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公开(公告)号:US5970772A
公开(公告)日:1999-10-26
申请号:US259676
申请日:1999-03-01
申请人: Sadao Yoshizawa , Hideo Kunioku
发明人: Sadao Yoshizawa , Hideo Kunioku
CPC分类号: B21B39/165
摘要: A positioning control device having a moving body engaged with a screw shaft to be moved with the rotation of the screw shaft, and a rest bar for fixing the moving body having two long positioning retainers extending in the axial direction of the screw shaft makes it possible to securely hold a guide apparatus for rolling stock. The moving body is provided on its upper portion with a shift base for mounting the guide apparatus thereon, and on its lower portion with a shift bracket. A pair of hydraulic cylinders piercing through the shift bracket are opposed to each other across the screw shaft. A piston rod in each hydraulic cylinder is movable vertically so as to come into contact with the lower surface of the retaining portion of the rest bar. Both positioning retainers are secured on the retaining portion of the rest bar and disposed opposite to each other across the piston rods and the retaining portion of the rest bar so as to come into contact with the contact members of the shift base.
摘要翻译: 一种定位控制装置,其具有与螺杆轴接合的移动体,随着螺杆轴的旋转而移动,以及用于固定具有沿着螺杆轴的轴向延伸的两个长定位保持器的移动体的固定杆, 以牢固地保持机车车辆的引导装置。 移动体在其上部设置有用于将导向装置安装在其上的换档底座,并在其下部设置有换档支架。 穿过换档支架的一对液压缸在螺杆轴上彼此相对。 每个液压缸中的活塞杆可垂直移动,以便与静止杆的保持部分的下表面接触。 两个定位保持件固定在其余杆的保持部分上,并且横跨活塞杆和其余杆的保持部分彼此相对设置,以便与换档底座的接触构件接触。
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公开(公告)号:US06439486B1
公开(公告)日:2002-08-27
申请号:US09564867
申请日:2000-05-04
申请人: Yoshiaki Nitta , Hideo Kunioku
发明人: Yoshiaki Nitta , Hideo Kunioku
IPC分类号: B02C1816
CPC分类号: B02C2/10 , B02C1/04 , B02C1/10 , B02C18/142 , B02C18/182 , B02C18/184 , B02C18/2266 , B02C2018/147 , B02C2201/04 , Y10S241/31
摘要: In a method for disposing of waste matter such as waste tire pieces by using first and second shredding members each having shredding blades, the waste matter is introduced into a space between the shredding blades of the first and second shredding members and shredded or torn off into fine chips by operating the first and second shredding members, while partially caught by grooves formed in opposite faces of the shredding blades of the respective shredding members. By moving the first and second shredding members relative to each other in opposite directions to impart a shearing force to the waste matter in the space between the shredding blades, the waste matter is effectively torn off into pieces. When a waste tire is processed in an apparatus for practicing the method, it is successfully separated into rubber parts and wires with high efficiency.
摘要翻译: 在通过使用具有切碎刀片的第一和第二切碎构件来处理废旧轮胎废料的方法中,将废物引入到第一和第二粉碎构件的切碎刀片之间的空间中,并将其切碎或撕开 通过操作第一和第二粉碎构件,同时部分地被形成在各个切碎构件的切碎叶片的相对面中的凹槽捕获。 通过使第一和第二切碎构件相对于彼此相反的方向移动以赋予切碎刀片之间的空间中的废物的剪切力,废物被有效地撕成碎片。 当在用于实施该方法的设备中处理废轮胎时,其被成功地高效地分离成橡胶部件和电线。
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公开(公告)号:US5404740A
公开(公告)日:1995-04-11
申请号:US79114
申请日:1993-06-17
申请人: Shoji Okada , Atsumu Nakamura , Hideo Kunioku , Kenji Shibuya , Satoshi Kubota , Koichi Inamura , Haruotsu Ikeda , Takaya Suzuki , Kyouhei Murata
发明人: Shoji Okada , Atsumu Nakamura , Hideo Kunioku , Kenji Shibuya , Satoshi Kubota , Koichi Inamura , Haruotsu Ikeda , Takaya Suzuki , Kyouhei Murata
CPC分类号: B21B39/165
摘要: A high-rigid type guiding device for guiding a steel material to be rolled comprises guide rollers toughened by satisfying the condition in which rigidity (K) at contact portions with the steel material is defined by:K=Fmax/Smaxwherein, Fmax represents the maximum load exerted on the guide rollers (Fmax=m.times.FT, 1.0.ltoreq.m.ltoreq.2.0), and Smax represents the maximum allowable value within a range in which increment S of a roller gap defined between the contact portions is determined (Smax=n.times..delta.1, 0.2.ltoreq.n.ltoreq.0.8). Consequently, the efficiency of rolling and the productivity of the rolled steel products can be improved, and the yielding efficiency and quality of the products can be heightened.
摘要翻译: 用于引导待轧制的钢材的高刚性型引导装置包括通过满足通过满足与钢材接触部分的刚性(K)由K = Fmax / Smax定义的条件而增韧的导辊,其中Fmax表示 施加在导向辊上的最大载荷(Fmax = mxFT,1.0 = 2.0),Smax表示在确定接触部之间限定的辊间隙的增量S的范围内的最大允许值(Smax = nx delta 1,0.2 = n <= 0.8)。 因此,可以提高轧制效率和轧制钢产品的生产率,并且可以提高产品的产出效率和质量。
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