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    • 1. 发明授权
    • Ampul opening device
    • 安培开启装置
    • US4659024A
    • 1987-04-21
    • US789897
    • 1985-10-21
    • Archie M. FrunziGregg R. Williams
    • Archie M. FrunziGregg R. Williams
    • B26F3/00B67B7/92B02C19/14
    • B26F3/002B67B7/92Y10S241/606Y10T225/30
    • An ampul opening device is disclosed which enables one to open a glass ampul in a safe and secure manner while minimizing fragmentation of the ampul during opening. The device features a one-piece body structure comprising an ampul holding member having a cylindrical configuration closed or partially closed at one end and having the opposite end open. Integrally attached to the open end is an arm being in line with the vertical axis of the holding member. The arm is of such length as to extend slightly beyond the removable end of the ampul. The upper region of the arm possesses sufficient flexibility to enable the operator to exert a force by means of one's thumb or thumbs to cause the neck of the ampul to fracture cleanly along a narrowly defined transverse fracture path.
    • 公开了一种安瓿开启装置,其使得能够以安全和可靠的方式打开玻璃安瓿,同时最小化打开期间安瓿的碎裂。 该装置具有一体式主体结构,其包括安瓿保持构件,该安瓿保持构件具有在一端封闭或部分封闭并具有相对端开口的圆柱形构型。 整体地附接到开口端是与保持构件的垂直轴线成直角的臂。 手臂具有稍微延伸到安瓿的可移除端部的长度。 臂的上部区域具有足够的灵活性,使得操作者能够通过拇指或拇指施加力,以使安瓿的颈部沿着狭窄的横向断裂路径干净地破裂。
    • 3. 发明授权
    • Apparatus for crushing glass or ceramic material
    • 用于破碎玻璃或陶瓷材料的设备
    • US06988683B2
    • 2006-01-24
    • US10239337
    • 2001-03-20
    • Stephen Whettingsteel
    • Stephen Whettingsteel
    • B02C19/14
    • B02C19/0087Y02W30/60
    • Apparatus (2) for crushing glass or ceramic material, which apparatus (2) comprises a rotor (4), rotor blades (6) on the rotor (4), at least one stationary blade (8) which cooperates in use with the rotor blades (6) as the rotor (4) rotates, and a chamber (16) for receiving crushed glass or ceramic material (18), the apparatus (2) being such that the rotor (4) is upstream of the chamber (16), the glass or ceramic material (18) is first broken into fragments (20) on impact with the rotor (4), the fragments (20) are reduced in size and formed into cullet (22) by passing through a gap (24) between the rotor blades (6) and the stationary blade (8), and the action of the rotor blades (6) and the stationary blade (8) causes the cullet (22) to be such that it will not cut, is safe for handling, and is suitable for further use without further processing.
    • 用于破碎玻璃或陶瓷材料的装置(2),该装置(2)包括转子(4),转子(4)上的转子叶片(6),与转子配合使用的至少一个固定叶片 作为转子(4)旋转的叶片(6)和用于接收碎玻璃或陶瓷材料(18)的腔室(16),所述装置(2)使得转子(4)在腔室(16)的上游, 玻璃或陶瓷材料(18)首先在与转子(4)碰撞时破碎成碎片(20),碎片(20)尺寸减小,并通过间隙(24)形成碎玻璃(22) 在转子叶片(6)和固定叶片(8)之间,转子叶片(6)和固定叶片(8)的作用使得碎玻璃(22)不会被切割,对于 处理,适合进一步使用,无需进一步处理。
    • 6. 发明授权
    • Feeding device for a container cutting machine
    • 容器切割机的送料装置
    • US4703899A
    • 1987-11-03
    • US909897
    • 1986-09-22
    • Frank J. Lodovico
    • Frank J. Lodovico
    • B02C19/14
    • B02C19/0081
    • An improved container feeding device is for a container cutting machine of the type which can cut any one of numerous sizes of plastic bottles and metal cans. The cutting machine has a cutting section including a plurality of cutting wheels mounted for rotation in opposite directions on a pair of parallel cutting shafts. The improvement includes a pair of parallel feeding shafts each of which are above one of the cutting shafts for rotation in the same direction thereof. Each feeding shaft includes three radially extending, evenly spaced paddles fixedly mounted thereon. The feeding shafts rotate at the same speed and are rotationally aligned to cause each paddle on one feeding shaft to generally lie within a common plane with a corresponding paddle on the other feeding shaft as they pass closely by one another. Each of the paddles has a plurality of gripping teeth on the extended end thereof. Each gripping tooth has a tip which extends between the gripping teeth of the other paddle to produce a radial overlap of each paddle with its corresponding paddle when in the common plane. The extended ends of each paddle and its corresponding paddle cooperate during rotation prior to, through and after sharing the common plane to grip the container therebetween for pushing toward the cutting wheels.
