PL16115B1 - Flail shaft bearing in mechanical looms. - Google Patents

Flail shaft bearing in mechanical looms. Download PDF

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Publication number
PL16115B1
PL16115B1 PL16115A PL1611530A PL16115B1 PL 16115 B1 PL16115 B1 PL 16115B1 PL 16115 A PL16115 A PL 16115A PL 1611530 A PL1611530 A PL 1611530A PL 16115 B1 PL16115 B1 PL 16115B1
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PL
Poland
Prior art keywords
shaft bearing
flail
flail shaft
mechanical looms
loom
Prior art date
Application number
PL16115A
Other languages
Polish (pl)
Filing date
Publication date
Application filed filed Critical
Publication of PL16115B1 publication Critical patent/PL16115B1/en

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Description

W krosnach mechanicznych z bijakami dolnemi energja bicia wytworzona po stro¬ nie napedowej za posrednictwem sciegna 1 i wycinków bijakowych 2,3 przenosi sie za posrednictwem sciegna 4 na podobne wy¬ cinki bijakowe po drugiej stronie krosna.Osadzanie walu z wycinkami bijakowemi 5 w lozyskach ram krosna odbywalo sie do¬ tychczas w ten sposób, ze lozyska walów bi¬ jakowych umieszczano na odpowiednich powierzchniach ram krosna i przysrubowy- wano je do nich zapomoca odpowiednich lap polaczonych z lozyskami. Umocowanie tych lozysk bylo trudnem zadaniem w bu¬ dowie krosien, a to z powodu nadzwyczaj wysokich natezen, jakie wywolywal proces bicia zwlaszcza przy duzej ilosci obrotów krosien, w których przerzut czólenka wy¬ konywa sie ponad 50000 razy na dobe. Mi¬ mo uzycia najlepszego materjalu i zastoso¬ wania najrozmaitszych sposobów zabezpie¬ czenia srub nie mozna bylo uniknac obluz- niania sie srub i trzeba je bylo stale kontro¬ lowac. Niesumienna kontrola prowadzila bezwzglednie do pekniec i dluzszych przerw ruchu, poniewaz wobec znacznej szybkosci czesci skladowych, bioracych udzial w bi¬ ciu, dzialanie mas bylo tak silne, ze nietyl- ko dochodzilo do pekania lozyska, ale stale narazane byly równiez glówne czesci me¬ chanizmu bijakowego i ramy krosna.Wynalazek niniejszy usuwa te powazne braki dzieki temu, ze lozyska walu bijako¬ wego i podstawa krosna odlane sa z jednejsztuki a sruby umocowujace, które wywo¬ lywaly dotychczas niebezpieczenstwo peka¬ nia* calkowicie staja sie zbedne. Dzieki pro¬ stemu wykonaniu lozyska walu bijakowego w postaci kablaka nastepuje wzmocnienie sciany krosna w miejscu najwiecej natezo- nem, a prócz tego oszczedza sie na kosztach wytwarzania.Sposób wykonania wynalazku przedsta¬ wiony jest na fig. 1 i 2.Zapomoca sciegna 1 wprawiane sa w ruch wycinki bi jakowe 2 i 3 obracajace sie luzno na wale 5. Wal ten jest wsuniety we wspornik lozyskowy 6, odlany z jednej sztuki wraz z rama 8 krosna, a zabezpie¬ czenie walu 5 przeciw obrotowi uskutecz¬ nione zostaje zapomoca sruby ustawczej.Oczywiscie sprawe mozna rozwiazac rów¬ niez w ten sposób, ze wal bedzie sie obra¬ cal we wsporniku, a wycinki bijakowe be¬ da nieruchomo na nim osadzone. PLIn mechanical looms with lower flails, the runout energy generated on the drive side by means of the strand 1 and the flail sections 2,3 is transferred via the strand 4 to similar flail sections on the other side of the loom. the looms were then held in such a way that the bearings of the whip shafts were placed on the appropriate surfaces of the loom's frames and bolted to them by means of appropriate lugs connected to the bearings. The fastening of these bearings was a difficult task in the construction of the loom, due to the extremely high intensity caused by the beating process, especially when the number of rotations of the looms were high, in which the shifting of the pump was performed over 50,000 times a day. Due to the fact that the best material was used and the most varied methods of securing the bolts, loosening of the bolts could not be avoided and had to be constantly monitored. Unconscious control ruthlessly led to cracks and longer interruptions of movement, because in view of the high speed of the components involved in the beating, the action of the masses was so strong that not only did the bearing break, but the main parts of the mechanism were also constantly exposed. The present invention removes these serious deficiencies by the fact that the bearings of the hammer shaft and the base of the loom are cast from one piece, and the fastening bolts, which previously caused the risk of bursting, become completely redundant. Due to the simple construction of the flail shaft bearing in the form of a cable, the loom wall is strengthened at the most stressful place, and besides, the production costs are saved. The method of implementation of the invention is presented in Figs. 1 and 2. in motion, the bi-yoke sections 2 and 3 rotating loosely on the shaft 5. The shaft is inserted into the bearing bracket 6, cast in one piece with the loom frame 8, and the anti-rotation locking of the shaft 5 is effected by means of an adjusting screw. Of course, the matter can also be solved in such a way that the shaft will rotate in the support and the flail cuttings will be immobile on it. PL

Claims (2)

1. Zastrzezenie patentowe. Lozysko walu bijakowego w krosnach mechanicznych, znamienne tern, ze lozysko to (6) dla walu bijakowego (5) odlane jest w ksztalcie wspornika, stanowiac Wraz z rama (8) krosna jeden odlew. Firma Georg Schwabe. Zastepca: K. Czempinski, rzecznik patentowy.Do opisu patentowego Nr 16115. Fig.1. Patent claim. The bearing of the flail shaft in mechanical looms, characterized by the fact that the bearing (6) for the flail shaft (5) is cast in the shape of a cantilever, constituting one casting together with the frame (8) of the loom. Georg Schwabe company. Deputy: K. Czempinski, patent attorney. To the patent description No. 16115. 2. Druk l. Boguslawskiego i Skt, Warszaw*. PL2. Print of Boguslawski and Skt, Warsaw *. PL
PL16115A 1930-07-24 Flail shaft bearing in mechanical looms. PL16115B1 (en)

Publications (1)

Publication Number Publication Date
PL16115B1 true PL16115B1 (en) 1932-04-30

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