序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
1 用于操作带有开口机的织机的方法 CN200980157982.2 2009-03-06 CN102341535A 2012-02-01 M·莱曼
发明涉及一种带有开口机的织机,开口机具有开口器件的可发动和可切断的运动,带有不依赖于织机的驱动器被操控的驱动器。在操作故障时,开口器件被这样操控(N,N+1),即用于消除操作故障的措施能够被实施。在此,仅织机(n1.1)的转速被降低,而开口机以高的工作转速(n1.2)继续操作,并且如有可能无停止地再次转变到正常的织布操作中,使得缩短了用于消除操作故障的时间并且避免了织物缺陷
2 用于纬纱的织边折入器 CN200610009434.3 2006-02-22 CN1824864A 2006-08-30 K·伯克托尔德
介绍了用于在织机中形成布边的织边折入器,它包括:把一个或多个纬线端头折入梭道的织边折入针;以及用于移动所述织边折入针的电驱动装置;同时为所述织边折入针设置了紧急(安全)操作系统和/或紧急(安全)驱动装置,以便即使出现干扰时使所述织边折入针移入安全位置
3 用于纬纱的织边折入器及具有该折入器的织机 CN200610009434.3 2006-02-22 CN1824864B 2012-01-11 K·伯克托尔德
用于纬纱的织边折入器介绍了用于在织机中形成布边的织边折入器,它包括:把一个或多个纬线端头折入梭道的织边折入针;以及用于移动所述织边折入针的电驱动装置;同时为所述织边折入针设置了紧急(安全)操作系统和/或紧急(安全)驱动装置,以便即使出现干扰时使所述织边折入针移入安全位置
4 剑杆织机的引纬装置 CN98120562.3 1998-09-30 CN1071815C 2001-09-26 新原正己; 高木信次; 安冈文雄; 岩崎充博
一种剑杆织机的引纬装置。通过抑制剑杆带从剑杆轮的外圆表面迅速地向外飞出的趋向,作用于在剑杆带中形成的给定的驱动接收孔上的剑杆头的大的内力被分散,延长剑杆带的使用寿命。第一位置调整部件和第二位置调整部件分别配备有直线制导表面,它们与非卷绕区域中的剑杆带接触。第三位置调整部件配备一个适合于与卷绕区域中的剑杆带接触的曲线的制导表面。曲线的制导表面连续和光滑地延伸到直线制导表面。
5 用于操作带有开口机的织机的方法 CN200980157982.2 2009-03-06 CN102341535B 2013-12-25 M·莱曼
发明涉及一种带有开口机的织机,开口机具有开口器件的可发动和可切断的运动,带有不依赖于织机的驱动器被操控的驱动器。在操作故障时,开口器件被这样操控(N,N+1),即用于消除操作故障的措施能够被实施。在此,仅织机(n1.1)的转速被降低,而开口机以高的工作转速(n1.2)继续操作,并且如有可能无停止地再次转变到正常的织布操作中,使得缩短了用于消除操作故障的时间并且避免了织物缺陷
6 织机的驱动装置 CN200710101213.3 2007-04-24 CN101089270B 2011-01-26 山本昭彦; 山崎守一; 石田智一; 山和史; 松本正人
发明提供一种织机驱动装置,对于停止位置有延迟倾向的织机,不对电磁制动器增加负担,而保持织机主轴的制动能,从而事前防止停止位置的延迟所引起的织物质量上的问题。其具备,将旋转力传送于各装置的主轴、由交流电动机而构成的原动机、将原动机的旋转以规定比率减速而传送于主轴的减速单元、由励磁电流的供给而使制动转矩作用于主轴的电磁制动器、向原动机供给交流电力的驱动电路、向电磁制动器供给励磁电流的制动电路。在织机停止时,通过驱动电路对原动机的旋转速度输出对应于同步低速度的频率的交流电压,从原动机发生抵抗旋转方向的制动转矩,并且,制动电路输出励磁电流而使主轴停止。
7 织机的驱动装置 CN200710101213.3 2007-04-24 CN101089270A 2007-12-19 山本昭彦; 山崎守一; 石田智一; 山和史; 松本正人
发明提供一种织机驱动装置,对于停止位置有延迟倾向的织机,不对电磁制动器增加负担,而保持织机主轴的制动能,从而事前防止停止位置的延迟所引起的织物质量上的问题。其具备,将旋转力传送于各装置的主轴、由交流电动机而构成的原动机、将原动机的旋转以规定比率减速而传送于主轴的减速单元、由励磁电流的供给而使制动转矩作用于主轴的电磁制动器、向原动机供给交流电力的驱动电路、向电磁制动器供给励磁电流的制动电路。在织机停止时,通过驱动电路对原动机的旋转速度输出对应于同步低速度的频率的交流电压,从原动机发生抵抗旋转方向的制动转矩,并且,制动电路输出励磁电流而使主轴停止。
8 剑杆织机的引纬装置 CN98120562.3 1998-09-30 CN1218852A 1999-06-09 新原正己; 高木信次; 安冈文雄; 岩崎充博
一种剑杆织机的引纬装置。通过抑制剑杆带从剑杆轮的外圆表面迅速地向外飞出的趋向,作用于在剑杆带中形成的给定的驱动接收孔上的剑杆头的大的内力被分散,延长剑杆带的使用寿命。第一位置调整部件和第二位置调整部件分别配备有直线制导表面,它们与非卷绕区域中的剑杆带接触。第三位置调整部件配备一个适合于与卷绕区域中的剑杆带接触的曲线的制导表面。曲线的制导表面连续和光滑地延伸到直线制导表面。
9 Selvage tucker for weft yarn JP2006044757 2006-02-22 JP2006233411A 2006-09-07 BERKTOLD KLAUS
PROBLEM TO BE SOLVED: To provide a selvage tucker for forming a cloth edge by a loom, usable at a rotational speed higher than that of the loom, especially at the speed of ≥1,000 insertion number per min., and making the satisfactory cloth edge even when a hard weaving thread is used. SOLUTION: The selvage tucker for forming the cloth edge by the loom includes a selvage tuck-in needle for tucking one or more weft yarn ends in a shed, and an electrically driven device for moving the selvage tuck-in needle, and further has an emergency actuating system and/or an emergency driving device for the selvage tuck-in needle, usable for moving the selvage tuck-in needle to a safe position when failures occur. COPYRIGHT: (C)2006,JPO&NCIPI
10 Leistenleger für Schussfäden EP06405034.7 2006-01-25 EP1696061A3 2008-10-08 Berktold, Klaus

