序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
41 Weighing device JP2005347821 2005-12-01 JP2007155386A 2007-06-21 NAKAGAWA YUKIO; HATTORI HIROSHI; HAYAKAWA TERUO
PROBLEM TO BE SOLVED: To store a plurality of article lumps (article group) in the crowded state into one lump; to prevent scattering and expanding at the dropping time, thereby preventing failure of a sealing biting or the like in a filling device on the lower side; and to heighten discharge speed of articles by shortening the dropping length of the article group or by reducing a contact resistance with a side wall or the like during dropping or the like. SOLUTION: This device has a characteristic wherein the shape and the opening of gates 31, 32 can be changed so that a lower opening 3c of a hopper 3 is set within a reception opening 41 of the filling device 4 in a plan view. COPYRIGHT: (C)2007,JPO&INPIT
42 Falling object conveying device JP16653198 1998-06-15 JPH1111618A 1999-01-19 SANCHIS HERVE; BADARD GEORGES
PROBLEM TO BE SOLVED: To reduce the change for objects to collide each other or for the objects to collide with the wall, or the like of a container, damp the collision, prevent the objects from being damaged and distribute the objects uniformly in the container, in a device in which a number of objects in bulk state are continuously lowered in a container. SOLUTION: Pellets 6 are retarded by diagonal blades 13 which are positioned a gap 16 apart in front of an opposing wall 14, and each of which is covered with a braking layer, to fall down into a vertical hole 10. The opposing wall 14 has elasticity to bound the pellets towards the lower blades. the outlet passage of the round vertical hole is covered with the braking layer to absorb free fall energy of the pellets at the outlet of the device. The device can be applied for continuous conveyance of brittle objects such as pellets in bulk state.
43 JPH01154196U - JP5110188 1988-04-15 JPH01154196U 1989-10-24
44 JPH0122168B2 - JP22738384 1984-10-29 JPH0122168B2 1989-04-25 NISHIMURA HIROHARU
45 Shifter for egg, etc. JP20958383 1983-11-07 JPS60110618A 1985-06-17 TOMOSUE HIROSHI
46 Method of tying wire rope JP14544083 1983-08-09 JPS6037438A 1985-02-26 FUKAYA KOUICHI; HIGASHINAKA KOUICHI
PURPOSE:To simplify the positional adjustment of a wire rope by adjusting the set position in the intermediate position of the wire rope. CONSTITUTION:In an expansible chute 1', a chute 3 is lifted and lowered by the rotation of drums 7 when a distance between surfaces A and is varied. And a bracket 4 of the chute 3 contacts a bracket 4' of a chute 2 above said bracket 4 to lift also the chute 2 and similarly sequentially lift the upper chutes so that the subsequent chute fits onto the previous one to provide a contracted chute. The upper end of a wire 5 is fixed to a predetermined position and several tying tools are provided in the middle portions so that each tension is applied to these tying tools and the adjustment becomes possible even if the wire 5 is elongated.
47 Transporting method of sintered material JP6806782 1982-04-24 JPS58188235A 1983-11-02 ASOU TSUNEMASA; YAMAZAKI MITSUHIRO
PURPOSE:To suppress a dust generating phenomenon, by feeding to insert quick lime to a groove formed to a collected material on a conveyer and enveloping the quick lime in the material with a scraping device when the sintered material used for a blast furnace is transported by a belt conveyer. CONSTITUTION:A prescribed amount of material of iron ore, limestone, silica rock, returned fine, coke, quick lime, etc. is successively fed from a storage tank 1. A feed from a storage tank 5 is finished, before a feed of quick lime in a storage tank 6, a recessed part (groove) is continuously formed to a collected material layer on a collective belt conveyer 10 by a scraping device A. The collected material layer forming the recessed part reaches the bottom of the tank 6, then the quick lime is fed and inserted to the recessed part. If a quick lime insertion part on the belt conveyer 10 reaches a setting location of a scraping device B, the material in the tanks 1-5 on the conveyer 10 is raked while the quick lime is coated and enveloped in the material. In this way, the quick lime (d) under a condition enveloped in the other material layers (a), (b), (c) is supplied to a drum mixer 11, and floating of the quick lime can be suppressed.
