序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
101 Power transmission belt EP85300304.4 1985-01-17 EP0188854B1 1989-04-05 Takano, Hiroshi; Takagi, Shinichi; Wada, Kiyokazu; Konishi, Sadaichi; Kanaoka, Tomizou
102 REINFORCED BELT HAVING REDUCED ELECTRICAL RESISTIVITY AND METHOD FOR PRODUCING SAME PCT/US2009050692 2009-07-15 WO2010009230A3 2010-04-22 BIGLER JEREMY M
A link belt for use as a conveyor belt or power transmission belt is provided. The belt is formed of a plurality of links forming a series in successive overlapping relation. The upper surface of each belt link includes an electrically conductive layer. Additionally, the lower surface of each belt link may have an electrically conductive layer. The conductive layer or layers provide an electrical path along the belt to impede the build-up of static electricity as the belt is run during use.
103 液体吐出装置、及び、液体吐出装置の駆動方法 JP2014052212 2014-03-14 JP6349806B2 2018-07-04 大▲塚▼ 修司; 野村 勲; 臼田 秀範; 松山 徹
104 ベルト式無段変速機の制御装置 JP2015507951 2013-11-28 JP6113269B2 2017-04-12 青木 大輔; 小林 隆浩; 高橋 誠一郎; 鈴木 佑太
105 ベルト式無段変速機の制御装置 JP2015507951 2013-11-28 JPWO2014155832A1 2017-02-16 青木 大輔; 大輔 青木; 隆浩 小林; 高橋 誠一郎; 誠一郎 高橋; 佑太 鈴木
エンジン1と、ベルト式無段変速機構4と、前進クラッチ31と後退ブレーキ32を有する前後進切替機構3と、プーリ油圧と、前進クラッチ31と後退ブレーキ32の締結要素圧を制御する油圧制御回路71と、を備えるベルト式無段変速機CVTの制御装置である。エンジン1が作動中であって、且つ、Nレンジの選択中、入トルクにより演算されるアイドル時最低圧(=アイドル時MIN圧)よりも高圧のアイドル時クランプ圧を得るプーリ油圧指示を油圧制御回路71に出力するセレクト制御手段、を備える。引き摺りトルクの入力があってもベルトに生じるエレメント隙間の位置を保持できる。
106 画像形成装置 JP2014222150 2014-10-31 JP2016090679A 2016-05-23 瀧藤 児太郎; 中野 宏
【課題】ベルトの端面が傷むのを抑制した画像形成装置を提供することを目的とする。
【解決手段】カラープリンタは、複数のローラの間に架け渡された搬送ベルト73と、従動ローラ72の左右方向の外側に設けられ、搬送ベルト73の左右方向の端面73Aに当接することで、搬送ベルト73の左右方向の移動を規制する規制部76Aと、を備える。搬送ベルト73は、規制部76Aに当接する端面73Aを含む左右方向の端部の第1外周面73Bが、左右方向の中央部の第2外周面73Cよりも、従動ローラ72の径方向外側に位置し、第1外周面73Bは、第2外周面73Cと平行である構成となっている。
【選択図】図3
107 Transmission JP2001303832 2001-09-28 JP2002181084A 2002-06-26 MAN LASZLO; DAIKELER RENE
PROBLEM TO BE SOLVED: To provide a power train provided with at least a one-way clutch manufacturable inexpensively and easily and/or for reducing generation of noise caused by rotational vibration. SOLUTION: A speed gear stage is changed by at least a band one-way clutch. The band one-way clutch is made of a band having a friction surface coupled rigidly with a first component. The friction surface can be frictionally engaged to a corresponding surface provided in a second component rotatable relatively for the first component.
108 JPH0342219B2 - JP15898382 1982-09-14 JPH0342219B2 1991-06-26
109 Automatic tension regulating mechanism for cable type window regulator JP935384 1984-01-20 JPS60155009A 1985-08-14 KOBAYASHI TETSUO
PURPOSE:To take up a slack in a cable, by constituting an automatic tension regulating mechanism for a cable type window regulator with a drum, first ratchet teeth, second ratchet teeth, a ratchet plate, a coil spiral and a resilient member. CONSTITUTION:A shaft 3, a drum 4 and a ratchet plate 5 are rotatably disposed in housings 1, 2, the drum 4 being provided with first ratchet teeth 7 and a first locking part 10, and the ratchet plate 5 being provided with second ratchet teeth 12 and a second locking part 14. Further, a spiral spring and a coil spring 25 spacially move both ratchet teeth together to take up a slack in a cable, so that a suitable tension is recovered in the cable. With this arrangement, a balance spring having a large resilient force may be employed to make the lever ratio large.
