This application claims the priority benefits of Taiwan application No. 101119993 filed on Jun. 4, 2012, the contents of which are hereby incorporated by reference in its entirety.
1. Field of the Invention
This invention relates to a manufacturing method and equipment for intensifying hardness of screws, particularly to one having a second step of reinforcing hardness of the shank of a screw and a third step of forming threads of the screw integrated and completed in a same thread shaping die, able to elevate shaping speeds and hardness of screws.
2. Description of the Prior Art
A conventional method for manufacturing screws, as disclosed in a Taiwan patent NO. 1320340, titled “Method For Cold Forging Austenite 300 Series To Produce Fasteners With Super High Intensity” includes a first step of preparing a first blank made of Austenite 300 series. The blank is first cold forged to diminish the outer diameter of the blank over 15% to form a second shank whose outer diameter is equal to an outer diameter needed to be processed. At this time, the bearable strength of the second shank increases at least over one half in comparison with the strength of the first blank and sequentially, this shank is to be shaped with a head, a pointed tail and threads of a screw. Therefore, by using cold forging methods, screws having great strength and excellent in rust prevention can quickly be manufactured, able to lower manufacturing cost and insure safety in use after the screws are drilled into articles and locked.
Apparently, the conventional method for manufacturing screws is first to have the outer diameter of the shank diminished about 15% for facilitating the shank to be shaped at different stages subsequently. According to the conventional method of manufacturing screws, only when four steps: a step of preparing a blank, a step of forming a head, a step of forming a pointed tail and a step of forming threads, are completed one by one, can a drilling screw be manufactured. Substantially, the more the shaping steps of a screw are, the lower the shaping speed will be, thus increasing manufacturing cost and decreasing competitive force in industry.
The objective of this invention is to offer a manufacturing method and equipment for intensifying hardness of screws, able to simplify screw shaping processes and reinforce the strength of screw shanks for strengthening locking force of screws.
The manufacturing method for intensifying hardness of screws in the present invention includes at least three steps. A first step is to have a steel wire forged to make up a first blank formed with a screw head and a screw shank. A second step is to convey the first blank into a thread shaping die to have the outer diameter of the shank of the first blank diminished to form a second blank through a first sectional cold forging region for reinforcing the hardness of the shank. A third step is to have the second blank directly moved into a second sectional thread forming region of the thread shaping die to be shaped with threads and pointed tail at one time. By so designing, both the second step of reinforcing the hardness of the shank and the third step of forming threads can be carried out within the thread shaping die, needless to be removed out of the thread shaping die, thus elevating shaping speeds and hardness of screws.
The equipment for intensifying hardness of screws in the present invention includes the thread shaping die provided with the first sectional cold forging region and a second sectional thread forming region. The first sectional cold forging region functions to carry out the motion of the second step for diminishing the outer diameter of the shank of the first blank for reinforcing the hardness of the shank while the thread forming region functions to carry out the motion of the third step for shaping threads of the shank and the pointed tail of a screw with one round. Thus, the motions of both the second step and the third step can be carried out within the same thread shaping die, able to enhance shaping speeds and hardness of a screw.
This invention will be better understood by referring to the accompanying drawings, wherein:
A first preferred embodiment of a manufacturing method and equipment for intensifying hardness of screws in the present invention, as shown in
A first step is to have a steel wire forged into a first blank 1 formed with a screw head 10 and a screw shank 11, as shown in 1A of
A second step is to have the first blank 1 conveyed into a thread shaping die 2, which is composed of a fixed thread shaping die 2a and a movable thread shaping die 2b, as shown in
A third step is to have the second blank 3 directly pushed forward to get into a second sectional thread-forming region 21 of the thread rolling die 2 by the motion of the movable thread shaping die 2b, as shown in 1C of
By so designing, both the motions of the second step of intensifying the hardness of the shank and the third step of forming threads can be completed with one round within the thread shaping die 2, able to enhance screw shaping speeds and intensify the hardness of the screw.
A second, a third and a fourth preferred embodiments of a manufacturing method and equipment for intensifying hardness of screws in the present invention, as shown in
In the second and the third preferred embodiments, a second step is to have the thread shaping die 2, which is the same as that described in the first preferred embodiment, provided with a first sectional cold forging region 20 for shaping a second blank 3, as shown in 4B of
A third step is to have the thread rolling die 2 disposed with a small sectional thread shaping region 21a at different locations according to practical needs for producing a third blank 5 that contains a short length of threads 100b, as shown in 4C of
A fourth step is to have the thread shaping die 2 provided with an end sectional thread shaping region 21b, which has to be continuously connected with the small-sectional thread-shaping region 21a for producing a screw 4 with different shapes of threads.
Thus, even if the thread shaping die is made into a second step, a third step and a fourth step in shape for orderly producing the second blank, the third blank and the screw, both the second blank and the third blank still will not depart from the thread shaping die, able to enhance the shaping speed and the hardness of screws.
While the preferred embodiments of the invention have been described above, it will be recognized and understood that various modifications may be made therein and the appended claims are intended to cover all such modifications that may fall within the spirit and scope of the invention.
Number | Date | Country | Kind |
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101119993 | Jun 2012 | TW | national |