摘要:
The present invention relates to a head transmission device for a warp knitting machine, comprising a head body, a motor disposed at the front end of the head body, a head end shaft, a synchronous big belt wheel nested on the head end shaft, and a synchronous tension pulley disposed at the rear end of the head body, further comprising a head end shaft fixing board and a head end shaft middle fixing board, said head end shaft being supported by the head end shaft fixing board and the head end shaft middle fixing board, and the head end shaft fixing board being fixed onto the head body; the present invention has a simple structure, is easy to be installed, makes assembly less difficult, improves the operating efficiency, leads to a compact structure, saves materials and requires low production cost.
摘要:
Es wird eine Wirkmaschine angegeben mit mindestens einer an Traghebeln (16) angeordneten Wirkwerkzeugbarre (17), wobei mindestens ein Traghebel (16) mit einem Stößel (6) verbunden ist. Man möchte eine hohe Arbeitsgeschwindigkeit der Wirkmaschine erzielen. Hierzu ist vorgesehen, dass der Stößel (6) mindestens ein Biegegelenk (22) aufweist.
摘要:
The present invention relates to a linear knitting machine comprising: a first (2) and a second (3) needle-bed, each one having at least one bar (4) extending longitudinally along said machine, and at least one row of needles (5) supported by the bar (4); a plurality of thread-guides (10) for arranging at least one respective thread into the needles (5); a motor (11) for moving at least one bar (4) of every needle-bed (2, 3) with a forward and backward motion getting away from/towards the thread-guides (10); and motion transmission means (12) associated to the bar (4) of every needle-bed (2, 3) and having at least one rotating element (14) for every needle-bed (2, 3) associated to the motor (11), and a rod (13) for every needle-bed (2, 3) having a first end (13a) stiffly engaged to said bar (4) and a second end (13b), opposed to the first one (13a), operatively associated to said rotating element (14) which is provided with at least one cam guide (16).
摘要:
The present invention relates to a linear knitting machine comprising: a first (2) and a second (3) needle-bed, each one having at least one bar (4) extending longitudinally along said machine, and at least one row of needles (5) supported by the bar (4); a plurality of thread-guides (10) for arranging at least one respective thread into the needles (5); a motor (11) for moving at least one bar (4) of every needle-bed (2, 3) with a forward and backward motion getting away from/towards the thread-guides (10); and motion transmission means (12) associated to the bar (4) of every needle-bed (2, 3) and having at least one rotating element (14) for every needle-bed (2, 3) associated to the motor (11), and a rod (13) for every needle-bed (2, 3) having a first end (13a) stiffly engaged to said bar (4) and a second end (13b), opposed to the first one (13a), operatively associated to said rotating element (14) which is provided with at least one cam guide (16).
摘要:
The present invention relates to a driving device, comprising at least one body (4), (11) which may be put in an alternating rotary motion by the rotation of at least one cam (3A), (3B); (16A), (16B), the said body (4), (11) being provided to be rotatable on a shaft (1), which itself is provided to perform a continuous rotary motion. The said body (4), (11) may be mounted on bearings on the drive shaft (1) or on a shaft that may be driven by the drive shaft (1). Because of the continuous rotation of the said shaft (1), the bearings of this body will be subjected to a uniform load along their circumference and consequently will be likewise subjected to a uniform wear. This will enhance the life span of the bearing. Because of which the driving device will operate more precisely and it may be carried out in a more compact form. This invention likewise relates to a machine provided with such a driving device, more particularly to a textile machine.
摘要:
A driving mechanism (1) comprising first and second drive shafts (10, 22) respectively causing the movement, through first and second eccentrics (17, 24), of a needle-bar (3) and one or several tube-bars (5). Also mounted on the drive shafts (10, 22) are auxiliary eccentrics (18, 26) which control the movements of respective counterweights (21, 28) in phase opposition relative to the oscillatory movements transmitted to the needle-bar (3) and tube-bars (5), in order to counterbalance the forces of inertia resulting from the reciprocating movements imparted to the bars (3, 5) themselves.