Abstract
The manufacturing method for an aluminum alloy wheel rim consists
of the following steps: (1) cutting aluminum alloy material; (2) heating
the aluminum alloy material to make a marked center and fillet preformed
blank; (3) forging the marked center and fillet preformed blank into
a preformed blank; (4) punching a central axis of the preformed blank;
(5) forging the punched preformed blank into an enlarged rough forging
blank; and (6) forging the enlarged rough forging blank to form an
aluminum alloy wheel rim. With this presenting invention the structural
strength of the wheel rim is enhanced. In addition, the aluminum alloy
wheel rim can be manufactured rapidly, thereby enhancing efficient
productivity and improving quality of fabrication of the wheel rim.
Claims
What the invention claims:
1. A manufacturing method for an aluminum alloy wheel rim, comprising
the following steps: (1) cutting a determined amount of aluminum
alloy material; (2) heating and forming the determined amount of
aluminum alloy material to make a marked center and fillet preformed
blank; (3) forging the marked center and fillet preformed blank
at high temperature in a setting/forming die into a preformed blank;
(4) punching central axis of the preformed blank; (5) forging the
punched preformed blank at a high temperature in a preheated setting/forming
die of a rough forging blank into an enlarged rough forging blank;
and (6) forging the enlarged rough forging blank at a high temperature
in a preheated finished forging die to form an aluminum alloy wheel
rim.
2. The manufacturing method for an aluminum alloy wheel rim in
accordance with claim 1, wherein the heating of the marked center
and fillet preformed blank is heated at a temperature of 450.degree.
C.
3. The manufacturing method for an aluminum alloy wheel rim in
accordance with claim 1, wherein the marked center and fillet preformed
blank is placed in a setting/forming die to be forged into an H-shaped
preformed blank.
4. The manufacturing method for an aluminum alloy wheel rim in
accordance with claim 1, wherein the punched preformed blank is
heated at a temperature of 470.degree. C.
5. The manufacturing method for an aluminum alloy wheel rim in
accordance with claim 1, wherein the enlarged rough forging blank
is heated at a temperature of 470.degree. C.
6. The manufacturing method for an aluminum alloy wheel rim in
accordance with claim 1, wherein the finished forging die includes
two forming dies at two sides and two punching heads at front and
rear sides.
Description
BACKGROUND OF INVENTION
[0001] 1. Field of Invention
[0002] The presenting invention relates to a manufacturing method
for an aluminum alloy wheel rim. Particular reference is made to
this manufacturing method wherein the structural strength of the
aluminum alloy wheel rim is enhanced-and improved together with
other advantages.
[0003] 2. Description of Related Art
[0004] A conventional metallic wheel rim is produced by the lathe
blade and technology involving spinning operation techniques and
procedures. During the spinning operation of a conventional wheel
rim, the turning lathe blade apparently cuts and hence breaks the
structure of metallic crystals of wheel rim. In addition, the manufacturing
duration by spinning operation of a conventional wheel rim takes
a long period of time. As a result, the process by itself actually
renders weaknesses in the structure of the wheel rim, while reducing
productivity and the quality of fabrication of wheel rim is diminished.
Furthermore, the high temperature at which a wheel rim blank is
supposed to be maintained at is reduced apparently during long period
of manufacturing process, thereby contributing to a lessen structural
strength and quality of a conventional wheel rim.
SUMMARY OF THE INVENTION
[0005] The present invention is to mitigate and/or to obviate the
disadvantages confer by conventional manufacturing method for a
metallic wheel rim.
[0006] The primary objective of this new invention is to provide
a manufacturing method for aluminum alloy wheel rim, wherein the
structural strength of wheel rim is enhanced and improved over the
conventionally produced wheel rim.
[0007] Another objective of the invention is to provide a method
for the manufacturing of aluminum alloy wheel rim, wherein its production
can be speed up rapidly, and thereby enhancing efficient productivity
while at the same time maintaining the quality of fabrication of
the wheel rim.
