专利摘要:
Fixing device 13 of a panel 11 in a support rail 12, which comprises a profile having a groove 14 in U equipped with a rounded bottom, and two diverging ramps 18, 19 disposed at the top of the two opposite flanges of the profile. The device makes it possible to maintain and vertically adjust the panel 11 by means of a cradle (20) straddling the lower edge of the panel 11. The cradle is configured to match the conjugate shape of the bottom of the groove 14 by allowing a movement of low amplitude switching during angular adjustment. On each side of the panel 11 is arranged at least one wedging module comprising a set screw 26, 27 cooperating with a first positioning wedge 22, 23 being able to slide on the cradle 20, and a second positioning wedge 24, 25 adapted to move along the corresponding ramp 18, 19 for the bilateral clamping of the panel after said adjustment.
公开号:FR3017909A1
申请号:FR1400483
申请日:2014-02-26
公开日:2015-08-28
发明作者:Sylviane Giacometti;Cyril Dagand
申请人:SB Ingenierie;
IPC主号:
专利说明:

[0001] TECHNICAL FIELD OF THE INVENTION The invention relates to a device for fixing a panel in a receiving groove of a U-shaped support rail extending in the longitudinal direction, said device comprising wedging means cooperating with at least one adjusting screw to ensure the vertical retention of the panel in the groove of the support rail. State of the art EP 1647663, FR 2930270 and DE 102009008307 relate to screw adjustment and clamping systems cooperating with wedge-shaped wedges or cams to adjust the verticality and the blocking of a glass panel in a profile. The operations of adjusting the verticality and clamping of the panel are nevertheless complicated, and require the use of profiles having specific structures.
[0002] OBJECT OF THE INVENTION The object of the invention is to provide a device for fixing a panel in a rail, which can be adjusted angularly and wedged with precision and speed to obtain a bilateral clamping of the panel. The fastening device according to the invention is characterized in that: the U-shaped groove of the support rail is equipped with a rounded bottom, and two diverging ramps arranged at the top of the two opposite wings of the profile, and that the wedging means comprise: - a cradle straddling the lower edge of the panel and configured to match the conjugate shape of the bottom of the groove by allowing a low amplitude tilting movement during the angular adjustment, - and on each side of the panel, a first positioning wedge cooperating with the cradle, and a second positioning wedge adapted to move along the corresponding ramp for the two-sided clamping of the panel after said adjustment. The cradle and the two pairs of positioning wedges constitute with the two adjustment screws, a wedging module, which can be either preassembled at the bottom of the panel before insertion into the groove of the profile, or be prepositioned in the bottom of the panel. the groove in order to subsequently receive the panel.
[0003] The amplitude of tilting of the cradle is limited by the engagement of the first positioning wedges against the two lateral faces of the groove. Stoppers are configured to prevent raising of the cradle when tightening the adjusting screws.
[0004] It is clear that the number of timing modules is variable depending on the length of the panel. Preferably, the first positioning wedge comprises an orifice in which is pre-mounted the adjusting screw, and an extension engaged vertically along a ramp formed in each of the two wings of the cradle. Advantageously, the two positioning wedges are separated vertically from one another by a space on each side of the panel, so as to move in sliding in two opposite directions during tightening of the adjusting screw.
[0005] BRIEF DESCRIPTION OF THE DRAWINGS Other advantages and features will emerge more clearly from the following description of an embodiment of the invention given by way of nonlimiting example and represented in the accompanying drawings, in which: FIG. a schematic sectional view of the lower part of a railing using the fastening device according to the invention; Figures 2A and 3A show elevational and side views of a fastener of Figure 1; FIGS. 2B and 3B show the panel equipped with the fixing device before it is put into place in the groove of the support rail; Figures 4 and 5 are sectional views similar to Figure 1 respectively at the end of insertion of the panel in the rail, and during the angular adjustment; Figure 6 illustrates the two-sided clamping of the panel at the end of screwing of the two screws; Figure 7 is an identical view of Figure 6 of an alternative embodiment with inversion of the stops of the cradle; FIGS. 8 and 9 show identical views of FIGS. 2B and 3B, following prior mounting of the fixing device in the groove of the rail, without the panel. DETAILED DESCRIPTION OF AN EMBODIMENT FIG. 1 illustrates a partial view of a fastener 13 of a panel 11 in a support rail 12, in particular for a railing 10, or any other type of partition wall. or security. In the case of a railing 10, the panel 11 is preferably made of glass, and is held vertically in the support rail 12 by the fixing device 13.
