序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
61 FÖRDERVORRICHTUNG FÜR HETEROGENE, EMPFINDLICHE UND NICHT PUMPFÄHIGE LEBENSMITTEL MIT GERINGEM FLÜSSIGKEITSANTEIL EP12732651.0 2012-07-04 EP2729392B1 2015-10-07 KERSCHBAUMER, Eric
62 Förderschnecke für ein Materialfördersystem einer Baumaschine EP13000906.1 2013-02-22 EP2769939A1 2014-08-27 Braun, Arthur

Die Erfindung bezieht sich auf eine Förderschnecke (5) für ein Materialfördersystem (4) einer Baumaschine (1). Die Förderschnecke (5) umfasst einen Förderabschnitt (6), der zur Beförderung von Schüttgut konfiguriert ist, und einen Antriebsabschnitt (7), der dazu eingerichtet ist, ein Antriebsmoment oder eine Antriebskraft aufzunehmen und auf den Förderabschnitt (6) zu übertragen. Die Erfindung zeichnet sich dadurch aus, dass der Förderabschnitt (6) und der Antriebsabschnitt (7) durch Reibschweißen miteinander verbunden sind.

63 Ausgleichskupplung EP03028336.0 2003-12-10 EP1431603A1 2004-06-23 Wissing, Heinrich; Wissing, Johannes

Bei einer Ausgleichskupplung für eine drehbare, zweigeteilte Welle, mit zwei Kupplungsteilen, von denen jeder mit jeweils einem der beiden Wellenabschnitte verbunden ist, und welche zueinander abwinkelbar sind, und welche Drehkräfte übertragend miteinander verbunden sind, schlägt die Erfindung vor, dass ein Kupplungsteil (7) eine kugelsegmentartig konvexe oder hohikugelartig konkave Oberfläche aufweist, und das andere Kupplungsteil (6) eine korrespondierend geformte Oberfläche aufweist, welche dem ersten Kupplungsteil zumindest auf einer Ringlinie anliegt.

64 HIGH-GRADIENT HIGH-PUMP-HEAD SCREW CONVEYOR DEVICE EP01936954.5 2001-06-11 EP1332989A1 2003-08-06 YOSHIKAWA, Tadao, c/o HITACHI ZOSEN CORP.

A screw conveyor apparatus including a ribbon screw (4) provided in a cylindrical casing (1). The ribbon screw (4) has rotation rings (12) attached to an intermediate portion thereof. Outer peripheral supporting sections (11) are provided for rotatably supporting the corresponding rotation rings (12) on the casing (1). This configuration prevents the ribbon screw (4) from being bent or expanded under a load of conveyed materials, thereby enabling the materials to be conveyed along a steep slope up to a high portion.

65 CONTINUOUS HELICAL GEAR PLANT FOR CONVEYING AND STORING SUSPENDED ITEMS AND RELATIVE SUPPORTS EP95907815.5 1995-01-31 EP0746517B1 1998-05-06 CINI, Claudio; SILIPO, Margherita
The continuous helical gear plant includes stretches of coaxial synchronously rotating helical gear constituting conveyor lines (12, 15) and stand-by and storage rings (1) connected to them by means of slip points (17): the said rings are connected to the said conveying lines by means of a descending spiral node (11) consisting of smooth tubes (13, 14); there are bar code readers (20) for the bar codes attached to the hangers (9). The rings (1) consist of an ascending stretch of rotating helical gear (3), a junction (5), positioned at an intermediate level of the said node (11) up to the level of horizontal stretches (2), a stretch of descending tube (4) brings the hangers back down to the level of the said junction. Descent control devices are also provided and various arrangements of the component parts are possible. Finally, there are also supports, motorised or not, for the continuous helical gear, rigid or flexible, pin roller bearings and a cradle for the flexible helical gear with low friction rollers.
66 Device for feeding and discharging of bottles into and from working carousels EP94118653.8 1994-11-28 EP0656305A3 1996-03-06 Barbieri, Claudio; Trebbi, Claudio

