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序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
21 Thread removing apparatus US10339061 1961-04-17 US3105284A 1963-10-01 KRUG HERBERT A
22 Loop cutter US52120031 1931-03-09 US1880488A 1932-10-04 RICHARDSON CHARLES G
23 Device for tensioning crimped lace in the course of weaving US43179730 1930-02-27 US1860592A 1932-05-31 GASTON PERRET
24 Fabric US30304528 1928-08-30 US1763074A 1930-06-10 TAYLOR SCHUYLER J
25 Loom. US1912722194 1912-09-25 US1065555A 1913-06-24 SCHWESER EDWARD
26 Lappet-loom. US1903152837 1903-04-16 US744307A 1903-11-17 DEARDEN FREDERIC JAMES; SHARP GEORGE S
27 Loom. US1902089558 1902-01-13 US706376A 1902-08-05 BARLET FREDERIC
28 Lappet-loom. US1897626838 1897-03-10 US656198A 1900-08-21 MACCOLL JAMES R
29 wtman US603521D US603521A 1898-05-03
30 Qoooo ooooqo US567453D US567453A 1896-09-08
31 Lappet-loom US451914D US451914A 1891-05-12
32 hodges US343316D US343316A 1886-06-08
33 Improvement in lappet loom US104687D US104687A 1870-06-28
34 Gewebe, Verfahren und Vorrichtung zu dessen Herstellung EP14179661.5 2014-08-04 EP2832906A1 2015-02-04 Cherif, Chokri; Hoffmann, Gerald; Sennewald, Cornelia

Die Erfindung betrifft ein Gewebe (1) mit einer Mehrzahl von linear und parallel verlaufenden Kettfäden (2) und einer Mehrzahl von linear und parallel verlaufenden Schussfäden (3). Das erfindungsgemäße Gewebe (1) zeichnet sich dadurch aus, dass die außenseitige Kontur des Gewebes (1) in einem oder mehreren Abschnitten (21, 23; 25, 26; 27; 28; 29; 30) längs des Gewebes (1) durch mindestens einen von der gestreckten Kettrichtung (K) abweichend verlaufenden und/oder nicht durchgehend verlaufenden Zusatzkettfaden (5; 6; 7; 8; 9) gebildet ist, wobei der bzw. die Zusatzkettfäden (5; 6; 7; 8; 9) vorzugsweise aus Hochleistungsmaterial bestehen, beispielsweise in Form von Glasfasern, Keramikfasern, Kohlenstofffasern, Stahl-Fasern, Draht oder thermoplastischen Materialien. Die Erfindung betrifft zudem ein entsprechendes Verfahren und eine entsprechende Vorrichtung.

35 WEBBLATT UND WEBMASCHINE ZUR WEBMUSTERBILDUNG BEI GEWEBEN MIT ZUSATZMUSTEREFFEKTEN EP11743056.1 2011-08-08 EP2606167A2 2013-06-26 WAHHOUD, Adnan; CZURA, Peter; ARNOLD, Harald
On a weaving machine for producing woven fabrics with additional pattern effects, one or more effect yarns (2) which are fed in substantially in the warp direction are displaced beyond adjacent warp yarns (1) above a weft yarn (3) to be picked for various movement cycles of the weaving machine in the weft direction (12). During the subsequent positioning of the effect yarns (2) below the weft yarn (3) to be picked, the effect yarns (2) dip into comb gaps (8) of a reed (4), which comb gaps (8) are open to the top on one side. In order to assist the dipping of the effect yarns (2) into the comb gaps (8), a reed (4) is equipped with a first group of reed teeth (5) which, at their upper end, have an insertion bevel (7) which points in the longitudinal direction of the reed (4). Said reed teeth (5) are designed in such a way that, as a result, the upwardly pointing opening of an adjacent comb gap (8) is covered at least partially. Furthermore, there is a second group of reed teeth (5) on the reed (4), which reed teeth (5) do not have an insertion bevel (7) of this type.
