EP1900395A4 - Exercise machine - Google Patents

Exercise machine

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Publication number
EP1900395A4
EP1900395A4 EP05851103A EP05851103A EP1900395A4 EP 1900395 A4 EP1900395 A4 EP 1900395A4 EP 05851103 A EP05851103 A EP 05851103A EP 05851103 A EP05851103 A EP 05851103A EP 1900395 A4 EP1900395 A4 EP 1900395A4
Authority
EP
European Patent Office
Prior art keywords
sleeve
simulator according
simulator
sealed cavity
inner shell
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
EP05851103A
Other languages
German (de)
French (fr)
Russian (ru)
Other versions
EP1900395A1 (en
EP1900395B1 (en
Inventor
Olga Vitalievna Isaeva
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
Priority claimed from RU2005122689/12A external-priority patent/RU2288766C1/en
Application filed by Individual filed Critical Individual
Publication of EP1900395A1 publication Critical patent/EP1900395A1/en
Publication of EP1900395A4 publication Critical patent/EP1900395A4/en
Application granted granted Critical
Publication of EP1900395B1 publication Critical patent/EP1900395B1/en
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B19/00Hoop exercising apparatus
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B21/00Exercising apparatus for developing or strengthening the muscles or joints of the body by working against a counterforce, with or without measuring devices
    • A63B21/0004Exercising devices moving as a whole during exercise
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B21/00Exercising apparatus for developing or strengthening the muscles or joints of the body by working against a counterforce, with or without measuring devices
    • A63B21/00058Mechanical means for varying the resistance
    • A63B21/00069Setting or adjusting the resistance level; Compensating for a preload prior to use, e.g. changing length of resistance or adjusting a valve
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B21/00Exercising apparatus for developing or strengthening the muscles or joints of the body by working against a counterforce, with or without measuring devices
    • A63B21/008Exercising apparatus for developing or strengthening the muscles or joints of the body by working against a counterforce, with or without measuring devices using hydraulic or pneumatic force-resisters
    • A63B21/0085Exercising apparatus for developing or strengthening the muscles or joints of the body by working against a counterforce, with or without measuring devices using hydraulic or pneumatic force-resisters using pneumatic force-resisters
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B21/00Exercising apparatus for developing or strengthening the muscles or joints of the body by working against a counterforce, with or without measuring devices
    • A63B21/02Exercising apparatus for developing or strengthening the muscles or joints of the body by working against a counterforce, with or without measuring devices using resilient force-resisters
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B21/00Exercising apparatus for developing or strengthening the muscles or joints of the body by working against a counterforce, with or without measuring devices
    • A63B21/02Exercising apparatus for developing or strengthening the muscles or joints of the body by working against a counterforce, with or without measuring devices using resilient force-resisters
    • A63B21/055Exercising apparatus for developing or strengthening the muscles or joints of the body by working against a counterforce, with or without measuring devices using resilient force-resisters extension element type
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B2225/00Miscellaneous features of sport apparatus, devices or equipment
    • A63B2225/62Inflatable

