Automotive hail protection and shade canopy
Claim Score by NHIP
Abstract
A drive under new automotive hail protection roof hip-and-valley cable-tension type canopy is formed by a rectangular grid pattern of rigid post assemblies joined at their upper ends by longitudinally, transversely and diagonally extending cables forming a coextensive fabric roof support.
Term
Term ended
Expired 19 January 2019, 7.7 years ago.
- Priority
- Filed
- Granted
- Expired
- Today
15 claims: 6 independent, 9 dependent
- 1An automotive parking lot hip-and-valley roof-type hail protection structure, comprising:a first plurality of upright post assemblies arranged in longitudinal and transverse rows for defining a rectangular boundary of a parking lot;a second plurality of upright posts interposed in aligned spaced relation between said longitudinal and transverse rows, each post of said first and second plurality of posts having a portion of its depending end embedded in the surface of the earth;a plurality of parallel longitudinal cables tautly extending between and connected with the upper limit of the posts in said longitudinal post rows for defining roof-type ridge and eave cables;a plurality of transverse cables tautly extending between and connected with the upper limit of the posts in said transverse rows;a plurality of other cables tautly extending between diagonally opposite posts and post assemblies;a plurality of structure cover support cables tautly extending transversely of the structure between said eave cables in parallel spaced-apart relation between said transverse cables on the transverse rows of posts;structure cover means including elongated juxtaposed fabric strips, transversely equal with the spacing between said structure cover support cables, secured together by parallel rows of stitching in longitudinal fabric edge overlapping relation juxtaposition to form a longitudinally coextensive fabric loop between each two adjacent strips surrounding the respective said cover support cable, and in overlying relation with respect to said ridge cables;said fabric strips having aligned transverse end portion loops;and, a fabric eave cable in each said fabric strip end portion loop and connected with respective corner and eave post assemblies.
- 6An automobile parking lot drive under hip-and-valley hail protection roof structure, comprising:a plurality of upright post means arranged by rows in a rectangular grid pattern for forming boundary rows and at least one roof ridge post row interposed between roof eave post rows;each post of said plurality of posts having a portion of a depending end embedded in the surface of the earth;cable connecting means on an upper end portion of each post of said plurality of post means;a first plurality of structure cables longitudinally extending between and respectively connected with said post means in the ridge post row and the eave post rows of the rectangular grid pattern;a second plurality of structure cables diagonally extending between and connected respectively with diagonal rows of posts in the rectangular grid pattern;roof means including elongated juxtaposed strips of material overlying said first and said second plurality of structure cables and secured at respective end portions to said eave cables in overlying relation with respect to said roof ridge post means and said first and said second plurality of structure cables;and, a roof material supporting cable secured at its respective ends with the respective eave structure cable and surrounded by the juncture of adjacent roof material strips.
- 10An automotive vehicle drive under protective roof structure, comprising:a plurality of upright posts arranged by rows in a rectangular grid pattern for forming boundary rows and at least one roof ridge post row interposed between eave post rows;each post of said plurality of posts having a portion of a depending end embedded in the surface of the earth;cable connecting means on an upper end portion of each post of said plurality of posts;a plurality of structure cables longitudinally extending between and respectively connected with said posts in the ridge post row and the eave post rows of the rectangular grid pattern;roof means including elongated juxtaposed strips of material overlying said structure cables and secured at respective end portions adjacent to the structure cables extending between the posts of said eave post rows, said strips being in overlying relation with respect to the structure cable extending between the posts in said ridge post row;and a roof material supporting cable secured at its respective ends with the structure cable extending between the posts of said eave post rows and surrounded by the juncture of adjacent roof material strips.
- 11An automotive vehicle drive under roof structure, comprising:a plurality of upright posts arranged to form a generally rectangular pattern and including two pairs of corner posts defining substantially parallel eave post rows at opposite ends of the rectangular pattern, said posts further including ridge posts defining a ridge post row located between and generally parallel to the eave post rows;each post having a portion embedded in the surface of the earth and each ridge post having a greater height than the corner posts;a pair of eave cables extending tautly between said corner posts along the respective eave post rows at upper end portions of the posts;a ridge cable extending tautly between upper end portions of said ridge posts;a plurality of fabric support cables extending tautly between said eave cables and said ridge cable;and a plurality of elongated juxtaposed strips of flexible fabric material extending along said fabric support cables and connected side to side to form a continuous roof structure extending between said eave post rows and over said ridge cable, said strips connected at opposite ends thereof adjacent to said eave cables and connected to adjacent strips at junctures surrounding said fabric support cables.
