US20260183819A1 · App 18/863,836
FORMATION METHOD OF SIDEWALL PART
Publication
Application
Classifications
IPC Classifications
CPC Classifications
Applicants
SANGO CO., LTD.
Inventors
Tsuyoshi ICHIDA, Jiro KAGITANI, Takeshi YOSHIDA
Abstract
A method in which a product is molded integrally by press processing at an ordinary temperature from a tabular blank consisting of a common material involves a top plate part of an intermediate blank comprising a top plate part and a sidewall part formed integrally by bending an end part of a tabular blank at a predetermined first angle is sandwiched and held, the end part on the tip end side of the sidewall part of the intermediate blank is pressed toward the base end side while maintaining a state where the sidewall part of the intermediate blank in which the sidewall part opened due to spring back and a flange angle that is the angle between the top plate part and the sidewall part became larger than the first angle has been pushed back until the flange angle coincides with the first angle.
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Figures
Description
TECHNICAL FIELD
[0001]The present invention relates to a formation method of a sidewall part.
BACKGROUND ART
[0002]For example, when a product 200 comprising a top plate part 210 and a sidewall part (flange part) 220 installed upright at an approximately right angle from an end part of the top plate part 210 as exemplified in
[0003]In the example shown in (a) of
[0004]However, as exemplified on the right hand side in (a) of
[0005](b) of
[0006]However, since the spring back amount differs according to materials constituting the blanks, shapes of products to be molded and/or processing conditions, etc., for example, it is necessary to estimate the amount of spring back carefully for each products in order to set up the restriking angle appropriately. Moreover, even though the restriking angle is set up appropriately in this way, it is difficult to eliminate variation for each individual processed products completely in a mass production. Therefore, a “trimming process” that is a process in which the sidewall part is molded longer than its target shape expecting a certain amount of variation and thereafter a surplus part is cut off from the sidewall part has been widely performed as additional processing.
[0007](c) of
[0008]Moreover, when the length of the sidewall part 220 is short like the product 200 exemplified in
[0009]On the other hand, in the Patent Literature 1 (PTL 1, Japanese Patent Application Laid-Open (kokai) No. 2001-225111), and the Patent Literature 2 (PTL 2, Japanese Patent Application Laid-Open (kokai) No. 2014-91140), methods which perform what is called “coining processing” that is processing in which a blank having sidewall part formed by bending work and/or drawing work and an approximately U character-like cross section is fitted (restrained) inside a mold and the tip end of the sidewall part is struck (pressed) toward its base end side are disclosed. In accordance with such methods, it is supposed that sufficient compressive residual stress can be given and fatigue strength can be improved while raising dimensional accuracy in the tip end shape of the sidewall part. However, in these methods, the problem that the sidewall part opens due to spring back and the flange angle becomes larger than a predetermined angle (for example, approximately right angle) when the product is picked out from the mold after completion of the bending process as mentioned above is not taken into consideration at all.
[0010]Furthermore, in the Patent Literature 3 (PTL 3, Japanese Patent Application Laid-Open (kokai) No. 2014-221493), a method in which a box body which comprises a top plate part and a sidewall part installed upright from the top plate part by multistage warm-press processing covering from a metal plate consisting of a specific material, such as a magnesium, is disclosed. In accordance with the method, it is supposed that a box object which has a sharp corner part can be provided by performing bending work and/or drawing work and coining processing simultaneously. However, also in this method, the problem that the sidewall part opens due to spring back and the flange angle becomes larger than a predetermined angle (for example, approximately right angle) when the product is picked out from the mold after completion of the bending process as mentioned above is not taken into consideration at all.
[0011]As the above, in the art, in a method in which a product which comprises a top plate part and a sidewall part (flange part) installed upright at a predetermined angle (for example, an approximately right angle) from an end part of the top plate part is molded integrally by press processing at an ordinary temperature from a tabular blank consisting of a common material, a technology which can cancel or reduce spring back without performing the above-mentioned restriking process as additional processing is desired.
CITATION LIST
Patent Literature
- [0012][PTL 1] Japanese Patent Application Laid-Open (kokai) No. 2001-225111
- [0013][PTL 2] Japanese Patent Application Laid-Open (kokai) No. 2014-91140
- [0014][PTL 3] Japanese Patent Application Laid-Open (kokai) No. 2014-221493
SUMMARY OF INVENTION
Technical Problem
[0015]As mentioned previously, in the art, in a method in which a product which comprises a top plate part and a sidewall part (flange part) installed upright at a predetermined angle (for example, an approximately right angle) from an end part of the top plate part is molded integrally by press processing at an ordinary temperature from a tabular blank consisting of a common material, a technology which can cancel or reduce spring back without performing the above-mentioned restriking process as additional processing is desired.
