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WO2019151896A1 - Floating inflatable umbrella - Google Patents

Floating inflatable umbrella Download PDF

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Publication number
WO2019151896A1
WO2019151896A1 PCT/RU2018/050150 RU2018050150W WO2019151896A1 WO 2019151896 A1 WO2019151896 A1 WO 2019151896A1 RU 2018050150 W RU2018050150 W RU 2018050150W WO 2019151896 A1 WO2019151896 A1 WO 2019151896A1
Authority
WO
WIPO (PCT)
Prior art keywords
core
umbrella
chambers
cameras
gas
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.)
Ceased
Application number
PCT/RU2018/050150
Other languages
French (fr)
Russian (ru)
Inventor
Юрий Адольфович ЗАНЕВ
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Publication of WO2019151896A1 publication Critical patent/WO2019151896A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45BWALKING STICKS; UMBRELLAS; LADIES' OR LIKE FANS
    • A45B19/00Special folding or telescoping of umbrellas
    • A45B19/02Inflatable umbrellas; Umbrellas without ribs

Definitions

  • the utility model relates to travel accessories, in particular to means of protecting a person from atmospheric precipitation and solar radiation.
  • a disadvantage of the known device is the inability to use an umbrella flying over a protected object.
  • the closest technical solution is the "Inflatable sun umbrella” CN 106473345 [1], containing a central core, in working condition filled with gas lighter than air and communicating with the core of radially located cameras, membranes are fixed to the cameras, which are located in working condition between the cameras and the holding element .
  • An advantage of the known solution is the possibility of using it as a flying umbrella over a protected object.
  • a disadvantage of the known umbrella is the low ratio of the shell area to the volume of gas enclosed in the shell, which negatively affects the volatility of the umbrella.
  • the technical result of the proposed utility model is to increase the volatility of the umbrella while maintaining shape.
  • a flying inflatable umbrella containing a central core, in working condition filled with gas is lighter than air and radially located cameras communicating with the core, membranes are fixed to the cameras, which are located in working condition between the cameras and the holding element is characterized by the fact that the radially located The chambers are made with a wider part (broadening) facing the core.
  • the axis of the chambers in the working position can be directed radially from the core and down, which will facilitate the rolling of precipitation from the upper surface of the umbrella.
  • the cameras can be made in the form of cones with bases adjacent to the core, which will further increase the specific lifting force of the device.
  • the umbrella may contain gas filling means. If there is a gas filling means, the transportation of the umbrella from the place of manufacture to the consumer is simplified and the loss of gas during transportation is reduced.
  • the gas filling means may be a disposable container with compressed gas lighter than air, a fitting with the ability to seal after filling the shell with gas, etc.
  • the holding element may be flexible (for example, from a polymer thread) and connected to the bottom point of the sheath in working condition. The specified implementation will simplify mounting and carrying the umbrella.
  • FIG. 1 horizontal section
  • FIG. 2 longitudinal section
  • the device operates as follows: the central core (cylinder) with the main volume of gas lighter than air 1 serves to lift, take off, “ascend” the device above the protected object, above the attachment point of the holding element (not shown).
  • the membranes 3 located between the radially located chambers 2 give the umbrella an extended downward shape, further expanding the protected area, preventing splashes of water and direct sunlight from reaching the protected object, for example, to the user.
  • the technical result is an increase in the volatility of the umbrella while maintaining the shape is achieved by a higher ratio of the volume of gas enclosed in the shell to the area of the shell when using cameras with a wider part adjacent to the core.
  • the increase in specific lifting force is achieved by the optimal shape of the chambers, which can significantly increase the volume of gas with a slight increase in the weight of the umbrella shell.
  • the utility model can be applied for the manufacture of flying inflatable umbrellas to protect the user from solar radiation and precipitation.

Landscapes

  • Walking Sticks, Umbrellas, And Fans (AREA)

Abstract

The utility model relates to means of protecting a person from atmospheric precipitation and solar radiation. The technical result consists in increasing the capability of an umbrella to float, while maintaining its shape. The technical result is achieved in that a floating inflatable umbrella comprising a central core, which is filled with a gas lighter than air when in use, radially disposed chambers that communicate with the core, membranes that are fastened to the chambers, said membranes being disposed between the chambers when in use, and a restraining element, is characterized in that the radially disposed chambers are designed so that the wider part thereof faces toward the core. The axes of the chambers can be oriented radially from the core and downward when in use. The chambers can be made in the form of cones with their bases abutting the core. The umbrella can comprise a means of being filled with a gas. The restraining element can be flexible.

Description

ЛЕТАЮЩИЙ НАДУВНОЙ ЗОНТ  FLYING INFLATABLE UMBRELLA

Описание  Description

Полезная модель относится к дорожным принадлежностям, в частности к средствам защиты человека от атмосферных осадков и солнечного облучения.  The utility model relates to travel accessories, in particular to means of protecting a person from atmospheric precipitation and solar radiation.