- 13An automotive vehicle hip-and-valley protective roof structure, comprising:a plurality of upright posts arranged in a generally rectangular grid pattern and including eave posts forming eave post rows at opposite ends of the rectangular grid pattern and valley posts forming at least one valley post row between the eave post rows, said posts including ridge posts forming ridge post rows between the valley post row and the respective eave post rows;each post having a portion embedded in the earth and each ridge post having a greater height than the eave and valley posts;a pair of eave cables extending tautly between the eave posts in the respective eave post rows;a valley cable extending tautly between the valley posts;a pair of ridge cables extending tautly between the ridge posts in the respective ridge post rows;a plurality of fabric support cables extending tautly from each eave cable over the adjacent ridge cable to the valley cable;and a plurality of elongated juxtaposed strips of flexible fabric material extending along and connected to said fabric support cables and having ends connected adjacent to said eave and valley cables, said strips cooperating to form a substantially continuous fabric cover over said rectangular grid pattern and being connected to adjacent strips at junctures surrounding said fabric support cables.
- 14Broadest claimClaim Score 47, average(NHIP)An automotive vehicle protective roof structure, comprising:four corner post assemblies each including an upright primary corner post anchored to the ground and a pair of upright brace posts embedded in the ground;a substantially horizontal connection arm extending between each brace post and said primary corner post and another substantially horizontal connection arm extending between said brace posts, said arms being adjacent to upper end portions of said brace posts;a plurality of additional posts anchored to the ground and arranged to form a rectangular grid pattern with said corner post assemblies;a plurality of cables extending tautly between said posts;and a fabric roof supported by and connected to said cables, said roof including elongated juxtaposed strips of flexible fabric material each connected to an adjacent strip at a juncture surrounding one of said cables.
Independent claims6
53 paragraphs in 5 sections, as filed
BACKGROUND OF THE INVENTION
Field of the Invention
This invention relates to shelters and more particularly to a new automobile hail protecting and shade structure.
Automotive dealers park their for-sale vehicles in an open air lot where the vehicles are exposed to weather. Inclement weather, such as a hailstorm, sometimes damages the vehicles by denting the roof, hood, and trunk areas. Repairs must be made before the vehicle is in acceptable condition by the average customer.
In areas where hailstorms frequently occur, hail protective insurance rates are relatively high. Thus, adding to the cost of business to an automotive dealer.
This invention provides a canopy shielding automotive vehicles from hailstorms, as well as providing a sunshade resulting in economic savings for both the vehicle dealer and customers.
DESCRIPTION OF THE PRIOR ART
The prior art generally discloses camouflage structures and plant shelters which for the most part utilize a plurality of earth anchored guy wires around the perimeter of the shelter for maintaining the structure upright. None of the prior art patents, it is believed, disclose a shelter which shields articles under the shelter from the impact of hailstones.
U.S. Pat. No. 2,355,008 issued Aug. 1, 1944 to Moran for CAMOUFLAGE STRUCTURE and U.S. Pat. No. 4,068,404 issued Jan. 17, 1978 to Sheldon for SHADE-PRODUCING STRUCTURE AND METHOD are believed good examples of the state-of-the-art.
This invention is believed distinctive over the prior art by providing a hip-and-valley roof or hip cable-tension type roof structure which protects equipment thereunder from hailstorms and snow in addition to providing shade.
SUMMARY OF THE INVENTION
A plurality of corner and intermediate anchor posts are disposed in a rectangular array defining the perimeter of the area to be protected. Similarly, a plurality of intermediate support posts are disposed in predetermined spaced relation between the several anchor posts.
A first plurality of horizontal framing cables secured to the top portion of the several anchor posts define roof ridges, eaves, and end limits of a structure. A second plurality of bracing cables extend diagonally from one cave anchor post to a diagonally opposite eave anchor post over the roof ridge cable. A third plurality of fabric cover support cables extend transversely across the bracing cable roof structure between opposite eaves in parallel equally spaced-apart relation.
A plurality of elongated rectangular lengths of fabric longitudinally secured together in juxtaposed cable reinforced relation at their junctures extend transversely across the roof structure and are secured at their respective ends to the respective eave framing cable. Other triangular sections of the fabric close gable ends of the structure.