Solution to Problem
[0016]In view of the above-mentioned problem, as a result of diligent research, the present inventor has found out that, by sandwiching and holding a top plate part of an intermediate blank which comprises the top plate part and a sidewall part formed integrally by bending an end part of a tabular blank at a predetermined first angle and pressing the tip end part of the sidewall part of the intermediate blank toward the base end side while maintaining a state where the sidewall part of the intermediate blank in which the sidewall part opened due to spring back and a flange angle that is the angle between the top plate part and the sidewall part became larger than the first angle has been pushed back until the flange angle coincides with the first angle.
[0017]Specifically, a formation method of a sidewall part according to the present invention (which may be referred to as a “present invention method” hereafter) is a formation method of a sidewall part in a method in which a product comprising a top plate part and a sidewall part installed upright at a first angle that is a predetermined angle from an end part of the top plate part is molded integrally by press processing at an ordinary temperature from a tabular blank. The present invention method includes a first step to a third step listed below.
[0018]The first step is a step in which an intermediate blank comprising a top plate part and a sidewall part formed integrally by bending an end part of the tabular blank at the first angle through bending work and/or drawing work is obtained.
[0019]The second step is a step in which the top plate part of the intermediate blank is sandwiched and held between a first holding member disposed outside the top plate part of the intermediate blank and a second holding member disposed inside the top plate part of the intermediate blank.
[0020]The third step is a step in which the sidewall part of the intermediate blank which was in a first state is brought to be in a second state and a first end part that is an end part on the tip end side of the sidewall part is pressed toward the base end side while maintaining the second state. The first state is a state where the sidewall part of the intermediate blank opens due to spring back and a flange angle that is the angle between the top plate part and the sidewall part is larger than the first angle. The second state is a state where the sidewall part is pushed back until the flange angle coincides with the first angle.
Advantageous Effects of Invention
[0021]In the present invention method, as mentioned above, in the third step, the end part on the tip end side of the sidewall part of the intermediate blank is pressed toward the base end side while maintaining a state where the sidewall part of the intermediate blank in which the sidewall part opened due to spring back and a flange angle that is the angle between the top plate part and the sidewall part became larger than the first angle has been pushed back until the flange angle coincides with the first angle. Thereby, residual stress causing spring back of the intermediate blank is canceled or reduced, and a product with the flange angle corresponding to the target first angle can be formed.
[0022]Namely, in accordance with the present invention method, in a method in which a product which comprises a top plate part and a sidewall part (flange part) installed upright at a predetermined angle (for example, an approximately right angle) from an end part of the top plate part is molded integrally by press processing at an ordinary temperature from a tabular blank consisting of a common material, spring back can be canceled or reduced without performing the above-mentioned restriking process as additional processing.
[0023]Other objectives, other features and accompanying advantages of the present invention will be easily understood from the following explanation about respective embodiments of the present invention described referring to drawings.
BRIEF DESCRIPTION OF DRAWINGS
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
DESCRIPTION OF EMBODIMENTS
First Embodiment
[0032]Hereafter, a formation method of a sidewall part according to a first embodiment of the present invention (which may be referred to as a “first method” hereafter) will be explained.
[0033]The first method is a formation method of a sidewall part in a method in which a product comprising a top plate part and a sidewall part installed upright at a first angle that is a predetermined angle from an end part of the top plate part is molded integrally by press processing at an ordinary temperature from a tabular blank. A material constituting the tabular blank is not limited as long as it is possible to obtain an intermediate blank comprising a top plate part and sidewall part formed integrally by bending an end part of the tabular blank through bending work and/or drawing work. As examples of such materials, metals such as stainless steel, copper and aluminum as well as alloys containing these metals and the like can be mentioned, for example. The shape of the tabular blank is not limited in particular as long as at least a part which will become the top plate part and the sidewall part is tabular, and the shape may be planar or curved, and non-tabular part may exist in regions other than the parts which will become the top plate part and the sidewall part. Typically, the shape of the tabular blank is a planar rectangle, a planar elliptical or planar circular, for example.
[0034]The number of the sidewall parts installed upright at the end part of the top plate part may be one, or may be plural. When the number of the sidewall parts is plural, all the sidewall parts may be installed upright at an identical first angle on the same side with respect to the top plate part, or a part of the sidewall parts may be installed upright at a different first angle with respect to the top plate part. In the latter case, a part of the sidewall parts may be installed upright toward the side opposite to other sidewall parts with respect to the top plate part. Furthermore, the first method can be also applied to a method in which an annular sidewall part is prepared so as to surround a peripheral edge of the top plate part to mold a product with a bottomed cylindrical shape.
