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    • 7. 发明授权
    • Concrete pole and manufacturing method therefor
    • 混凝土杆及其制造方法
    • US08808604B2
    • 2014-08-19
    • US13591215
    • 2012-08-21
    • Yeong Ho Cho
    • Yeong Ho Cho
    • B28B11/24
    • E04C3/34B28B11/0845B28B21/30B28B21/60B28B23/0075B28B23/0081
    • A method for manufacturing a concrete pole, includes steps of preparing a mold with PC steel bars; preparing a concrete composition comprising cement 19˜21 weight percent, Pozzolanic material 3˜5 weight percent, fine aggregate 25˜40 weight percent, natural stone aggregate 30˜45 weight percent, chemical admixture 0.3˜0.4 weight percent, inorganic pigment 0.4˜1.0 weight percent, and water 6˜7 weight percent; pouring the concrete composition into the mold; shaping the poured composition into a hollow pole; curing the shaped pole by steam at a temperature range from 75° C. to 85° C. from 6 to 8 hours; removing the mold from the cured pole; and grinding the outer surface of the pole so that the pattern and color of the natural stones are exposed on the outer surface.
    • 制造混凝土杆的方法,包括用PC钢筋制备模具的步骤; 制备包含水泥19〜21重量%,火山灰质素3〜5重量%,细骨料25〜40重量%,天然​​石料30〜45重量%,化学添加剂0.3〜0.4重量%,无机颜料0.4〜1.0 重量百分比,水6〜7%; 将混凝土组合物倒入模具中; 将浇注的组合物成型为中空杆; 在75℃至85℃的温度范围内通过蒸汽在6-8小时内固化成形极; 从固化的杆上取出模具; 并研磨极的外表面,使得天然石块的图案和颜色暴露在外表面上。
    • 8. 发明申请
    • CONCRETE ROLLER HEAD
    • 混凝土辊头
    • US20130302462A1
    • 2013-11-14
    • US13868271
    • 2013-04-23
    • HAWKEYE CONCRETE PRODUCTS CO.
    • Claudio SUBACCHI
    • B28B11/08
    • B28B11/0845B28B21/24B28B21/247B28B21/26B28B21/96
    • The extruder head assembly comprises of a drive shaft connected to a troweling cylinder. A plurality of rollers are spaced around the drive shaft and above the troweling cylinder and intermittently contact an inside surface as the troweling cylinder is rotated and pulled upward. The rollers are either elliptically shaped or round positioned on an eccentric axis for intermittent contact against an inside surface of the concrete pipe. The rollers compact the concrete mixture to form the outer surface and the troweling cylinder follows the compaction by smoothing the surface. The troweling cylinder comprises a plurality of removable sections. Each section is composed of a plurality of removable and replaceable tile segments. When a tile segment breaks, the section containing the broken tile segment can be removed so that the broken tile segment can be replaced.
    • 挤出机头组件包括连接到抹泥滚筒的驱动轴。 多个辊子围绕驱动轴并且在抹布滚筒上方间隔开,并随着抹泥滚筒向上旋转并间断地接触内表面。 辊子是椭圆形或圆形定位在偏心轴上,以间歇地接触混凝土管的内表面。 辊压缩混凝土混合物以形成外表面,并且通过使表面平滑来夯实滚筒跟随压实。 抹漆缸包括多个可移除部分。 每个部分由多个可移动和可更换的瓦片段组成。 当瓦片段断裂时,可以移除包含破碎的瓦片段的部分,以便可以更换破碎的瓦片段。
    • 9. 发明申请
    • METHOD AND PLANT FOR PRODUCING A CONCRETE BODY
    • 用于生产混凝土体的方法和设备
    • US20120126446A1
    • 2012-05-24
    • US13319212
    • 2010-04-23
    • Maik RowerBenno BohmBurkhard Marczok
    • Maik RowerBenno BohmBurkhard Marczok
    • B29C47/08B29C47/00B29C47/12
    • B28B11/16B28B3/20B28B11/0845B28B11/0863
    • The invention relates to a method for producing a concrete body having a planar upper side, wherein a high surface quality is obtained. In the method, a concrete body is extruded from unset concrete and is provided with a groove profile at the upper side thereof by means of a profiling unit. By means of the profiling unit and depending on the comb-shaped profile thereof, the sand particles are separated according to size, wherein large sand particles are displaced from the surface area of the concrete body toward the inside, this being toward the interior of the concrete body. Only fine sand particles can pass the profile, whereby raised areas of the groove profile are formed, which are made of extremely fine-grained unset concrete. Subsequently, the upper side of the concrete body is leveled by means of a leveling unit, wherein the raised areas of the groove profile are crushed and the fine-grained unset concrete of the raised areas of the groove profile is distributed to form a cover layer.
    • 本发明涉及一种具有平面上侧的混凝土体的制造方法,其中获得了高的表面质量。 在该方法中,混凝土体从未混凝土中挤出,并且通过成形单元在其上侧设置有凹槽轮廓。 通过成形单元,根据其梳形轮廓,砂粒根据尺寸分离,其中大的砂粒从混凝土体的表面区域向内移动,这是朝向内部 混凝土体。 只有细砂粒才能通过型材,从而形成槽形轮廓的凸起区域,这些区域由极细粒度的未混凝土制成。 随后,通过平整单元对混凝土体的上侧进行平整,其中凹槽轮廓的凸起部分被压碎,并且分布凹槽轮廓的凸起区域的细粒度未混凝土以形成覆盖层 。