to the wind pressure, two pressure pipes with different air pressures can be used by using a pressure reducing valve, etc., or two fans can be used and one can be used as compressed air by a compressor. A means for supplying air to the air nozzle 2 and blowing the other one to the dry nozzle 8 by a fan is also conceivable. Of course, there are also means for providing two air rings 1, one for the air nozzle 2 and the other for the dry nozzle 8 (see FIG. 10).

JP2012092583A 2012-04-16 2012-04-16 Air ring shower Expired - Fee Related JP5688701B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2012092583A JP5688701B2 (en) 2012-04-16 2012-04-16 Air ring shower

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2012092583A JP5688701B2 (en) 2012-04-16 2012-04-16 Air ring shower

Publications (3)

Publication Number Publication Date
JP2013221649A JP2013221649A (en) 2013-10-28
JP2013221649A5 true JP2013221649A5 (en) 2014-05-01
JP5688701B2 JP5688701B2 (en) 2015-03-25

Family

ID=49592751

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2012092583A Expired - Fee Related JP5688701B2 (en) 2012-04-16 2012-04-16 Air ring shower

Country Status (1)

Country Link
JP (1) JP5688701B2 (en)

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2017086137A (en) * 2015-11-02 2017-05-25 三菱電機株式会社 Clothing maintenance device
KR102189863B1 (en) * 2020-05-15 2020-12-11 신미향 air towel
KR102334895B1 (en) * 2020-12-03 2021-12-03 주식회사 하이젠프로 Air towel with fine dust removal function
US11951516B2 (en) * 2021-01-06 2024-04-09 Hamilton Sundstrand Corporation Multi-stage cleaning of space suit

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS61101284A (en) * 1984-10-22 1986-05-20 株式会社日立製作所 Air shower device
JPH0537196U (en) * 1991-10-23 1993-05-21 株式会社イナツクス Air shower device
AUPR726101A0 (en) * 2001-08-27 2001-09-20 Lim, Dae Song One stop shower body dryer massage assembly
JP2003260107A (en) * 2002-03-09 2003-09-16 Niiyama Yuji Body dryer
JP4670645B2 (en) * 2006-01-11 2011-04-13 パナソニック株式会社 Body drips removal dryer
JP3124427U (en) * 2006-06-06 2006-08-17 ジェイピーシー株式会社 Air shower equipment

Similar Documents

Publication Publication Date Title
JP2013221649A5 (en)
EP3480432A3 (en) Modified structural truss for airfoils
WO2014012896A3 (en) Method and device for pumping of a process chamber
EP2031213A3 (en) Apparatus and method for suppressing dynamic pressure instability in bleed duct
EP2325439A3 (en) Turbine airfoil platform cooling core
EP2784267A3 (en) A gas turbine engine cooling arrangement
WO2014134602A3 (en) Active bypass flow control for a seal in a gas turbine engine
JP2012036890A5 (en)
IN2015DN03340A (en)
EP2412933A3 (en) Labyrinth seal
WO2013135859A3 (en) Annular-combustion-chamber bypass
WO2015028291A3 (en) Compressed-air system
EP3130782A3 (en) Turbomachine fluid valve comprising a cooled solenoid
FR2993943B1 (en) PNEUMATIC ACTUATOR, ESPECIALLY FOR REGULATING THE OPENING OF THE DISCHARGE VALVE OF A TURBOCHARGER
WO2012166271A3 (en) Adjustable exhaust apparatus for a ram air turbine generating system
JP2018504596A5 (en)
EP2998522A3 (en) Gas turbine engine variable stator vane
EP2378086A3 (en) Variable turbine nozzle and valve
ES2499543T3 (en) Exhaust gas recirculation valve
EA201490646A1 (en) REGULATING VALVE KNOT AND METHOD FOR SUBMITTING GRAIN MATERIAL THROUGH SUCH A REGULATING VALVE KNOT
JP2011069366A5 (en)
WO2012149377A3 (en) Flow control device for an oven
EP2505885A3 (en) Relief valve for compressor
WO2015108606A3 (en) A method for providing coolant to a movable airfoil
GB201700777D0 (en) Fan exhaust for a gas turbine engine