Известен «НАДУВНОЙ ЗОНТ» SU 623544 [1], содержащий тент, прикрепленные к нему камеры из эластичного материала, образующие при надувании ребра жесткости.  Known "INFLATABLE UMBRELLA" SU 623544 [1], containing an awning, attached to it chambers made of elastic material, forming stiffening ribs when inflated.

Недостатком известного устройства является невозможность использования как летающего над защищаемым объектом зонта.  A disadvantage of the known device is the inability to use an umbrella flying over a protected object.

Наиболее близким техническим решением является «Надувной солнцезащитный зонт» CN 106473345 [1], содержащий центральное ядро, в рабочем состоянии наполненным газом легче воздуха и сообщающимися с ядром радиально расположенными камерами, к камерам закреплены перепонки, которые располагаются в рабочем состоянии между камерами и удерживающий элемент.  The closest technical solution is the "Inflatable sun umbrella" CN 106473345 [1], containing a central core, in working condition filled with gas lighter than air and communicating with the core of radially located cameras, membranes are fixed to the cameras, which are located in working condition between the cameras and the holding element .

Преимуществом известного решения является возможность использования как летающего зонта над защищаемым объектом.  An advantage of the known solution is the possibility of using it as a flying umbrella over a protected object.

Недостатком известного зонта является невысокое соотношение площади оболочки к объему заключенного в оболочку газа, что отрицательно сказывается на летучести зонта.  A disadvantage of the known umbrella is the low ratio of the shell area to the volume of gas enclosed in the shell, which negatively affects the volatility of the umbrella.

Техническим результатом предлагаемого полезной модели является повышение летучести зонта при сохранении формы.  The technical result of the proposed utility model is to increase the volatility of the umbrella while maintaining shape.

Технический результат достигается тем, что летающий надувной зонт, содержащий центральное ядро, в рабочем состоянии наполненное газом легче воздуха и сообщающимися с ядром радиально расположенными камерами, к камерам закреплены перепонки, которые располагаются в рабочем состоянии между камерами и удерживающий элемент характеризуется тем, что радиально расположенные камеры выполнены с более широкой частью (уширением), обращенной к ядру.  The technical result is achieved by the fact that a flying inflatable umbrella containing a central core, in working condition filled with gas is lighter than air and radially located cameras communicating with the core, membranes are fixed to the cameras, which are located in working condition between the cameras and the holding element is characterized by the fact that the radially located The chambers are made with a wider part (broadening) facing the core.

Оси камер в рабочем положении могут направляться радиально от ядра и вниз, что облегчит скатывание атмосферных осадков с верхней поверхности зонта.  The axis of the chambers in the working position can be directed radially from the core and down, which will facilitate the rolling of precipitation from the upper surface of the umbrella.

Камеры могут выполняться в виде конусов, основаниями примыкающими к ядру, что позволит дополнительно повысить удельную подъемную силу устройства.  The cameras can be made in the form of cones with bases adjacent to the core, which will further increase the specific lifting force of the device.

Зонт может содержать средство газонаполнения. При наличии средства газонаполнения упрощается транспортировка зонта от места изготовления к потребителю и уменьшается потеря газа при транспортировке. Средство газонаполнения может представлять собой одноразовый баллон со сжатым газом легче воздуха, штуцер с возможностью герметизации после заполнения оболочки газом и т.д. Удерживающий элемент может быть выполняться гибким (например, из полимерной нити) и соединенным с нижней точкой оболочки в рабочем состоянии. Указанное выполнение упростит крепление и переноску зонта. The umbrella may contain gas filling means. If there is a gas filling means, the transportation of the umbrella from the place of manufacture to the consumer is simplified and the loss of gas during transportation is reduced. The gas filling means may be a disposable container with compressed gas lighter than air, a fitting with the ability to seal after filling the shell with gas, etc. The holding element may be flexible (for example, from a polymer thread) and connected to the bottom point of the sheath in working condition. The specified implementation will simplify mounting and carrying the umbrella.

Устройство летающего надувного зонта схематически показано на фиг. 1 (горизонтальный разрез), фиг. 2 (продольный разрез), где:  The device of a flying inflatable umbrella is shown schematically in FIG. 1 (horizontal section), FIG. 2 (longitudinal section), where:

1 - центральное ядро;  1 - the central core;

2 - радиально расположенные камеры;  2 - radially located cameras;

3 - перепонки.  3 - membranes.

Устройство действует следующим образом: центральное ядро (баллон) с основным объемом газа легче воздуха 1 служит для поднятия, взлета, «всплытия» устройства над защищаемым объектом, над точкой крепления удерживающего элемента (не показан). Перепонки 3, расположенные между радиально расположенными камерами 2 придают расширенную книзу форму зонту, дополнительно расширяя защищенную область, не позволяя попадать брызгам воды и прямому солнечному излучению на защищаемый объект, например, на пользователя.  The device operates as follows: the central core (cylinder) with the main volume of gas lighter than air 1 serves to lift, take off, “ascend” the device above the protected object, above the attachment point of the holding element (not shown). The membranes 3 located between the radially located chambers 2 give the umbrella an extended downward shape, further expanding the protected area, preventing splashes of water and direct sunlight from reaching the protected object, for example, to the user.

