The present invention relates to a shoe sewing machine, and in particular to a shoe sewing machine that is improved in association with a retainer and a rocker arm assembly to allow the sewing machine to carry out sewing operation at any location of a shoe and being applicable to sewing machines of footwares and handbags and the likes.
For modern people, shoes are not just for protection of soles in walking or running, and aesthetics and durability of also major considerations of the shoes. Thus, designs of shoes become complicated and versatile. Bonding of a shoe vamp is no longer limited to an upper edge of a shoe sole. Some market available shoes have very versatile bonding between the vamps and the soles. All these constitute major challenges to a shoe sewing machine.
The conventional shoe sewing machine is only suitable for sewing operation for vamp bonded to an upper edge of the shoe sole. Sewing can only be carried out on opposite sides of the shoe sole. In case the joint between the vamp and the sole is located away from the sole or irregular patterns of sewn lines are to be formed on the vamp, the sewing is first done on an additional vamp, and thereafter, the vamp and the sole are jointed by extra processing. Further, the conventional shoe sewing machine is not able to sew thick vamp and in such a case, a secondary processing is needed to attach the vamp to the sole. This often leads to separation between the vamp and the sole after a long term use.
Thus, the present invention is aimed to provide an all purpose shoe sewing machine that overcomes the drawback that the conventional shoe sewing machine cannot carry out sewing at locations away from the sole of a shoe.
An objective of the present invention is to provide a shoe sewing machine having improved retainer and a rocker arm assembly to allow the sewing machine to carry out sewing operation on all locations of a shoe, and the sewing can be done for irregular patterns formed on the shoe.
Another objective of the present invention is to provide a shoe sewing machine having a wire assembly functioning to drive a needle plate so as to simplify transmission and to alleviate problems caused by wear of transmission shaft and gears.
A further objective of the present invention is to provide a sewing machine that is suitable for sewing a thick vamp to a shoe sole in a stable and durable manner.
To realize the above objectives, in accordance with the present invention, an all-purpose sewing machine is provided, comprising a main frame, a retainer, a rocker arm assembly, a wire assembly, and a platform. The main frame contains therein a transmission mechanism. The main frame has a top forming a head portion and a bottom forming a base. The retainer is mounted to the base of the main frame. The retainer defines a bore in which a first gear transmission assembly is received. A rocker arm retaining disk assembly is mounted on the bore. The first gear transmission assembly is in driving coupling with the transmission mechanism of the main frame and extends through the rocker arm retaining disk assembly. The rocker arm assembly comprises a rocker arm body which forms a plurality of bent sections. A second gear transmission assembly is arranged in the rocker arm body and is in driving coupling with the first gear transmission assembly of the retainer. The second gear transmission assembly functions to drive a thread engaging device arranged on the rocker arm body. The thread engaging device comprises a needle plate, and the rocker arm body forms a pivot connection at a front side thereof, the pivot connection being fit over the rocker arm retaining disk assembly. The rocker arm body that forms a plurality of bent sections is configured to have the thread engaging device opposing the main frame. The wire assembly extends from opposite sides of the needle plate of the thread engaging device through the thread engaging device, the rocker arm body, and the rocker arm retaining disk assembly for driving the needle plate so as to maintain a fixed position of the needle plate when the rocker arm assembly reciprocally rotates. The platform is mounted to the base of the main frame.
The present invention will be apparent to those skilled in the art by reading the following description of a preferred embodiment thereof with reference to the drawings, in which:
With reference to the drawings and in particular to
A retainer 20 has a bottom forming a stand 202 for mounting the retainer 20 to the base 13 of the main frame 10 and a top to which a carrier block 201 is fixed. A bore 21 is defined in the retainer 20 and receives a first gear transmission assembly 22. A rocker arm retaining disk assembly 23 is mounted on the bore 21. The rocker arm retaining disk assembly 23 carries a needle plate adjusting block 231. The first gear transmission assembly 22 is in driving coupling with the third gear set 112 of the transmission mechanism 11 of the main frame 10 and extends through the rocker arm retaining disk assembly 23.
A rocker arm assembly 30 comprises a rocker arm body 31 that forms a plurality of bent sections. Provided inside the rocker arm body 31 are a plurality of wire rollers 312 for guiding a wire assembly and a second gear transmission assembly 32 that is in driving coupling the first gear transmission assembly 22 of the retainer 20. The second gear transmission assembly 32 serves to drive a thread engaging device 33 that is arranged on the rocker arm body 31. The thread engaging device 33 comprises a needle plate 331, a carrier ring 332, a horn 333, and a handle 334. The needle plate 331 and the carrier ring 332 are mounted on the horn 333 and the horn 333 is, in turn, fit over the handle 334 and the handle 334 is inserted into the rocker arm body 31 to form the thread engaging device 33. The handle 334 is provided, at a front side thereof, with a pivotal connection 311, which is fit over the rocker arm retaining disk assembly 23. A counterweight 34 is provided to a circumferential surface of the pivotal connection 311. The rocker arm body 31, which forms a plurality of bent sections, is configured to have the thread engaging device 33 opposing the main frame 10.
A steel wire assembly 40 extends from opposite sides of the needle plate 331 of the thread engaging device 33 through the carrier ring 332, the horn 333, and the handle 334 of the thread engaging device 33 and further extends around the wire rollers 312 arranged inside the rocker arm body 31 to be guided by the wire rollers 312 through the rocker arm body 31 and eventually reaching the needle plate adjusting block 231 of the rocker arm retaining disk assembly 23, whereby the wire assembly 40 functions to drive the operation of the needle plate 331 and to maintain a fixed position of the needle plate 331 during the reciprocal rotation of the rocker arm assembly 30.
A platform 51 is mounted to the base 13 of the main frame 10.
With reference to
Although the present invention has been described with reference to the preferred embodiment thereof, it is apparent to those skilled in the art that a variety of modifications and changes may be made without departing from the scope of the present invention which is intended to be defined by the appended claims.
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