The principal object of this invention is to provide a hip-and-valley cable-tension type roof structure for protecting automotive vehicles from inclement weather and additionally providing a sunshade.
BRIEF DESCRIPTION OF THE DRAWINGS
FIG. 1 is an isometric view of grid boundry line support posts and a network of frame bracing cables;
FIG. 1A is a plan view, to a smaller scale, of FIG. 1;
FIG. 2 is an isometric view similar to FIG. 1, illustrating fabric cover support cables, the framing and bracing cables being omitted for clarity;
FIG. 3 is an isometric view similar to FIGS. 1 and 2 illustrating the complete structure;
FIG. 4 is a top view of a corner post assembly enclosed by the arrows <b>4</b> of FIG. 1;
FIG. 5 is a fragmentary side elevational view, partly in section, of FIG. 4;
FIG. 6 is a fragmentary elevational view of a roof ridge end anchor post top portion enclosed by the arrows <b>6</b> of FIG. 1;
FIG. 7 is a framentary top view of FIG. 6;
FIG. 8 is a top view of the post of FIG. 6 with the fabric cover protective shield removed;
FIG. 9 is a left side elevational view of FIG. 6 with the cable clamp removed for clarity;
FIG. 10 is a fragmentary elevational view of a roof valley end post enclosed by the arrows <b>10</b> of FIG. 1;
FIG. 11 is a top view of FIG. 10;
FIG. 12 is an enlarged a fragmentary elevational view of an intermediate ridge post enclosed by the arrows <b>12</b> of FIG. 1;
FIG. 13 is an enlarged fragmentary view of the area enclsed by the arrows <b>13</b> of FIG. 2;
FIG. 14 is a horizontal cross section to an enlarged scale taken substantially along the line <b>14</b>—<b>14</b> of FIG. 3;
FIG. 15 is a line diagram of FIG. 14; and,
FIGS. 16 and 17 are cross section views to a different scale taken substantially along the lines <b>16</b>—<b>16</b> and <b>17</b>—<b>17</b>, respectively, of FIG. <b>3</b>.
DESCRIPTION OF THE PREFERRED EMBODIMENTS
Like characters of reference designate like parts in those figures of the drawings in which they occur.
In the drawings:
The canopy <b>10</b> (FIG. 3) as a whole is formed by a pair of juxtaposed hip-and-valley roof structures <b>12</b> and <b>14</b> forming a valley <b>16</b> therebetween.
The canopy includes a post and cable-tension support structure <b>20</b> (FIG. 1) comprising a plurality (4) corner post assemblies <b>22</b> surrounding a rectangular area of predetermined size, for example, 150 feet (45 m) long by 200 feet (60 m) wide. A like plurality of ridge end posts <b>24</b> and a pair of valley end posts <b>26</b> are disposed in equal spaced relation transversely of the structrue at its respective ends.
Referring also to FIGS. 4 and 5, each corner post assembly <b>22</b> comprises a plurality (3) posts arranged in right triangular fashion with the post <b>28</b> at the right angle position being the primary corner post with the secondary brace posts <b>28</b>′ and <b>28</b>″ disposed in spaced parallel relation with respect to the post <b>28</b> and inline with the structure eave and adjacent end limit, respectively.
The length of the corner posts is such that approximately 6 feet (1.82 m) of their depending end portions may be disposed in suitable post holes <b>30</b> of larger diameter than the posts and the annulus filled with concrete <b>34</b>. The upper end portion of the primary post <b>28</b> projects above the surface of the earth <b>32</b> a selected distance, for example, 9 feet (2.74 m) for the purposes believed presently apparent.
The upper end portions of the corner posts <b>22</b> are rigidly interconnected by horizontal right triangular disposed side members <b>36</b> and a hypotenuse member <b>37</b>. The brace posts <b>28</b>′ and <b>28</b>″ are capped and the upper end of the primary corner post <b>28</b> is closed by a plate <b>38</b> having a larger diameter than the diameter of the post <b>28</b>. The marginal edge portion of the plate <b>38</b> outwardly of the perimeter of the post <b>28</b> is provided with a plurality of circumferentially equally spaced holes or apertures <b>40</b> for receiving cable end portions, as presently explained.
Referring also to FIGS. 6-9, the roof ridge end post assembly <b>24</b> comprises an elongated post <b>42</b> of selected diameter and length braced by a shorter companion brace post <b>43</b> with both posts similarly embedded in the earth in concrete as described hereinabove for the corner post assembly <b>22</b>.