[0008] In accordance with this presenting new invention for industrial
method of production, the following steps illustrate a typical procedure
in making aluminum alloy wheel rim:
[0009] (1) cutting a pre-determined amount of aluminum alloy material;
[0010] (2) heating and forming the determined amount of aluminum
alloy material to make a marked center and fillet preformed blank;
[0011] (3) forging the marked center and fillet preformed blank
at high temperature in a setting/forming die into a preformed blank;
[0012] (4) punching a central axis in the preformed blank;
[0013] (5) forging the punched preformed blank at high temperature
in a preheated setting/forming die of a rough forging blank into
an enlarged rough forging blank; and
[0014] (6) forging the enlarged rough forging blank at high temperature
in a preheated finished forging die to form an aluminum alloy wheel
rim.
[0015] Optimal Conditions for the Above Steps:
[0016] Optimally and preferably, the heating of marked center and
fillet preformed blank 10 is heated at a temperature of 450.degree.
C.
[0017] Optimally and preferably, the marked center and fillet preformed
blank is placed in a setting/forming die to be forged into an H-shaped
preformed blank.
[0018] Optimally and preferably, the punched H-shaped preformed
blank is heated at a temperature of 470.degree. C.
[0019] Optimally and preferably, the enlarged rough forging blank
is heated at a temperature of 470.degree. C.
[0020] Optimally and preferably, the finished forging die includes
two forming dies at two sides and two punching heads at front and
rear sides.
[0021] Appreciation of further benefits and advantages of this
presenting new invention will become apparent after a careful reading
of detailed description with appropriate references to relevant
accompanying drawings.
BRIEF DESCRIPTION OF THE ACCOMPANYING DRAWINGS
[0022] FIG. 1 is a flow chart illustrating the manufacturing method
for aluminum alloy wheel rim in accordance with the preferred embodiment
of the presenting invention;
[0023] FIG. 2 is a partially cross-sectional view of a marked center
and fillet preformed blank in accordance with the preferred embodiment
of the presenting invention;
[0024] FIG. 3 is a cross-sectional view of a single H-shaped preformed
blank in accordance with the preferred embodiment of the presenting
invention;
[0025] FIG. 4 is a cross-sectional view of an enlarged rough forging
blank in accordance with the preferred embodiment of the presenting
invention;
[0026] FIG. 5 is a cross-sectional view of a single preheated finished
forging die in accordance with the preferred embodiment of the presenting
invention;
[0027] FIG. 6 is a cross-sectional view of an aluminum alloy wheel
rim in accordance with the preferred embodiment of the presenting
invention; and
[0028] FIG. 7 is a perspective view of an aluminum alloy wheel
rim product in accordance with the preferred embodiment of the presenting
invention.
DETAILED DESCRIPTION OF THE INVENTION
[0029] In reference to the accompanying drawings and with respect
to FIGS. 1-6, the manufacturing method for aluminum alloy wheel
rim in accordance with the preferred embodiment of the present invention
comprises the following steps:
[0030] (1) cutting a determined amount of aluminum alloy material
for making a metallic wheel rim;
[0031] (2) heating and forming the determined amount of aluminum
alloy material to make a marked center and fillet preformed blank
10 (see FIG. 2), wherein the marked center and fillet preformed
blank 10 has a cylindrical shape with a central axis that functions
as a basis line to facilitate later forging process of the metallic
wheel rim;
[0032] (3) heating the marked center and fillet preformed blank
10 at a temperature of 450.degree. C. in a blast furnace, and subsequently
forging the marked center and fillet preformed blank 10 in a setting/forming
die into a H-shaped preformed blank 20 (see FIG. 3), wherein the
marked center and fillet preformed blank 10 at high temperature
produces a flow and expansion effect during the forging process,
so that the marked center and fillet preformed blank 10 is forged
into a H-shaped preformed blank 20 of the metallic wheel rim forge;
[0033] (4) punching a central axis of the H-shaped preformed blank
20 and placing the punched H-shaped preformed blank 20 in a setting/forming
