CN105531429A - Mullion-transom structure - Google Patents

Mullion-transom structure Download PDF

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Publication number
CN105531429A
CN105531429A CN201480050058.5A CN201480050058A CN105531429A CN 105531429 A CN105531429 A CN 105531429A CN 201480050058 A CN201480050058 A CN 201480050058A CN 105531429 A CN105531429 A CN 105531429A
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CN
China
Prior art keywords
insulation strip
beam structure
profiled body
cavity
munnion
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201480050058.5A
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Chinese (zh)
Other versions
CN105531429B (en
Inventor
M·尼豪斯
J·迈尔
A·施托克豪森
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Schueco International KG
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Schueco International KG
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Filing date
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Publication of CN105531429A publication Critical patent/CN105531429A/en
Application granted granted Critical
Publication of CN105531429B publication Critical patent/CN105531429B/en
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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/88Curtain walls
    • E04B2/96Curtain walls comprising panels attached to the structure through mullions or transoms
    • E04B2/965Connections of mullions and transoms
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/62Insulation or other protection; Elements or use of specified material therefor
    • E04B1/74Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls
    • E04B1/76Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls specifically with respect to heat only
    • E04B1/7608Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls specifically with respect to heat only comprising a prefabricated insulating layer, disposed between two other layers or panels
    • E04B1/7612Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls specifically with respect to heat only comprising a prefabricated insulating layer, disposed between two other layers or panels in combination with an air space
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/88Curtain walls
    • E04B2/96Curtain walls comprising panels attached to the structure through mullions or transoms
    • E04B2/967Details of the cross-section of the mullions or transoms
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D13/00Special arrangements or devices in connection with roof coverings; Protection against birds; Roof drainage; Sky-lights
    • E04D13/03Sky-lights; Domes; Ventilating sky-lights
    • E04D13/0305Supports or connecting means for sky-lights of flat or domed shape

Abstract

The invention relates to a mullion-transom structure, especially for facades or glass roofs, comprising a supporting profile (1) to which at least one infill element (5) is fastened, an insulating strip (10, 20) being arranged on an end face of the infill element (5), being held on the supporting profile (1) and having at least one hollow chamber (22), the insulating strip (10, 20) having at least one mobile cover by means of which the hollow chamber (22) of the insulating strip (10, 20) can be closed. The design according to the invention allows an optimized adaptation of heat insulation.

Description

Munnion beam structure
Technical field
The present invention relates to a kind of munnion beam structure, munnion beam structure in particular for building facade or skylight, this munnion beam structure comprises support sections, this support sections is fixed with at least one packing elements, a side of packing elements is provided with insulation strip, and this insulation strip to remain on support sections and has at least one cavity.
Background technology
EP1352134 discloses a kind of munnion beam structure, wherein, between two glass plates, is configured with thread groove on mullion profile.The insulation section bar with cavity inserts in this thread groove.Can install multiple for the screw via compression bar fastening glass panels in insulation section bar and thread groove.Be arranged on by this insulation section bar and thread groove proved favourable, but thermal insulation is limited, because insulation section bar is made up of harder plastics mostly, this plastics have relatively high heat conductivity.In addition, thermal insulation can not be adjusted based on the closure designs of the cavity of insulation section bar.
Summary of the invention
Therefore, task of the present invention is, provides a kind of munnion beam structure, and it has the thermal insulation of improvement and can realize adjusting heat-proof quality neatly.
This task utilizes the munnion beam structure with claim 1 feature to solve.
According to the present invention, the insulation strip on a side of packing elements has cavity, and this cavity can be closed via at least one movable covering, thus can realize via this covering the entrance leading to cavity.Can load heat insulating strip or other element in the cavities as required, this can realize adjusting insulation strip neatly.Term " covering " should comprise any element that can realize the entrance leading to cavity at this, and is can beat or removable or otherwise provide access irrelevant with covering.
Preferably, covering is fixed in insulation strip separably.Opening and closing repeatedly can be carried out thus.Covering is latchable in insulation strip at this.
