WALL DAMPER
20190323254 ยท 2019-10-24
Assignee
Inventors
Cpc classification
E04H9/022
FIXED CONSTRUCTIONS
International classification
Abstract
The present invention relates to a wall damper (100) connected to an upper floor and a lower floor, comprising of a top cap (108), a pair of cover plates (105), a pair of side members (107), and a base (110), interconnected to one another to form a framing structure to accommodate a pair of inner panels (101), a plurality of damping means (103), and a plurality of outer plates (104); characterised in that the pair of inner panels (101) connected vertically to one another by a joint (102); the top cap (108) having a slit (114) for receiving the pair of inner panels (101); the plurality of damping means (103) bounded to both sides of the pair of inner panels (101); the plurality of outer plates (104) bounded to the plurality of damping means (103); a plurality of stiffening members (106) disposed on a surface of each of the pair of cover plates (105); wherein the pair of inner panels (101), the plurality of damping means (103), the plurality of outer plates (104) and the pair of cover plates (105) are arranged in a parallel relationship; wherein the pair of inner panels (101), the joint (102), the plurality of damping means (103), the plurality of outer plates (104), and the pair of cover plates (105), being provided with a plurality of cavities (113) and aligned with one another accordingly for a connecting means (112) transversed therethrough.
Claims
1. A wall damper (100) connected to an upper floor and a lower floor, comprising of: a top cap (108), a pair of cover plates (105), a pair of side members (107), and a base (110), interconnected to one another to form a framing structure to accommodate a pair of inner panels (101), a plurality of damping means (103), and a plurality of outer plates (104); characterised in that: the pair of inner panels (101) connected vertically to one another by a joint (102), engaging to the upper floor by a holding means (109) and engaging to the lower floor by a platform (111); the top cap (108) having a slit (114) for receiving the pair of inner panels (101), in a manner such that the holding means (109) extended out from the slit (114); the plurality of damping means (103) bounded to both sides of the pair of inner panels (101), for absorbing seismic energy; the plurality of outer plates (104) bounded to the plurality of damping means (103); a plurality of stiffening members (106) disposed on a surface of each of the pair of cover plates (105), for increasing rigidity to said wall damper (100); wherein the pair of inner panels (101), the plurality of damping means (103), the plurality of outer plates (104) and the pair of cover plates (105) are arranged in a parallel relationship; wherein the pair of inner panels (101), the joint (102), the plurality of damping means (103), the plurality of outer plates (104), and the pair of cover plates (105), being provided with a plurality of cavities (113) and aligned with one another accordingly for a connecting means (112) transversed therethrough.
2. The wall damper (100) according to claim 1, wherein the holding means (109) comprises a flat surface and an inverted U-shaped structure.
3. The wall damper (100) according to claim 2, wherein the flat surface is connected to the upper floor.
4. The wall damper (100) according to claim 2, wherein the inverted U-shaped structure of the holding means (109) holds the pair of inner panels (101) in place.
5. The wall damper (100) according to claim 1, wherein the top cap (108) is configured into inverted U-shaped.
6. The wall damper (100) according to claim 1, wherein the base (110) is attached to the platform (111).
7. The wall damper (100) according to claim 1, wherein the plurality of damping means (103) is a high damping rubber sheet or any similar material such as natural rubber.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The features of the invention will be more readily understood and appreciated from the following detailed description when read in conjunction with the accompanying drawings of the preferred embodiment of the present invention, in which:
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DETAILED DESCRIPTION OF THE INVENTION
[0026] As required, detailed embodiments of the present invention are disclosed herein; however, it is to be understood that the disclosed embodiments are merely exemplary of the invention, which may be embodied in various forms. Therefore, specific structural and functional details disclosed herein are not to be interpreted as limiting but merely as a basis for claims. It should be understood that the drawings and detailed description thereto are not intended to limit the invention to the particular form disclosed, but on the contrary, the invention is to cover all modifications, equivalents and alternatives falling within the scope of the present invention as defined by the appended claims. As used throughout this application, the word may is used in a permissive sense (i.e., meaning having the potential to), rather than the mandatory sense (i.e., meaning must). Similarly, the words include, including, and includes mean including, but not limited to. Further, the words a or an mean at least one and the word plurality means one or more, unless otherwise mentioned. Where the abbreviations or technical terms are used, these indicate the commonly accepted meanings as known in the technical field. For ease of reference, common reference numerals will be used throughout the figures when referring to the same or similar features common to the figures. The present invention will now be described with reference to