Es wird ein Leistenleger zur Bildung einer Webkante in einer Webmaschine vorgestellt, welcher eine Leistenlegernadel (11) zum Einlegen eines oder mehrerer Schussfadenenden in ein Webfach umfasst sowie einen elektrischen Antrieb (14) zum Bewegen der Leistenlegernadel (11), wobei für die Leistenlegernadel (11) zusätzlich ein Notantrieb (15) vorgesehen ist, um diese in einem Störfall in eine sichere Position zu bewegen.

11 Weft inserting apparatus for rapier loom EP98118019.3 1998-09-23 EP0905296B1 2003-03-12 Shinbara, Masami; Takagi, Shinji; Yasuoka, Fumio; Iwasaki, Mitsuhiro
12 How to operate the weaving machine and opening machine JP2002537946 2001-10-06 JP4056879B2 2008-03-05 ディーター、メイアー; ディートマール、フォン、ツウェール; バレンチン、クルム; ミヒャエル、レーマン
13 Driving device of loom JP2006163242 2006-06-13 JP2007332477A 2007-12-27 YAMAMOTO AKIHIKO; YAMAZAKI MORIKAZU; ISHIDA TOMOKAZU; YAMA KAZUFUMI; MATSUMOTO MASATO
<P>PROBLEM TO BE SOLVED: To beforehand prevent problems caused by the retardation of a stopping position on the quality of a woven fabric by maintaining an ability for braking the main shaft of a loom caused by positional delay in stopping to the loom without increasing load on an electromagnetic brake. <P>SOLUTION: This driving device of the loom comprising a main shaft for transmitting rotation forces to various devices on the loom, a driving motor composed of an alternating current electric motor, a deceleration means for decelerate the rotation of the driving motor at a prescribed ratio and transmitting the reduced rotation to the main shaft, an electromagnetic brake for supplying an exciting electric current to give a braking torque to the main shaft, a driving circuit for supplying an alternating electric power to the driving motor, and a braking circuit for supplying an exciting electric current to the electromagnetic brake is characterized by outputting an alternating electric voltage having a frequency corresponding to a low synchronous speed on the basis of the rotation speed of the driving motor to the driving circuit, when the loom is stopped, thereby producing a brake torque resistant in a rotation direction from the driving motor, and outputting an exciting electric current to the braking circuit to stop the main shaft. <P>COPYRIGHT: (C)2008,JPO&INPIT
14 How to operate the weaving machine and opening machine JP2002537946 2001-10-06 JP2004512437A 2004-04-22 ディーター、メイアー; ディートマール、フォン、ツウェール; バレンチン、クルム; ミヒャエル、レーマン
【課題】開口機械と織機の機械部材の機械的負荷を減少し、織物の織付けむらを回避するとともに、織機及び開口機械の始動及び制動段階で必要な駆動及び制動トルクを最適化し、特に開口機械のいわゆるソフトスタートとソフトストップを実現する。
【解決手段】開口機械を時間間隔Δt1の範囲内で織機の前に始動し、時間間隔Δt1の経過後に時間間隔Δt1の範囲外の時期t2に織機を始動し、開口機械と織機を始動過程の後に所定の時期t3にほぼ同期して運転し、故障を検出する電気信号で織機と開口機械の同期運転モードを解除し、続いて織機と開口機械に対して、2つの機械が異なる時期に停止するように制動過程を導入する。
15 Picking device in rapier loom JP26624897 1997-09-30 JPH11107113A 1999-04-20 NIIHARA MASAMI; TAKAGI SHINJI; YASUOKA FUMIO; IWASAKI MITSUHIRO
PROBLEM TO BE SOLVED: To provide a picking device capable of extending the life of a rapier band. SOLUTION: A first position-controlling member 17 is disposed from an access boundary K1 to the side of a non-wrapping range H, and a second position-controlling member 18 is disposed at a place near to a boundary K2. A third position-controlling member 19 is disposed from the access boundary K1 to the side of a wrapping range E. The first position-controlling member 17 and the second position-controlling member 18 are provided with guide flat surfaces 171, 181 brought into contact with a rapier band 12 on the side of the non-wrapping range H. The third position-controlling member 19 is provided with a circular shape curved guide surface 191 brought into contact with the rapier band 12 on the side of the wrapping range E. The curved guide surface 191 is smoothly continued to the guide flat surface 171. COPYRIGHT: (C)1999,JPO
16 Weft yarn detecting method, loom operating method and apparatus JP5962781 1981-04-20 JPS57117651A 1982-07-22 CHIYAARUZU DABURIYUU BURUUWAA; RICHIYAADO SHII ADAMUSU; EDOWAADO ERU MADOTSUKUSU
17 Control apparatus for flat cloth producing apparatus JP15793379 1979-12-05 JPS5580550A 1980-06-17 GERUTO SHIYUMITSUTSU; OTSUTO HINTOSHIYU
18 Driving apparatus for loom EP07008337.3 2007-04-24 EP1867767A3 2009-05-27 Yamamoto, Akihiro; Yamazaki, Morikazu; Ishita, Tomokazu; Yama, Kazufumi; Matsumoto, Masato