Preferably, insulation strip comprises at least one film hinge, and covering can be bearing on this film hinge beat.At this it is possible that insulation strip comprises two parts, one of them part forms covering and can keep via this film hinge beat.Also possible that, covering can keep via two or more film hinges be disposed adjacent beat, thus realizes king-sized open angle.
According to a kind of preferred version, load material at least in part in the cavities, the profiled body that insulation strip compared by this material has higher thermal insulation.Described material especially can be made up of insulating foams or other insulation materials, such as, be made up of polyethylene, polypropylene, polyurethane, poly-isocyanide urea, polystyrene, phenolic resins and/or mineral wool.As all material that insulation materials can be used in heat insulation, sound insulation, the combined aspects of fire prevention or these functions has effect.
Additionally it is possible that insulation strip has such profiled body, the outside of this profiled body is fixed with at least part of region and compares the heat insulating strip that profiled body has higher thermal insulation.The thermal insulation material can use insulation materials above-mentioned for the heat insulating strip be arranged on outside insulation strip, being especially made up of insulating foams.
In order to extra high thermal insulation, insulation strip can have such profiled body, and this profiled body has multiple perforated portion in a longitudinal direction.The profiled body major part of insulation strip is made up of the plastic body of dimensionally stable, and this plastic body has relatively high heat conductivity.Owing to being reduced the cross section of profiled body by perforated portion, therefore hot-fluid reduces, and for this reason, perforated portion can be arranged in a longitudinal direction at least one band.Bring at this, the area of perforated portion can occupy and be greater than 50%, is especially greater than 70%.
The insulation strip profiled body be made of plastics preferably can be configured to thin-walled, to guarantee good thermal insulation.The wall thickness of profiled body can be in 0.3mm to 1.6mm, scope especially between 0.5mm to 1.3mm.
In order to improve thermal insulation further, the cavity of insulation strip is divided out by least one partition wall.Also the stability of profiled body can be improved by this partition wall.
Preferably, load with the insulation component of profiled body form in cavity.This insulation component can be used as loosening band and is placed into.Also possible that, insulating tape to be foamed in cavity, such as by co-extrusion foaming in cavity.
In a kind of preferred version, the bottom of the groove of insulation strip has film hinge, can become two half-unit by beat by means of this film hinge insulation strip.Thus, insulation strip in confined state outside side seal construct with closing, thus insulation strip can not unexpectedly be opened when screw is screwed into groove and arranges in thread groove in its rear.Therefore, in insertion element, be preferably configured to the buckling and locking device fixed by profiled body in a closed position, this insertion element is inserted in thread groove.
Accompanying drawing explanation
Below with reference to the accompanying drawings the present invention is described in detail by means of multiple embodiment.In the accompanying drawings:
Fig. 1 is by the sectional view with the munnion beam structure of insulation strip of the present invention;
Fig. 2 A and 2B is two views for the insulation strip by munnion beam structure of the present invention;
Fig. 3 A to 3C is multiple views of the second insulation strip;
Fig. 4 A and 4B is two views of the third insulation strip;
Fig. 5 A to 5C is the numerous embodiments of the locking mechanism for insulation strip;
Fig. 6 A and 6B is two views of another kind of insulation strip;
Fig. 7 A and 7B is two views of another kind of insulation strip;
Fig. 8 A and 8B is two views of another kind of insulation strip;
Fig. 9 A to 9D is another kind of insulation strip multiple views in the mill of the insulation component with foaming;
Figure 10 A and 10B is other two kinds of embodiments of insulation strip;
Figure 11 is the phantom drawing of the another kind of embodiment of insulation strip;
Figure 12 A and 12B is two views of the insulation strip of the Figure 11 with different perforated portion;
Figure 13 A to 13D is multiple views of the perforated portion with different geometries;
Figure 14 is two views of the another kind of embodiment of insulation strip.