Similarly, the primary ridge post <b>42</b> is joined to its brace post <b>43</b> by a plurality of horizontal brace members <b>44</b>, only one being shown in FIG. <b>6</b>. The top end portion of the ridge post <b>42</b> is diametrically cut away from the structure eave and valley sides to form an inverted V-shape as viewed in elevation (FIG. 9) with the apexes of the V-shapes aligned with the roof ridge line. The inverted V-shapes are line drilled adjacent the apex of the inverted V-shape, as at <b>48</b>, for receiving a cable <b>66</b> as hereinafter described. A section of padding material <b>50</b> overlies the upper limit of the V-shape, as viewed in FIGS. 8 and 9, and an inverted V-shaped panel <b>52</b> overlies the V-shape for the purpose presently explained.
Referring also to FIGS. 10 and 11, the roof valley end post assembly <b>26</b> comprises a primary post <b>54</b>, of substantially equal length with respect to the corner post <b>28</b>, secured to a companion post <b>55</b> by a brace <b>56</b>. Both posts <b>54</b> and <b>55</b> being similarly buried in concrete in the surface of the earth.
The top of the post <b>55</b> is closed and one of the apertured plates <b>38</b> overlies the top of the primary valley end post <b>54</b> for anchoring cable end portions, as presently explained.
Intermediate eave post assemblies <b>58</b> identical with the valley end post assembly <b>26</b> are interposed in equally spaced relation between respective end posts <b>22</b> at opposite eaves of the structure <b>20</b>. A plurality five (5), in the example shown, of ridge line posts <b>60</b> of substantial equal length with respect to the primary post <b>42</b> of the ridge end post assembly <b>24</b> are interposed in equally spaced relation between the end post assemblies <b>24</b> for completing the respective post ridge support for the cable support structure <b>20</b>, as presently explained. The upper end of each of the posts <b>60</b> are similarly cut away to form an inverted V-shape (FIG. <b>9</b>), and are similarly line drilled for receiving the roof ridge cable <b>66</b>, as presently explained.
Similarly, a pair of intermediate valley posts <b>62</b> substantially equal in length with the principal corner post <b>28</b> are inserted and cemented in the earth in equal spaced relation between the valley end post assemblies <b>26</b>. The valley intermediate posts <b>62</b> are similarly provided with a corner post cap <b>38</b> for anchoring cable end portions.
A plurality (3) of eave framing cables <b>64</b> extend horizontally between the end posts assemblies <b>22</b> at opposite eaves of the roof support structure canopy and between the valley end posts <b>26</b>. A pair of roof ridge framing cables <b>66</b> extend between the roof ridge end post assemblies <b>24</b> at respective ends of the structure. As illustrated by FIGS. 6 and 12, the roof ridge cables <b>66</b> project through the post apertures <b>48</b> and a sleeve <b>49</b> interposed between the inverted V-shaped end portions of the ridge end posts <b>42</b> and the intermediate posts <b>60</b>. A pair of roof framing cables <b>68</b> are clamped, at one end portion, to the plate <b>38</b> on the corner post assemblies <b>22</b> at respective ends of the structure and extend tautly over the sleeve <b>49</b> on the ridge line cable <b>66</b> between the inverted V-shape of the respective end post <b>42</b> and are respectively anchored to the plate <b>38</b> on the valley end post <b>26</b>. Additionally, companion cables <b>68</b>′ extend from the top of the brace post <b>43</b>, of the respective ridge end post assembly <b>24</b>, to the valley end post assembly <b>26</b> and the respective adjacent corner post assembly <b>22</b> to minimize ridge post buckling.
Similarly a pair of intermediate framing cables <b>70</b> extend transversely of the structure between the respective eave post assembly <b>58</b>, over intermediate ridge posts <b>60</b> between the V-shapes thereof and over the cable <b>66</b> and are similarly clamped in the apertures <b>40</b> of the plates <b>38</b> on the intermediate valley posts <b>62</b>.
As best illustrated by FIG. 1A, other structural cables <b>72</b> and <b>74</b> extend diagonally from the eave post assemblies <b>22</b> and <b>58</b> across the structure in 45° and substantially 60° angular relationship with respect to the axes of the eave cables <b>64</b>.