    • 改进的容器进料装置用于可切割多种尺寸的塑料瓶和金属罐中的任何一种的容器切割机。 切割机具有切割部分,该切割部分包括多个切割轮,所述多个切割轮安装成在一对平行的切割轴上沿相反方向旋转。 该改进包括一对平行进给轴,每个平行进给轴位于一个切割轴之上,用于沿相同的方向旋转。 每个进料轴包括固定地安装在其上的三个径向延伸的均匀间隔的桨叶。 馈送轴以相同的速度旋转并且旋转对准,以使得一个进给轴上的每个桨叶在彼此靠近彼此通过时通常位于与另一馈送轴上的相应桨叶在共同的平面内。 每个桨叶在其延伸端具有多个夹紧齿。 每个夹紧齿具有在另一个桨叶的夹紧齿之间延伸的尖端,以在共同平面中产生每个桨叶与其对应叶片的径向重叠。 每个桨叶及其相应的桨叶的延伸端部在共用共同平面之前,之后和之后在旋转期间协作,以夹紧容器以推动切割轮。
    • 9. 发明授权
    • Volume reduction machine
    • 减容机
    • US5746378A
    • 1998-05-05
    • US494152
    • 1995-06-23
    • Charles Donald BeadleMurray Frank Green
    • Charles Donald BeadleMurray Frank Green
    • B26F1/24B30B9/32B02C19/14
    • B30B9/325B02C19/0093B26F1/24B26F2210/11
    • A volume reduction machine for crushing beverage containers has a pair of feed rolls and a pair of crusher rolls. The feed rolls in spaced relationship to a feed plate, urge containers to be crushed, while puncturing them. The feed rolls comprise a plurality of spaced feed discs and are aligned to overlap to ensure self cleaning. The crusher rolls comprise a plurality of closely-spaced discs. Spaces between discs slightly exceeding the thickness of the disc. The crusher rolls are offset such that the discs of one roll align with the spaces between discs of the other roll. The crusher rolls have an adjustable gap and are aligned with a lower edge of the feed plate. The discs forming the crusher rolls include circumferential notches of a given size and shape to deform plastic beverage containers beyond their modulus of elasticity thereby overcoming the problem of such containers springing back after crushing. An oscillating horizontal bar provides a debridging dejamming feature to the machine.
    • 用于破碎饮料容器的体积减小机具有一对进料辊和一对破碎机辊。 进料辊与进料盘间隔开,推动容器被破碎,同时刺穿它们。 进给辊包括多个间隔开的进给盘,并且对准以重叠以确保自清洁。 破碎机辊包括多个紧密间隔的盘。 光盘之间的间距稍微超过光盘的厚度。 破碎机辊被偏移,使得一个辊的盘与另一个辊的盘之间的空间对准。 破碎机辊具有可调节的间隙并且与进料板的下边缘对准。 形成破碎机辊的盘包括具有给定尺寸和形状的周向切口,以使塑料饮料容器变形超过其弹性模量,从而克服了这种容器在破碎之后弹回的问题。 一个摆动的水平杆为机器提供了一个debridging dejamming功能。
    • 10. 发明授权
    • Glass bottle pulverizing method and apparatus
    • 玻璃瓶粉碎方法和装置
    • US5620146A
    • 1997-04-15
    • US500969
    • 1995-08-07
    • Donald E. Lukas
    • Donald E. Lukas
    • B02C19/14
    • B02C19/0087Y02W30/60
    • The present invention is a method and apparatus for pulverizing empty glass bottles into small fragments of a predetermined maximum size to reduce greatly the storage and handling problems associated in the past with empty bottles. The apparatus comprises a cabinet (11) having a vertical passageway (17) through which bottles are delivered to a pulverizing station (36) where the bottles are smashed into small fragments. The pulverizing station includes a spinning metal pulverizing blade (37) surrounded and partially enclosed by a tapered metal cowl (38). The spinning blade and cowl together ensure that bottles are pulverized completely and into fragments of at most a predetermined maximum size before being deposited into a receptacle (43) that underlies the pulverizing station. Split rubber diaphragms (17, 48 and 49) and a brush filter (67) are disposed along the length of the passageway and prevent the escape of glass fragments and glass dust through the passageway and into the atmosphere.
    • PCT No.PCT / US93 / 11944 Sec。 371日期:1995年8月7日 102(e)日期1995年8月7日PCT提交1993年12月8日PCT公布。 公开号WO95 / 16520 日期:1995年6月22日本发明是一种用于将空玻璃瓶粉碎成预定最大尺寸的小碎片的方法和装置,以极大地减少过去与空瓶相关的储存和处理问题。 该装置包括具有垂直通道(17)的柜(11),瓶子通过该竖直通道(17)被输送到粉碎站(36),其中瓶子被粉碎成小碎片。 粉碎站包括由锥形金属罩(38)包围并部分地包围的纺丝金属粉碎刀片(37)。 旋转叶片和整流罩一起确保在被沉积到粉碎站底部的容器(43)之前,将瓶完全粉碎成最多达预定最大尺寸的碎片。 分隔橡胶隔膜(17,48和49)和刷式过滤器(67)沿通道的长度设置,防止玻璃碎片和玻璃尘埃通过通道逃逸到大气中。