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    • 53. 发明授权
    • Molding material and its use as construction and repair material
    • 成型材料及其用作建筑和修理材料
    • US4780484A
    • 1988-10-25
    • US148706
    • 1988-01-26
    • Bernd SchubertKlaus D. RohardtMichael O. Grau
    • Bernd SchubertKlaus D. RohardtMichael O. Grau
    • B29C70/00B29C73/02B29K79/00B29L31/10B29L31/30C08G18/79C08J5/10C08K3/32C08L75/00C08L75/04C09K21/14C08G18/14
    • C08G18/792C08G18/791C08K3/32Y10S521/902Y10S521/903Y10S521/906
    • A molding material based on polyisocyanato-isocyanurates, polyols and flameproofing and fireproofing agents, as well as optionally polyisocyanates, fillers and promoters is described which is preferably in the form of a 2-component material and comprises 5 to 40% by weight of branched polyols, 20 to 40% by weight of the isocyanurate of 1,6-hexamethylene diisocyanate, 0 to 20% by weight of crude MDI and/or prepolymer of polyol and crude MDI and/or isophorone diisocyanate optionally in combination with further isocyanate groups containing compounds, 5 to 20% by weight of a fireproofing mixture mainly consisting of secondary ammonium phosphate, 0 to 50% by weight filler and 0 to 5% by weight promoter. This mass, which permits quick processing at room temperature or slighty increased temperatures, is useful as construction and repair material for many applications, especially in connection with the construction and repair of land, air and water vehicles. The products obtained after curing meet the highest requirements with regard to fire protection and possess excellent mechanical properties.
    • 描述了基于多异氰酸酯 - 异氰脲酸酯,多元醇和防火和防火剂以及任选的多异氰酸酯,填料和促进剂的成型材料,其优选为2-组分材料的形式,并且包含5至40重量%的支化多元醇 ,20至40重量%的1,6-六亚甲基二异氰酸酯的异氰脲酸酯,0至20重量%的粗MDI和/或多元醇和粗MDI和/或异佛尔酮二异氰酸酯的预聚物,任选与另外的含异氰酸酯基团的化合物 ,5〜20重量%的主要由仲磷酸铵,0〜50重量%的填料和0〜5重量%的助剂组成的防火混合物。 这种质量允许在室温下快速加工或稍微升高温度,可用作许多应用的建筑和修理材料,特别是与陆地,空气和水车辆的建造和修理有关。 固化后得到的产品符合防火要求最高,机械性能优良。
    • 54. 发明授权
    • Process for making a dimensionally stable, embossed, ornamented tile
surface covering
    • 用于制造尺寸稳定的,压花的,装饰的瓷砖表面覆盖物的方法
    • US4778547A
    • 1988-10-18
    • US5267
    • 1987-01-20
    • Stephen E. BeckerWalter J. Lewicki, Jr.
    • Stephen E. BeckerWalter J. Lewicki, Jr.
    • B29C43/20B29L31/10B32B5/30D06N7/00B32B31/04B32B31/20
    • D06N7/0007D06N7/0055Y10T156/1023Y10T156/1041Y10T156/1056
    • The process for making a dimensionally stable, embossed, ornamented surface covering suitable for use as a floor or wall tile, involving, inter alia, laminating and embossing a resinous thermoplastic top layer having a plurality of openings extending through its thickness to allow the escape of air and extending to a base material or substrate of pre-formed, low-density, reinforced, porous thermoplastic material. The base material may include hollow non-thermoplastic particles. The composite structure is subjected to heat and pressure in a flatbed press having a cooled embossing plate and a cooled back-up plate, to emboss the structure without deformation, fuse the resins and render the top layer substantially impermeable. The improvement comprises providing a second resinous thermoplastic layer between the top layer and the base material, the second layer being capable of allowing passage of air through its thickness during the embossing and fusion step, and being adapted to soften and flow before the top layer does, thereby assuring complete closure of all openings in the top layers of the product.
    • 制造适于用作地板或墙砖的尺寸稳定的,压花的,装饰的表面覆盖物的方法,其特别涉及层压和压花树脂的热塑性顶层,其具有延伸穿过其厚度的多个开口,以允许 空气并延伸到预先形成的低密度,增强的多孔热塑性材料的基材或基材。 基材可以包括中空非热塑性颗粒。 复合结构在具有冷却的压花板和冷却的备用板的平板压机中经受热和压力,以不形变地压花结构,使树脂熔化并使顶层基本上不可渗透。 该改进包括在顶层和基材之间提供第二树脂热塑性层,第二层能够在压花和熔融步骤期间允许空气通过其厚度,并且适于在顶层之前软化和流动 ,从而确保完全关闭产品顶层中的所有开口。
    • 57. 发明授权
    • Building material for building elements, and a method and a system for
manufacturing said elements
    • 用于建筑构件的建筑材料,以及用于制造所述元件的方法和系统
    • US4607061A
    • 1986-08-19
    • US643966
    • 1984-08-21
    • John Schmidt
    • John Schmidt
    • E04B1/90B28B1/50B28B3/02B29C39/16B29C39/18B29C44/30B29C44/34B29D20060101B29K105/04B29K105/06B29L31/10B32B5/18B32B21/08E04C20060101E04C2/10E04C2/20E04C2/26C08G18/14B29C67/16B29C67/22
    • E04C2/10B29C44/30B29C44/3442B29K2075/00B29K2105/16B29L2031/10Y10S264/07Y10S521/917
    • A method and apparatus or system for the continuous manufacture of building element consisting of a self-supporting framework of tightly compressed solid particles and a foaming material in the shape of a foamed plastic material, includes the use of a filling station where mold bottoms are placed in series on a roller conveyor, assembled with sidewalls and passed along a guide section, wherein particle-shaped filler is supplied from a silo while premixed foam material is injected into the material through nozzle tubes and the components are mixed before being injected into the mold and compressed. After placing of a top wall on each of the molds, these are passed under a roller conveyor, and while the molds are moved ahead between the roller conveyors and possibly roller conveyors outside the sidewalls, the foam material binds the particles together to form a monolithic unit which will set before the molds leave the roller conveyors. After demolding of the formed flow of the material, it is cut by a cutting mechanism into the required lengths and the molds are carried back to the filling station. The product is a building element of firmly compressed hard expanded burnt clay particles forming a coherent supporting skeleton of abutting particles bound together by a cured polyurethane foam in only an amount sufficient to fill the cavities between the compressed particles.
