Engineered floor and scaffold system
10781605 ยท 2020-09-22
Assignee
Inventors
Cpc classification
E04B5/10
FIXED CONSTRUCTIONS
E04G1/15
FIXED CONSTRUCTIONS
E04B1/34352
FIXED CONSTRUCTIONS
E04G1/06
FIXED CONSTRUCTIONS
E04G1/08
FIXED CONSTRUCTIONS
International classification
E04B5/10
FIXED CONSTRUCTIONS
E04G1/06
FIXED CONSTRUCTIONS
E04G1/08
FIXED CONSTRUCTIONS
E04G1/15
FIXED CONSTRUCTIONS
Abstract
A scaffold apparatus may have a saddle with a platform and two sides extending above the platform. The saddle may support one or two beams.
Claims
1. A scaffold apparatus, comprising: a saddle comprising a platform and two spaced apart parallel sides extending above said platform; a beam having a beam flange attached to an end portion of said beam; and an upright connector comprising a bottom portion, said bottom portion having an insert, and a plate attached above said bottom portion, wherein said upright connector insert is located within said end portion of said beam and said beam flange is located within said bottom portion of said upright connector adjacent said upright connector insert.
2. The scaffold apparatus of claim 1, wherein said beam is received between said two spaced apart parallel sides.
3. The scaffold apparatus of claim 1, wherein at least one mechanical fastener connects said spaced apart sides to said beam and at least one mechanical fastener connects said spaced apart sides to said bottom portion.
4. The scaffold apparatus of claim 1, wherein said beam flange is attached to a first side of an opening in said beam.
5. The scaffold apparatus of claim 1, wherein said insert is parallel but spaced apart from said beam flange.
6. The scaffold apparatus of claim 1, wherein said bottom portion is hollow.
7. The scaffold apparatus of claim 1, wherein said insert is attached to a side of an opening in said bottom portion.
8. The scaffold apparatus of claim 1, wherein an upright portion is connected to said plate.
9. The scaffold apparatus of claim 1, wherein said beam has a second end portion with a second beam flange attached thereto.
10. The scaffold apparatus of claim 1, wherein said beam has at least one lip for supporting a platform flooring section.
11. The scaffold apparatus of claim 1, wherein a scaffold leg supports said saddle.
12. A scaffold apparatus, comprising: a saddle comprising a platform and two spaced apart parallel sides extending above said platform, a first beam and a second beam, wherein a first flange is attached to an end of said first beam and a second flange is attached to an end of said second beam, wherein said first flange is located within said second beam and said second flange is located within said first beam adjacent said first flange, wherein said beams are supported by said saddle.
13. The scaffold apparatus of claim 12, wherein both said first and second beams are received between said two spaced apart parallel sides.
14. The scaffold apparatus of claim 12, wherein at least one mechanical fastener connects said spaced apart sides to said first and second beams.
15. The scaffold apparatus of claim 12, wherein said beam flanges are attached to opposite sides of the respective beams.
16. The scaffold apparatus of claim 12, wherein each of said beams has at least one lip for supporting a platform flooring section.
17. The scaffold apparatus of claim 12, wherein a scaffold leg supports said saddle.
18. The scaffold apparatus of claim 12, wherein said first flange is attached to a first end of said first beam and a second flange is attached to a second end of said first beam, and a first flange is attached to a first end of said second beam and said second flange is attached to a second end of said second beam, wherein each of said first flanges are on opposite sides of said beams from said second flanges.
19. A scaffold apparatus, comprising: a first saddle comprising a platform supporting two spaced apart parallel sides extending above said platform; a first beam and a second beam, wherein a first flange is attached to an end of said first beam and a second flange is attached to an end of said second beam, wherein said first flange is located within said second beam and said second flange is located within said first beam adjacent said first flange, wherein said beams are supported by said saddle; and a second saddle comprising a platform supporting two spaced apart parallel sides extending above said platform, an upright connector comprising a hollow bottom portion supported by said second saddle, a plate attached above said bottom portion and an upper geometric portion attached above said plate, wherein a third flange associated with either said first or said second beam is located within said hollow bottom portion and an insert of said upright connector is located adjacent said third flange within said first or second beam.
20. The scaffold apparatus of claim 19, wherein said second saddle simultaneously supports the beam associated with the third flange and the upright connector.
Description
IN THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13)
(14)
(15)
(16)
(17)
(18)
(19)
(20)
DETAILED DESCRIPTION
(21) Described is an engineered flooring system for clear span tents and the structures. The flooring system may have system scaffolding (under structures), and a flooring system. The understructure can be any system scaffolding as long as they have the right load capacity. Flooring systems may have the following items: saddle, universal beam, platform, and upright connectors. The base plates will be replaced by the upright connectors.
(22) The upright connectors are specifically designed for tents so the customer has to use the right upright connector for the right tent. The flooring system accommodates most of the clear span tents and structures. When you use different tents from different manufactures customers have to use the specific upright connector for the specified tent. The universal beam, saddle and the platforms are the same for any type of tent.
(23) The flooring system is designed to transfer the entire load coming from the platform and the tent; the load will be transferred to the scaffold legs. The universal beam, saddle and the platform will transfer live load to the legs and the upright connector will transfer the tent load.
(24) The other advantages of this system are the flooring system is designed to go low as 8 elevation to any platform heights. Also, the tent platform will be the exact size of the tent so the platform will not stick outside the tent. This makes the tent floor water proof because when it rains, the water will flow from the wall to the ground not to the platform.
(25)
(26)
(27)
(28)
(29) As shown in
(30)
(31)
(32)
(33)
(34)
(35)
(36)
(37) Connector 14 comprises the bottom portion 40 which circumscribes beam 12. Thus, as shown in
(38) Upright portion 46 engages clear span tent legs 20 as shown in
(39) The upright connectors are specifically designed so the customer has to use the right upright connector for the right tent. The flooring system accommodates most of the clear span tents and structures. The universal beam, saddle, and the platforms are same for any type of tent.
(40)
(41)
(42)
(43)
(44) Every universal beam is connected with two universal saddles.
(45)
(46)
(47)
(48)
(49) The other advantages of this system are the flooring system is designed to go low as 8 elevation to any platform heights. Also, the tent platform will be the exact size of the tent so the platform will not stick outside of the tent. This makes the tent floor water proof because when it rains, the water will flow from the wall to the ground not to the platform.
(50) The above detailed description of the present invention is given for explanatory purposes. It will be apparent to those skilled in the art that numerous changes and modifications can be made without departing from the scope of the invention. Accordingly, the whole of the foregoing description is to be construed in an illustrative and not a limitative sense, the scope of the invention being defined solely by the appended claims.