WO2007003021A2 - Rotating system for buildings in general - Google Patents

Rotating system for buildings in general Download PDF

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Publication number
WO2007003021A2
WO2007003021A2 PCT/BR2006/000021 BR2006000021W WO2007003021A2 WO 2007003021 A2 WO2007003021 A2 WO 2007003021A2 BR 2006000021 W BR2006000021 W BR 2006000021W WO 2007003021 A2 WO2007003021 A2 WO 2007003021A2
Authority
WO
WIPO (PCT)
Prior art keywords
general
horizontally
rotary platform
symmetrically
symmetrically arranged
Prior art date
Application number
PCT/BR2006/000021
Other languages
English (en)
French (fr)
Other versions
WO2007003021A3 (en
Inventor
Bruno De Franco
Alfredo Moro Netto
Alan Holzmann
Original Assignee
Design Essentials S.A.
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 Design Essentials S.A. filed Critical Design Essentials S.A.
Priority to EP06721582A priority Critical patent/EP1899556A2/en
Publication of WO2007003021A2 publication Critical patent/WO2007003021A2/en
Publication of WO2007003021A3 publication Critical patent/WO2007003021A3/en

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/343Structures characterised by movable, separable, or collapsible parts, e.g. for transport
    • E04B1/346Rotary buildings; Buildings with rotary units, e.g. rooms