[0006] The support rail 12 is formed by way of example by an aluminum profile, having a U-shaped cross-section delimiting on the inside, a groove 14 for receiving the panel 11 and the fixing device 13. The profile extends from continuously in the longitudinal direction, and comprises a horizontal base 15 intended to bear and to be secured to a slab or structure of concrete or stone, or metal (not shown). The bottom of the groove 14 has a concave curved shape, preferably rounded, extended by two internal lateral faces 16, 17 arranged vertically and parallel to each other. The width of the groove 14 between the two lateral faces 16, 17 is greater than the thickness of the panel 11. The two internal lateral faces 16, 17 are flared at the top of the profile so as to form two divergent end ramps 18, 19. In Figures 2 and 3, the attachment device 13 includes a cradle 20 straddling the lower edge 21 of the panel 11 to allow a small amplitude tilting movement when adjusting the verticality of the panel 11 after insertion into the profile. The U-shaped cradle 20 is made of plastic material, and is configured to conform to the conjugate shape of the bottom of the profile, and to fill the transverse clearance between the opposite faces of the panel 11, and the lower part of the groove 14. Above the cradle 20 are opposite sides of the panel 11 on each side, a first positioning wedge 22, 23 surmounted by a second positioning wedge 24, 25 which can be adjusted in the height direction by means of an adjusting screw 26, 27. A space 28, 29 vertically separates the first positioning wedge 22, 23 from the second positioning wedge 24, 25. The fixing screw 26, 27 passes through the space 28, 29, and has a threaded end pre-assembled in a threaded hole 30 of the first positioning wedge 22, 23. The latter is extended by an extension 30, 31 engaging with a ramp 32, 33 formed in each of the two wings of the cradle 20.
[0007] In FIG. 4, each second positioning wedge 24, 25 is provided with an inner flat face coming into contact with the corresponding lateral face of the panel 11, and an inclined outer face able to cooperate with the ramp 18, 19 of the profile. The adjusting screw 26, 27 passes through the second positioning wedge 24, 25, and the head 34, 35 of the screw is housed in a countersink located in the upper face of said second wedge. The different positioning shims 22 to 25 are made of a plastic material, and are pre-assembled with the cradle 20 and the two adjusting screws 26, 27 to form a wedging module for holding the panel 11. It is clear that the number of timing modules may vary depending on the length of the panel 11.
[0008] The adjustment and setting operations of the panel 11 by means of the fixing device 13 are carried out as follows: In FIG. 4, the panel 11 equipped with the wedging module of FIGS. 2 and 3 is inserted by sliding in the groove 14 of the aluminum profile of the support rail 12. The wedging module slides along the inner faces of the groove 14, and allows a vertical prepositioning of the panel 11 in the support rail 12. The cradle 20 is biased against the bottom by the weight of the panel 11, and the second positioning wedges 24, 25 are in engagement with the ramps 18, 19 of the profile.
[0009] According to the variant of Figures 8 and 9, is first inserted the wedging module in the groove of the support rail 12 so as to press the cradle 20 against the bottom of the rail. The establishment of the panel 11 is then performed after installation of the wedging module or modules.
[0010] The panel 11 is oriented by hand in order to position it correctly, in particular in alignment with a predetermined reference frame.
[0011] In Figure 5, the angular adjustment of the panel 11 is operated by screwing or unscrewing the adjusting screws 26, 27 causing a tilting movement of the cradle 20 in a predetermined direction to allow the longitudinal alignment of the glass panels during installation . The amplitude of tilting of the cradle 20 is very small, of the order of + 1 ° relative to the vertical median plane, thanks to the abutment of the first wedges 22, 23 against one of the two lateral faces of the groove 14. It is seen in Figure 5 that the unscrewing of the screw 27 allows the rise of the wedge 25 of the right, and the screwing of the screw 26 causes the descent of the shim 24 of the left. In this case, the panel 11 tilts slightly in the direction of clockwise. In FIG. 4, abutments 36, 37 are configured to prevent the cradle 20 from rising again when tightening the adjusting screws 26, 27. The abutments 36, 37 are formed by protuberances integral with the lateral faces of the groove 14 of the rail. . In FIG. 7, the abutments 36, 37 are reversed with respect to FIG. 4, since they are formed by extensions of the cradle 20 capable of engaging in notches formed in the side walls of the groove 14. After adjustment of FIG. the verticality, intervenes the blocking of the panel 11 in the adjusted position (Figure 6). The two screws 26, 27 are screwed on either side of the panel 11 so as to obtain a progressive tightening in the groove 14 of the profile. The first positioning shims 22, 23 go up in the direction of the arrows F1, which causes a clearance of the games and a tightening of the panel 11 in the lower part due to the pressure exerted by the extensions 30, 31 (see arrows F2). When screwing occurs simultaneously the descent of the second positioning wedges 24, 25 along the ramps 18, 19 (see arrows F3), resulting in a compression and a two-sided clamping of the panel 11 in the upper part of the profile (arrows F4) . The panel 11 is manually held in place during this final tightening operation. The panel 11 is perfectly fixed and wedged vertically in the groove 14 in the desired position. The upper portion of the support rail 12 can then be closed by a cover 38, 39 (Figure 1) with implementation of a seal 40, which bears on the two opposite faces of the glass panel 11. The cover 38, 39 is preferably snapped onto protuberances 41, 42 formed at the top of the two wings of the profile.