Definitions

  • the invention relates to sports simulators, namely, simulators for individual use, and can also be used as a massager.
  • a known simulator in the form of an inflatable hoop-top, containing the outer shell, a sealed cavity under pressure and a pressure control valve.
  • This simulator is taken as a prototype.
  • a disadvantage of the known simulator is the difficulty in manufacturing, as it requires special equipment and complex molds, complicated and unreliable fastening of the nipple of the pressure control valve, the absence of insurance against damage to the user when the simulator ruptures.
  • the outer shell of the known simulator does not meet environmental requirements, which is very important, since when using the simulator, it is in contact with the user, and the shape of the simulator in the form of a hoop limits the range of training exercises.
  • the author was tasked with developing a simulator that meets environmental requirements, is safe to operate, has a simple design that allows it to be manufactured on standard equipment, and has the ability to give it various forms to expand the range of exercises.
  • the inner shell is made in the form of a sleeve of at least two layers of reinforced elastic material, it additionally contains an outer shell made either in in the form of an elastic stocking, or in the form of a coating of environmentally friendly material harmless to humans, located on top of the inner shell, a safety cable located inside the sealed Lost, the liquid sealant is disposed inside the sealed cavity, a sleeve connecting the ends of the outer and inner shells, forming a closed shape, at least one belt shape change shape, and the pressure control valve is configured ⁇ pressed by its body into the sleeve.
  • a closed figure has the shape of either a ring, or figure eight, or an ellipse, or another geometric figure. Moreover, the closed figure in the form of a ring has a diameter of 700-900 mm.
  • the inner shell is made in the form of a sleeve with an internal diameter of 36–40 mm, an external 50–54 mm, with the ability to withstand a pressure of 45–50 atm.
  • the safety cable is made with the ability to withstand a load of 95–100 kg / mm 2
  • the sleeve is made by pressing from polyamide, or polyethylene, or hard plastic
  • the outer shell is made with the ability to close the sleeve when connecting the ends of the shells
  • the pressure control valve is equipped with a spool and a plastic cap.
  • the simulator additionally contains at least two foam pillows.
  • the technical effect of the inventive simulator lies in the fact that it has a simple design that allows it to be manufactured on standard equipment that does not require additional, complex equipment.
  • the simulator is environmentally friendly, safety during operation, has the ability to perform a wide range of gymnastic exercises.
  • FIG. 1 shows a schematic view of the simulator, where 1 is the inner shell, 2 is the sealed cavity, 3 is the sleeve, 4 is the outer shell, 5 is the safety cable, 6 is the tightrope, 7 is the belt, 8 is the pressure control valve.
  • FIG. 2 shows some types of changes in the shape of the simulator, a) a circle, b) an eight, c) an ellipse.
  • the inner shell 1 of the inventive simulator is made in the form of a sleeve, the ends of which are interconnected using a sleeve 3 in a closed figure.