[0035]As shown in the flow chart exemplified in
[0036]As exemplified in
[0037]
[0038]However, similarly to the conventional technology explained at the beginning of the present description while referring to (a) of
[0039]A state where the sidewall part of the intermediate blank opens due to spring back and a flange angle that is the angle between the top plate part and the sidewall part is larger than the first angle may be referred to as a “first state” hereafter.
[0040]Then, in the first method, the second step is performed in the following Step S20, as exemplified in
[0041]Next, the third step is performed in Step S30. The third step is a step in which the sidewall part of the intermediate blank which was in a first state is brought to be in a second state and a first end part that is an end part on the tip end side of the sidewall part is pressed toward the base end side while maintaining the second state. The first state is a state where the sidewall part of the intermediate blank opens due to spring back and a flange angle that is the angle between the top plate part and the sidewall part is larger than the first angle. The second state is a state where the sidewall part is pushed back until the flange angle coincides with the first angle. Specifically, as shown by the black-painted arrow in (d) of
[0042]Specific means for pushing back the sidewall part 132 of the intermediate blank 130 in the first state where the sidewall part 132 opens due to spring back and bringing the intermediate blank 130 to be in the second state in the third step is not limited in particular. Moreover, specific means for pressing the end part on the tip end side of the sidewall part 132 of the intermediate blank 130 (first end part E1) toward the base end side while maintaining the second state is not limited in particular, either.
[0043]For example, (a) of
[0044]Next, the third step is started, and the second state is attained by pushing back the sidewall part of the intermediate blank 130 until the flange angle θf is coincides with the first angle θ1 using the first pressing member 61 (for example, a pad) (refer to the black-painted arrow) as exemplified in (b) of
[0045]Although the sidewall part of the intermediate blank which used to be in the first state can be brought to be in the second state and the third step in which the first end part that is an end part on the tip end side of the sidewall part of the intermediate blank is pressed toward the base end side while maintaining the second state can be performed as mentioned above, the above is only an example of the means for performing the third step to the last.
[0046]By performing the third step (Step S30) as the above, the stress history which the tabular blank 100 received in the first step (Step S10) is overwritten, and the residual stress causing the above-mentioned spring back is canceled. As a result, the possibility that the sidewall part 132 will open due to spring back when the intermediate blank 130 is picked out from a mold after completion of the third step is canceled or reduced. Namely, the product 200 comprising the top plate part 210 and the sidewall part 220 installed upright from the end part of the top plate part 210 at the first angle θ1 (not shown in
[0047]In addition, as mentioned above, in the third step, the first end part E1 that is an end part on the tip end side of the sidewall part 132 of the intermediate blank 130 is pressed toward the base end side (bent part side). Since stress in an extension direction remains in the sidewall part 132 as a result of the stress history, the sidewall part 132 opens slightly due to spring back resulting from the residual stress when the intermediate blank 130 is picked out from a mold after completion of the third step (refer to the part hatched with oblique lines in (e) of
Effects
[0048]In the first method, as mentioned above, in the third step, the end part on the tip end side of the sidewall part of the intermediate blank is pressed toward the base end side while maintaining a state where the sidewall part of the intermediate blank in which the sidewall part opened due to spring back and a flange angle that is the angle between the top plate part and the sidewall part became larger than the first angle has been pushed back until the flange angle coincides with the first angle. Thereby, residual stress causing spring back of the intermediate blank is canceled or reduced, and a product with the flange angle corresponding to the target first angle can be formed.
[0049]Namely, in accordance with the first method, in a method in which a product which comprises a top plate part and a sidewall part (flange part) installed upright at a predetermined angle (for example, an approximately right angle) from an end part of the top plate part is molded integrally by press processing at an ordinary temperature from a tabular blank consisting of a common material, spring back can be canceled or reduced without performing the above-mentioned restriking process as additional processing.
Second Embodiment
[0050]Hereafter, a formation method of a sidewall part according to a second embodiment of the present invention (which may be referred to as a “second method” hereafter) will be explained.
[0051]As mentioned previously, specific means for pressing the end part on the tip end side of the sidewall part of the intermediate blank (first end part) toward the base end side while maintaining the intermediate blank which was in the first state where the sidewall part opened due to spring back in the second state where the sidewall part of the intermediate blank is pushed back is not limited in particular.