The auxiliary screw (205) is actuated by means of a motor (47) with electronic control, equipped with speed and phase transducers (147) connected to a logic unit (50-51-52-53) which by means of suitable transducers (146) notes the speed and the phase of any point of the kinematic chain which transmits the movement to the working carousel and to the main screw (105). In order cyclically to create a space in the main screw, the logic unit makes provision to slow down and then reaccelerate the motor of the auxiliary screw in such a manner that this screw is dephased by a complete revolution every two revolutions of the main screw and then resumes, at the end of the two revolutions, the speed and the phase of the main screw. Also described is the use of such a double-screw device (500), with synchro-tie, for controlling the flow of bottles leaving a working carousel, to bring about the rejection of any bottles which are not correctly filled or with other defects.

67 Dispositif de projection de produit de revêtement pulvérulent EP95410052.5 1995-05-31 EP0685268A1 1995-12-06 Buquet, Thierry; Santarelli, Paul; Ghio, Eric

Dispositif d'alimentation d'une installation de projection de produit pulvérulent, tel que par exemple un produit de revêtement en poudre, comprenant une vis sans fin (5) actionnée par un moteur (6), caractérisé en ce qu'il comprend des moyens (5a, 6a, 7a, 24) de limitation du couple transmis par ledit moteur à ladite vis sans fin. La vis sans fin (5) et/ou le fourreau (7) entourant partiellement la vis sans fin ont une surface réalisée dans un matériau ayant un faible coefficient de frottement avec le produit pulvérulent, ce qui évite d'échauffer la poudre par frottement. Le couple moteur est mesuré, et cette mesure permet de détecter les anomalies de fonctionnement et/ou de piloter le moteur d'entraînement (6).

68 Continuous helical gear for conveying and storing suspended objects EP94116019.4 1994-10-11 EP0647577A3 1995-10-18 Cini, Claudio

The conveyor consists of a double-start helical gear (1) made to rotate by a transmission at its motorized support: the hook (3) is supported on the base (5) and pushed along by the flanks (4) of the thread; a toothed section (11) couples with a cog belt (9) over whose reverse side (10) the hook slides in crossing the said toothed section (11). The continuous helical gear is supported by cradles (6) that have an encircling angle greater than 180°. A flexible helical gear is also envisaged, enabling it to follow curved paths, with analogously sized external thread but having an internal helical groove (35), protruding through the base (5) of the thread. The conveyor is particularly suitable for conveying and storing suspended items.

69 Continuous helical gear for conveying and storing suspended objects EP94116019.4 1994-10-11 EP0647577A2 1995-04-12 Cini, Claudio

The conveyor consists of a double-start helical gear (1) made to rotate by a transmission at its motorized support: the hook (3) is supported on the base (5) and pushed along by the flanks (4) of the thread; a toothed section (11) couples with a cog belt (9) over whose reverse side (10) the hook slides in crossing the said toothed section (11). The continuous helical gear is supported by cradles (6) that have an encircling angle greater than 180°. A flexible helical gear is also envisaged, enabling it to follow curved paths, with analogously sized external thread but having an internal helical groove (35), protruding through the base (5) of the thread. The conveyor is particularly suitable for conveying and storing suspended items.

