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    • 41. 发明申请
    • A METHOD AND AN APPARATUS FOR MAKING MINERAL FIBRE PRODUCTS
    • 一种制造矿物纤维制品的方法和装置
    • WO2014090669A1
    • 2014-06-19
    • PCT/EP2013/075605
    • 2013-12-05
    • ROCKWOOL INTERNATIONAL A/S
    • ROSENBERG, GormWESTERBERG, Christian
    • D04H1/4218D04H1/4226
    • D04H1/4218B32B37/0046B32B37/20B32B38/04B32B2038/045D04H1/4226Y10T83/0467Y10T83/2087Y10T156/1059
    • The present invention concerns a method and an apparatus for making mineral fibre products by splitting an incoming primary web, said apparatus comprising a feeding conveyor for providing an incoming primary web of air-laid mineral wool, said feeding conveyor having a first direction of travel; a station for shifting the direction of travel of the primary web by receiving the primary web on a turning table and then transferring the primary web onto a receiving conveyor, where said receiving conveyor has a second direction of travel different to the first direction of travel; wherein a web splitter is provided at the downstream end of said receiving conveyor for dividing the incoming primary web into a first primary web and second primary web and wherein the turning table is shiftable in the first direction of travel.
    • 本发明涉及一种通过分离进入的初级纤维网来制造矿物纤维制品的方法和装置,所述装置包括用于提供送入的气流成网矿棉的初级网的进料输送机,所述进料输送机具有第一行进方向; 站台,用于通过在转台上接收主卷筒纸来移动主卷筒纸的行进方向,然后将主卷筒纸传送到接收传送带上,其中所述接收传送机具有不同于第一行进方向的第二行进方向; 其特征在于,在所述接收传送器的下游端设置有纸幅分配器,用于将进入的主纸幅分成第一主纸幅和第二主纸幅,并且其中转盘可在第一行进方向上移动。
    • 42. 发明申请
    • COLLECTING CHAMBER AND METHOD IN THE MANUFACTURE OF MINERAL FIBRES
    • 在矿物纤维制造中收集室和方法
    • WO2006128955A2
    • 2006-12-07
    • PCT/FI2006000171
    • 2006-05-31
    • PAROC GROUP OY ABAASTRAND ERIKWALLI BJARNE
    • AASTRAND ERIKWALLI BJARNE
    • C03B20060101D04H1/4209D04H1/4226D04H1/72
    • D04H1/4209D04H1/4226D04H1/732D04H1/736
    • The invention relates to a collecting chamber in the manufacture of mineral fibres. The collecting chamber comprises a first end towards a fiberising apparatus and a second end towards a collecting member. Between the first and second end a ceiling, and a first and a second side wall are arranged. The cross section of the first end of the collecting chamber has a first area, and the cross section of the second end has a second area, which cross sections are defined by a ceiling, the first and second side wall as well as a cross section plane that horizontally touches the lowest rotor of the fiberising apparatus at its lower edge. The collecting chamber comprises a waist, the length of which is at least 100 mm and the cross section of which has a third area which is at the most 10 % larger than the first area and smaller than the second area. The invention also relates to a method in the manufacture of mineral fibres.
    • 本发明涉及在矿物纤维制造中的收集室。 收集室包括朝向纤维化装置的第一端和朝向收集构件的第二端。 在第一和第二端之间布置有天花板和第一和第二侧壁。 收集室的第一端的横截面具有第一区域,并且第二端的横截面具有第二区域,该横截面由天花板,第一和第二侧壁以及横截面 平面,其在其下边缘处水平地接触纤维化装置的最低转子。 收集室包括腰部,其长度至少为100mm,其横截面具有比第一区域大至多10%的第三区域,并且小于第二区域。 本发明还涉及一种制造矿物纤维的方法。
    • 49. 发明申请
    • MINERAL WOOL COMPOSITION
    • 矿棉组合物
    • WO98057900A1
    • 1998-12-23
    • PCT/FR1998/001270
    • 1998-06-17
    • C03C13/00D04H1/42D04H1/4209D04H1/4218D04H1/4226
    • D04H1/4209C03C13/00C03C2213/04D04H1/42D04H1/4218D04H1/4226
    • The invention concerns "bi-component" mineral fibres obtained by joint fibre drawing of two different mineral compositions, in particular two glass compositions based on SiO2, alkaline oxides and earth-alkaline oxides: the two mineral compositions have a coefficient of thermal expansion alpha with a difference DELTA alpha of at least 20.10 K : they have a minimum viscosity fibre drawing temperature Tlog3 between 830 and 1010 DEG C; they have a working temperature level of at least 30 DEG C; they each comprise in all less than 3 wt. % of the following components; TiO2, ZnO, BaO, Li2O, and preferably less than 1 wt.% of each; they have in weight percent, differences in boron oxide B2O3 and in sodium oxide Na2O contents respectively such that: (i) DELTA B2O3 > 2 %, (ii) DELTA Na2O > 2 %.
    • 本发明涉及通过两种不同矿物组合物的联合纤维拉伸获得的“双组分”矿物纤维,特别是基于SiO 2,碱性氧化物和碱土氧化物的两种玻璃组合物:两种矿物组合物具有与 至少20.10K -1的差ΔTAα:它们具有在830至1010℃之间的最小粘度纤维拉伸温度Tlog3; 工作温度至少为30℃; 它们各自包含小于3wt。 %以下组件; TiO 2,ZnO,BaO,Li 2 O,优选小于1重量%; 它们分别具有重量百分比,氧化硼B 2 O 3和氧化钠Na 2 O含量的差异,使得:(i)DELTA B 2 O 3> 2%,(ii)DELTA Na 2 O> 2%。