Method of welding aluminum plated steel sheet
11229974 · 2022-01-25
Assignee
Inventors
Cpc classification
B23K26/242
PERFORMING OPERATIONS; TRANSPORTING
B23K9/23
PERFORMING OPERATIONS; TRANSPORTING
B23K26/0006
PERFORMING OPERATIONS; TRANSPORTING
B23K11/16
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23K26/242
PERFORMING OPERATIONS; TRANSPORTING
B23K26/00
PERFORMING OPERATIONS; TRANSPORTING
B23K9/23
PERFORMING OPERATIONS; TRANSPORTING
B23K11/16
PERFORMING OPERATIONS; TRANSPORTING
Abstract
To enable welding in a state in which aluminum plating in a desired welding region is removed at a desired high accuracy, a plating layer (103) in a welding region (151) and a plating layer (104) in a welding region (152) are removed using an alkaline solution to form a preprocessed aluminum plated steel sheet (101a), and a plating layer (123) in a welding region (153) and a plating layer (124) in a welding region (154) are removed using an alkaline solution to form a preprocessed aluminum plated steel sheet (121a).
Claims
1. A method of welding an aluminum plated steel sheet, comprising: the first step of forming a preprocessed aluminum plated steel sheet in which a plating layer made of aluminum in a welding region is removed by an alkaline solution; and the second step of welding another member made of steel to the welding region of the preprocessed aluminum plated steel sheet to integrate the member and the preprocessed aluminum plated steel sheet, wherein the first step includes: arranging masks between a plurality of separate aluminum plated steel sheets as spacers; bundling the plurality of separate aluminum plated steel sheets and the masks arranged therebetween, the masks being made to abut against regions other than plating removing regions of the respective aluminum plated steel sheets; and removing plating layers in the plating removing regions of the aluminum plated steel sheets by immersing in an alkaline solution partial regions, including the plating removing regions, of the aluminum plated steel sheets, wherein the preprocessed aluminum plated steel sheet is one of the aluminum plated steel sheets, the plating layers of which have been removed in the plating removing regions by the alkaline solution, and the plating removing region of the one of the aluminum plated steel sheets includes the welding region of the preprocessed aluminum plated steel sheet.
2. The method of welding the aluminum plated steel sheet according to claim 1, wherein the masks are made of wax.
3. The method of welding the aluminum plated steel sheet according to claim 1, wherein in the first step, a first preprocessed aluminum plated steel sheet in which the plating layer in the welding region of a first aluminum plated steel sheet is removed by the alkaline solution is formed, and a second preprocessed aluminum plated steel sheet in which the plating layer in the welding region of a second aluminum plated steel sheet that is the other member is removed by the alkaline solution is formed, and in the second step, the welding regions of the first preprocessed aluminum plated steel sheet and the second preprocessed aluminum plated steel sheet are butted against each other and welded by laser welding, thereby forming a tailored welded blank in which the first preprocessed aluminum plated steel sheet and the second preprocessed aluminum plated steel sheet are integrated.
Description
BRIEF DESCRIPTION OF DRAWINGS
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BEST MODE FOR CARRYING OUT THE INVENTION
(18) An embodiment of the present invention will now be described with reference to the accompanying drawings.
(19) First, as shown in
(20) Next, as shown in
(21) Furthermore, a mask layer 125 is formed on the plating layer 123 on the obverse surface side of the aluminum plated steel sheet 121, and a mask layer 126 is formed on the plating layer 124 on the reverse surface side. The mask layer 125 makes a welding region 153 open on the side of the plating layer 123 of the aluminum plated steel sheet 121 and covers the plating layer 123 in the remaining region. In addition, the mask layer 126 makes a welding region 154 open on the side of the plating layer 124 of the aluminum plated steel sheet 121 and covers the plating layer 124 in the remaining region.
(22) Note that in this example, an end (end surface) 107 of the aluminum plated steel sheet 101 and an end 127 of the aluminum plated steel sheet 121 are butted against each other and welded, as will be described later. Hence, the welding regions 151 and 152 extend from the position of the end 107, and the welding regions 153 and 154 extend from the position of the end 127.
(23) Next, the plating layer 103 in the welding region 151 and the plating layer 104 in the welding region 152 are removed using an alkaline solution to form a preprocessed aluminum plated steel sheet 101a, as shown in
(24) Since the mask layers 105 and 106 are being formed, by having, for example, the entire region of the aluminum plated steel sheet 101 immersed in an aqueous solution of sodium hydroxide of a predetermined concentration, the plating layers 103 and 104 in the welding regions 151 and 152, which are not covered with the mask layers 105 and 106, are removed. In addition, since the steel sheet 102 does not dissolve in the alkaline solution, the plating layers 103 and 104 in the welding regions 151 and 152 are selectively removed.
(25) Similarly, since the mask layers 125 and 126 are being formed, by having, for example, the entier region of the aluminum plated steel sheet 121 immersed in an aqueous solution of sodium hydroxide of a predetermined concentration, the plating layers 123 and 124 in the welding regions 153 and 154, which are not covered with the mask layers 125 and 126, are removed. In addition, since the steel sheet 122 does not dissolve in the alkaline solution, the plating layers 123 and 124 in the welding regions 153 and 154 are selectively removed.