[0027] The present invention relates to a wall damper (100) connected to an upper floor and a lower floor, comprising of: [0028] a top cap (108), a pair of cover plates (105), a pair of side members (107), and a base (110), interconnected to one another to form a framing structure to accommodate a pair of inner panels (101), a plurality of damping means (103), and a plurality of outer plates (104); [0029] characterised in that: [0030] the pair of inner panels (101) connected vertically to one another by a joint (102), engaging to the upper floor by a holding means (109) and engaging to the lower floor by a platform (111); [0031] the top cap (108) having a slit (114) for receiving the pair of inner panels (101), in a manner such that the holding means (109) extended out from the slit (114); [0032] the plurality of damping means (103) bounded to both sides of the pair of inner panels (101), for absorbing seismic energy; [0033] the plurality of outer plates (104) mounted bounded to the plurality of damping means (103); [0034] a plurality of stiffening members (106) disposed on a surface of each of the pair of cover plates (105), for increasing rigidity to said wall damper (100); [0035] wherein the pair of inner panels (101), the plurality of damping means (103), the plurality of outer plates (104) and the pair of cover plates (105) are arranged in a parallel relationship; [0036] wherein the pair of inner panels (101), the joint (102), the plurality of damping means (103), the plurality of outer plates (104), and the pair of cover plates (105), being provided with a plurality of cavities (113) and aligned with one another accordingly for a connecting means (112) transversed.
[0037] In a preferred embodiment of the wall damper (100), the holding means (109) comprises a flat surface and an inverted U-shaped structure.
[0038] In a preferred embodiment of the wall damper (100), the flat surface is connected to the upper floor.
[0039] In a preferred embodiment of the wall damper (100), the inverted U-shaped structure of the holding means (109) holds the pair of inner panels (101) in place.
[0040] In a preferred embodiment of the wall damper (100), the top cap (108) is configured into inverted U-shaped.
[0041] In a preferred embodiment of the wall damper (100), the base (110) is attached to the platform (111).
[0042] In a preferred embodiment of the wall damper (100), the plurality of damping means (103) is a high damping rubber sheet or any similar material such as natural rubber.
[0043] Below is an example of a wall damper from which the advantages of the present invention may be more readily understood. It is to be understood that the following example is for illustrative purpose only and should not be construed to limit the present invention in any way.
EXAMPLES
[0044] The present invention relates to a development of a wall damper (100) incorporated into a structure to dissipate dynamic energy and decrease vibration effects in the structure.
[0045] Referring to
[0046] In a preferred embodiment, the holding means (109) as illustrated in
[0047] The top cap (108) has a slit (114) sized to receive the pair of inner panels (101), in a manner such that the holding mean (109) is extended out from the slit (114) and the pair of inner panels (101) are extended through the length of the framing structure as referred to the
[0048] Referring to
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[0050] The pair of inner panels (101), the joint (102), the plurality of damping means (103), the plurality of outer plates (104) and the pair of cover plates (105) are being provided with a plurality of cavities (113) on their surfaces.
[0051] Referring to
[0052] A plurality of stiffening members (106) is disposed on a surface of each of the pair of cover plates (105) for increasing rigidity to said wall damper (100) in plane as well as out of plane directions. In a preferred embodiment, the plurality of stiffening members (106) is an elongated rectangular hollow steel, which attached to an outer surface of each of the pair of cover plates (105) as stiffener in horizontal, vertical, and diagonal directions to prevent out-of-plane buckling. The stiffening members (106) can be in any preferred shape and configuration to provide desire stiffness. The attachment of the plurality of stiffening members (106) is preferably by means of the connecting means (112) such as bolts and nuts, rivets, and the like.
[0053] For example, during the occurrence of vibration, the vibration is transmitted to the high damping rubber sheet via the steel plates or members, and the vibration of a building structure is damped by rubber deformation thereby causing the vibration energy to be absorbed.
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[0055] Although the present invention has been described with reference to specific embodiments, also shown in the appended figures, it will be apparent for those skilled in the art that many variations and modifications can be done within the scope of the invention as described in the specification and defined in the following claims.
[0056] Description of the reference numerals used in the accompanying drawings according to the present invention:
TABLE-US-00001 Reference Numerals Description 100 Wall damper 101 A pair of inner panels 102 Joint 103 A plurality of damping means 104 A plurality of outer plates 105 A pair of cover plates 106 A plurality of stiffening members 107 a pair of side members 108 Top cap 109 Holding means 110 Base 111 Platform 112 Connecting means 113 A plurality of cavities 114 Slit