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    • 36. 发明申请
    • A METHOD TO PRODUCE AN INSULATING PIPE SECTION FOR PIPEWORKS AND A PIPE SECTION
    • 一种制造管道和管段绝热管段的方法
    • WO2017182246A1
    • 2017-10-26
    • PCT/EP2017/057442
    • 2017-03-29
    • ROCKWOOL INTERNATIONAL A/S
    • REICHINGER, Stephan-Ferdinand
    • F16L59/02F16L59/04F16L59/10F16L59/08
    • The invention relates to a method for applying a flexible cladding material to an outer surface (14) of an insulation layer (4) for a pipe section whereby the insulation layer in the shape of a cylinder having a cylindrical central opening (10) is provided on a first and a second supporting element (7) defining a gap (9) between the first and second supporting element, of which at least the first element is movable towards and away from the second supporting element between a first position in which the two supporting elements are close to each other, thereby nearly closing the gap and a second position in which the supporting elements are at a distance from each other, thereby defining the gap being larger than the gap in the first position, whereby a layer (2) of the flexible cladding material is arranged between the insulation layer and the two supporting elements in such manner that an adhesive surface of the layer of flexible cladding material is facing towards the insulation layer, or in such a manner that an adhesive surface of the insulation layer is facing towards the layer of flexible cladding material, whereby the insulation layer and the supporting elements are moved in relation to each other in such manner that the insulation layer and at least a part of the layer of the flexible cladding material is moved through the gap between the first and the second supporting element, whereby the two support elements are moved towards each other after the insulation layer and the layer of the flexible cladding material with its major diameter has passed through the gap between the first and the second supporting element and whereby finally the flexible cladding material is adhesively connected to the insulation layer during or after the mentioned process steps.
    • 本发明涉及一种用于将柔性包层材料施加到用于管段的绝缘层(4)的外表面(14)的方法,其中圆柱形状的绝缘层具有 在第一和第二支撑元件(7)上提供圆柱形中心开口(10),所述第一和第二支撑元件(7)限定第一和第二支撑元件之间的间隙(9),其中至少第一元件可朝向和远离第二支撑元件 在第一位置和第二位置之间,在所述第一位置中两个支撑元件彼此靠近,从而几乎闭合间隙,在第二位置中,支撑元件彼此间隔开一定距离,由此限定间隙大于第一位置中的间隙 位置,由此柔性包覆材料层(2)以这样的方式布置在绝缘层和两个支撑元件之间,使得柔性包覆材料层的粘合表面面向i 或者以这样的方式使得绝缘层的粘合表面朝向柔性包覆材料层,由此使绝缘层和支撑元件相对于彼此移动,使得绝缘层和绝缘层 柔性包层材料的层的至少一部分通过第一支撑元件和第二支撑元件之间的间隙移动,由此在绝缘层和柔性包层材料的层之后,两个支撑元件彼此朝着彼此移动,其中主要 直径已经穿过第一和第二支撑元件之间的间隙,并且由此最终柔性包覆材料在所述工艺步骤期间或之后粘合连接到绝缘层。
    • 38. 发明申请
    • THERMAL INSULATION FOR HOT OR COLD MEDIA-CARRYING PIPELINES
    • 热或冷介质管道的热绝缘
    • WO2016093716A1
    • 2016-06-16
    • PCT/PL2015/000195
    • 2015-12-03
    • ALLSETPRO SPÓŁKA Z OGRANICZONĄ ODPOWIEDZIALNOŚCIĄ
    • CHUPTYŚ, Piotr
    • F16L59/14F16L59/02F16L59/06F16L59/07F16L59/075F16L59/08F16L59/12
    • F16L59/143F16L59/029F16L59/06F16L59/07F16L59/075F16L59/08F16L59/12
    • The subject of the invention is thermal insulation for pipelines protecting them from loss of heat or cold when carrying heating, cooling, and other industrial and utility media characterised in that it has: a first insulation layer (2) made of aluminium foil or metallized foil with thickness g = 0.04 mm and resistant to infrared radiation (IR), connected detachably or permanently with spacing pins (3), lower ends of which adhere to outer surface of the insulated pipeline's steel pipe (1) forming this way an air gap (4) between thermal insulation and the pipe, or the first insulation layer (2) adheres directly to outer surface of a structure (11) comprising spacing battens (11') interconnected with each other by means of annular elements (12), said structure being mounted of outer surface of said steel tube (1) also forming this way an air gap (4) between the pipe and said first insulation layer; the second insulation layer (6) adjacent to the first insulation layer (2) comprising a pack of several layers of insulating plastic film bubble wrap adhering loosely to each other or glued together by means of adhesive (5) resistant to high temperatures, with bubbles of cellular structure of the wrap filled with a mixture of air and argon and bubble cells (6') pointing towards the insulated steel pipe (1); and an outer layer (7) surrounding and adhering to the second insulation layer (6), said outer layer being made of a plastic resistant to operation of ultraviolet (UV) radiation and variable climatic conditions with ends connected to each other by means of the scarf joint and topped additionally by means of tape (8) attached to its upper surface.