Detailed description of the invention
Munnion beam structure comprises support sections 1, and this support sections can be configured to munnion or crossbeam, wherein, outside is provided with thread groove 2.The both sides of thread groove 2 are configured with the keeper 3 for weather strip 4, and sealing bar abuts on packing elements 5, especially insulating glass plane at edge side.Be provided with compression bar 7 in order to fixing packing elements 5, this compression bar is arranged on the outside of packing elements 5 by means of sealing device 8.Packing elements 5 is clamped between sealing device 8 and weather strip 4 at edge side respectively.Compression bar 7 is fixed by multiple screw 11 at this, embeds in thread groove 2 in the space 6 between the side that these screws are arranged on packing elements 5.
The side of packing elements 5 is also provided with insulation strip 10, and this insulation strip is run through by screw 11 and has profiled body 12.The outside of this profiled body is provided be made up of the material with high thermal insulation heat insulating belt 13, as foaming heat insulating belt.Heat insulating belt 13 has multiple sealing lip 14, and these sealing lips abut on the side of packing elements 5.
Should describe the different design scheme of this insulation strip 10 below in detail, wherein, identical components is provided with same Reference numeral.
Insulation section bar 20 is shown in Figures 2 A and 2 B, and this insulation section bar has by harder plastics, as the profiled body 21 that polyvinyl chloride is made, this profiled body surrounds a cavity 22.The side of insulation section bar 20 is configured with groove 23, and this groove is surrounded by the contact pin 24 of side direction and such as fixing seal device or other component.The substructure of groove 23 is the film hinge 25 of V-arrangement, the two half-unit of profiled body 21 can be rotated, to provide the entrance leading to cavity 22 around film hinge 25.
Two of profiled body 21 opposite sides are provided with heat insulating belt 28, and these heat insulating belts have multiple sealing projection 29 sealing lip in other words outwardly.The material of heat insulating belt 28 by have than profiled body 21 higher thermal insulation material, make as insulating foams.
The side opposite with groove 23 is configured with insertion element 26 on profiled body 21, this insertion element is provided with buckling and locking device 27.As in fig. 2b illustratively, the two half-unit of profiled body 21 can be rotated around film hinge 25, and cavity 22 can be opened at insertion element 26 place.In this position, the drip molding 15 with high thermal insulation can be loaded in cavity 22, and this drip molding is such as made up of expanded material, the insulation materials be especially made up of polyethylene, polypropylene, polyurethane, poly-isocyanide urea, polystyrene, phenolic resins or mineral wool is made.This drip molding 15 be made up of insulation materials can have the function of heat insulation, sound insulation and fire prevention aspect.Drip molding 15 has two grooves 16 in the middle region, and the contact pin 32 on profiled body 21 can embed in these grooves, thus drip molding is fixed on cavity 22 inside.
Therefore, can to determine when mounted whether in order to higher thermal insulation, drip molding 15 to be loaded in cavity 22 and to select the drip molding 15 be made up of which kind of material.High flexibility can be obtained thus in the application target of insulation strip 20.After loading in cavity 22 by drip molding 15, the profiled body 21 of insulation strip 20 can rotate around film hinge 25, until buckling and locking device 27 kayser and insulation strip 20 can be arranged on munnion beam structure as shown in FIG. 1 now.
A kind of modification of insulation strip shown in Fig. 3 A to 3C, wherein, not loads an only unique drip molding 15, but loads two drip moldings 17 and 18 in the cavity 22 of profiled body 21.Drip molding 17 can be made up of identical or different materials with 18.At this, each drip molding 17 or 18 can load or bonds in cavity 22 loosely.Contact pin 32 can be used as distance piece between drip molding 17 and 18.In other side, the embodiment of insulation strip Fig. 2 described above constructs like that.
Be illustrated in figures 4A and 4 B a kind of insulation strip of remodeling, wherein, profiled body 21 has film hinge 30, and this film hinge is no longer arranged on the bottom place of groove 23, but is arranged in insertion element 26 in opposite side.Thus, the profiled body 21 of insulation strip can around film hinge 30 beat, and this is as illustrated in figure 4b.Groove 23 has corresponding contact pin 24 in each side and a bottom, and the contact pin 31 arranged by two V-arrangements bottom this is formed, and these contact pin contact in the middle region.Contact pin 31 this be configured to tilt towards insertion element 26 and can easily beat when screw 11 being screwed in insulation section bar.