  • the inner shell 1 is made in the form of a sleeve with an inner diameter. 36 - 40 mm, external 50 - 54 mm, the Outer diameter is selected on the basis of the fact that it is the most optimal from the point of view of ease of use, corresponds to the capture of the middle hand of a person.
  • the inner diameter is selected on the basis of obtaining the smallest weight of the simulator, and the ability of the shell to withstand air pressure.
  • a closed figure has the shape of either a ring, or figure eight, or an ellipse, or another geometric figure.
  • a closed ring-shaped figure has a diameter of 700-900. mm This diameter allows you to use the simulator, for example, as a hula hoop. When you pull the ring in the middle with a belt, you get a simulator in the form of a “butterfly”, the dimensions of which correspond to those that are necessary for use by an average statistical person.
  • the shell 1 is made of at least two layers of reinforced elastic material, such as rubber. Inside the shell 1 an airtight cavity 2 is formed, which is under pressure, which can reach 10-15 atm. The selected pressure allows you to make the simulator optimal in weight, rigidity and weight.
  • the shell 1 is made with the ability to withstand a pressure of 45 - 50 atm, which should exceed the working one.
  • the outer shell 4 On top of the inner shell 1 is the outer shell 4, made in the form of a stocking of elastic environmentally friendly material that is harmless to humans, for example, polypropylene.
  • the outer shell can be made in the form of a coating.
  • the sleeve 3 connects the ends of the sleeve of the outer and inner shells. In the sleeve 3, grooves are provided for attaching the shells. In this case, it is possible to close the sleeve itself with the outer shell.
  • the safety cable 5 In the sleeve 3 there is a through hole for installing the safety cable 5, which is located inside the sealed cavity 2 and can withstand a load of 95 - 100 kg / mm 2 . A large load during the operation of the simulator does not occur.
  • the ends of the cable 5 are interconnected.
  • the pressure control valve 8 is made by pressing its body into the sleeve 3.
  • a spool is screwed into the pressure control valve body to pump the airtight cavity 2 with air, closed with a plastic cap.
  • the air pressure in the cavity 2 can be 10 -15 atm.
  • the sleeve 3 is made by pressing method of rigid plastic, for example polyamide or polyethylene.
  • In the sleeve 3 there are four grooves for attaching the inner 1 and outer 4 shells.
  • a sealant 6 is placed inside the sealed cavity 2 to seal the pores and increase the life of the simulator.
  • the amount of sealant is 100-150 g. The presence of sealant, its quantity and the fact that increased pressure in the shell allows in case of damage to the shell to quickly seal it.
  • the simulator is equipped with at least one strap to give it various forms, for convenience and the ability to perform a wide range of gymnastic exercises.
  • Figure 2 presents some possible forms of the simulator, obtained using belts.
  • FIG. 2a shows a circle shape
  • FIG. 26 is a figure-eight shape
  • FIG. 2c shows an ellipse shape.
  • the simulator is equipped with at least two foam pillows to soften the load when performing exercises.
  • the advantage of the claimed simulator lies in its simplicity in manufacturing, in the possibility of performing a wide range of exercises on it, in durability, and safety in use. And also in the fact that it has an environmentally friendly outer shell.