    • 本发明的主题是管道的热绝缘,用于保护它们在携带加热,冷却以及其他工业和公用事业介质时防止其失去热或冷的管道的绝热,其特征在于其具有:第一绝缘层(2 )由厚度为g = 0.04mm且耐红外辐射(IR)的铝箔或金属化箔制成,与间隔销(3)可拆卸或永久连接,其下端粘附于绝缘管道的钢管 )通过这种方式形成热绝缘和管道之间的气隙(4),或者第一绝缘层(2)直接粘附到包括间隔板条(11')的结构(11)的外表面,所述结构(11)通过 环形元件(12),所述结构安装在所述钢管(1)的外表面上,同样形成所述管和所述第一绝缘层之间的气隙(4); 与第一绝缘层(2)相邻的第二绝缘层(6)包括由几层绝缘塑料薄膜气泡包裹物组成的松散地彼此粘附或借助于耐高温的粘合剂(5)粘合在一起的泡沫 (6)指向绝热钢管(1)的空气和氩气的混合物的多孔结构; 和围绕并粘附到第二绝缘层(6)上的外层(7),所述外层由抗紫外线(UV)辐射的操作的塑料制成,并且可变气候条件的端部借助于 围巾接合处,并通过附着在其上表面上的带子(8)进行顶部覆盖。
    • 40. 发明申请
    • MINERAL WOOL ELEMENT, MANUFACTURING METHOD THEREOF AND METHOD FOR INSULATING CURVED SURFACES
    • 矿物元件及其制造方法及绝缘表面绝缘方法
    • WO2009098361A1
    • 2009-08-13
    • PCT/FI2009/050098
    • 2009-02-06
    • PAROC OY ABSEPPÄNEN, EsaSATKA, LasseHEVOSMAA, Risto
    • SEPPÄNEN, EsaSATKA, LasseHEVOSMAA, Risto
    • B32B15/14F16L59/08F16L59/02
    • F16L59/029B32B3/02B32B3/04B32B3/06B32B5/12B32B7/12B32B15/14B32B15/18B32B2255/06B32B2255/205B32B2255/26B32B2262/108B32B2307/304B32B2307/50B32B2307/712B32B2307/714B32B2439/00B32B2607/00F16L59/10
    • The invention relates to a mineral wool element (7), its fabrication method, and a method for insulating curvilinear surfaces, as well as a wind-load resistant structure comprising a curvilinear building surface, an insulation layer (2) of mineral wool installed thereon, and a sheet metal skin (1) protecting the outside of this insulation layer. The mineral wool element (7) according to the invention includes an insulating mineral wool layer (2) with two opposite main surfaces, one of which is clad with a pliable sheet metal (1) and the other is made up by bare mineral wool, the sheet-metal clad mineral wool layer being pliable jointly with the sheet metal. Such an element (7) can be fabricated either in such a way that one of the two main surfaces of the mineral wool layer (2) is clad with pliable sheet metal (1) and the other is left uncovered, or in such a way that a conventionally fabricated mineral wool element (7) with sheet metal cladding (1', 1"), in which at least both opposite main surfaces of the mineral wool layer (2) have been clad with a pliable sheet metal (1', 1"), is split in two relative to the element's (7) thickness. The element (7) according to the invention enables curvilinear surfaces to be insulated as follows: on a curvilinear surface are installed one or more mineral wool elements of the invention by bending this particular mineral wool element substantially to the conformity with the curvilinear surface geometry in such a way that, of two opposite main surfaces of the mineral wool element, the one made up by bare mineral wool (2) becomes placed against said curvilinear surface to be insulated.
    • 本发明涉及一种矿棉元件(7),其制造方法和一种绝缘曲面表面的方法,以及包括曲线建筑物表面的防风结构,其上安装有矿物绝缘层(2) ,以及保护该绝缘层外侧的金属板皮(1)。 根据本发明的矿棉元件(7)包括绝缘矿棉层(2),其具有两个相对的主表面,其中一个被柔韧的金属板(1)包覆,另一个由裸露的矿棉制成, 金属包覆的矿棉层与金属板一起柔韧。 这样的元件(7)可以以使得矿棉层(2)的两个主表面中的一个被柔韧的金属片(1)包覆而另一个不被覆盖的方式制造,或者以这样的方式 一种常规制造的具有钣金包层(1',1“)的矿棉元件(7),其中矿棉层(2)的至少两个相对的主表面已经用柔韧的金属片(1')包覆, 1“),相对于元素(7)的厚度分为两个。 根据本发明的元件(7)使得曲线表面能够如下绝缘:在曲线表面上安装本发明的一种或多种矿棉元件,通过将该特定矿棉元件弯曲成基本上与曲线表面几何形状相一致 这样一种方式,使矿物棉元素的两个相对的主表面,由裸露的矿棉(2)构成的主表面放置在所述曲线表面上以进行绝缘。