There is the insulation strip of Fig. 2 of remodeling locking mechanism shown in Fig. 5 A to 5C.In fig. 5, insertion element 26 is configured with snap-fastener 34, should by kayser when being buckled in pressing snap fastener part.
In figure 5b, insertion element 26 is provided with the buckling and locking device with latch receiver portion 35 and kayser contact pin 36, mutual kayser on the inner side that described latch receiver portion and kayser contact pin are separately positioned on insertion element 26 and when pressing insertion element.Be provided with three latch receiver portions 35 and three kayser contact pin 36 at this, make when a locking connection damages, profiled body 21 can remain in latched position by all the other locking connections.
Form the buckling and locking device with a latch receiver portion 37 and a kayser contact pin 38 in figure 5 c.
In order to by profiled body 21 kayser, can be provided with the buckling and locking device of one-piece construction, these buckling and locking devices can be configured to the snap connector of snap-fastener, side concave contour, kayser contact pin, snap connector or other form.
The another kind of embodiment of insulation strip is shown in figures 6 a and 6b, and this insulation strip has profiled body 45, and this profiled body can be supported with tabular covering 40 beat.For this reason, this tabular covering 40 is connected with profiled body 45 via film hinge 41, and wherein, described film hinge is formed on groove 23 sidewall 24 on profiled body 45.The side opposite with groove 23 arranges insertion element 26, and this insertion element comprises two contact pin be connected to each other as in the above-described embodiments, and a cavity is surrounded in these two contact pin, insertion element 26 is configured to flexible.
Illustrate in fig. 6b in an open position in covering 40, be enterable at this position cavity 22.Cavity is divided into two single chambeies at this by partition wall 33, wherein, is respectively equipped with a drip molding be made up of the material with high thermal insulation 17 in two chambeies.Covering 40 is provided with angled elasticity contact pin 42, and this elasticity contact pin can embed in the latch receiver portion 43 adjacent with insertion element 26 so that by covering 40 kayser on profiled body 45, as this in fig. 6 shown in.In this position, partition wall 33 abuts on covering 40 with a terminal side edge.
The another kind of embodiment of insulation strip shown in Fig. 7 A and 7B, wherein, profiled body is provided with bottom 50 and top 52.Bottom 50 has the cavity 22 of U-shaped, and the end of this cavity is configured with insertion element 26.The drip molding 15 be made up of the material with high thermal insulation is encased in cavity 22, wherein, bottom 50 is configured with kayser projection 51 on the side towards cavity 22.Kayser projection 51 and kayser contact pin 53 mating reaction, these kayser contact pin and top 52 Construction integration.Top 52 has groove 23, and this groove is surrounded by the contact pin of side direction or sidewall 24.In order to cavity filling 22, top 52 can be used as covering and takes off from bottom 50, to load drip molding 15 and subsequently top 52 to be placed on bottom 50, as this in figure 7b shown in.
A kind of embodiment relative to Fig. 7 remodeling shown in Fig. 8 A and 8B, wherein, replace bottom and top, be provided with the single type profiled body with bottom 50 and top 52, described bottom and top are connected to each other via film hinge 54.In other side, insulation strip constructs as in the figure 7.
The another kind of embodiment of insulation strip shown in Fig. 9 A to 9D, illustrates first in the open position according to this insulation strip of 9A.The drip molding loosened be made up of insulation materials at this embodiment corresponding to Fig. 2 B, but does not load in cavity 22 by described insulation strip, but sprays in cavity 22 via the material 61 of nozzle 60 by foaming.Loading expanded material 61 after by insulation strip close, as this in figures 9 b and 9 shown in, at this, the buckling and locking device 27 in insertion element 26 guarantee by insulation component fix in a closed position., wherein, only there is the less expansion of expanded material 62 in figures 9 b and 9 in present expanded material 62 completely or partially cavity filling 22 when needed in this position.This material also can foam further and have more volume, and as this is as shown in Fig. 9 C, material 62' has extended beyond 2/3 of cavity 22 volume at this moment.In addition, the expanded material with the volume being full of cavity 22 completely can also be added, as this is as shown in Fig. 9 D.