110 Power transmission belt JP19320583 1983-10-15 JPS6084439A 1985-05-13 WATASE JIROU
PURPOSE:To reduce compression and frictional force by forming projections on the belt body while corresponding recesses in the tooth section then engaging said recess with said projection to produce pressing force in the driving direction at the securing section of belt body and tooth section. CONSTITUTION:Projections 26 are formed integrally and laterally on the belt body 25 with predetermined interval while recesses are formed correspondingly at the tooth section 27 to engage them 28, 26. The tooth section 27 and the body 25 are secured by applying a supporter 29 at the opposite side of tooth section 27 then inserting collars between said support 29, belt body 25 and tooth section 27 then tightening by bolt and nut through a washer, thereby upon transmission of driving force from tooth section 27 to the belt body 25, pressing force is applied from the recess of tooth section 27 to the belt body 25 to reduce the frictional force, compression force, shearing force, etc.
111 JPS5741404B2 - JP8692873 1973-08-03 JPS5741404B2 1982-09-02
112 JPS5550421Y2 - JP1907376 1976-02-20 JPS5550421Y2 1980-11-25
113 JPS5545784B2 - JP9658276 1976-08-12 JPS5545784B2 1980-11-19
114 Endless transmission belt JP9658276 1976-08-12 JPS5231260A 1977-03-09 JIYOSEFU PIITAA MIRANTEI JIYUN; KAARU REI UTSUDORANDO
115 Mutantoratsukukumitatetai JP11047675 1975-09-11 JPS5158225A 1976-05-21 JOOJI JII RASANSUKU
116 JPS4980785A - JP8692873 1973-08-03 JPS4980785A 1974-08-03
117 JPS4857043A - JP11106872 1972-11-06 JPS4857043A 1973-08-10
118 DEVICE FOR SHAPING GOODS THAT HAVE BEEN PRODUCED FROM A STRAND OF MATERIAL PCT/EP2008050842 2008-01-25 WO2008110400A3 2008-10-30 HORNSCHUCH STEPHAN; FUCHS JOACHIM
The invention relates to a device for shaping goods (4), especially candy-type sweets, that have been produced from a strand of material (4). Said device comprises an inner separation ring (2) having a plurality of mold halves (2b) and a plurality of separation ribs (2a), and an outer separation ring (3) having a plurality of mold halves (3a) and a plurality of separation ribs (31a), the separation ribs (2a, 31a), during rotation of the separation rings (2, 3), approaching each other and finally contacting each other to cut off chunks of material from the strand of material (4). The device also comprises pairs of embossing dies having respective first embossing dies (9) and respective second embossing dies (10), the first embossing die (9) being arranged on a first side of the separation rings (2, 3) and the second embossing die (10) being arranged on a second side opposite the first side of the separation rings (2, 3), a cam control device (11, 13) to determine a position of the embossing dies (9, 10) in the axial direction relative to the separation rings (2, 3). The outer separation ring (3) is flexible and is in contact with the inner separation ring (2) during an embossing phase of the goods (5) to emboss the goods between the inner separation ring (2) and the outer separation ring (3) by means of the embossing dies (9, 10).
119 DRIVE UNIT FOR TRANSPORT DEVICES, FOR EXAMPLE WORK PLATFORMS, LIFTS AND SIMILAR EQUIPMENT USED TO TRANSPORT PEOPLE AND/OR MATERIAL PCT/DE9601770 1996-09-18 WO9711290A3 1997-05-22 LINGEN PAUL
A drive unit for transport devices, for example work platforms, lifts and similar equipment which are used to transport people and/or material and which, together with the drive unit, can travel in either direction of movement along a track having a transmission profile, is characterized in that a housing (1, 2, 24) or a carrier is provided to hold the drive unit (39, 40, 41, 42) and connect it to a transport device, the housing or carrier being driven along the track (7, 18, 26, 38, 46, 47, 52, 52) in either direction of movement; that the power from the drive (39, 40, 41, 42) is transmitted directly into the transmission profile of the track (7, 18, 26, 38, 46, 47, 52, 53) through one or more segments (5, 16, 27, 33), and that the segments (5, 16, 17, 33) circulate in either direction around at least one drive wheel (10, 28, 35).
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