1. Field of the Invention
The present invention relates to a method of making a metal frame. Particularly, it relates to a manufacturing process which can not only save lots of material cost, but also simplify its making process. In addition, the method can assure the outer edges of the four angles of its finished product to be smooth and artistic in shape.
2. Description of the Related Art
In the inventor's prior Taiwan Patent No. I 253964 “Manufacturing method for a metal frame,” as a consequence of purely using coiled banding metal as its material, and consistent shaping operation with small-sized cutting, a considerable cost of material and cost for manufacturing the molds are saved when the metal frames are formed. However, after practical mass production and sales, we find that the inter-connecting position of the frame is located at the diagonal angles, so mending the angles is found to be rather inconvenient. Moreover, defects like failing to firmly hook up or the un-smoothness of the outer edges of the four angles will easily happen. Therefore, the inventor focused his attention to the studies of the present invention of “Method of making a metal frame.”
The objective of the present invention is to provide an improved method of making a metal frame which can not only save costs of material and molds, but also simplify the making process. In addition, the method can assure the outer edges of the four angles on the metal frame to be smooth and artistic in shape after the finished product is made.
To realize the aforesaid objective, the method of making a metal frame herein is a consistent operation which comprises material-choosing, cutting, jointing, riveting and shaping, thereby manufacturing a big or giant square or rectangular metal frame with a cross-section in the form of roughly inverted L-shape.
First, the material-choosing step is to take coiled banding metal plates as material. Next, the cutting step is to punch the metal plates into two I-shaped metal components and two corresponding flat U-shaped metal components. One piece or one pair of arrow-shaped protrusions and indentations is punched respectively on two ends of the I-shaped metal components and the edges of two arms of the flat U-shaped metal components.
Upon jointing, embed and engage the protrusions and indentations on the two ends of said I-shaped metal components with protrusions and indentations on the edges of the two arms of the corresponding flat U-shaped metal components respectively.
Upon riveting, proceed with die stamping process around the inner edge of each protrusion and the outer edge of each indentation of each jointing region to make the periphery of each protrusion enlarged and the periphery of each indentation minified. As such, the metal frame will be jointed compactly as one integral unity.
As for the shaping step, the periphery of the metal frame is punched downward and folded vertically to make a big or giant square or rectangular metal frame having a cross-section in the form of roughly inverted L-shape.
Additionally, in the process of cutting, the metal components can be formed as two correspondingly long L-shaped metal components, and one piece or more than one pair of arrow-shaped protrusions and indentations is disposed on the edge of one arm and on the edge of the other arm respectively so as to make a big or giant rectangular metal frame with narrower width.
Furthermore, during the process of cutting, at least 3 pieces of wide V-shaped metal components are made, and one piece or more than one pair of arrow-shaped protrusions and indentations is disposed on the edge of each arm so as to make a big or giant polyhedral metal frame.
Each protrusion and indentation disposed on the end of each metal component, or on the edge or lateral edge of each arm can be modified into roughly wedge-shaped protrusion and indentation, or can be modified into roughly inverted U-shaped protrusion and indentation.
One piece or more than one pair of protrusions and indentations on the two ends of each metal component or the edge of each arm can be disposed as inclined position.
In other words, the method of making a metal frame of the present invention is to use a banding metal to form a pair of or more than two pieces of metal components embedded and engaged with each other to rivet as one integral unit. Then, punch and draw the metal unit to form a metal frame. The manufacturing process is a consistent operation, which includes material-choosing, cutting, jointing, riveting, and shaping, wherein said material-choosing process is to take coiled banding metal plates as material and then the metal plates are cut into two I-shaped and two flat U-shaped metal components or two correspondingly long L-shaped or at least more than three pieces of wide V-shaped metal components.
During the process of cutting, one piece or more than one pair of arrow-shaped, wedge-shaped or inverted U-shaped protrusions and indentions is correspondingly set on two ends of the two I-shaped metal components and the edges of two arms of the two flat U-shaped metal components, and on the edges or lateral edges of two arms of the two correspondingly long L-shaped or at least more than three pieces of wide V-shaped metal components.
Upon jointing, respectively embed and engage the protrusions and indentations on two ends of the two I-shaped metal components with the corresponding protrusions and indentations on the edges of two arms of the two flat U-shaped metal components, or with the corresponding protrusions and indentations on the edges or lateral edges of two arms of the two long L-shaped or at least more than three pieces of wide V-shaped metal components.
Upon riveting, the inner edge of each protrusion and the outer edge of each indentation on the jointing regions of said metal components are respectively punched to make the periphery of each protrusion enlarged and the inner edge of each indentation minified. As such, the metal frame will be jointed compactly as one integral unity and become a single-plate-made square, rectangular or polyhedral metal frame.
Upon shaping, punch and draw rims of the metal frame to become vertical or roughly vertical for making a big or giant square, rectangular or polyhedral metal frame with inverted L-shaped cross-section on each side.
One piece or more than one pair of protrusions and indentations on each metal component or each arm is set at a position of inclined angle.
Referring to
The manufacturing process of the square or rectangular metal frame 1 of the present invention is detailed as follows:
The initial procedure is material-choosing. First, take coiled banding metal plates as material, and the thickness of the metal plate depends on the size of the square or rectangular metal frame 1 (as shown in
After the said two different widths of coiled banding metal plates have been chosen and prepared, lay them on two automatic cutting machines separately and they will be automatically delivered onto auto-punching machines. Proceed with auto-punching process on the metal plates via punching dies respectively. One of the auto-punching machines punches a left an a right I-shaped metal component 110a, 110b respectively, as shown in
Upon jointing, as indicated in
Upon riveting, as shown in
As for the final step of shaping, punch the periphery of said jointed metal frame of
Moreover,