A driving apparatus (30, 50) for a loom (10) includes a main shaft (14) that transmits a rotational force to devices included in the loom (10), an alternating-current motor (16), a speed-reducing mechanism for transmitting rotation of the motor (16) to the main shaft (14) while reducing a rotational speed of the motor (16) at a predetermined ratio, an electromagnetic brake (24) that applies a braking torque to the main shaft (14) when an excitation current is supplied thereto, a drive circuit (34) that supplies alternating-current power to the motor (16), and a brake circuit (36) that supplies the excitation current to the electromagnetic brake (24). When the loom (10) stops, the drive circuit (34) outputs an alternating-current voltage at a frequency corresponding to a synchronous speed lower than the actual rotational speed of the motor (16), so that the motor (16) generates a braking torque in a direction opposite to the rotating direction. In addition, the brake circuit (36) outputs the excitation current to stop the main shaft (14).

19 Driving apparatus for loom EP07008337.3 2007-04-24 EP1867767A2 2007-12-19 Yamamoto, Akihiro; Yamazaki, Morikazu; Ishita, Tomokazu; Yama, Kazufumi; Matsumoto, Masato

A driving apparatus (30, 50) for a loom (10) includes a main shaft (14) that transmits a rotational force to devices included in the loom (10), an alternating-current motor (16), a speed-reducing mechanism for transmitting rotation of the motor (16) to the main shaft (14) while reducing a rotational speed of the motor (16) at a predetermined ratio, an electromagnetic brake (24) that applies a braking torque to the main shaft (14) when an excitation current is supplied thereto, a drive circuit (34) that supplies alternating-current power to the motor (16), and a brake circuit (36) that supplies the excitation current to the electromagnetic brake (24). When the loom (10) stops, the drive circuit (34) outputs an alternating-current voltage at a frequency corresponding to a synchronous speed lower than the actual rotational speed of the motor (16), so that the motor (16) generates a braking torque in a direction opposite to the rotating direction. In addition, the brake circuit (36) outputs the excitation current to stop the main shaft (14).

20 VERFAHREN ZUM BETREIBEN EINER WEB- UND FACHBILDEMASCHINE EP01988794.2 2001-10-06 EP1328673B1 2006-10-25 KRUMM, Valentin; VON ZWEHL, Dietmar; LEHMANN, Michael; MAYER, Dieter
The aim of the invention is to optimize the electromotive driving torques and braking torques required in the starting and braking phase of the weaving and shedding machine while reducing the mechanical stress on machine elements of the weaving and shedding machine and while preventing starting marks in the fabric, and based on this, to obtain so-called soft starts and soft stops, in particular, of the shedding machine. To this end, the invention provides that, in a weaving machine equipped with an electromotive main drive and in a shedding machine equipped with an electromotive auxiliary drive, the shedding machine is started at a time t1 that occurs before the starting time of the weaving machine. In addition, the invention provides that in the instance of an activated interruption of the weaving process, the shedding machine comes to a stop at a time t5 that occurs after the stop time t4 of the weaving machine.
QQ群二维码
意见反馈