Definitions

  • the present patent relates to mechanical systems in general, more specifically to a rotating system for buildings in general which, according to the characteristics thereof, possesses as a basic principle to provide the formation of a rotating system in a proper and specific mechanical driving structure for the application in commercial and/or residential buildings with two or more stories or floors, in order to provide, in an extremely comfortable, practical and safe way, that each one of the floors thereof rotates freely and independently in either direction, at any moment and for any number of turns directly by the residents' command and having as a basis a rotating system with great resistance, safety and versatility.
  • the present patent consists in the ⁇ utilization of a modern, safe, practical and efficient rotating system for buildings in general formed by an assembly of properly incorporated mechanical and building solutions comprising a complete and differentiated rotating system, with an exclusive design, optimum finish details and proprietary characteristics, incorporating a proper and specific mechanical structure, of high durability and strength, having a general circular shape and a properly integrated fixed structure symmetrically arranged in each of the floors as a support for the rotating system in the building, a rotary platform as a revolving element to the system, a driving assembly to impart movement to the rotary platform, a control panel to command the system, a sealing assembly as internal environment protection and an electrification assembly to collect electric power, in order to provide the formation of a complete, safe and unique assembly, whose internal and external shapes and arrangements provide a proper individualized arrangement over each one of the floors for the most varied types of buildings in general.
  • the general conception of the rotating system for buildings in general is directly based on a building having a fixed structure made of reinforced concrete or metallic material and a rotary platform for each floor which is directly actuated by an electric motor with a reducer, driven by a lateral roller belt and supported by a sliding wheel assembly over bearing races that, together with the control panel, allow a smooth, silent, economic and practical rotation of the rotary platform by sliding over the floor of the building in a fully individualized way and with the full possibility of determining the rotation speed and direction, as well as programming the rotation starting and ending time, including by remote control. Therefore, each one of the rotary platforms supported on each one of the floors rotates independently instead of the building central structure.
  • Simple rotating structures are widely known in the current state of the art, i.e., those with a single rotating floor as, for example, the ones applied primarily on the top of buildings and towers as a base for panoramic restaurants and also one- story residences.
  • These rotating systems are fully based on big-sized driving systems similar to those used in overhead traveling crane systems widely commercially available for decades, the most well-known of those being that from Demag which are based on driving wheels individually supported on rails.
  • the present rotating system is based on the application of components and process in a differentiated concept, without, however, achieving a high degree of sophistication and complexity, thereby allowing to solve some of the main inconveniences of the other shapes and models widely known in the current state of the art and employed in the rotation of floors of buildings in general, which are located in a work range wherein the handling difficulties, low efficiency and performance and accidents are fairly frequent and whose shapes and/or models are extremely complex and based on adaptations, being thus very fragile and prone to deterioration and have low strength and durability, high costs, are fully unsafe, uncomfortable and difficult to handle, are not easily understood by the users and require the need of high skilled labor.
  • Figure 1 is an upper view diagram of the floor of a building with the rotating system for buildings in general.
  • Figure 2 is a cross-sectional view of a building with the rotating system for buildings in general, section A-A of Figure (1).
  • Figure 3 is a detailed cross-sectional view of the floor of a building with the rotating system for buildings in general, detail A of Figure (2).
  • Figure 4 is a detailed upper view diagram of the floor of a building with the rotating system for buildings in general without the rotary platform upper floor.
  • Figure 5 is a detailed upper view of the joining point of two rotary platform modules of the rotating system for buildings in general, detail B of Figure (4).
  • Figure 6 is a detailed cross-sectional view of the floor of a building with the rotating system for buildings in general in the configuration with an upper covering integrated to the rotary platform.
  • Figure (1) shows the same in a general manner, comprised of a complete rotating system (1) with proprietary characteristics, incorporating a proper and specific mechanical structure of high durability and strength, general circular shape, internal and external shapes and arrangements that provide a proper and individualized disposition on each one of the floors (A) of several types of buildings (B) in general and possessing a properly integrated and symmetrically arranged fixed structure (2), in each of the floors (A), of a general circular shape, horizontally and symmetrically arranged along the periphery of a floor (A) and forming each one of the stories (A) or floors of a building (B); a rotary platform (3) of a general circular shape possessing a central opening horizontally, parallelally and symmetrically arranged over and along the fixed structure (2) of a floor (A); a driving assembly (4) of a general ring-like shape, horizontally, parallelally and symmetrically
  • the fixed structure (2) made of metallic material, reinforced concrete or similar material with equal or higher strength, is comprised of a structural center (2A) having a general cylindrical hollow shape vertically, perpendicularly and symmetrically centered over the floor (A) and having a set of doors and windows (2B) of general varied shapes, vertically and symmetrically spaced within the structural center (2A) lateral faces, a bearing race or rail (2C) of general ring-like shape vertically, parallelally and symmetrically arranged around the entire periphery of the structural center (2A) outer face and frontally aligned with the rotary platform (3) inner side face as a lateral support thereof, all plumbing and toilet facilities, phone and television lines, electric cables/power distribution, and internal ventilation of the floor (A) and the building (B) being symmetrically arranged in the structural center (2A) inner side and all the fixed utilities such as bathrooms, kitchens, and others in the floor (A) depending on the plumbing-toilet facilities symmetrically arranged on the structural center (2A) inner side; and a
  • the fixed structure (2) can also include the fixed facilities of the building (B) such as lifts, stairs and leisure and service areas, among others, which are normally arranged on the outside of the rotary platform (2), as shown in Figure (1).
  • the rotary platform (3) made of metallic material of high resistance or similar material with equal or higher lightness and strength, is comprised of an assembly of sector modules (3A) having general semicircular shapes horizontally, parallelally and symmetrically aligned and slightly sideways spaced around the entire periphery of the rotary platform (3) as sectors thereof; an assembly of lower attachment bearings (3B) of general parallelepipedal hollow shapes, horizontally and symmetrically spaced between the adjacent lateral faces and joining faces of the sector modules (3A) and vertically aligned with the set of bearing races or rails (2E); a set of vertical wheels or bearings (3C) of general cylindrical shapes, vertically and symmetrically centered on the lower attachment bearings (3B) as a vertical support for the rotary platform (3) over the set of bearing races or rails (2E); an assembly of side attachment bearings (3D) of general parallelepipedal hollow shapes, horizontally and symmetrically arranged between the adjacent ends of the sector modules (3A) inner faces and joining faces and horizontally arranged on the bearing race or rail (2C);