The another kind of embodiment of insulation strip shown in Figure 10 A and 10B, wherein, profiled body 70 is made up of hard plastic material, and this profiled body surrounds two cavitys.A drip molding be made up of the material with high thermal insulation 75 is inserted in each cavity.Profiled body 70 comprises the covering 71 with sidewalls form, and this covering is connected with profiled body 70 via film hinge 72.Film hinge 72 to be configured in sidewall areas and can to realize the beat of covering 71, to fill cavity.Profiled body 70 also comprises the buckling and locking device of Construction integration, is provided with two kayser contact pin 73 be spaced apart from each other for this reason, and they are embedded in recessed latch receiver portion 74, side on covering 71.Obtain isolator in a closed position stable fixing thus.
In Figure 10 A, be provided with two roughly rectangular in cross-section drip moldings 75, these drip moldings are loaded in a cavity respectively.Replace the drip molding 75 of this rectangle, also can by other moulding, the drip molding 76 be made up of the material with high thermal insulation loads in cavity.Each drip molding 76 comprises a side tilting to extend, and this side loads in the V-arrangement accommodation section of cavity with tip, make drip molding 76 roughly shape be fixed in locking manner in V-arrangement peaked area.In addition, the drip molding 76 of top has V-arrangement profile in downside, and this V-arrangement profile embeds in the V-arrangement recess of kayser contact pin 73.
The another kind of embodiment of insulation strip shown in Figure 11, this insulation strip structurally corresponding to the insulation strip shown in Fig. 2, but is additionally provided with the band that two have circular perforations portion 80 in insulation strip sidewall.Described perforated portion 80 also can have and is different from circular geometry such as square, rectangle, triangle or other profile.Perforated portion 80 is arranged along the longitudinal direction of insulation strip in band, wherein, the area of perforated portion 80 account for the area of described band at least 50%, preferably about 70%, be especially greater than 80%, at this, the band of corresponding geometry has the width equal with the width of perforated portion 80.Be provided with at this band that two have perforated portion 80 in fig. 11, these bands are arranged on the opposite side of insulation strip.But also only can arrange one there is the band of perforated portion 80 or arrange the band more than two with perforated portion 80.
By perforated portion 80, profiled body 21 material is left a blank, thus reduce heat transfer, by reduce profiled body 21 from insertion element 26 towards the cross section of groove 23, in the munnion beam structure of Fig. 1, decrease heat transfer from outside to inside.
The sectional view of the insulation strip of Figure 11 is shown in fig. 12, and visible at this, the drip molding 15 be loaded in cavity 22 is not configured to bore a hole, but fills up cavity 22.Perforated portion 80 extends only through heat insulating belt 28 and the profiled body 21 in outside.
As an alternative, according to Figure 12 B also possible that, perforated portion 80 is disposed through whole insulation strip, namely not only runs through in the region of heat insulating belt 28, in the region of profiled body 21 but also in the region of the drip molding 15 be made up of heat-barrier material.This simplify the manufacture of insulation strip, although slightly lower heat insulation.
Schematically show the perforated portion 80 in profiled body 21 according to Figure 11 in figure 13a.Described perforated portion 80 arranges at uniform intervals along the longitudinal direction of insulation strip and is parallel to the extension of longitudinal direction band shape.The width S of band 1the width of perforated portion 80 is equaled at this.In view of the width S of band 1, perforated portion 80 accounts for the area of at least 50%, preferably at least 70%.
With the perforated portion 82 of rectangular shape shown in Figure 13 B, these perforated portions are compared circular perforations portion 80 and are had less width S 2.Replace two bands that three bands that are parallel, that have perforated portion 82 are set for this reason.
