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    • 3. 发明申请
    • FRAME PROFILES FOR PRODUCING WINDOW OR DOOR FRAMES AND A METHOD FOR PRODUCING THE SAME
    • 框架型材用于生产下部分的决策框架为Windows或DOORS和方法
    • WO99016996A1
    • 1999-04-08
    • PCT/EP1998/006193
    • 1998-09-30
    • B29C47/00E06B3/20E06B3/22E06B3/263E06B3/26
    • E06B3/222B29C47/0028B29C47/003B29C47/0066B29C47/02B29C47/021B29L2031/26E06B3/205E06B2003/224E06B2003/226E06B2003/26332E06B2003/26392
    • The invention relates to frame profiles for producing window or door frames comprising L, Z or T-shaped cross-sections, an insulating core (100, 200) of predominantly closed-cell rigid expanded plastics and at least a casing which faces outwards by means of at least one exterior profile comprised of thermoplastic compacted material. When observed cross-sectionally, the frame profiles have an exterior profile extending from the exterior visible side (130, 230) to the interior visible side (110, 210) and is subdivided in at least two chambers (101, 102, 201, 202) by means of interior spacers. One of the chambers (101, 201) is filled with rigid expanded plastics and a chamber (102, 202) which is not filled with said plastics can be equipped with a reinforcing profile (31, 32). The chamber filled with rigid expanded plastics is adjacent to the exterior visible side of the frame profile. The chamber which accommodates a reinforcing profile (31, 32) is adjacent to the interior visible side of the frame profile. In addition, the invention relates to a method for producing the frame profiles.
    • 用于通过热塑性紧凑的塑料材料中的至少一个的外轮廓来制造用于与L-,Z-或T形横截面窗户或门框架,主要具有闭孔硬质泡沫塑料的热绝缘芯(100,200)和至少局部地外侧壳框架型材,所述 由内腹板的装置在外部可见侧(130,230)的截面的观察到内可见侧(110,210)框架轮廓分成至少两个腔室(101,102,201,202),以所述划分外部轮廓和所述腔室中的一个(101,201)与 刚性泡沫填充,并用发泡腔(102,202)与加强型材(31,32)未填充的可配时,塞上的边框部的邻近所述外可见侧的发泡腔,和一个增强轮廓31的(记录, benachba 32)服务的框架型材的可见侧的内室 室温,制造该框架型材的方法。
    • 7. 发明申请
    • 복합 창호 및 그의 비접착식 단열재 시공방법
    • 复合窗和非绝热热绝缘材料的绝热方法
    • WO2014196750A1
    • 2014-12-11
    • PCT/KR2014/004485
    • 2014-05-20
    • 주식회사 대흥에프에스씨복합창
    • 이상호
    • E06B3/263
    • E06B3/26347E06B3/26303E06B2003/26327E06B2003/26332
    • 복합 창호 및 그의 비접착식 단열재 시공방법에 관한 것으로, 벽면에 장착되는 창틀 프레임과 창틀 프레임에 슬라이딩 이동 가능하게 장착되는 창문 프레임을 포함하는 미서기 창호로서, 상기 창틀 프레임은 외측 창틀 프레임과 내측 창틀 프레임으로 이루어지고, 상기 외측 창틀 프레임과 내측 창틀 프레임 사이에는 전도열을 차단하는 제1 전도열 차단재와 상기 외측 및 내측 창틀 프레임의 내부 공간을 둘러싸서 공기의 대류에 의한 열 전달을 차단하는 창틀 단열재가 설치되는 구성을 마련하여, 복합 창호의 프레임을 통한 전도열을 차단함과 동시에 프레임 내부 공간에 충진된 공기의 대류에 의한 열손실을 최소화하여 단열 성능을 향상시킬 수 있다는 효과가 얻어진다.
    • 公开了一种通过非粘合绝热材料将复合窗和其隔热材料的方法,复合窗是双滑动窗,其包括安装在墙壁中的窗口支撑框架和可滑动地安装在其中的窗框 窗口支撑框架,其中窗口支撑框架由外窗支撑框架和内窗支撑框架组成,第一导热阻挡材料布置在外窗支撑框架和内窗支撑框架之间以阻止热传导,以及 提供了窗户支撑框架隔热材料以封闭外窗和内窗支撑框架的内部空间,以防止空气对流传递热量,使得通过复合窗户的框架的热传导是 并且由于填充框架内部空间的空气的对流引起的热损失最小化,从而提高隔热能力。
    • 9. 发明申请
    • HEAT-INSULATED COMPOSITE PROFILED SECTION
    • 隔热复合型材构件
    • WO1997009504A1
    • 1997-03-13
    • PCT/DE1996001652
    • 1996-09-05
    • NORSK HYDRO A.SSCHULZ, Harald
    • NORSK HYDRO A.S
    • E06B03/263
    • E06B3/26303E06B2003/26332E06B2003/26352
    • The invention concerns a heat-insulated composite profiled section comprising an insulation weg (6) having two substantially parallel delimiting walls (6.1, 6.2) which form a cavity therebetween. The delimiting walls (6.1, 6.2) can be interconnected by at least one transverse web (10). From an initial wall thickness s = 0.5 mm and a heat conductivity lambda = 0.35 W/mK of the delimiting walls (6.1, 6.2), the width (D) of the insulation web is set at 20 mm in oder to achieve thermal insulance of the insulation web in the range of from 0.15 m K/W to 0.30 m K/W, 30 mm for thermal insulance in the range of from 0.25 m K/W to 0.50 m K/W, 40 mm for thermal insulance in the range of from 0.35 m K/W to 0.65 m K/W, and 50 mm for thermal insulance in the range of from 0.40 m K/W to 0.80 m K/W. Therefore, the width (d) of the cavity or hollow chamber is less than or equal to the width (D) of the insulation web and greater than or equal to one third of the width (D) of the insulation web, provided the height of the cavity or hollow chamber (11) is less than or equal to 5 mm. If the height of the cavity or hollow chamber is between 5 mm and 20 mm and at least one transverse web (10) is present, the ratio of height (h) to width (d) is greater than or equal to 0.2 and less than or equal to 5. For a variation in the wall thickness (s) of between 0.25 mm and 1.0 mm, a dependency of the thermal insulance on the wall thickness (s) according to the relation: R(s)=R(s=0.25 mm) + (s - 0.25)/0.25 * DELTA R, with the value of DELTA R ranging from 0.025 to 0.05, has to be taken into account. Increasing the heat conductivity of the delimiting walls (6.1, 6.2) by 10 % in the range of from 0.15 W/mK to 0.40 W/mK reduces the thermal insulance by between 2 and 4 %, which is to be taken into account accordingly for the dimensions initially selected.
