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    • 1. 发明授权
    • Method and apparatus for rotary-cutting a timber in a veneer lathe
    • 用于在单板车床中旋转切割木材的方法和装置
    • US5398741A
    • 1995-03-21
    • US124288
    • 1993-09-20
    • Mitsumasa NaritaIsao KondoKenji BannoEizo ShibataShinji KamiyaOsamu Naito
    • Mitsumasa NaritaIsao KondoKenji BannoEizo ShibataShinji KamiyaOsamu Naito
    • B27B29/00B27L5/02B27B1/00
    • B27B29/00B27L5/02Y10T82/2502Y10T82/2524
    • A method and apparatus for rotary-cutting a timber to peel off a veneer by a cutting knife from the outer periphery of a timber while rotating the timber around its longitudinal axis. The timber is gripped at its two end faces by means of chucking pawls which are driven in rotation. The chucking pawls comprise a plurality of chucks which are different in radial position. The chucks grip the timber at the end faces thereof adjacent to the outer peripheral surface of the timber, and as the timber is cut by the knife and reduced in diameter so that the knife comes close to a presently outermost chuck, the outermost chuck is retracted axially away from the end face of the timber, and the next outermost chuck continues to grip the timber adjacent to the presently outer peripheral surface of the timber. For this reason, the gripping force by the chuck pawls, resisting the cutting force moment, can be made small, and the timber gripping is made reliable.
    • 一种用于在将木材围绕其纵向轴线旋转的同时旋转切割木材以通过切割刀从木材的外周剥离单板的方法和装置。 木材通过夹紧爪被夹在其两个端面上,这些爪被旋转驱动。 夹紧棘爪包括径向位置不同的多个卡盘。 卡盘在木材的外周表面的端面处夹紧木材,并且当木材被刀切割并且直径减小使得刀接近目前最外面的卡盘时,最外面的卡盘被缩回 轴向远离木材的端面,并且下一个最外面的卡盘继续抓住与木材的当前外周表面相邻的木材。 为此,可以使卡盘爪的夹持力抵抗切割力矩小,使木材夹紧可靠。
    • 7. 发明授权
    • Rectifying device
    • 整流装置
    • US5680884A
    • 1997-10-28
    • US639999
    • 1996-04-30
    • Shigeyuki NishijimaMasaaki TaniguchiAtsushi MoriiOsamu Naito
    • Shigeyuki NishijimaMasaaki TaniguchiAtsushi MoriiOsamu Naito
    • F15D1/02B01D53/34B01F5/06B01J19/24B01J19/32
    • B01J19/32B01F5/061B01F5/0614B01J19/24B01J2219/00072B01J2219/32286B01J2219/32293B01J2219/32296B01J2219/326
    • A high-performance rectifying device promotes the diffusion of energy, temperature and concentration in a fluid stream with a small pressure loss. The device is a lattice type rectifying device provided within a fluid flow passageway for equalizing the flow velocity distribution of the same fluid. Lattice elements each consist of two triangular plates disposed so as to form two opposed surfaces of a pyramid having its apex on the downstream side of the fluid flow and two other triangular plates forming two opposed surfaces of another pyramid having its apex jointed with the first-mentioned apex and having its bottom surface positioned on the downstream side of the fluid flow. The latter two opposed surfaces have their orientations deviated by 90 degrees from the two opposed surfaces on the upstream side. The lattice elements are arrayed in juxtaposition in directions perpendicular to the fluid flow with the orientation of adjacent lattice elements deviated by 90 degrees from each other and are connected in such a manner that the bottom surfaces of the above-mentioned pyramids may form a lattice. Furthermore the ratio of the length, in a direction parallel to the flow, of the lattice element to the breadth, in the direction perpendicular to the flow, of the lattice element should be kept in a range of 1.5-2.0. The lattice element may also be formed of a rectangular plate twisted by 90 degrees in the direction along the direction of the fluid flow.
    • 高性能整流装置促进能量,温度和浓度在流体流中的扩散,压力损失小。 该装置是设置在流体流动通道内用于均衡相同流体的流速分布的格子式整流装置。 晶格元件由两个三角形板组成,两个三角形板被设置成在流体流动的下游侧形成具有顶点的金字塔的两个相对表面,另外两个三角形板形成另一个金字塔的相对表面,其另一个金字塔的顶点与第一 - 并且其底表面位于流体流的下游侧。 后两个相对的表面具有从上游侧的两个相对表面偏离90度的方向。 晶格元素在垂直于流体流动的方向上并列排列,其中相邻晶格元素的取向相互偏离90度,并以上述棱锥的底表面形成晶格的方式连接。 此外,在晶格元素的与流动方向垂直的方向上的平行于流动的方向上的晶格长度与宽度的比例应保持在1.5-2.0的范围内。 格子元件也可以由沿流体流动方向的方向扭转90度的矩形板形成。