    • PCT No.PCT / DK83 / 00126 Sec。 371日期1984年8月21日 102(e)日期1984年8月21日PCT提交1983年12月21日PCT公布。 出版物WO84 / 02489 日本1984年7月5日。一种用于连续制造建筑构件的方法和装置或系统,包括紧密压缩的固体颗粒的自支撑框架和泡沫塑料材料形式的发泡材料,包括使用 其中模具底部串联放置在辊式输送机上,与侧壁组装并沿着引导部分通过,其中颗粒状填料从料仓供应,同时预混泡沫材料通过喷嘴管注入材料中,并且组分是 混合后注入模具并压缩。 在每个模具上放置顶壁之后,它们在辊式输送机下通过,并且当模具在辊子输送机之间向前移动并且可能在侧壁之外的辊式输送机之间移动时,泡沫材料将颗粒结合在一起以形成整体 在模具离开滚筒输送机之前将设置的单元。 在形成的材料流脱模之后,通过切割机构将其切割成所需长度,并将模具运送到加油站。 该产品是牢固压缩的硬膨胀的烧结粘土颗粒的构成元素,其形成一个由固化的聚氨酯泡沫结合在一起的邻接颗粒的粘合支撑骨架,其量仅足以填充压缩颗粒之间的空腔。
    • 58. 发明授权
    • Method and apparatus for continuously filling grooves in sash bars with
heat insulating material
    • 用隔热材料连续填充窗框的槽的方法和装置
    • US4563322A
    • 1986-01-07
    • US564025
    • 1983-12-21
    • Yoshitaka NagaiNobushige Doguchi
    • Yoshitaka NagaiNobushige Doguchi
    • B29C39/10B29B7/00B29C39/00B29C39/06B29C39/14B29C39/18B29C39/22B29C39/24B29C39/26B29C70/74B29L31/10E06B1/32E06B3/267E06B3/16
    • B29C39/142B29C39/18B29C70/742E06B3/267
    • A method and an apparatus for continuously filling grooves in metal sash bars with heat insulating synthetic resin are disclosed. The method comprises the steps of closing the opposite ends of the groove of each of the metal sash bars by end caps each having an end wall with a thinned top edge; continuously moving the metal sash bars through a path below an injection device with the grooves facing upwardly and with at least the top edges of the end caps of one preceding sash bar and the succeeding sash bar in close contact with each other on the upstream of the injection device; and continuously injecting a solution of the heat insulating synthetic resin from the injecting device into the grooves of the sash bars at a constant injecting rate while continuously moving the sash bars.The apparatus comprises: a means for attaching end caps to opposite ends of the groove of each of the metal sash bars to close the opposite ends, the cap each having an end wall with a thinned top edge; and injection device positioned downstream of the cap attaching means for continuously injecting a solution of the heat insulating synthetic resin; a feed device positioned near the injection device for continuously moving the sash bars along a path below the injection device with the grooves facing upwardly; and a rapid feed device positioned upstream of the feed device for moving a succeeding sash bar toward the preceding sash bar which is being injected with the solution of heat insulating synthetic resin at a higher rate than that by the feed device so that at least the top edges of the end caps of the preceding sash bar and the succeeding sash bar are in close contact with each other.
    • 公开了一种用绝热合成树脂连续填充金属窗框中的槽的方法和装置。 该方法包括以下步骤:通过端盖封闭每个金属窗框的槽的相对端部,每个端盖具有具有变薄的顶部边缘的端壁; 连续移动金属窗框通过注射装置下方的路径,其中凹槽面向上,并且至少前一个窗格条的端盖的顶部边缘和后续的窗框在彼此的上游彼此紧密接触 注射装置; 并且连续地将所述隔热合成树脂的溶液从所述注射装置以恒定的喷射速度连续地喷射到所述窗条的槽中。 该装置包括:用于将端盖附接到每个金属窗框的槽的相对端部以闭合相对端的装置,每个顶盖具有带有变薄的顶部边缘的端壁; 以及位于所述盖安装装置下游的注射装置,用于连续注射所述绝热合成树脂的溶液; 位于注射装置附近的进给装置,用于沿着注射装置下方的路径连续地移动窗框,其中槽面向上; 以及位于进给装置上游的快速进给装置,用于将后续的窗框朝向先前的边框条进行移动,所述后门条以比绝缘合成树脂的溶液更高的速度注入绝缘合成树脂溶液,使得至少顶部 先前的格栅条的端盖和后续的窗框的边缘彼此紧密接触。