    • 绝缘带(6)具有两个基本上平行的边界壁(6.1,6.2)在它们之间形成空腔。 边界壁(6.1,6.2)可通过至少一个横向腹板(10)被连接到彼此。 从壁厚s =0.5毫米启动和热导率的λ= 0.35 W /边界壁的MK(6.1,6.2),以达到绝缘腹板的热阻范围0.15米<2> K / W的宽度之间( 绝缘带至20mm,在该范围的D)0.25米<2> K / W和0.50米之间<2> K / W的绝缘带的宽度(D)至30毫米,在范围0.35米之间 <2> K / W和0.65米<2> K / W的绝缘带的宽度(D)为40mm,在范围0.40米<2> K / W和0.80米<2> K的 / W在规定的50mm左右的绝缘带的宽度(D)。 空腔或中空室的宽度(d)的选择为小于或等于所述绝缘纤维网的宽度(D)且大于或等于所述绝缘纤维网的宽度(D)的第三个,只要空腔或中空室的高度(11) 小于或等于5毫米。 在腔或以上5毫米到20毫米,至少一个现有的横向腹板(10)的高度(h)的比率的宽度的范围内的中空室的高度被选择为大于或等于0.2且小于或等于5(d)中 , 如果壁厚(多个)在0.25mm至1.0mm之间的范围内,根据等式R(S)= R(S)而变化,作为壁的厚度(S)的热阻的依赖= R(S = 0 考虑到0.25)/ 0.25 *增量R,并与值范围R的增量0.025至0.05 - 25mm)的+(S。 增加边界壁的10%的热导率(6.1,6.2)范围为0.15 W / mK以下,且0.40 W之间/ mK的导致由2〜4%的降低热阻的,对应于当最初选择的输出变量 被考虑在内。
    • 10. 发明申请
    • A SPACER ELEMENT PROVIDING AN IMPROVED FIRE INSULATION AT A SHEET UNIT
    • 隔板元件在片材单元上提供改进的防火性能
    • WO2017176185A1
    • 2017-10-12
    • PCT/SE2017/000024
    • 2017-04-06
    • LARS ERIKSSON DEVELOP AB
    • ERIKSSON, Lars
    • E06B5/16E06B3/54
    • E06B5/165E06B3/5409E06B5/161E06B2003/26332
    • The present invention refers to an arrangement at a spacer element (10) in providing of an improved fire insulation at a window, a door, a facade or the like, whereby at least one sheet unit (1), preferably at least one glass pane (2) such as e.g. a thermopane (3) is fixed in a groove (4), e.g. in a wooden frame (5), which has at least one groove bottom (6) and at least one groove side (7), said groove (4) extends along at least one of the circumference of the sheet unit (1) existing borders (8) and to at least one portion has a fire swelling material (9), said sheet unit (1) is supported by at least one spacer element (10), having a supporting structure (13), which up to at least some portion is provided between the border (8) of the sheet unit (1) and the groove bottom (6), said supporting structure (13) up to some portion includes at least one cavity (14), which gives place to receive the fire swelling material (9), which is arranged within said spacer element (10) below at least a part of its supporting surface (18), said supporting structure (13) has at least one opening/cavity (15), in order to give place for said fire swelling material (9) to expand during fire out in predetermined directions from said spacer element (1) through said opening/cavity (15) out into the groove (4).
    • 本发明涉及隔离元件(10)处的布置,以在窗户,门,立面等处提供改进的防火隔热性,其中至少一个薄片单元(1 ),优选至少一个玻璃板(2),例如, 在具有至少一个凹槽底部(6)和至少一个凹槽侧(7)的木制框架(5)中的凹槽(4)中固定有热电偶(3) 所述凹槽(4)沿着片材单元(1)的现有边界(8)的周边中的至少一个延伸并且至少一个部分具有火溶胀材料(9),所述片材单元(1)由 (1)的边界(8)和凹槽底部(6)之间设置至少一部分至少一部分的支撑结构(13)的至少一个间隔元件(10),所述支撑结构( 13)直到某个部分包括至少一个空腔(14),该空腔用于接收火焰膨胀材料(9),该火焰膨胀材料在其支撑表面(18)的至少一部分的下方布置在所述间隔元件(10)内, ,所述支撑结构(13)具有至少一个开口/空腔(15),以便在所述火焰膨胀材料(9)从所述间隔件向预定方向放火期间为膨胀材料 nt(1)通过所述开口/空腔(15)流出到凹槽(4)中。