Waterproof connecting structure
10574176 ยท 2020-02-25
Assignee
Inventors
Cpc classification
E04D13/04
FIXED CONSTRUCTIONS
E04D11/005
FIXED CONSTRUCTIONS
Y02E10/50
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
E04D13/15
FIXED CONSTRUCTIONS
Y02B10/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
E04D13/04
FIXED CONSTRUCTIONS
E04D11/00
FIXED CONSTRUCTIONS
Abstract
A waterproof connecting structure is used in coordination with a solar panel array in order to construct a vertical wall or a rooftop panel of a building. The waterproof connecting structure comprises two half components and a connecting component. The two half components are disposed between the two solar panels. The connecting component covers a joint between the two half components so that rainwater flowed into a conduit passage formed by each of the half components is guided out. Thereby, the rainwater is prevented from infiltrating into a building.
Claims
1. A waterproof connecting structure used in coordination with a solar panel array in order to construct a vertical wall or a rooftop panel of a building, the solar panel array being defined as a plurality of transverse arrays and a plurality of tandem arrays, the waterproof connecting structure comprising: a plurality of transverse array connecting units, each of the transverse array connecting units respectively disposed between two adjacent solar panels in transverse arrays, and each of the transverse array connecting units comprising: two half components, each of the half components comprising a first wall, a second wall extended from an end of the first wall, a third wall connected to the second wall and disposed parallel to the first wall, a fourth wall disposed at an end of the third wall away from the second wall and extended toward the first wall, a reinforcing rib connected to the first wall and the third wall, and an orifice disposed between the first wall and the fourth wall; the first wall, the second wall, the third wall and the fourth wall collectively composing a conduit passage; and a connecting component, the connecting component comprising a separating element, two extended portions extended from the separating element respectively, and two coupling portions disposed at an end of each of the extended portions respectively; wherein the two half components are disposed between the two solar panels, each of the first walls is respectively disposed at an outer edge of one of the solar panels, the separating element covers a joint between the two half components, the two extended portions pass through the orifices of the two half components respectively, each of the coupling portions is connected to the first wall of the two half components, joints of the separating element and the two solar panels are connected to each of the conduit passages respectively.
2. The waterproof connecting structure according to claim 1, further comprising a plurality of tandem array connecting units, each of the tandem array connecting units comprising: a gripping element comprising a bottom plate, two upright walls respectively extended from two ends of the bottom plate, and two pressing plates respectively connected to the upright walls and extended away from each other; and a supporting element comprising a bottom; two supporting portions disposed respectively at two ends opposite to the bottom and having a level difference with the bottom; two drainage portions disposed respectively at another end of each of the supporting portions away from the bottom; and two water blockage portions with a height being the same as that of each of the supporting portions and connected respectively to each of the drainage portions; wherein each of the tandem array connecting units is disposed between two of the adjacent solar panels in tandem arrays, the two tandem arrays are respectively pressed by each of the pressing plates to lean against each of the supporting portions, the bottom plate is fixedly connected on the bottom, joints between each of the supporting portions and the two solar panels are connected to each of the drainage portions respectively.
3. The waterproof connecting structure according to claim 2, wherein an end of each of the conduit passages is connected to each of the drainage portions.
4. The waterproof connecting structure according to claim 1, wherein the first wall has a segmental difference concavely disposed toward the solar panel, and the coupling portion has a barb formed corresponding to the segmental difference.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(11) Referring to
(12) Specifically, each of the half components 10 comprises a first wall 11, a second wall 12 extended from an end of the first wall 11, a third wall 13 connected to the second wall 12 and disposed parallelly to the first wall 11, a fourth wall 14 disposed at an end of the third wall 13 away from the second wall 12 and extended toward the first wall 11, and an orifice 15 disposed between the first wall 11 and the fourth wall 14. The first wall 11, the second wall 12, the third wall 13 and the fourth wall 14 collectively compose a conduit passage 16. Each of the half components 10 comprises a reinforcing rib 17 connected to the first wall 11 and the third wall 13 for reinforcing the structure of each of the half components 10. In this embodiment, each of the half components 10 is disposed by a side of one of the plurality of solar panels 20, and the other half component 10 is disposed at an opposite side of that solar panel 20. Each of the half components 10 may be coupled with the plurality of solar panels 20 by methods such as welding, and may be a part integrally formed with a frame of each of the plurality of solar panels 20, and is not limited to it.
(13) As shown in
(14) Ways of assembling and functions of the present invention are explained hereinafter. Each of the plurality of transverse array connecting units is respectively disposed between two of the adjacent solar panels 20 in transverse arrays. The two half components 10 are disposed between the two adjacent solar panels 20. Each of the first walls 11 of the two half components 10 is respectively disposed at an outer edge of one of the adjacent solar panels 20. The separating element 31 covers a joint between the two half components 10. The two extended portions 32 pass through the orifices 15 of the two half components 10 respectively. Each of the coupling portions 33 is connected to the first wall 11 of the two half components 10. Joints of the separating element 31 and the two of the adjacent solar panels 20 are respectively connected to each of the conduit passages 16. Thereby, when water is infiltrated into the joints of the separating element 31 and the two of the adjacent solar panels 20, it may be discharged through each of the conduit passages 16.
(15) Please refer to
(16) Referring to
(17) Specifically, the gripping element 40 comprises a bottom plate 41, two upright walls 42 respectively extended from two ends of the bottom plate 41, and two pressing plates 43 respectively connected to the upright walls 42 and extended away from each other. The supporting element 50 comprises a bottom 51; two supporting portions 52 disposed respectively at two ends opposite to the bottom 51 and having a level difference with the bottom 51; two drainage portions 53 disposed respectively at another end of each of the supporting portions 52 away from the bottom 51; and two water blockage portions 54 with a height being the same as that of each of the supporting portions 52 and respectively connected to each of the drainage portions 53.
(18) Wherein each of the plurality of tandem array connecting units is respectively disposed between two of the adjacent solar panels 20 in tandem arrays. The two tandem array connecting units are respectively pressed by each of the pressing plates 43 to lean against each of the supporting portions 52. The bottom plate 41 is fixedly connected on the bottom 51. Joints between each of the supporting portions 52 and the two of the adjacent solar panels 20 are connected to each of the drainage portions 53 respectively. When the present invention is applied as a rooftop panel, each of the tandem array connecting units is preferably disposed along a rooftop obliquely; so that after the solar panel array 900, each of the transverse array connecting units and each of the tandem array connecting units are assembled, each of the drainage portions 53 may be obliquely disposed toward the eave direction and thereby the accumulated water may be discharged. An end of each of the conduit passages 16 is connected to each of the drainage portions 53 in order to achieve the purposes of converging and discharging.