  • the number of modules (3A) applied in a rotary platform (3) is directly proportional to the size thereof, so as to provide a practical and safe transportation, as well as an easy and safe handling and installation of the parts directly on the fixed structure (2); the number of vertical wheels or bearings (3C) and horizontal wheels or bearings (3E) are also directly proportional to the size of the rotary platform (3), in order to provide an extremely stable and safe floor, that is, without any deflections or swings.
  • the rotary platform (3) can be comprised of an inverted fastening system for the lower attachment bearings (3B) and the set of vertical wheels or bearings (3C), that is, the assembly of lower attachment bearings (3B) of general parallelepipedal hollow shapes are horizontally and symmetrically attached to the set of bearing races or rails (2E) and vertically aligned with the adjacent lateral faces of the sector modules (3A) joining area and, consequently, the set of vertical wheels or bearings (3C) having general cylindrical shapes are vertically and symmetrically centered on the lower attachment bearings (3B) as a vertical support for the rotary platform (3), the rotary platform (3) thus possessing a set of bearing races or rails of general ring-like shapes horizontally, parallelally and symmetrically spaced on the entire periphery of its lower face and vertically aligned with the set of bearing races or rails (2E) for the lower clearance (2D).
  • the rotary platform (3) can be comprised of an upper covering or ceiling (3H) having a general circular shape horizontally, parallelally and symmetrically spaced on the fixed structure (2) lower face in the upper floor (A) and perpendicularly and symmetrically supported by its outer side ends over and along the sealing outer walls (3F) upper end, fully joined with the rotary platform (3) assembly and with the possibility of possessing outer sealing walls (31) having general curved shapes, made of several high-strength materials vertically, perpendicularly and symmetrically arranged on the rotary platform (3) inner side ends.
  • an upper covering or ceiling (3H) having a general circular shape horizontally, parallelally and symmetrically spaced on the fixed structure (2) lower face in the upper floor (A) and perpendicularly and symmetrically supported by its outer side ends over and along the sealing outer walls (3F) upper end, fully joined with the rotary platform (3) assembly and with the possibility of possessing outer sealing walls (31) having general curved shapes, made of several high-strength materials vertically, perpendicularly
  • the driving assembly (4) made of metallic material of high resistance or similar material with equal or higher lightness and strength, is comprised of an electric motor coupled with a reducer (4A) symmetrically spaced in the rotary platform (3) lateral face and possessing a pole wheel in its output shaft (drive shaft); an assembly of central supports (4B) having general cylindrical shapes vertically and symmetrically spaced between the electric motor coupled with a reducer (4A) and the rotary platform (3) lateral face; a belt guide (4C) having a general ring-like shape with a section similar to a "C", horizontally and symmetrically arranged around the entire periphery of the rotary platform (3) outer face and possessing a circular shape in order to avoid the polygonal effect that causes discontinuity and bumps in the rotation; an assembly of pole wheel sections (4D) having general parallelepipedal shapes, horizontally and symmetrically centered between the outer side ends of the sector modules (3A) adjacent lateral faces and joining faces and vertically aligned to the belt guide (4C), each one of them possessing
  • the control panel (5) is the direct responsible for activating all the functions of the rotating system (1), that is, connecting and disconnecting it, determining the rotation speed and direction and programming the operation starting and ending times; the activation being also remote by telephone or by a traditional remote control.
  • the sealing assembly (6) for protecting the floor environment (A) against wind and rain is comprised of a set of brushes (6A) of general curved shapes and rectangular sections horizontally, parallelally and symmetrically centered along the periphery of the outer sealing walls (3F) upper ends; an assembly of labyrinths (6B) of general parallelepipedal shapes horizontally, parallelally and symmetrically centered along the periphery of the outer sealing walls (3F) upper end, thus creating a sandwich with the outer sealing walls (3F) upper ends and the set of brushes (6A); and an assembly of lower sealing elements (6C) having general curved shapes and rectangular sections horizontally, parallelally and symmetrically arranged around the periphery of the structural center (2A) outer face and aligned on the top with the rotary platform (3) inner side face.
  • the electrification assembly (7) for the rotary platform (3) provided with points for electric power collection is comprised of a set of brushes (7A) of general ring-like shapes horizontally and symmetrically arranged underneath the rotary platform (3) lower face; an electrified track (7B) of general ring-like shape horizontally and symmetrically arranged between the lower clearance (2D) inner lower face and the rotary platform (3) lower face, in the brush system (7A) vertical alignment; and an electricity collector (7C) of general ring-like shape horizontally and symmetrically arranged between the lower clearance (2D) inner lower face and the rotary platform (3) lower face and parallelally and symmetrically spaced in the electrified track (7B); the electric power being directly collected by the brush system (7A) which is joined with the rotary platform (3) and causes a friction against the electrified track (7B).
  • the application of the rotating system for buildings in general is based on the direct action of the driving assembly (4) around the rotary platform (3), which is directly controlled by the users by means of a control panel (5).
  • the electric motor coupled with a reducer (4A) When the electric motor coupled with a reducer (4A) is actuated, its output shaft pole wheel directly drives the roller belt (4F) which, in its turn, is activated by the assembly of central supports (4B) inside the belt guide (4C), in order to symmetrically drive the assembly of pole wheel (4D) sectors.
  • the rotary platform (3) starts to rotate on the lower clearance (2D) in the fixed structure (2) supported by the set of vertical wheels or bearings (3C) on the bearing races or rails (2E) and around the fixed structure (2) center (2A) laterally guided by the set of horizontal wheels or bearings (3E) against the bearing race or rail (2C) that serves as a guide for the circular movement and the determination of the rotary platform (3) rotation on the floor (A) central axis.
  • the users are able to freely determine the rotation speed and direction, as well as program the starting and ending of the rotating system (1) operation.
  • the components of the rotating system for buildings in general are fully fitted and attached to each other and the general structure of the building floor, do not present any breakable parts, are highly resistant and completely safe. After fitted and attached to each other and to the floor structure, the components are locked, thus preventing them from getting loose when in use, thus making the assembly fully available for a proper, safe, comfortable and silent rotation of the floor in relation to the building general structure. Therefore, the rotating system (1) can be easily used without worries of any nature as regarding its durability and safety.
  • the rotating system for buildings in general and the components thereof are rustproof and waterproof, have a high level of durability and resistance, specially against bad weather and physical- chemical agents, provide great safety for the users and, when generally used, does not present any risks of fatigue of their structures.
  • the rotating system for buildings in general can be classified as a fully versatile, efficient, accurate, safe, silent and, specially, practical means for the fully individualized rotation, in either direction, of the floors of the most varied types of buildings in general by the most varied users and places, regardless of the general characteristics thereof, it is also easy to use and handle, has a great performance and excellent characteristics; the sizes, dimensions and quantities may vary, depending on the use needs.