Landscapes

  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Biophysics (AREA)
  • Orthopedic Medicine & Surgery (AREA)
  • Professional, Industrial, Or Sporting Protective Garments (AREA)
  • Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)
  • Mattresses And Other Support Structures For Chairs And Beds (AREA)
  • Confectionery (AREA)
  • Orthopedics, Nursing, And Contraception (AREA)

Abstract

The invention relates to sports exercise machines and makes it possible to improve the safety thereof. The internal envelop is embodied in the form of a sleeve which is made of a reinforced elastic material and forms a closed body provided with a compressed sealed cavity therein. An external envelop covers the internal envelop and is embodied in the form of a cover made of an ecologically clean and harmless for a human being material or in the form of an elastic stocking. A safety rope and a liquid sealing material are arranged inside the sealed cavity. The sleeve ends of the external and internal envelopes are connected by means of a bush provided with a pressure control valve pressed therein. A belt is used for modifying the body shape.

Description

Тренажер Training apparatus
Изобретение относиться к спортивным тренажерам, а именно к тренажерам для индивидуального использования, а также может быть использовано в качестве массажера.The invention relates to sports simulators, namely, simulators for individual use, and can also be used as a massager.
Известен тренажер, в виде надувного обруч-топа, содержащий внешнюю оболочку, герметичную полость, находящуюся под давлением и клапан регулировки давления. (Евразийский патент Na 004967, МПК A63B19/00, приоритет от 18.06.2001 , опубл. 28.10.2004 г). Данный тренажер взят в качестве прототипа.A known simulator, in the form of an inflatable hoop-top, containing the outer shell, a sealed cavity under pressure and a pressure control valve. (Eurasian patent Na 004967, IPC A63B19 / 00, priority dated June 18, 2001, published on October 28, 2004). This simulator is taken as a prototype.
Недостатком известного тренажера является сложность в изготовление, так как требуется специальное оборудование и сложные пресс-формы, сложное и ненадежное крепление ниппеля клапана регулировки давления, отсутствие страховки от повреждения пользователя при разрыве тренажера. Кроме того, внешняя оболочка известного тренажера не отвечает экологическим требованиям, что очень важно, так как при использовании тренажера происходит контакт его с пользователем, а форма тренажера в виде обруча ограничивает круг выполняемых тренировочных упражнений.A disadvantage of the known simulator is the difficulty in manufacturing, as it requires special equipment and complex molds, complicated and unreliable fastening of the nipple of the pressure control valve, the absence of insurance against damage to the user when the simulator ruptures. In addition, the outer shell of the known simulator does not meet environmental requirements, which is very important, since when using the simulator, it is in contact with the user, and the shape of the simulator in the form of a hoop limits the range of training exercises.
Перед автором ставилась задача разработать тренажер, отвечающий экологическим требованиям, безопасный в эксплуатации, простой конструкции, позволяющей изготовлять его на стандартном оборудовании, и обладающий возможностью придания ему различных форм для расширения круга выполняемых упражнений.The author was tasked with developing a simulator that meets environmental requirements, is safe to operate, has a simple design that allows it to be manufactured on standard equipment, and has the ability to give it various forms to expand the range of exercises.
Поставленная задача решается тем, что в тренажере, состоящем из внутренней оболочки с герметичной полостью внутри, находящейся под давлением, клапана регулировки давления, внутренняя оболочка выполнена в виде рукава из хотя бы двух слоев армированного эластичного материала, дополнительно он содержит внешнюю оболочку, выполненную либо в виде эластичного чулка, либо в виде покрытия из экологически чистого безвредного для человека материала, расположенную поверх внутренней оболочки, страховочный трос, расположенный внутри герметичной полости, жидкий герметик, расположенный внутри герметичной полости, втулку, соединяющую концы внешней и внутренней оболочек, образуя замкнутую фигуру, хотя бы один ремень изменения формы фигуры, а клапан регулировки давления выполнен ι запрессованным своим корпусом во втулку. Замкнутая фигура имеет форму либо кольца, либо восьмерки, либо эллипса, либо другой геометрической фигуры. При этом замкнутая фигура в виде кольца имеет диаметр 700-900 мм. Внутренняя оболочка выполнена в виде рукава внутренним диаметром 36 - 40 мм, внешним 50 - 54 мм, с возможностью выдерживать давление 45 - 50 атм., Страховочный трос выполнен с возможностью выдерживать нагрузку 95 - 100 кг/мм2, втулка выполнена методом прессования из либо полиамида, либо полиэтилена, либо из жесткой пластмассы, внешняя оболочка выполнена, с возможностью закрыть втулку, при соединении концов оболочек, а