Технический результат - повышение летучести зонта при сохранении формы достигается более высоким соотношением объема заключенного внутри оболочки газа к площади оболочки при применении камер с более широкой частью, примыкающей к ядру. Повышение удельной подъемной силы достигается оптимальной формой камер, позволяющих существенно увеличить объем газа при несущественном увеличении веса оболочки зонта.  The technical result is an increase in the volatility of the umbrella while maintaining the shape is achieved by a higher ratio of the volume of gas enclosed in the shell to the area of the shell when using cameras with a wider part adjacent to the core. The increase in specific lifting force is achieved by the optimal shape of the chambers, which can significantly increase the volume of gas with a slight increase in the weight of the umbrella shell.

Промышленное применение. Полезная модель может быть применена для изготовления летающих надувных зонтов для защиты пользователя от солнечного излучения и атмосферных осадков.  Industrial application. The utility model can be applied for the manufacture of flying inflatable umbrellas to protect the user from solar radiation and precipitation.

Claims

Формула Formula 1. Летающий надувной зонт, содержащий центральное ядро, в рабочем состоянии наполненное газом легче воздуха и сообщающимися с ядром радиально расположенными камерами, к камерам закреплены перепонки, которые располагаются в рабочем состоянии между камерами и удерживающий элемент, отличающийся тем, что радиально расположенные камеры выполнены с более широкой частью, обращенной к ядру.  1. A flying inflatable umbrella containing a central core, in working condition filled with gas lighter than air and radially located cameras communicating with the core, membranes are fixed to the cameras, which are located in working condition between the cameras and a holding element, characterized in that the radially located cameras are made with the wider part facing the core. 2. Зонт по П.1, отличающийся тем, что оси камер в рабочем положении направлены радиально от ядра и вниз.  2. The umbrella according to claim 1, characterized in that the axis of the cameras in the working position are directed radially from the core and down. 3. Зонт по П.1, отличающийся тем, что камеры выполнены в виде конусов, примыкающими основаниями к центральному ядру.  3. The umbrella according to claim 1, characterized in that the cameras are made in the form of cones adjacent to the base of the central core. 4. Зонт по П.1, отличающийся тем, что содержит средство газонаполнения. 4. The umbrella according to claim 1, characterized in that it contains a means of gas filling. 5. Зонт по П.1, отличающийся тем, что удерживающий элемент выполнен гибким и соединен с нижней точкой оболочки в рабочем состоянии. 5. The umbrella according to claim 1, characterized in that the retaining element is made flexible and connected to the bottom point of the shell in working condition.
PCT/RU2018/050150 2018-01-31 2018-11-23 Floating inflatable umbrella Ceased WO2019151896A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
RU2018103731 2018-01-31
RU2018103731 2018-01-31

Publications (1)

Publication Number Publication Date
WO2019151896A1 true WO2019151896A1 (en) 2019-08-08

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
SU623544A1 (en) * 1977-04-06 1978-09-15 Chizhevskij Konstantin G Inflatable umbrella
US4643210A (en) * 1985-08-12 1987-02-17 Oscar Feld Inflatable umbrella
US5076029A (en) * 1990-01-02 1991-12-31 Sevilla Frederick J Helium-filled sun shades
WO1999038412A2 (en) * 1998-01-30 1999-08-05 U.M.B. Tech Ltd. Inflatable umbrella
CN201097724Y (en) * 2007-08-10 2008-08-13 刘龙桂 Inflatable umbrella with swimming plate function
CN106473343A (en) * 2015-09-01 2017-03-08 宜城市第三高级中学 The umbrella of hook is set on handle
CN107594789A (en) * 2016-11-22 2018-01-19 吴叔枚 A kind of inflatable umbrella

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
SU623544A1 (en) * 1977-04-06 1978-09-15 Chizhevskij Konstantin G Inflatable umbrella
US4643210A (en) * 1985-08-12 1987-02-17 Oscar Feld Inflatable umbrella
US5076029A (en) * 1990-01-02 1991-12-31 Sevilla Frederick J Helium-filled sun shades
WO1999038412A2 (en) * 1998-01-30 1999-08-05 U.M.B. Tech Ltd. Inflatable umbrella
CN201097724Y (en) * 2007-08-10 2008-08-13 刘龙桂 Inflatable umbrella with swimming plate function
CN106473343A (en) * 2015-09-01 2017-03-08 宜城市第三高级中学 The umbrella of hook is set on handle
CN107594789A (en) * 2016-11-22 2018-01-19 吴叔枚 A kind of inflatable umbrella

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