die of a rough forging blank for later processing into enlarging
and forging process;
[0034] (5) heating the punched H-shaped preformed blank 20 at a
temperature of 470.degree. C. in a blast furnace, and subsequently
forging the punched H-shaped preformed blank 20 in a preheated setting/forming
die of a rough forging blank into an enlarged rough forging blank
30 (see FIG. 4), wherein the enlarged rough forging blank 30 has
a profile similar to that of the wheel rim to facilitate later procedures;
and
[0035] (6) heating the enlarged rough forging blank 30 at a temperature
of 470.degree. C. in a blast furnace, and subsequently forging the
enlarged rough forging blank 30 in a preheated finished forging
die 50 (see FIG. 5) to form an aluminum alloy wheel rim 40A (see
FIG. 6), wherein the enlarged rough forging blank 30 is squeezed
at high temperature and extruded in the preheated finished forging
die 50 to produce a flowing effect, so that the enlarged rough forging
blank 30 is forged and formed between the forming dies 51 and 51,
and the punching heads 55 and 56 of the preheated finished forging
die 50, thereby forming an aluminum alloy wheel rim 40A.
[0036] Finally, the aluminum alloy wheel rim 40A is processed by
heat treatment and mechanical working procedures, thereby forming
an aluminum alloy wheel rim product 40 as shown in FIG. 7.
[0037] Accordingly, the manufacturing method for the aluminum alloy
wheel rim in accordance with the preferred embodiment of the present
invention is illustrated briefly as follows.
[0038] First of all, a determined amount of aluminum alloy material
is heated, forged and formed in order to make a marked center and
fillet preformed blank 10 and a H-shaped preformed blank 20. Then,
the H-shaped preformed blank 20 is punched and forged to form an
enlarged rough forging blank 30 which has a profile similar to that
of the wheel rim. Then, the enlarged rough forging blank 30 is squeezed
at high temperature and extruded in the preheated finished forging
die 50 to produce a flowing effect, so that the enlarged rough forging
blank 30 is forged and formed in the preheated finished forging
die 50, thereby forming the aluminum alloy wheel rim 40A. Finally,
the aluminum alloy wheel rim 40A is processed by heat treatment
and mechanical working procedures, thereby forming an aluminum alloy
wheel rim product 40 as shown in FIG. 7.
[0039] In the processing manner described above, when the aluminum
alloy blank is squeezed and extruded during the forging process,
the metallic crystals of aluminum alloy is disposed at an extended
state in high temperature and therefore the structure (of metallic
crystals) of the aluminum alloy is not broken. Thus, this manufacturing
invention confers superior structural strength on wheel rim, and
this structural strength is greater than the conventional wheel
rim that is made by lathe blade and the spinning operation technology.
In comparison, during the spinning operation of the conventional
wheel rim, the turning lathe blade apparently cuts and breaks the
structure of metallic crystals. In addition, the duration for (1)
the enlarged rough forging blank 30 is forged between the forming
dies 51 and 51, and (2) the punching heads 55 and 56 of the preheated
finished forging die 50, last for only a few seconds, so this effectively
means that the aluminum alloy wheel rim 40A under the presenting
invention can be manufactured rapidly, thereby enhancing efficient
productivity and improving the quality of fabrication of the rim.
On the contrary, the spinning operation of the conventional wheel
rim takes a few minutes, thereby decreasing productivity while concurrently
diminishing the quality of fabrication of the wheel rim. In addition,
the temperature of the wheel rim blank at high temperature is reduced
apparently during the long period of time, thereby further decreasing
the structural strength and quality of the conventional wheel rim.
[0040] Although the invention has been explained in relation to
its preferred embodiment(s) as mentioned above, it is to be understood
that many other possible modifications and variations can be made
without departing from the scope of the present invention. It is,
therefore, contemplated that the appending claim or claims will
cover such modifications and variations that fall within the true
scope of the presenting new invention. |