клапан регулировки давления снабжен золотником и пластмассовым колпачком. Кроме того, тренажер дополнительно содержит хотя бы две поролоновых подушки.The problem is solved in that in the simulator, consisting of an inner shell with a sealed cavity inside, under pressure, a pressure control valve, the inner shell is made in the form of a sleeve of at least two layers of reinforced elastic material, it additionally contains an outer shell made either in in the form of an elastic stocking, or in the form of a coating of environmentally friendly material harmless to humans, located on top of the inner shell, a safety cable located inside the sealed Lost, the liquid sealant is disposed inside the sealed cavity, a sleeve connecting the ends of the outer and inner shells, forming a closed shape, at least one belt shape change shape, and the pressure control valve is configured ι pressed by its body into the sleeve. A closed figure has the shape of either a ring, or figure eight, or an ellipse, or another geometric figure. Moreover, the closed figure in the form of a ring has a diameter of 700-900 mm. The inner shell is made in the form of a sleeve with an internal diameter of 36–40 mm, an external 50–54 mm, with the ability to withstand a pressure of 45–50 atm., The safety cable is made with the ability to withstand a load of 95–100 kg / mm 2 , the sleeve is made by pressing from polyamide, or polyethylene, or hard plastic, the outer shell is made with the ability to close the sleeve when connecting the ends of the shells, and the pressure control valve is equipped with a spool and a plastic cap. In addition, the simulator additionally contains at least two foam pillows.
Технический эффект заявляемого тренажера заключается в том, что он имеет простую конструкцию, позволяющей производить его на стандартном оборудовании, не требующем дополнительной, сложной оснастки. Кроме того, тренажер экологически чист, травмобезопасен при эксплуатации, имеет возможность выполнять широкий комплекс гимнастических упражнений.The technical effect of the inventive simulator lies in the fact that it has a simple design that allows it to be manufactured on standard equipment that does not require additional, complex equipment. In addition, the simulator is environmentally friendly, safety during operation, has the ability to perform a wide range of gymnastic exercises.
Заявляемое изобретение поясняется фиг. 1 , на которой представлен схематический вид тренажера, где 1 - внутренняя оболочка, 2 - герметичная полость, 3 - втулка, 4 - внешняя оболочка, 5 - страховочный трос, 6 - rерметwк, 7 - ремень, 8 - клапан регулировки давления. На фиг. 2 представлены некоторые виды изменения формы тренажера, а) круг, б) восьмерка, в) эллипс.The invention is illustrated in FIG. 1, which shows a schematic view of the simulator, where 1 is the inner shell, 2 is the sealed cavity, 3 is the sleeve, 4 is the outer shell, 5 is the safety cable, 6 is the tightrope, 7 is the belt, 8 is the pressure control valve. In FIG. 2 shows some types of changes in the shape of the simulator, a) a circle, b) an eight, c) an ellipse.
Внутренняя оболочка 1 заявляемого тренажера выполнена в виде рукава, концы которого соединены между собой с помощью втулки 3 в замкнутую фигуру. Внутренняя оболочка 1 выполнена в виде рукава внутренним диаметром. 36 - 40 мм, внешним 50 - 54 мм, Внешний диаметр выбран из расчета того, что он является наиболее оптимальным с точки зрения удобства эксплуатации, соответствует захвату средней руки человека. Внутренний диаметр выбран из расчета получения наименьшего веса тренажера, и способности оболочки выдержать давление воздуха. Замкнутая фигура имеет форму либо кольца, либо восьмерки, либо эллипса, либо другой геометрической фигуры. Замкнутая фигура в виде кольца имеет диаметр 700 -900. мм. Такой диаметр позволяет использовать тренажер, например, как хула хуп. При перетяжке кольца в середине ремнем, получается тренажер в виде «бaбoчки», размеры которого соответствуют тем, которые необходимы для использования средне статистическим человеком. Оболочка 1 выполнена хотя бы из двух слоев армированного эластичного материал , например резины. Внутри оболочки 1 образуется герметичная полость 2, находящаяся под давлением, которое может достигать 10 - 15 атм. Выбранное давление позволяет сделать тренажер оптимальным по весу, жесткости и весу. Оболочка 1 выполнена с возможностью выдерживать давление 45 - 50 атм, которое должно превышать рабочее. Поверх внутренней оболочки 1 расположена внешняя оболочка 4, выполненная в виде чулка из эластичного экологически чистого безвредного для человека материала, например, полипропилена. Внешняя оболочка может быть выполнена в виде нанесенного покрытия. Втулка 3 соединяет концы рукава внешней и внутренней оболочек. Во втулке 3 предусмотрены пазы для крепления оболочек. При этом имеется возможность закрыть внешней оболочкой и саму втулку. Во втулке 3 выполнено сквозное отверстие для установки страховочного троса 5, который расположен внутри герметичной полости 2 и может выдерживать нагрузку 95 - 100 кг/мм2. Большая нагрузка при эксплуатации тренажера не