Abstract:
A new athletic floor resiliently retrofit to a worn athletic floor. The worn floor includes a plurality of elongated raised channels spaced from one another and connected to a ground substrate. The new athletic floor includes at least two elongated subfloor panels. At least two elongated raised channels are spaced from one another and have a first set of adjoined elongated subfloor panels located therebetween. At least one elongated raised channel is spaced therefrom and has a second set of adjoined elongated subfloor panels located therebetween. A resilient pad is positioned between each elongated subfloor panel and the ground substrate. A new flooring is located on the first and second sets of elongated subfloor panels, covering at least one elongated raised channel, and a bottom surface of the new flooring is spaced from a top surface of the elongated raised channel by a gap.
Abstract:
A subfloor assembly that supports a flooring section on a substrate. The subfloor assembly includes a subfloor section and a resilient component. The subfloor section includes an offset groove in an underside of the subfloor section. The offset groove is defined by a side of the groove spaced apart from an opposing side of the groove and a ceiling spanning between the side and the opposing side and sloped relative to an upper surface of the substrate. The resilient component is positioned in the offset groove and between the ceiling and the upper surface of the substrate.
Abstract:
A subfloor assembly for supporting a floor on a substrate includes a plurality of lower subfloor panels and a plurality of upper subfloor panels. The lower subfloor panels are resiliently disposed over the substrate while the upper subfloor panels are disposed over the lower subfloor panels. Each of the upper subfloor panels has at least one pocket and the pocket is disposed over a void that is provided between adjacent lower subfloor panels. An anchor is positioned in each pocket and is attached to the substrate. The anchor also engages a surface of a shoulder of at least one of the lower subfloor panels that is exposed under the pocket to thereby limit resilient upward movement of the subfloor assembly.
Abstract:
A sub-floor assembly for a sports flooring system includes a plurality of sub-floor panel components each formed of a plastic material and each having a formed channel wherein the formed channels of the plurality of sub-floor panel components are linearly aligned. A first strip of anchoring material is disposed within the linearly aligned formed channels of the plurality of sub-floor panel components and is used to attach a plurality of flooring strips to the sub-floor panel components.
Abstract:
A subfloor assembly that supports a flooring section on a substrate. The subfloor assembly includes a subfloor section and a resilient component. The subfloor section includes an offset groove in an underside of the subfloor section. The offset groove is defined by a side of the groove spaced apart from an opposing side of the groove and a ceiling spanning between the side and the opposing side and sloped relative to an upper surface of the substrate. The resilient component is positioned in the offset groove and between the ceiling and the upper surface of the substrate.
Abstract:
A subfloor assembly for supporting a floor on a substrate includes a plurality of lower subfloor panels and a plurality of upper subfloor panels. The lower subfloor panels are resiliently disposed over the substrate while the upper subfloor panels are disposed over the lower subfloor panels. Each of the upper subfloor panels has at least one pocket and the pocket is disposed over a void that is provided between adjacent lower subfloor panels. An anchor is positioned in each pocket and is attached to the substrate. The anchor also engages a surface of a shoulder of at least one of the lower subfloor panels that is exposed under the pocket to thereby limit resilient upward movement of the subfloor assembly.
Abstract:
A floor support assembly including first and second subfloors is disclosed. The first subfloor is supported over a substrate by a plurality of pads. Each pad is housed in a corresponding recess formed in the first subfloor. Each recess includes a ridge that is in contact only with its respective pad when the floor is in a lightly loaded position. In a more aggressively athletically loaded state, the pad contacts the ridge and a portion of the top of the recess. In a non-athletic fully loaded state, the first subfloor plate near the load rests on the substrate. The second subfloor is located above the first subfloor and is supported by the first subfloor. A method of installing the same is also disclosed.
Abstract:
A new athletic floor resiliently retrofit to a worn athletic floor having a supporting sleeper connected to a ground substrate. The new athletic floor incudes a channel section connected to the supporting sleeper, the channel section having a top plate located between and connected to each of a left vertical side wall spaced apart from a right vertical side wall. The left vertical side wall includes a left horizontal flange extending outward from the top plate and the right vertical side wall includes a right horizontal flange extending outward from the top plate. A left resilient pad rests on the left horizontal flange and a right resilient pad rests on the right horizontal flange. A new floor rests on the left resilient pad and the right resilient pad and is spaced from the top plate a first distance in a first resilient compression condition.
Abstract:
A subfloor assembly that supports a floor on a substrate. The assembly includes an upper profile panel, a lower profile panel, and a resilient member positioned therebetween. The upper profile panel has at least one upper protruding rib and an upper groove on each side of the upper protruding rib. The lower profile panel has at least one lower protruding rib and a lower groove on each side of the lower protruding rib. The resilient member is sandwiched therebetween and has a resilient elastic modulus that results in (i) the resilient member being spaced from the upper profile panel and from the lower profile panel when the subfloor assembly is in an unloaded state and (ii) the resilient member deforming and in contact with the upper profile panel and the lower profile panel when the subfloor assembly is in a loaded state.
Abstract:
A sub-floor assembly for a sports flooring system includes a plurality of sub-floor panel components each formed of a plastic material and each having a formed channel wherein the formed channels of the plurality of sub-floor panel components are linearly aligned. A first strip of anchoring material is disposed within the linearly aligned formed channels of the plurality of sub-floor panel components and is used to attach a plurality of flooring strips to the sub-floor panel components.