70 駆動装置 JP2013209502 2013-10-04 JP2015075502A 2015-04-20 水野 雅彦
【課題】被搬送物に異物が混ざるのを防止しつつ、搬送スクリューによる被搬送物の搬送性の向上と、搬送スクリューの回転に伴う異音の発生の抑制とを両立する。
【解決手段】搬送スクリューに連結された第1ギヤー41と、第1ギヤー41に並んで設けられた第2ギヤー42と、該両ギヤー41,42に噛合して駆動を付与する第3ギヤー43と、第2ギヤー42を径方向に移動不能に支持する第2支持部材45と、第1ギヤー41を径方向の一方向に移動可能に支持する第1支持部材44と、を備える。両ギヤー41,42の歯数は異なっており、第1ギヤー41における第2ギヤー42側の面には第1カム部41bが形成され、第2ギヤー42における第1ギヤー41側の面には第2カム部42bが形成され、両カム部41b,42bは、第3ギヤー43の回転に伴って生じる両ギヤー41,42間の周方向の変位を、所定周期で第1ギヤー41の上記一方向の変位に変換する。
【選択図】図7
71 スクリュー駆動エリアへの搬送台車送込み装置 JP2011168066 2011-08-01 JP5641438B2 2014-12-17 敏之 井場
72 Workpiece delivery device JP2012227983 2012-10-15 JP2014080258A 2014-05-08 UCHINASHI YOSHIO
PROBLEM TO BE SOLVED: To provide a workpiece delivery device of a universal design concept, capable of sending off multiple plate-like workpieces one by one, although having a simple structure, and capable of adapting to each worker individually even when working efficiency varies widely from worker to worker, by facilitating setting of delivery timing of the plate-like workpieces to match the working pace of each worker.SOLUTION: A workpiece delivery device 10 includes: a rotary shaft 14 for sending off plate-like workpieces in a shaft direction; and rotation means 16 for rotating the rotary shaft. The rotary shaft comprises: a first rod 18 whose one end 18a is connected to the rotation means; and a second rod 20 whose one end 20a is rotatably fitted onto the other end 18b of the first rod, which includes a spiral part 12 on an outer peripheral surface of a shaft part 20c, and which has, at the other end 20b, a workpiece hooking part 22 having a bent tip. The second rod stops rotating with respect to the first rod, when a plate-like workpiece is hooked onto a tip 22b of the workpiece hooking part.
73 Carrying carriage sending-in device to screw driving area JP2011168066 2011-08-01 JP2013032189A 2013-02-14 IBA TOSHIYUKI
PROBLEM TO BE SOLVED: To easily send a carrying carriage into a screw driving area of driving the carrying carriage for continuously traveling.SOLUTION: A carriage sending-in screw 12 and a carriage propelling screw 4 in the screw driving area are mutually interlocked and connected via a single position electromagnetic clutch 22, and constituted so that both the screws 4 and 12 rotate in the same phase in a transmission state of the electromagnetic clutch 22, front/rear two driven rollers 11a and 11b are journaled at an interval engaged with both the carriage propelling screw 4 and the carriage sending-in screw 12 by the carrying carriage 2, and a carriage sending-in means 24 is juxtaposed for sending the carrying carriage 2 inside while rotating the carriage sending-in screw 12 by the driven roller 11a until the front side driven roller 11a of the carrying carriage reaches a constant position P2 in the carriage sending-in screw 12 in a disengaged state of the electromagnetic clutch 22.
74 JPH0317725B2 - JP10574282 1982-06-18 JPH0317725B2 1991-03-08 MATSUMOTO GUNJI; FUKUOKA TOSHIRO; YAMAGATA TETSUO; TANEMURA NAOKI
PURPOSE:To prevent burying and overloading of a screw conveyer set in a settling basin or the like and safely and smoothly operate the conveyer, by swingably supporting its one end and placing the other end to a state of free end. CONSTITUTION:A screw conveyer 3 is arranged in a trough 2 in a settling basin in such a manner that a side end opposite to a pit is oscillably supported through a bearing 4 and a bracket 5 while a free end is placed vertically freely oscillable. By this constitution, if the driven screw conveyer 3 is overloaded, the free end is lifted upward by the reaction force of a load, and the load is reduced. Accordingly, the scraping load is automatically reduced, and smooth operation can be safely performed.
75 JPS647931B2 - JP13741883 1983-07-26 JPS647931B2 1989-02-10 KASHINO SHINZO; MIZUMOTO MASAYA; MINAMI RYUICHI
76 JPS6319408B2 - JP10263882 1982-06-15 JPS6319408B2 1988-04-22 YAMASHITA HIROSHI; OOYABU TOSHIO; ODA YASUO; TANAKA TAKESHI
77 Powdery granule feeder JP1493485 1985-01-28 JPS61174019A 1986-08-05 FUKUI HIROKAZU; KIMURA YUJIRO