возникает. Концы троса 5 соединены между собой. Клапан регулировки давления 8 выполнен запрессованным своим корпусом во втулку 3. В корпус клапана регулировки давления вкручивается золотник для накачивания герметичной полости 2 воздухом, закрытый пластмассовым колпачком. Давление воздуха в полости 2 может составлять 10 -15 атм. Втулка 3 выполнена методом прессования из жесткой пластмассы, например полиамида или полиэтилена. Во втулке 3 предусмотрено четыре паза для крепления внутренней 1 и внешней 4 оболочек. Внутрь герметичной полости 2 помещен герметик 6, для герметизации пор и увеличения срока службы тренажера. Количество герметика 100-150 г. Наличие герметика, его количество и то, что в оболочке повышенное давление позволяет в случае повреждения оболочки, быстро произвести ее герметизацию. Тренажер снабжен хотя бы одним ремнем для придания различных ему форм, для удобства и возможности выполнения широкого круга гимнастических упражнений. На фиг.2 представлены некоторые возможные формы тренажера, получаемые с помощью ремней. На фиг.2a представлена форма в виде круга, на фиг. 26 представлена форма в виде восьмерки, на фиг. 2с представлена форма в виде эллипса. Кроме того, тренажер снабжен хотя бы двумя поролоновыми подушками для смягчения нагрузок при выполнении упражнений.The inner shell 1 of the inventive simulator is made in the form of a sleeve, the ends of which are interconnected using a sleeve 3 in a closed figure. The inner shell 1 is made in the form of a sleeve with an inner diameter. 36 - 40 mm, external 50 - 54 mm, the Outer diameter is selected on the basis of the fact that it is the most optimal from the point of view of ease of use, corresponds to the capture of the middle hand of a person. The inner diameter is selected on the basis of obtaining the smallest weight of the simulator, and the ability of the shell to withstand air pressure. A closed figure has the shape of either a ring, or figure eight, or an ellipse, or another geometric figure. A closed ring-shaped figure has a diameter of 700-900. mm This diameter allows you to use the simulator, for example, as a hula hoop. When you pull the ring in the middle with a belt, you get a simulator in the form of a “butterfly”, the dimensions of which correspond to those that are necessary for use by an average statistical person. The shell 1 is made of at least two layers of reinforced elastic material, such as rubber. Inside the shell 1 an airtight cavity 2 is formed, which is under pressure, which can reach 10-15 atm. The selected pressure allows you to make the simulator optimal in weight, rigidity and weight. The shell 1 is made with the ability to withstand a pressure of 45 - 50 atm, which should exceed the working one. On top of the inner shell 1 is the outer shell 4, made in the form of a stocking of elastic environmentally friendly material that is harmless to humans, for example, polypropylene. The outer shell can be made in the form of a coating. The sleeve 3 connects the ends of the sleeve of the outer and inner shells. In the sleeve 3, grooves are provided for attaching the shells. In this case, it is possible to close the sleeve itself with the outer shell. In the sleeve 3 there is a through hole for installing the safety cable 5, which is located inside the sealed cavity 2 and can withstand a load of 95 - 100 kg / mm 2 . A large load during the operation of the simulator does not occur. The ends of the cable 5 are interconnected. The pressure control valve 8 is made by pressing its body into the sleeve 3. A spool is screwed into the pressure control valve body to pump the airtight cavity 2 with air, closed with a plastic cap. The air pressure in the cavity 2 can be 10 -15 atm. The sleeve 3 is made by pressing method of rigid plastic, for example polyamide or polyethylene. In the sleeve 3 there are four grooves for attaching the inner 1 and outer 4 shells. A sealant 6 is placed inside the sealed cavity 2 to seal the pores and increase the life of the simulator. The amount of sealant is 100-150 g. The presence of sealant, its quantity and the fact that increased pressure in the shell allows in case of damage to the shell to quickly seal it. The simulator is equipped with at least one strap to give it various forms, for convenience and the ability to perform a wide range of gymnastic exercises. Figure 2 presents some possible forms of the simulator, obtained using belts. FIG. 2a shows a circle shape, FIG. 26 is a figure-eight shape; FIG. 2c shows an ellipse shape. In addition, the simulator is equipped with at least two foam pillows to soften the load when performing exercises.
Преимущество заявляемого тренажера заключается в его простоте при изготовлении, в возможности выполнения на нем широкого круга упражнений, в долговечности, безопасности при использовании. А так же в том, что он имеет экологически чистую внешнюю оболочку. The advantage of the claimed simulator lies in its simplicity in manufacturing, in the possibility of performing a wide range of exercises on it, in durability, and safety in use. And also in the fact that it has an environmentally friendly outer shell.

