Ultramid?PA66 A3X2G7, Ultramid A3X2G7 is a 35% glass fiber reinforced injection molding PA66 grade with improved flame retardance and enhanced long-termstability. Flame retardant based on red phosphorus; very high stiffness and strength; outstanding mechanical and electrical properties. \A3X3G5,25%Glass fibre reinforced injection moulding grade with improved flame retardance and enhanced long-term stability. Flameretardant based on red phosphorus; very high stiffness and strength; outstanding electrical properties.UL94-V0/3,2mm. A3X4G7, A3XZG5, Ultramid A3XZG5 is an impact-modified, 25% glass fiber reinforced injection molding PA66 grade with improved flame retardance. A3Z,Impact-modified and stabilized injection moulding grade for components and housing with good low temperature impact resistance. A3ZHP, Ultramid A3Z HP is an unreinforced, impact modified, heat stabilized, high flow PA66 injection molding grade. Ultramid A3ZHP offers a uniquecombination of maximum toughness and impact resistance with excellent high flow processability. A3ZHPUV, Ultramid A3Z HP UV is an impact modified PA66 containing heat and ultraviolet light stabilizers.Designed for maximum toughness at low temperatures, Ultramid A3Z HP UV offers a uniquecombination of impact performance and excellent processability. A3ZG6,Impact-modified, glass fiber reinforced injection moulding grade. A3ZM4. Impact-modified, stabilized injection molding grade for components (housings) with high impact strength, heat distortion resistance and low warpage. Used for wheel covers. A4H. High heat aging resistant, medium viscosity injection moulding grade for highly stressed parts such as bearing cages,gear-wheels, coil formers and cable connectors. A4. Ultramid A4 is a medium viscosity, extrusion PA66 grade. It conforms to FDA requirements of 21CFR 177.1500. A5. Ultramid? A5. PHYSICAL. ISO Test Method. Property Value. Moisture, %. 62. RHEOLOGICAL. ISO Test Method. Property Value. MECHANICAL. A5W. A3WC4. Electrically conductive grade reinforced with 20% carbon fibers. Used for machinery elements and housings with high stiffness and dimensional stability, low density and favorable frictional behavior (e.g. connecting rods). A38K. C3M6. C3M8. Mineral-reinforced and stabilized injection molding grade for machinery components such as crown gears and small parts with high impact strength and low warpage. KR4205. Stabilized injection molding grade with improved flame retardance (free from halogens and phosphorus) and high toughness. Used for electrically insulating parts such as contact carriers and push-on terminal strips. KR4281.注塑改性级,含40%矿物质增强改性的制品 KR4650.特殊级,适合矿物质增强改性的工程制品
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在各种加固方法中,用碳纤维增强树脂(CFRP)布或板加固钢筋混凝土构件的方法,在20世纪80年代中后期美、日、欧等发达地区应用以来,现已在我国得到*的发展和普及。由于CFRP加固具有很好的比强度、比刚度、耐腐蚀、耐久性强、非磁性、重量轻、**损、**、施工方便和施工工期短等优点,所以现广泛应用于各类工程和民用建筑中。! 产品销售:建筑结构胶、植筋胶(注射式和散装均有)、粘钢胶、碳纤维胶、树脂、化
碳纤维加固的应用领域非常广泛,例如桥梁、水坝、烟囱、屋顶、墙体、柱子等都可以使用碳纤维进行加固。其中,桥梁是应用碳纤维加固较为广泛的领域之一。由于桥梁常常经受各种不同方向的力和振动,因此对于其加固措施的要求尤为严格。 在桥梁加固中,碳纤维加固的优点得到了很好的体现。采用碳纤维进行加固,不仅可以提高桥梁的承载能力和刚度系数,而且可以减小加固后的自重,减轻对现有结构的影响。此外,使用碳纤维加固还可以
在各种加固方法中,用碳纤维增强树脂(CFRP)布或板加固钢筋混凝土构件的方法,在20世纪80年代中后期美、日、欧等发达地区应用以来,现已在我国得到*的发展和普及。由于CFRP加固具有很好的比强度、比刚度、耐腐蚀、耐久性强、非磁性、重量轻、**损、**、施工方便和施工工期短等优点,所以现广泛应用于各类工程和民用建筑中。! 产品销售:建筑结构胶、植筋胶(注射式和散装均有)、粘钢胶、碳纤维胶、树脂、化
碳纤维布加固施工流程(施工工法详见本站“技术专区”栏目)卸荷→基底处理→涂底胶→找平→粘贴→保护。卸荷加固前应对所加固的构件尽可能卸荷。基底处理。混凝土表层出现剥落、空鼓、蜂窝、腐蚀等劣化现象的部位应予以凿除,对于较大面积的劣质层在凿除后应用砂浆进行修复。裂缝部位应首**行封闭处理。用混凝土角机、砂纸等机具除去混凝土表面的浮浆、油污等杂质,构件基面的混凝土要打磨平整,尤其是表面的凸起部位要磨平,
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