48 Method of loading article such as postal package in vessel and its device JP16438978 1978-12-29 JPS54132975A 1979-10-16 PEDERU RORENTSUEN; YAKOBU AUGUSUTO NIIRUSEN; ORE PURIIDOTSU
49 チップ部品の落下衝撃緩和装置及びワイヤー治具 JP2015554700 2014-12-03 JP6260626B2 2018-01-17 秋本 茂
50 The combination of both ends tube adapted to transport received the device and its method, as well as goods to transport goods JP2010501166 2008-03-25 JP5185363B2 2013-04-17 ブライアン、ヴィンセント・イー・ジュニア; カンズラー、アレックス・イー; ペナランダ、ジョウゼフ・エイ; クレヴェリンガ、ジェフリー・エイ; アラード、ランディー; ベイカー、ダニエル; ブライアン、ヴィンセント・イー・ザ・サード
51 Loading method using the device, and the device is loaded with nuclear fuel pellets in the sintering boat JP2008536057 2006-10-20 JP5166271B2 2013-03-21 ジャン−リュク・パンドロ; エルヴェ・サンシ
52 Conveyance device for granular material JP2011123666 2011-06-01 JP2012250793A 2012-12-20 TAKASUGI HAJIME; IWATA MORIO
PROBLEM TO BE SOLVED: To provide a device capable of properly conveying hydrogenated petroleum resin pellets without breaking them.SOLUTION: A plurality of plate-like buffer plates 64 are protrusively provided in an inclined state that a planar direction crosses a direction of a slope of a sloped surface 63 on the sloped surface 63 of a chute of a conveyance section for conveying the hydrogenated petroleum resin pellets. The hydrogenated petroleum resin pellets flowing on the sloped surface 63 are brought into contact with the plate-like buffer plates 64 to change a flow direction, and a flow velocity of the hydrogenated petroleum resin pellets is decreased. An impact to which the flowing hydrogenated petroleum resin pellets is subjected is reduced by the decrease of the flow velocity so that the hydrogenated petroleum resin pellets can be restrained from being broken by the impact during the conveyance of them.
53 Metering device JP2005347821 2005-12-01 JP4781801B2 2011-09-28 幸夫 中川; 照生 早川; 宏志 服部
54 Transport system of the fruit and the same object JP2010501166 2008-03-25 JP2010522682A 2010-07-08 アラード、ランディー; カンズラー、アレックス・イー; クレヴェリンガ、ジェフリー・エイ; ブライアン、ヴィンセント・イー・ザ・サード; ブライアン、ヴィンセント・イー・ジュニア; ベイカー、ダニエル; ペナランダ、ジョウゼフ・エイ
物品を輸送する装置が開示される。 本発明の図示及び記載されている実施形態では、物品はりんごのような果実であり、果樹上の摘み取り場所から回収容器又は他の現場へ輸送することができる。 この装置は、物品を受け取って輸送するようになっている管部材と、管部材内の離間した場所にある変形可能複数のバッフルとを含む。 各バッフルが開口を画定し、開口は、物品が開口を通って移動して管内を進むように、物品がバッフル及び開口に係合してこれらを変形させることを可能にする。 物品は、物品の前後で生じる圧差によって管部材を通して押し続けられる。 本発明の記載及び図示されている実施形態では、この圧力差は空気圧差である。
55 Distributed chute conveyor for the container to accommodate moving the fragile product JP2003082176 2003-03-25 JP4283016B2 2009-06-24 ウィリー・ロエスト
56 Transport methods and particulate material for the transfer device of the particulate material JP2008521359 2006-07-13 JP2009501117A 2009-01-15 クラウス・シューマッハー; マイク・クリフ; ライナー・クルンプ
第1の特徴として、本発明は垂直距離を克服するために、コンテナからシュート(2)を下って後続の加工段階へ粒子材料を移送する方法に関する。 さらに、本方法はシュート(2)内にヘッド(11)を備え、ヘッドがシュートの軸方向に可動し、ヘッド(11)をシュート(2)の上部へ動かして前記粒子材料をヘッド(2)の頂部上に充填し、ヘッド(11)をシュート(2)の下部へ下げて、ヘッド(11)を通って後続の加工段階へ粒子材料を送る通路(26)を開く段階を有する。 本発明は前記方法を実行する移送装置にも関する。
57 Apparatus and method of use thereof to load the solid particles in a container JP2007525321 2005-08-05 JP2008509002A 2008-03-27 ティエリー、パテュロー; ニコラ、ドロマール; ベルナール、コッタール