Claims

Формула изобретения Claim
1. Тренажер, состоящий из внутренней оболочки с герметичной полостью внутри находящейся под давлением, клапана регулировки давления, отличающийся тем, что внутренняя оболочка выполнена в виде рукава из хотя бы двух слоев армированного эластичного материала, дополнительно он содержит внешнюю оболочку, выполненную либо в виде эластичного чулка, либо в виде покрытия из экологически чистого безвредного для человека материала, расположенную поверх внутренней оболочки, страховочный трос, расположенный внутри герметичной полости, жидкий герметик, расположенный внутри герметичной полости, втулку, соединяющую концы внешней и внутренней оболочек, образуя замкнутую фигуру, хотя бы один ремень изменения формы фигуры, а клапан регулировки давления выполнен запрессованным своим корпусом во втулку.1. The simulator, which consists of an inner shell with a sealed cavity inside the pressure control valve pressure, characterized in that the inner shell is made in the form of a sleeve of at least two layers of reinforced elastic material, it additionally contains an outer shell, made either in the form of elastic stocking, or in the form of a coating of environmentally friendly material harmless to humans, located on top of the inner shell, safety cable located inside the sealed cavity, liquid YETİK disposed inside the sealed cavity, a sleeve connecting the ends of the outer and inner shells, forming a closed shape, at least one belt shape change shape, and the pressure control valve is pressed into its housing in the sleeve.
2. Тренажер по п.1 , отличающийся тем, что замкнутая фигура имеет форму либо кольца, либо восьмерки, либо эллипса, либо другой геометрической фигуры.2. The simulator according to claim 1, characterized in that the closed figure has the shape of either a ring, or figure eight, or an ellipse, or another geometric figure.
3. Тренажер по п.2, отличающийся тем, что замкнутая фигура в виде кольца имеет диаметр 700-900 мм.3. The simulator according to claim 2, characterized in that the closed figure in the form of a ring has a diameter of 700-900 mm.
4. Тренажер по п.1 , отличающийся тем, что внутренняя оболочка выполнена в виде рукава внутренним диаметром 36 - 40 мм, внешним 50 - 54 мм.4. The simulator according to claim 1, characterized in that the inner shell is made in the form of a sleeve with an inner diameter of 36 - 40 mm, an external 50 - 54 mm.
5. Тренажер по п.1 , отличающийся тем, что внутренняя оболочка выполнена с возможностью выдерживать давление 45 - 50 атм.,5. The simulator according to claim 1, characterized in that the inner shell is made with the ability to withstand a pressure of 45 - 50 atm.,
6. Тренажер по п.1 , отличающийся тем, что страховочный трос выполнен с возможностью выдерживать нагрузку 95 - 100 кг/мм2,6. The simulator according to claim 1, characterized in that the safety cable is made to withstand a load of 95 - 100 kg / mm 2 ,
7. Тренажер по п.1 , отличающийся тем, что втулка выполнена методом прессования из либо полиамида, либо полиэтилена, либо из жесткой пластмассы.7. The simulator according to claim 1, characterized in that the sleeve is made by pressing from either polyamide, or polyethylene, or from rigid plastic.
8. Тренажер по п.1 , отличающийся тем, что внешняя оболочка выполнена, с возможностью закрыть втулку, при соединении концов оболочек.8. The simulator according to claim 1, characterized in that the outer shell is made with the ability to close the sleeve when connecting the ends of the shells.
9. Тренажер по п.1 , отличающийся тем, что он дополнительно содержит хотя бы две поролоновых подушки.9. The simulator according to claim 1, characterized in that it further comprises at least two foam pillows.
10. Тренажер по п.1 , отличающийся тем, что клапан регулировки давления снабжен золотником и пластмассовым колпачком. 10. The simulator according to claim 1, characterized in that the pressure control valve is equipped with a slide valve and a plastic cap.
EP05851103A 2005-07-07 2005-10-26 Exercise machine Not-in-force EP1900395B1 (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
RU2005122878 2005-07-07
RU2005122689/12A RU2288766C1 (en) 2005-07-07 2005-07-07 Exerciser
PCT/RU2005/000542 WO2007008099A1 (en) 2005-07-07 2005-10-26 Exercise machine

Publications (3)

Publication Number Publication Date
EP1900395A1 EP1900395A1 (en) 2008-03-19
EP1900395A4 true EP1900395A4 (en) 2008-12-10
EP1900395B1 EP1900395B1 (en) 2010-09-08

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Application Number Title Priority Date Filing Date
EP05851103A Not-in-force EP1900395B1 (en) 2005-07-07 2005-10-26 Exercise machine

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Country Link
EP (1) EP1900395B1 (en)
AT (1) ATE480306T1 (en)
DE (1) DE602005023543D1 (en)
WO (1) WO2007008099A1 (en)

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Publication number Priority date Publication date Assignee Title
US3774812A (en) * 1972-02-03 1973-11-27 J Lemelson Molded container with internal su port means
RU2103953C1 (en) * 1996-07-29 1998-02-10 Ракетно-космическая корпорация "Энергия" им.С.П.Королева Pneumatic foot of prosthesis for lower limb
US5895309A (en) * 1998-02-09 1999-04-20 Spector; Donald Collapsible hula-hoop
EA004967B1 (en) * 2001-06-18 2004-10-28 Ержан Карымгазыулы МУКЕНЕВ Inflatable hoop top
EP1279427B1 (en) * 2001-07-18 2003-09-10 Maui Toys,Inc. Water filled hoop construction

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
No further relevant documents disclosed *

Also Published As

Publication number Publication date
DE602005023543D1 (en) 2010-10-21
EP1900395A1 (en) 2008-03-19
EP1900395B1 (en) 2010-09-08
WO2007008099A1 (en) 2007-01-18
ATE480306T1 (en) 2010-09-15

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