[0052]The means exemplified in
[0053]However, in the means exemplified in
[0054]From a viewpoint of reducing the labor, components and cost required for implementation of the formation method of a sidewall part according to the present invention (present invention method) as much as possible, it is preferable to decrease the number of the components required for performing the third step and make the driving units simpler.
Configuration
[0055]Then, the second method is the above-mentioned first method, characterized in that the third step is performed by advancing a punch which has a predetermined shape toward the intermediate blank in a first direction that is a predetermined direction. Hereafter, details of the third step performed in the second method will be explained referring to
[0056]
[0057]Moreover, as exemplified in (a) of
[0058]The first surface 71 is an inclined plane formed at an end part on the tip end side (the downstream side in the first direction D1, namely the upper side in the drawing) of the punch 70 and inclined at a predetermined angle θs with respect to the first direction D1 (refer to (b) of
[0059]The second surface 72 is a surface which adjoins the base end side of the first surface 71 and has a shape corresponding to the outer surface of the sidewall part 132 of the intermediate blank 130 in the second state. In the example shown in
[0060]The third surface 73 is a surface which adjoins the base end side of the second surface 72 and has a shape which can come into contact with the first end part E1 of the intermediate blank 130 in the second state. In the example shown in
[0061]In the third step included in the second method, in association with advancing the punch 70 toward the intermediate blank 130 in the first direction D1, the processing listed below are sequentially executed. In the example shown in
[0062]First, as exemplified in (a) of
[0063]As a result of performing the third step by advancing the punch 70 in the first direction D1 as mentioned above, the stress history which the tabular blank 100 received in the first step (Step S10) is overwritten, and stress in a shrinkage direction (a black-painted arrow) in the outside of the bent part of the intermediate blank 130 and stress in an extension direction (outlined white arrow) in the inside of the bent part of the intermediate blank 130 are cancelled or reduced respectively, as exemplified in (c) of
Effects
[0064]As mentioned above, in the second method, the third step is performed by advancing a punch which has a predetermined shape toward the intermediate blank in the first direction that is a predetermined direction. Namely, in the second method, the third step can be performed by a simpler configuration without requiring to drive many components intricately as exemplified in
Third Embodiment
[0065]Hereafter, a formation method of a sidewall part according to a third embodiment of the present invention (which may be referred to as a “third method” hereafter) will be explained.
[0066]In the formation method of a sidewall part according to the present invention (present invention method) including the first method and the second method, as mentioned previously, in the third step, the end part on the tip end side of the sidewall part of the intermediate blank is pressed toward the base end side while maintaining a state where the sidewall part of the intermediate blank in which the sidewall part opened due to spring back and a flange angle that is the angle between the top plate part and the sidewall part became larger than the first angle has been pushed back until the flange angle coincides with the first angle. Thereby, residual stress causing spring back of the intermediate blank is canceled or reduced, and a product with the flange angle corresponding to the target first angle can be formed.
[0067]Namely, in accordance with the present invention method, in a method in which a product which comprises a top plate part and a sidewall part (flange part) installed upright at a predetermined angle (for example, an approximately right angle) from an end part of the top plate part is molded integrally by press processing at an ordinary temperature from a tabular blank consisting of a common material, spring back can be canceled or reduced without performing the above-mentioned restriking process as additional processing.
[0068]From a viewpoint of further improving dimensional accuracy in the shape of the sidewall part of the product formed by the present invention method, it is preferable to press the first end part in the inside of a closed space when pressing the end part on the tip end side of the sidewall part of the intermediate blank (first end part) maintained in the second state toward the base end side in the third step.
Configuration
[0069]Then, the third method is the above-mentioned second method, characterized in that, in the third step, the first end part is pressed toward the base end side in a state where a part including at least the first end part of the sidewall part of the intermediate blank is housed in the inside of a closed space.
[0070]Specific configurations of the above-mentioned closed space are not limited in particular, as long as residual stress causing spring back of the intermediate blank is cancelled or reduced by pressing the first end part toward the base end side and dimensional accuracy in the shape of the sidewall part of the product formed by the third method can be improved.
[0071]
[0072]In the example shown in
[0073]By the way, also in the configuration exemplified in
Effects
[0074]As mentioned above, in the third step included in the third method, the first end part is pressed toward the base end side in a state where a part including at least the first end part of the sidewall part of the intermediate blank is housed in the inside of a closed space. Therefore, in accordance with the third method, spring back of the intermediate blank in a method for molding a product comprising a top plate part and sidewall part formed integrally by press working at an ordinary temperature from a tabular blank consisting of a common material can be cancelled or reduced while further improving dimensional accuracy in the shape of the sidewall part of the formed product.