本発明は、固体粒子を容器、特に化学反応器、の中に導入するための、好ましくは可撓性でなおかつ円筒形の、パイプを備えてなり、その中を通って該粒子が上から下に流れる装置であって、該パイプの内側に配置された、中央シャフト(2)に巻かれた少なくとも一個のらせん状斜面(2)をさらに備え、該斜面が、該斜面(2)の外側縁部(4)と該パイプ(1)との間の間隔が、導入される固体粒子のサイズより小さくなるような幅を有することを特徴とする装置に関する。 本発明の装置を使用する方法も開示する。
【選択図】図1
58 A method and apparatus for filling a catalyst JP2006513209 2004-04-21 JP2006527070A 2006-11-30 ステファン ブレンノム,
粒子の落下を和らげ、かつチューブの一様な充填を実現する、固体粒子を垂直なチューブに充填する方法および装置を開示する。 この方法では、装填ツールに沿って粒子を下向きにチューブ内に位相する。 装填ツールは、中心部材と、特定の場合に実際の粒子の型およびチューブ直径に適応させることができる複数のダンパー部材とを備える。 ダンパー部材は特定の軸方向位置においてチューブの断面積の大部分を占めないので、剛性でも可撓性でもよい。 使用時においては、中心部材は、充填動作中に、チューブが満ちるにつれ同時に徐々に持ち上げられている間に、急激に引くことができ、または連続的に引き上げることができる。 ダンパー部材は、触媒の落下速度を減少させ、真っ直ぐ下向きの経路での落下から粒子を偏向させる。 これは、充填中に粒子のブリッジ形成および破損が起きるのを回避する。
59 Device for transferring bar from bar feeder bearing surface into guide channel JP25293798 1998-09-07 JPH11180520A 1999-07-06 DREI ANDREA; NENNI ENRICO
PROBLEM TO BE SOLVED: To provide a device for transferring a bar from a bar feeder bearing surface to a guide channel. SOLUTION: A device for feeding a bar B from an inclined bearing surface 1 to a guide channel 4 of a bar feeder comprises a plurality of elements 7 installed pivotally on the lower side of the bearing surface 1. Each element 7 comprises a lever 11 which abuts on the bar B to accompany the bar (B) and a bar bearing lever 19. The lever 11 is operated so that it oscillates between a position where it abuts on the bar B arrived from the bearing surface 1 and a position where the bar B is disposed in the guide channel 4. The bar bearing lever 19 is combined operably with the abutment lever 11 so as to form a groove hole for supporting the bar B arrived from the bearing surface 1 together with the abutment lever. Also the pivotally supporting lever 19 is oscillated beyond the abutment lever 11 while the bar B is rotated from a bar receiving position by the abutment lever 11 to a position where the bar B is dropped into the channel 4 of a guide 2. COPYRIGHT: (C)1999,JPO
60 Tablet moving device JP16549798 1998-06-12 JPH1111619A 1999-01-19 UNTCH GUENTER
PROBLEM TO BE SOLVED: To enable tablets of different size and shape to be safely moved without causing damage to the tablets. SOLUTION: The device is composed of a vertically arranged tubular mechanism 11 where a tablet-inlet 12 can continuously supply tablets, and a tablet- outlet 16 which is provided at the lower end part capable of being closed, is arranged with a small space above a falling position from which the tables which are subjected to the action of gravity to be delivered from the tubular mechanism, are taken out. In this case, a space between the tablet-inlet 12 and the tablet-outlet 16 can be adjusted so that a space between the tablet-inlet 12 and the upper most tablet on the one hand, and a space between the tablet- outlet 16 and the tablet falling position on the other hand, does not exceed at least on adjustable maximum value.
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