In Figure 13 C, be provided with leg-of-mutton perforated portion 83, thus be provided with frame-like structure in profiled body 21.Triangle at this alternately with a tip upwards or down directed with a tip, thus forms the contact pin tilting to extend in centre.Longitudinal direction orientation is zonally parallel to, at this, in view of the width S of band with triangular shaped perforated portion 83 3, the area of perforated portion accounts at least 80% of band area.
In the embodiment shown in Figure 13 D, perforated portion 84 is configured to trapezoidal and has and be parallel to the longer base and shorter top margin that insulation strip longitudinal direction extends.Trapezoidal perforated portion 84 is alternately rotation 180 ° ground setting respectively, thus sees that longer base and shorter top margin alternately exist in a longitudinal direction.In view of the width S of band with perforated portion 84 4, perforated portion at least accounts for the area of 85%.
Perforated portion 80,82,83 and 84 also can have other geometry, and the quantity with the band of perforated portion can according to the size unrestricted choice of profiled body 21 and perforated portion.
Be made of plastics shown in Figure 14 A, for the another kind of embodiment of the profiled body of insulation strip.Described profiled body comprises the cavity 22 that general arrangement is in cross-section rectangle, for optionally loading insulation materials.A side of profiled body is provided with groove 23, and this groove is surrounded by side direction contact pin 24, and these contact pin have to the raised of interior orientation and can be used for fixing seal device or other component.The substructure of groove 23 is the film hinge 25 of V-arrangement, thus the two half-unit of profiled body 21 can be rotated around film hinge 25, to provide the entrance leading to cavity 22.
The side opposite with groove 23 is shaped insertion element 26, and this insertion element comprises two isolated wall sections, and described wall section surrounds cavity 94 and 95.The wall section of insertion element 26 can be fixed via kayser contact pin 90,91 and 92,93, and these kayser contact pin are configured to the fastening position of hook-shaped and fixing profiled body.
In order to obtain the entrance leading to cavity 22, the two half-unit of profiled body 21 can be rotated around film hinge 25.Additionally or alternatively, by making profiled body 21 side around other film hinge 96 beat to open cavity 22, described other film hinge and groove 23 are neighboringly configured on a sidewall of cavity 22.When use two film hinges 25 and 96, king-sized open angle can be obtained.Replace only being arranged on side, film hinge 96 also can be arranged on the opposite both sides of cavity 22.
There is the insulation strip of the profiled body of Figure 14 A shown in Figure 14 B, wherein, in cavity 22, load the banded drip molding 15 with high thermal insulation loosely.Especially by being adhesively fixed with heat insulating belt 97 on the outside of cavity 22 sidewall.
Above-described embodiment can be combined each other, such as, replace a unique cavity also can arrange multiple cavity in insulation strip.In addition, the drip molding be made up of heat-barrier material also can be utilized to fill one or more cavity, wherein, function desirably can use the material of drip molding.Especially only can need to use specific insulation materials for fire prevention object, and in order to other material of heat insulation preferred use of the best.Drip molding 15 not only mechanically fixing in the cavities also can bonding or foaming in the cavities.
Replace embedding the insertion element 26 in thread groove 2, insulation strip 20 also can have suit element, and this suit element is set on thread groove 2 in outside with two supporting legs.