36 NADELBANDWEBMASCHINE ZUR HERSTELLUNG EINES BANDES, INSBESONDERE EINES ETIKETTENBANDES, MIT EINEM EINGEWEBTEN LEITERFADEN, INSBESONDERE ANTENNENFADEN EP05817952.4 2005-12-23 EP1963556A1 2008-09-03 SPEICH, Francisco
In order to make it possible to weave in a conductive thread, in particular an antenna thread, in a very wide variety of ways in a ribbon needle loom for manufacturing a strip, in particular a label strip, having a shedding apparatus for forming a shed (24) from warp threads (8), a weft insertion needle (26) for inserting weft thread loops, a reed (30) and having a feed apparatus (34) for a thread which has a blade (34) which dips into the shed (24) between warp threads (8) as far as under the insertion path of the weft insertion needle (26), it is proposed that the blade is arranged on a shaft (38) which is oriented transversely with respect to the warp direction. The shaft is connected to a first drive apparatus (40a) for performing a pivoting movement of the shaft. As a result of the pivoting, the blade (34) dips into and out of the shed (24). Furthermore, the shaft is connected to a second drive apparatus (44a) for movement in the axial direction. As a result, the blade (34) can be moved over the width of the strip (2).
37 WEAVING MACHINE AND METHOD FOR MANUFACTURING FABRICS WITH PATTERN-FORMING WEFT THREADS SUCH AS KELIM OR GOBELIN FABRICS EP99919265.1 1999-04-19 EP1078117B8 2003-10-15 VAN GELUWE, Jacques DI
A weaving machine, comprising a shed-forming device, provided in order to form a shed between a part of the warp threads (16) provided on the weaving machine, a selection device (22) provided in order to select a weft thread (34) from a number of different weft threads, and a weft mechanism (17-21, 38, 39, 42) provided in order in each case to insert and cut off the necessary length of the selected weft thread (34) in the shed, so that a fabric (7) is formed in which weft threads only extend over a part of the fabric in width and are pattern-formingly inwoven by warp threads (6) whereby the various weft threads can be provided in one row in the selection device (22), and whereby the selection device (22) comprises at least one rotatable element (25-28) which is provided in order, through its rotation, to move the aforesaid row for the selection of a weft thread. Another aspect of this invention relates to a method for manufacturing a fabric with pattern-forming weft threads on such a weaving machine, such as for example a Kelim or Gobelin fabric, whereby the various weft threads are provided in one row on a selection device (22) with at least one rotatable element (25-28) which is provided in order, through its rotation, to move the aforesaid row for the selection of a weft thread (34).
38 MULTI-CARRIER, ZONAL WEAVING SYSTEM, METHOD, AND MATERIAL US15416947 2017-01-26 US20170218541A1 2017-08-03 Carrie L. Davis; Megan Foley; William C. McFarland, II
A multi-carrier, zonal weaving system and method of manufacturing a zonal woven material is provided. The multi-carrier system includes a first weft yarn, a second weft yarn, and one or more intermediate warp yarns for wrapping by the first and second weft yarns. The zonal weaving method includes receiving a first weft yarn from a first origin via a first shed, wrapping it around one or more zonal warp yarns, and returned to the first weft origin after the first shed upper and lower yarns are exchanged. In further aspects, a second weft yarn is received from a second weft origin via a second shed, wrapped around the same intermediate, zonal warp yarns, and returned to the second weft origin after exchange of the second shed yarns. In one aspect, the first and second weft yarns are interlocked during wrapping of the common warp yarns.
39 MULTI-LAYERED WOVEN ELEMENT US15403945 2017-01-11 US20170198424A1 2017-07-13 Meggin B. Alex; Martin Wragg
The present embodiments provide a woven element having a first plurality of warp threads extending in a first direction and integrated into a first surface on a front side of the woven element. The woven element may have a second plurality of warp threads extending in the first direction, where the second plurality of warp threads is integrated into a second surface on a back side of the woven element. A first weft thread may extend in a second direction, where a first portion of the first weft thread is positioned in front of at least one warp thread of the first plurality of warp threads to form at least a portion of a graphic image on the front surface. A second portion of the first weft thread may extend between the first plurality of warp threads and the second plurality of warp threads.
40 Multipurpose portable mini loom US29561904 2016-04-20 USD791198S1 2017-07-04 Angela Smith
Disclosed is a portable mini loom utilizing a base section having opposed first and second end edges defining an overall length, a first Ends Per Inch (EPI) zone disposed proximate the base first end edge and extending inwardly along a desired length of the base, and a second EPI zone disposed proximate the base second end edge and extending inwardly along a desired length of the base. Each EPI zone preferably utilizes three separate EPI arrays, of differing EPI, capable of permitting a weaver to select one of such EPI arrays to create a thread warp of a predefined EPI, such as, 8, 10 or 12 EPI. One array utilizes slots disposed along the ends of the base capable of receiving the warp thread. The other two arrays comprise separate sets of through holes disposed across the EPI zone each capable of receiving the warp thread.
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