Landscapes

  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Electromagnetism (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Buildings Adapted To Withstand Abnormal External Influences (AREA)
  • Floor Finish (AREA)
  • Laminated Bodies (AREA)
  • Extensible Doors And Revolving Doors (AREA)
  • Producing Shaped Articles From Materials (AREA)
  • Rolling Contact Bearings (AREA)
  • Building Environments (AREA)
PCT/BR2006/000021 2005-07-04 2006-02-14 Rotating system for buildings in general WO2007003021A2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP06721582A EP1899556A2 (en) 2005-07-04 2006-02-14 Rotating system for buildings in general

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
BRPI0502275-6 2005-07-04
BRPI0502275 BRPI0502275A (pt) 2005-07-04 2005-07-04 Processo de assentamento de placas cerâmicas e de rocha por colagem

Publications (2)

Publication Number Publication Date
WO2007003021A2 true WO2007003021A2 (en) 2007-01-11
WO2007003021A3 WO2007003021A3 (en) 2009-04-23

Family

ID=37604818

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/BR2006/000021 WO2007003021A2 (en) 2005-07-04 2006-02-14 Rotating system for buildings in general

Country Status (5)

Country Link
EP (1) EP1899556A2 (ru)
CN (1) CN101500672A (ru)
BR (1) BRPI0502275A (ru)
RU (1) RU2394967C2 (ru)
WO (1) WO2007003021A2 (ru)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101949230A (zh) * 2010-10-08 2011-01-19 马丹萌 带有旋转餐厅的观景向日葵光伏电站大厦
RU2594015C2 (ru) * 2012-05-21 2016-08-10 Александр Владимирович Иванов Индивидуальная жилая ячейка

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106337573B (zh) * 2016-11-16 2019-05-14 陈作炳 一种多房间共用整体浴室
CN108043036A (zh) * 2018-01-12 2018-05-18 金涛 旋转平台摩天轮
CN108926848B (zh) * 2018-09-20 2024-01-30 深圳市鑫美幻想工程有限公司 一种用于游乐行业的陀螺类互动射击式的乘骑设备

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3299588A (en) * 1963-07-10 1967-01-24 Lloyd L Arnold Multilevel building structure with plural suspended revolving compartment units and method of making same

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3299588A (en) * 1963-07-10 1967-01-24 Lloyd L Arnold Multilevel building structure with plural suspended revolving compartment units and method of making same

Non-Patent Citations (3)

* Cited by examiner, † Cited by third party
Title
'Emporis Data, Suite Vollard', [Online] 2008, Retrieved from the Internet: <URL:http://www.emporis.com/en/wm/bu/?id=136410> *
'Imaginitive Worlds', [Online] 09 January 2005, Retrieved from the Internet: <URL:http://imaginitiveworlds.com/forum/archive/index.php/t-946.html> *
'Suite Vollard homepage', [Online] 24 February 2007, Retrieved from the Internet: <URL:http://suitevollard.com/about.html> *

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101949230A (zh) * 2010-10-08 2011-01-19 马丹萌 带有旋转餐厅的观景向日葵光伏电站大厦
CN101949230B (zh) * 2010-10-08 2014-10-15 马丹萌 带有旋转餐厅的观景向日葵光伏电站大厦
RU2594015C2 (ru) * 2012-05-21 2016-08-10 Александр Владимирович Иванов Индивидуальная жилая ячейка

Also Published As

Publication number Publication date
BRPI0502275A (pt) 2005-11-22
WO2007003021A3 (en) 2009-04-23
RU2394967C2 (ru) 2010-07-20
EP1899556A2 (en) 2008-03-19
CN101500672A (zh) 2009-08-05
RU2008101925A (ru) 2009-08-10

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