Reference numerals list
1 support sections
2 thread grooves
3 keepers
4 weather strips
5 packing elements
6 spaces
7 compression bars
8 sealing devices
10 insulation strip
11 screws
12 profiled bodies
13 heat insulating belts
14 sealing lips
15 drip moldings
16 grooves
17 drip moldings
18 drip moldings
20 insulation strip
21 profiled bodies
22 cavitys
23 grooves
24 contact pin
25 film hinges
26 insertion elements
27 buckling and locking devices
28 heat insulating belts
29 sealing projections
30 film hinges
31 contact pin
32 contact pin
33 partition walls
34 snap-fasteners
35 latch receiver portions
36 kayser contact pin
37 latch receiver portions
38 kayser contact pin
40 coverings
41 film hinges
42 elasticity contact pin
43 latch receiver portions
45 profiled bodies
50 bottoms
51 kayser projections
52 tops
53 kayser contact pin
54 film hinges
60 nozzles
61 materials
62,62' material
70 profiled bodies
71 coverings
72 film hinges
73 kayser contact pin
74 latch receiver portions
75 drip moldings
76 drip moldings
80 perforated portions
82 perforated portions
83 perforated portions
84 perforated portions
90 kayser contact pin
91 kayser contact pin
92 kayser contact pin
93 kayser contact pin
94 cavitys
95 cavitys
96 film hinges
97 heat insulating belts

Claims (13)

1. munnion beam structure, in particular for the munnion beam structure in building facade or skylight, this munnion beam structure comprises support sections (1), this support sections is fixed with at least one packing elements (5), wherein, a side of packing elements (5) is provided with insulation strip (10, 20), this insulation strip remains on support sections (1) and goes up and have at least one cavity (22), it is characterized in that, described insulation strip (10, 20) there is at least one movable covering, insulation strip (10 can be closed by this covering, 20) cavity (22).
2. munnion beam structure according to claim 1, is characterized in that, described covering is fixed in insulation strip (10,20) separably.
3. munnion beam structure according to claim 1 and 2, it is characterized in that, in cavity (22), load material (15,17,63,75) at least in part, the profiled body (21,45,50,70) that insulation strip (10,20) compared by this material has higher thermal insulation.
4. according to the munnion beam structure one of the claims Suo Shu, it is characterized in that, described covering energy kayser is in insulation strip (10,20).
5. according to the munnion beam structure one of the claims Suo Shu, it is characterized in that, described insulation strip (10,20) has film hinge (25,30,41,54) and covering is configured to rotate via this film hinge (25,30,41,54).
6. according to the munnion beam structure one of the claims Suo Shu, it is characterized in that, described insulation strip (10,20) has such profiled body (21,45,50,70), the outside of this profiled body is fixed with heat insulating belt (28) at least part of region, and this heat insulating belt is compared profiled body (21,45,50,70) and is had higher thermal insulation.
7. according to the munnion beam structure one of the claims Suo Shu, it is characterized in that, described insulation strip has such profiled body (70), and this profiled body has multiple perforated portion (80,82,83,84) in a longitudinal direction.
8. munnion beam structure according to claim 7, it is characterized in that, described perforated portion (80,82,83,84) to be arranged and the area of perforated portion (80,82,83,84) accounts at least 50%, preferably at least 70% of band area along the longitudinal direction band shape of insulation strip, wherein, the width of band equals the width of perforated portion (80,82,83,84).
9. according to the munnion beam structure one of the claims Suo Shu, it is characterized in that, the cavity (22) of described insulation strip is divided by least one partition wall (33,73).
10. according to the munnion beam structure one of the claims Suo Shu, it is characterized in that, heat insulating belt (63) is arrived in the cavity (22) of insulation strip by foaming.
11. according to the munnion beam structure one of the claims Suo Shu, it is characterized in that, the bottom of the groove (23) of described insulation strip (10,20) has film hinge (25), and insulation strip becomes two half-unit by means of this film hinge energy beat.
12. according to the munnion beam structure one of the claims Suo Shu, it is characterized in that, insertion element (26) is configured for the buckling and locking device (27,90,91,92,93) fixed by profiled body in a closed position, and this insertion element remains in thread groove (2).
13. according to the munnion beam structure one of the claims Suo Shu, it is characterized in that, described insulation strip has the profiled body be made of plastics, and wherein, the wall thickness of profiled body is in 0.3mm to 1.6mm, scope especially between 0.5mm to 1.3mm.
CN201480050058.5A 2013-09-13 2014-09-12 Munnion beam structure Active CN105531429B (en)

Applications Claiming Priority (3)

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DE201320104191 DE202013104191U1 (en) 2013-09-13 2013-09-13 Post and beam construction
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PL3044389T3 (en) 2019-10-31
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EP3044389A1 (en) 2016-07-20
CN105531429B (en) 2018-09-18

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