The present invention relates to a flat knitting machine mangling device, and particularly relates to a flat knitting machine mangling device with position varying with gap size.
The mangling position cannot be changed after a mangling device of the current flat knitting machine is set. Thus, the mangling device has the problem of not being able to press the cloth if the gap size is changed in the knitting process of the flat knitting machine.
The main purpose of the present invention is to solve the problem derived from gap size change of the flat knitting machine in the mangling device.
To achieve the above purpose, the present invention provides a flat knitting machine mangling device with position varying with gap size. The flat knitting machine mangling device includes a driving element, a fixing base disposed on a cam supporting base, a sliding base disposed correspondingly to the fixing base, a limiting block combined with the fixing base and limiting the sliding base to only slide relative to the cam supporting base, a mangling sheet supporting arm and a mangling sheet. The driving element is started when a knock-over bit cam makes a displacement stroke. The sliding base is disposed to correspond to the fixing base, is provided with a guide block and makes a regulation stroke relative to the cam supporting base when the driving element moves. One end of the mangling sheet supporting arm is fixed to a yarn feeder guide rod and the other end is provided with an installing base. A passage is formed in the installing base. The mangling sheet includes a control section connected with the guide block, a connection section extending from the control section and penetrating through the passage, and a mangling section extending from the connection section and facing a needle bed, wherein the control section leads the mangling section to move when the sliding base makes the regulation stroke, so as to change a mangling position.
In an embodiment, the driving element comprises a combining part connected with the knock-over bit cam and a pushing part connected with the combining part; the driving element makes a driving stroke for allowing the pushing part to move when the knock-over bit cam makes the displacement stroke; one side of the sliding base is provided with an inclined guide path in which the pushing part is disposed; and the sliding base makes the regulation stroke relative to the cam supporting base when the driving element makes the driving stroke.
In an embodiment, the driving element is composed of a motor and a gear connected with the motor; and one side of the sliding base is provided with a rack that comes into contact with the gear.
In an embodiment, the limiting block comprises a first hook part that protrudes towards the mangling sheet supporting arm; and the mangling sheet supporting arm comprises a second hook part disposed on the installing base, protruding towards the limiting block and combined with the first hook part.
In an embodiment, the sliding base comprises a first long hole in which the fixing base is disposed.
In an embodiment, the mangling sheet comprises a second long hole disposed on the connection section; and the installing base comprises at least one installing hole communicated with the passage and providing an installing element corresponding to the second long hole to limit the mangling sheet.
In an embodiment, the mangling sheet comprises a guide rod disposed on the control section; and the guide block is provided with a groove in which the guide rod is disposed.
In an embodiment, the sliding base comprises a first surface that faces the cam supporting base, and a second surface that faces the limiting block; and the inclined guide path extends from the first surface to the second surface toward the knock-over bit cam.
As previously disclosed in the present invention, compared with the prior art, the present invention comprises the following characteristics: the flat knitting machine mangling device of the present invention can change the mangling position when a gap size of the flat knitting machine structure is changed.
The details and technical contents of the present invention will be described below with reference to drawings.
By referring to
Based on this, a plurality of flat knitting machine mangling devices 40 are configured on the flat knitting machine 100 structure. Each of the plurality of flat knitting machine mangling devices 40 is respectively disposed on a cam supporting base 137 included in one cam system 13. Each of the plurality of flat knitting machine mangling devices 40 includes a driving element 41, a fixing base 42 disposed on the cam supporting base 137, a sliding base 43 disposed correspondingly to the fixing base42, a limiting block 44 combined with the fixing base 42 and limiting the sliding base 43 to only slide relative to the cam supporting base 137, a mangling sheet supporting arm 45 and a mangling sheet 46 disposed on the mangling sheet supporting arm 45 and driven by the sliding base 43.
The driving element 41 is started when the knock-over bit cam 132 makes a displacement stroke 133. Namely, the driving element 41 is started based on whether the knock-over bit cam 132 makes the displacement stroke 133. Therefore, if the knock-over bit cam 132 moves, the driving element 41 also moves.
Moreover, the sliding base 43 is disposed to correspond to the fixing base 42, and also makes a regulation stroke 431 relative to the cam supporting base 137 when the driving element 41 moves. Meanwhile, the sliding base 43 is provided with a guide block 432.
Based on this, when the driving element 41 is started, the sliding base 43 needs to move simultaneously. The displacement made by the sliding base 43 is the regulation stroke 431 herein. Furthermore, the sliding base 43 may be a U-shaped structure, and is disposed on the cam supporting base 137 in an inverted U manner. The fixing base 42 can be disposed at a recess of the U-shaped structure. Moreover, the sliding base 43 may have a first long hole 436 in which the fixing base 42 is disposed. The first long hole 436 is not the recess of the U-shaped structure, but is a hole disposed to corresponding to the recess. The size of the first long hole 436 is set to at least provide an extent to which the sliding base 43 makes the regulation stroke 431.
Accordingly, the height of the fixing base 42 is the same as the height of the sliding base 43, so that the limiting block 44 is able to limit the sliding base 43 more specifically. Moreover, one end of the mangling sheet supporting arm 45 is fixed to the yarn feeder guide rod 30 and the other end is provided with an installing base 451; and a passage 452 is formed in the installing base 451. Specifically, the installing base 451 may be composed of a first component 453 and a second component 454 combined with the first component 453 and jointly defining the passage 452. Furthermore, the mangling sheet 46 includes a control section 461 connected with the guide block 432, a connection section 462 extending from the control section 461 and penetrating through the passage 452, and a mangling section 463 extending from the connection section 462 and facing one of the needle bed 11 (or 12). The control section 461 and the guide block 432 form a linkage relationship. The control section 461 leads the mangling section 463 to move when the sliding base 43 makes the regulation stroke 431, so as to change a mangling position. In an embodiment, the mangling sheet 46 comprises a guide rod 464 disposed on the control section 461. The guide block 432 is provided with a groove 437 in which the guide rod 464 is disposed. The form of the groove 437 conforms to the guide rod 464. The groove 437 can be implemented in a form of a rail. Moreover, the width of the connection section 462 corresponds to the width of the passage 452, so that the connection section 462 can slide in the passage 452. The mangling section 463 generates a working surface for mangling the cloth through obvious size change related to the connection section 462.
Referring to
Referring to
Referring to
Referring to
Referring to