Referring more particularly to FIG. 2, a plurality of roof fabric supporting cables <b>75</b> extend transversely across the structure from one eave cable <b>64</b> to the other in equally spaced parallel relation preferably equalling lateral dimensions of fabric strips forming a roof cover <b>85</b> (FIG. 3) as presently explained. The cables <b>75</b> are aligned with and connected with eave end and intermediate assembly posts apertured plates <b>38</b> in the manner explained hereinabove.
The ends of the cables <b>75</b> between adjacent eave posts are loop clamped around the eave cable <b>64</b> between cable clamps <b>76</b> (FIG. 13) to prevent lateral movement of the cable <b>75</b> relative to the structure eave cable <b>64</b> or ridge cable <b>66</b>. The fabric supporting end cable <b>75</b>′ passing over the ridge post assembly <b>24</b> overlies the fabric shield <b>78</b> on the inverted V-shapes of the posts <b>42</b>.
As illustrated by FIGS. 6 and 7, an elongated inverted V-shape fabric protecting shield <b>78</b> overlies the apex of the post V-shape and projects toward adjacent ridge posts in overlying relation on the adjacent portion of the ridge cable <b>66</b> for shielding the roof fabric as believed presently apparent. Additionally, a cable fabric restraining cable <b>80</b> extends horizontally between eave end posts assemblies <b>22</b> and the valley end posts <b>26</b> at respective ends of the structure.
Referring also to FIG. 3, a plurality of elongated strips <b>84</b> of fabric preferably polyethylene, which yields to the impact of a mass impressed thereon but does not easily rupture, are longitudinally stitched together in juxtaposed relation to form the structure or canopy roof cover <b>85</b> extending from one structure eave cable <b>64</b> over the ridge cable <b>66</b> to the valley forming eave cable.
As illustrated by FIGS. 14 and 15, the adjacent longitudinal edges of the fabric strips <b>84</b> are joined together in overlapping relation by coextensive parallel rows of stitching <b>86</b> to form a loop <b>87</b> extending longitudinally of the fabric which receives the fabric supporting cables <b>75</b>.
The end portions of the fabric strips <b>84</b> are similarly provided with a transverse loop which receives a fabric eave end supporting cable <b>90</b> extending between and connected with the end posts <b>22</b> and intermediate posts <b>58</b>. This results in a gap or opening <b>92</b> (FIG. 16) at the valley position which allows snow accumulating on the sides of the roof fabric <b>85</b> to fall by gravity to the surface of the earth at the valley position rather than piling up on the roof fabric.
Right triangular-shaped gable end fabric portions <b>94</b> and <b>95</b> have their cable reinforced hypotenuse edge portion, overlying the fabric support cable <b>75</b>′, extending from the ridge post top portions to one end post assembly <b>22</b>. The altitude side of each fabric right triangular gable end portion <b>94</b> and <b>95</b> is similarly provided with a cable <b>94</b>′ and <b>95</b>′ independent of the altitude side of the adjacent right triangular gable end portion as illustrated by FIG. <b>17</b>. This arrangement permits the gable end altitude edge portion of the respective triangular shape to billow outwardly or inwardly in response to wind force against the gable ends of the roof structure. The horizontal end cable <b>80</b> being similarly secured to the base portion of the triangular shaped fabric gable end panels <b>94</b> and <b>95</b>.
Obviously the invention is susceptible to changes or alterations without defeating its practicability. Therefore, I do not wish to be confined to the preferred embodiment shown in the drawings and described herein.
Contents5
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Priority claims6
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| 58639696 | United States of America | A | |
| 58639696 | United States of America | A | |
| 23365499 | United States of America | A | |
| 08586396 | – | – | – |
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Members5
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| WO9726419A1 | World Intellectual Property Organization (WIPO) | A1 | |
| AU2612697A | Australia | A | |
| ZA9610130B | South Africa | B | |
| USRE37498EThis record | United States of America | E |
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Numbers
- Publication, DOCDB
- RE37498
- Publication, EPODOC
- USRE37498E
- Application
- 9233654
- Application, DOCDB
- 23365499
- Application, EPODOC
- US19990233654
Titles
- English
- Automotive hail protection and shade canopy
Classification
- CPC, 4
- E04B7/14
- E04B7/16
- E04H15/18
- Y10S135/908
- IPC, 3
- E04B7 14
- E04B7 16
- E04H15 18
- USPC, 6
- 135087000
- 052018000
- 052083000
- 135090000
- 135097000
- 135908000