(26) Next, the mask layers 105, 106, 125, and 126 are removed to expose the surfaces of the plating layers 103, 104, 123, and 124 which are left out and unremoved, as shown in
(27) Next, as shown in
(28) As described above, when the two steel sheets are welded and integrated, a tailored welded blank is obtained. In addition, when the produced tailored welded blank is used, a vehicle body part having a desired shape can be obtained by hot press. In the obtained vehicle body part, aluminum that forms the plating layer is not mixed at the above-described welding point, and a high strength can be obtained by hardening in the hot press. Additionally, according to the above-described embodiment, the mask forming region can be arranged at a high accuracy. Since only aluminum can be removed, the aluminum plating layer is not left in the thickness direction, and the steel sheet portion is not removed. As described above, according to the present invention, it is possible to remove aluminum plating in a desired welding region at a desired high accuracy.
(29) An observation result of a welding point in a sample produced by the manufacturing method according to the above-described embodiment will be described here with reference to
(30) Laser irradiation is performed from the upper side shown in
(31) An observation result of a comparative sample formed by butting two aluminum plated steel sheets against each other and integrating them by laser welding without removing aluminum plating in the welding region will be described next with reference to
(32) Laser irradiation is performed from the upper side shown in
(33) Results of tensile tests executed for the sample and the comparative sample described above will be described next with reference to
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(36) As described above, a desired high welding strength can be obtained by the method of welding an aluminum plated steel sheet according to the present invention.
(37) The mask layer used to remove the plating layer made of aluminum in the welding region will be described next. For example, a masking tape can be used as the mask layer. Any masking tape using, for example, polyethylene as the material can be used.
(38) Alternatively, a resist may be applied and used as the mask layer. The resist is applied to a predetermined region by, for example, dipping, spray coating, screen printing, or the like and used as the mask layer. A resist made of a resin is applied to the entire region of a target aluminum plated steel sheet. Next, the resist film in a desired welding region is removed by an organic solvent or the like, thereby exposing the welding region. After that, the aluminum plating layer in the exposed welding region is dissolved and removed by an alkaline solution.
(39) Otherwise, a photosensitive resist may be used. For example, a novolac-based photoresist using diazonaphthoquinone as a photosensitive agent can be used. This photoresist is applied to the entire region of a target aluminum plated steel sheet. After that, a desired welding region is exposed. Next, the photoresist layer is developed by an alkaline solution, thereby exposing the welding region. When the alkaline solution is then made to act, the aluminum plating layer in the welding region exposed by the development can be dissolved and removed.
(40) Additionally, as shown in
(41) The mask may be made of wax such as paraffin. For example, a part of the aluminum plated steel sheet as the processing target is immersed in a heated and dissolved paraffin solution and pulled up, thereby applying the paraffin solution to a region from an end of the aluminum plated steel sheet up to a predetermined position and forming a paraffin layer. When the aluminum plated steel sheet is pulled up, the paraffin layer formed on the part of the aluminum plated steel sheet is cooled and solidified, and a state in which the paraffin layer is fixed to the aluminum plated steel sheet is maintained.
(42) Next, the paraffin layer in the welding region is removed. For example, when a cut is formed on the boundary line between the paraffin layer and the welding region using a cutter or the like, the paraffin layer in the welding region peels off from the aluminum plated steel sheet.
(43) After that, a predetermined region of the aluminum plated steel sheet including the welding region is immersed in an alkaline solution such as an aqueous solution of sodium hydroxide of a predetermined concentration, thereby dissolving and removing the aluminum plating layer in the welding region. Since the region in which the paraffin layer is formed does not come into contact with the alkaline solution, and the aluminum plating layer in this region is not removed, only the aluminum plating layer in the welding region is removed by the above-described processing.
(44) The paraffin used need only maintain the solid state at the temperature of the above-described dissolving/removing processing and have a melting point of, for example, about 60° C.
(45) A case in which welding is performed by laser welding has been described above as an example. However, the present invention is not limited to this. For example, another welding method such as spot (resistance heating) welding or arc welding may be used. In addition, a case in which the ends of aluminum plated steel sheets are butted against each other and welded has been described above as an example. However, the present invention is not limited to this. For example, the present invention is also applicable to a case in which bolts 502 and 503 made of steel are welded to an aluminum plated steel sheet 501 formed into a predetermined shape, as shown in (a) and (b) of
(46) In addition, aluminum plating in a welding region 513 on the periphery of a screw hole 511 through which a screw portion extends is selectively dissolved and removed by an alkaline solution. In this state, the screw portion base region of the head of the bolt 503 is welded to the welding point 513, as shown in (c) of
(47) Additionally, the present invention is also applicable to a case in which a hole portion 611 is formed by punching or the like in an aluminum plated steel sheet 601 formed into a predetermined shape, as shown in (a) of
(48) As described above, according to the present invention, a plating layer made of aluminum in the welding region of an aluminum plated steel sheet is removed by an alkaline solution. It is therefore possible to enable welding in a state in which aluminum plating in a desired welding region is removed at a desired high accuracy.
(49) Note that the present invention is not limited to the embodiment described above, and many modifications and combinations can be made by those who have ordinary knowledge in this field within the technical scope of the present invention, as a matter of course. For example, an aqueous solution of sodium hydroxide has been exemplified as an alkaline solution. However, the present invention is not limited to this, and any other alkaline solution such as an aqueous solution of potassium hydroxide may be used, as a matter of course.
(50) Explanation of the Reference Numerals and Signs
(51) 101 . . . aluminum plated steel sheet, 101a . . . preprocessed aluminum plated steel sheet, 102 . . . steel sheet, 103, 104 . . . plating layer, 105, 106 . . . mask layer, 107 . . . end, 121 . . . aluminum plated steel sheet (another member), 121a . . . preprocessed aluminum plated steel sheet, 122 . . . steel sheet, 123, 124 . . . plating layer, 125, 126 . . . mask layer, 127 . . . end, 131 . . . welding portion, 151, 152, 153, 154 . . . welding region