权利要求:
Claims (10)
[0001]
REVENDICATIONS1. Device for fastening (13) a panel (11) in a groove (14) for receiving a U-shaped longitudinal profile support rail (12) extending in the longitudinal direction, said device comprising setting means cooperating with at least one adjusting screw (26, 27) for vertical holding of the panel (11) in the groove (14) of the support rail (12), characterized in that the U-shaped groove (14) is equipped with a rounded bottom, and two divergent ramps (18, 19) disposed at the top of the two opposite wings of the profile, and that the wedging means comprise: a cradle (20) straddling the lower edge of the panel (11) and configured to marry the conjugate shape of the bottom of the groove (14) by allowing a low amplitude tilting movement during the angular adjustment, and on each side of the panel (11), a first positioning wedge (22, 23) cooperating with the cradle (20), and a second positioning wedge (24, 25) adapted to move along the corresponding ramp (18, 19) for the bilateral clamping of the panel after said adjustment.
[0002]
2. Fastening device according to claim 1, characterized in that the first positioning wedge (22, 23) comprises a threaded orifice in which is pre-assembled the threaded portion of the adjusting screw (26, 27), and an extension ( 30, 31) engaged vertically in a ramp (32, 33) formed in each of the two wings of the cradle (20).
[0003]
3. Fastening device according to claim 2, characterized in that the adjusting screw (26, 27) passes through the second positioning wedge (24, 25), which comprises a countersink housing the screw head.
[0004]
4. Fastening device according to one of the preceding claims, characterized in that the two positioning wedges are vertically separated from each other by a space (28, 29) on each side of the panel (11), so slidingly in two opposite directions when tightening the adjusting screw (26, 27).
[0005]
5. Fastening device according to one of the preceding claims, characterized in that the cradle (20) and the positioning wedges (22, 23; 24, 25) are made of plastic.
[0006]
6. Fastening device according to one of the preceding claims, characterized in that the amplitude of tilting of the cradle (20) is limited by the engagement of the first positioning wedges (22, 23) against the two lateral faces of the groove (14), and that stops (36, 37) are configured to prevent raising of the cradle (20) when tightening the adjusting screws (26, 27).
[0007]
7. Railing (10) comprising a panel (11) inserted in a support rail (12), characterized in that the panel (11) is held in the support rail (12) by means of a fixing device according to one of claims 1 to 6.
[0008]
8. Railing according to claim 7, characterized in that the cradle (20) and the two pairs of positioning wedges (22, 23; 24, 25) together with the two adjusting screws (26, 27) form a module stalling, and that the number of stub modules is variable depending on the length of the panel (11).
[0009]
9. Guardrail according to claim 8, characterized in that the wedging module or modules are pre-assembled at the bottom of the panel (11) before insertion into the groove of the profile.
[0010]
10. Guardrail according to claim 8, characterized in that the wedging module or modules are inserted into the groove (14) of the support rail (12) before the introduction of the panel (11).
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同族专利:
公开号 | 公开日
PL2921607T3|2017-05-31|
CA2881046C|2021-12-07|
EP2921607B1|2017-01-11|
ES2617345T3|2017-06-16|
EP2921607A3|2016-01-27|
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US20150240851A1|2015-08-27|
DK2921607T3|2017-03-06|
FR3017909B1|2016-10-21|
EP2921607A2|2015-09-23|
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法律状态:
2016-02-17| PLFP| Fee payment|Year of fee payment: 3 |
2017-02-23| PLFP| Fee payment|Year of fee payment: 4 |
2018-02-27| PLFP| Fee payment|Year of fee payment: 5 |
2019-02-25| PLFP| Fee payment|Year of fee payment: 6 |
2020-02-28| PLFP| Fee payment|Year of fee payment: 7 |
2021-02-26| PLFP| Fee payment|Year of fee payment: 8 |
2022-02-25| PLFP| Fee payment|Year of fee payment: 9 |
优先权:
申请号 | 申请日 | 专利标题
FR1400483A|FR3017909B1|2014-02-26|2014-02-26|DEVICE FOR FIXING A PANEL IN A SUPPORT RAIL|FR1400483A| FR3017909B1|2014-02-26|2014-02-26|DEVICE FOR FIXING A PANEL IN A SUPPORT RAIL|
CA2881046A| CA2881046C|2014-02-26|2015-02-04|Device for fixing a panel in a support rail|
PL15154377T| PL2921607T3|2014-02-26|2015-02-09|Device for attaching a panel in a support rail|
HUE15154377A| HUE033093T2|2014-02-26|2015-02-09|Device for attaching a panel in a support rail|
EP15154377.4A| EP2921607B1|2014-02-26|2015-02-09|Device for attaching a panel in a support rail|
ES15154377.4T| ES2617345T3|2014-02-26|2015-02-09|Fixing device for a panel in a support rail|
DK15154377.4T| DK2921607T3|2014-02-26|2015-02-09|Device for attaching a panel to a support rail|
US14/619,880| US9657760B2|2014-02-26|2015-02-11|Device for fixing a panel in a support rail|
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