PURPOSE:To make a device composable with one screw feeder alone, by installing one more screw additionally in parallel with the screw connected to a reduction gear at its one end, while constituting it in a way of installing a power transmission device between both these screws in a screw casing. CONSTITUTION:A first screw 20 rotates via an output shaft 18 and a coupling 19 of a reduction gear 16. Rotation of the first screw 20 is transmitted to a second screw 22 via a coupling 33, gears 30, 31 and a coupling 36 of a power transmission device 24 and both rotate in the same direction at a uniform rate. With this constitution, a driving gear for the second screw becomes useless excepting the power transmission device 24 so that it constitution is simplified and thus interchangebility between one screw and double screw systems is securable.
78 Oscillating screw conveyer JP10574282 1982-06-18 JPS58224907A 1983-12-27 MATSUMOTO GUNJI; FUKUOKA TOSHIROU; YAMAGATA TETSUO; TANEMURA NAOKI
PURPOSE:To prevent burying and overloading of a screw conveyer set in a settling basin or the like and safely and smoothly operate the conveyer, by swingably supporting its one end and placing the other end to a state of free end. CONSTITUTION:A screw conveyer 3 is arranged in a trough 2 in a settling basin in such a manner that a side end opposite to a pit is oscillably supported through a bearing 4 and a bracket 5 while a free end is placed vertically freely oscillable. By this constitution, if the driven screw conveyer 3 is overloaded, the free end is lifted upward by the reaction force of a load, and the load is reduced. Accordingly, the scraping load is automatically reduced, and smooth operation can be safely performed.
79 Storage equipment for powdery or granular material easy to lump JP19911181 1981-12-09 JPS58100007A 1983-06-14 HAYASHI TAKESHI
PURPOSE:To make a motor compact and smooth and ensure the starting of a storage equipment for crushed ice or the like, by providing a scrape-off means driver with a clutch to connect the driver to the motor when it has reached prescribed rotational frequency. CONSTITUTION:When a motor 22 is started, it is rotated backward for a time set by a backward rotation time setting timer T1. After that, a delay by a time set by a forward rotation delaying timer T2 is effected, then turning the motor 2 forward. At that time, a clutch C1 remains disengaged. The clutch has such a construction that a secured boss and a rotatable wheel can be rotated relative to each other within a prescribed range of angle because of a stop pin and a slit until the motor 22 reaches prescribed rotational frequency. When the motor 22 is accelerated to the prescribed rotational frequency, the clutch C1 is engaged to connect the motor to a shaft 14 to rotate scrape-off blades 16 through a control section 20 and a geared motor 19 so that crushed ice is discharged. According to this constitution, the motor 22 is made compact and starting action is smoothed and ensured.
80 COFFEE BEAN CONVEYANCE DEVICE US15624782 2017-06-16 US20180296037A1 2018-10-18 REX POWAY TSENG
A coffee bean conveyance device includes a conveying unit, a coffee bean holding unit and a driving mechanism. The conveying unit is a hollow member detachably assembled to the coffee bean holding unit, such that the coffee bean holding unit and the conveying unit are internally communicable with each other. The driving mechanism is eccentrically connected to the conveying unit, such that axes of the conveying unit and driving mechanism are parallelly spaced from each other. When the driving mechanism operates, coffee beans in the coffee bean holding unit are caused to stably move into the conveying unit and a constant weight or quantity of coffee beans is continuously fed to a coffee bean grinder or a coffee bean dispenser disposed below an outlet of the conveying unit. With these arrangements, the feeding of irregular weight or quantity of coffee beans to the coffee bean grinder or dispenser is avoided.
QQ群二维码
意见反馈