[0075]Although some embodiments which have specific configurations have been explained referring to accompanying drawings as the above for the purpose of explaining the present invention, it should not be interpreted that the scope of the present invention is limited to these exemplary embodiments, and it is needless to say that modifications can be properly added within the limits of the matter described in the claims and the specification.
[0076]For example, application of a formation method of a sidewall part according to the present invention (present invention method) is not limited to a case where a product having a planar sidewall part (flange) erected from one end edge in a shape of a straight line of a top plate part as mentioned above is molded. For example, the present invention method can be applied also to a case where a product having a curved sidewall part (flange) erected from one end edge in a shape of a curved line of a top plate part is molded. Moreover, the present invention method can be applied also to a case where a product having a sidewall part (flange) erected from all over the end edge of a top plate part is molded. Furthermore, the present invention method can be applied also to a case where a bowl-shaped body that is a product having a sidewall part (flange) erected from all over the circumference of an end edge of a top plate part in a shape pf a disk, for example, is molded.
REFERENCE SIGNS LIST
- [0077]12: Second Lower Mold Die
- [0078]13: Third Lower Mold Die
- [0079]21: First Pad
- [0080]22: Second Pad
- [0081]31: First Bending Blade
- [0082]32: Second Bending Blade
- [0083]41: First Punch
- [0084]51: First Holding Member
- [0085]52: Second Holding Member
- [0086]61: First Pressing Member
- [0087]62: Second Pressing Member
- [0088]70: Punch
- [0089]71: First Surface
- [0090]72: Second Surface
- [0091]73: Third Surface
- [0092]100: Tabular Blank
- [0093]110: First Intermediate Blank
- [0094]120: Second Intermediate Blank
- [0095]130: Intermediate Blank
- [0096]131: Top Plate Part
- [0097]132: Sidewall Part
- [0098]200: Product
- [0099]210: Top Plate Part
- [0100]220: Sidewall Part
- [0101]300: Scrap
Claims
1. A formation method of a sidewall part in a method in which a product comprising a top plate part and a sidewall part installed upright at a first angle that is a predetermined angle from an end part of said top plate part is molded integrally by press processing at an ordinary temperature from a tabular blank, including:
a first step in which an intermediate blank comprising a top plate part and a sidewall part formed integrally by bending an end part of said tabular blank at said first angle through bending work and/or drawing work is obtained,
a second step in which said top plate part of said intermediate blank is sandwiched and held between a first holding member disposed outside said top plate part of said intermediate blank and a second holding member disposed inside said top plate part of said intermediate blank, and
a third step in which said sidewall part of said intermediate blank which was in a first state is brought to be in a second state and a first end part that is an end part on the tip end side of said sidewall part is pressed toward the base end side while maintaining said second state, said first state is a state where said sidewall part of said intermediate blank opens due to spring back and a flange angle that is the angle between said top plate part and said sidewall part is larger than said first angle, and said second state is a state where said sidewall part is pushed back until said flange angle coincides with said first angle said third step is performing a punch which has a predetermined shape toward said intermediate blank in a first direction that is a predetermined direction,
said first direction is a direction parallel to a direction from said tip end side toward said base side of said sidewall part of said intermediate blank in said second state,
on a side surface of said punch opposing to said sidewall part of said intermediate blank in said second state, a first surface that is an inclined plane formed at an end part of the tip end side and inclined at a predetermined angle with respect to said first direction, a second surface that is a surface which adjoins the base end side of said first surface and has a shape corresponding to the outer surface of said sidewall part of said intermediate blank in said second state, and a third surface that is a surface which adjoins the base end side of said second surface and has a shape which can come into contact with said first end part of said intermediate blank in said second state, and
in association with advancing said punch in said first direction in said third step:
said first end part is brought into contact with said first surface,
by sliding said first end part on said first surface, said flange angle is made to coincide with said first angle and attain said second state,
by sliding said second surface on said outer surface of said sidewall part of said intermediate blank, said first end part is brought into contact with said third surface while maintaining said second state, and
said first end part is pressed toward said base end side by said third surface.
2. (canceled)
3. (canceled)
4. The formation method of a sidewall part according to
in said third step, said first end part is pressed toward said base end side by said third surface in a state where a part including at least said first end part of said sidewall part of said intermediate blank is housed in the inside of a closed space defined by said first holding member, said second holding member, and said second and third surfaces of said punch.