JP5901493B2 - Hot press molding method and mold - Google Patents

Hot press molding method and mold Download PDF

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JP5901493B2
JP5901493B2 JP2012229810A JP2012229810A JP5901493B2 JP 5901493 B2 JP5901493 B2 JP 5901493B2 JP 2012229810 A JP2012229810 A JP 2012229810A JP 2012229810 A JP2012229810 A JP 2012229810A JP 5901493 B2 JP5901493 B2 JP 5901493B2
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mold
workpiece
strength
work
boundary
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JP2014079790A (en
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俊史 松田
俊史 松田
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Honda Motor Co Ltd
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本発明は、加熱した鋼板をプレス成形する熱間プレス成形方法及び金型に関する。   The present invention relates to a hot press forming method and a mold for press forming a heated steel plate.

熱間プレス成形方法で成形されるワークとしては、例えば自動車の車体を補強する補強部材があるが、この補強部材は、車内空間を確保する高強度部と、車体への衝撃を吸収する低強度部との両方を必要とすることがある。車内空間を確保する部分と、車体への衝撃を吸収する部分とを別部材で構成することも考えられるが、補強部材を製造する手間が掛かってしまう。   As a workpiece formed by the hot press forming method, for example, there is a reinforcing member that reinforces the body of an automobile. This reinforcing member has a high-strength portion that secures a vehicle interior space and a low-strength that absorbs an impact on the body. May need both departments. Although it is conceivable that the portion for securing the interior space and the portion for absorbing the impact on the vehicle body are configured as separate members, it takes time to manufacture the reinforcing member.

そこで、従来、ワークの高強度にする部分を加熱する第1加熱手段と、ワーク全体を加熱する第2加熱手段とを備え、第1加熱手段によってワークの高強度にする部分を加熱した後に、第2加熱手段によってワーク全体を加熱してプレス成形することで、成形されたワーク中に高強度部と低強度部とを一体に形成する熱間プレス成形方法が知られている(例えば、特許文献1参照)。   Therefore, conventionally, after the first heating means for heating the part to be high strength of the work and the second heating means for heating the whole work, after heating the part to be high strength of the work by the first heating means, A hot press molding method is known in which a high-strength portion and a low-strength portion are integrally formed in a molded workpiece by press-molding the entire workpiece by second heating means (for example, a patent) Reference 1).

特開2009−95869号公報JP 2009-95869 A

しかしながら、上記従来の構成では、ワーク全体を加熱する第2加熱手段とは別に、ワークの高強度にする部分を加熱する第1加熱手段を必要とするため、加熱設備が大掛かりになってしまう。また、鋼板の加熱中や搬送中にワーク内に伝熱が生じるため、温度分布を制御することが困難であった。
本発明は、上述した事情に鑑みてなされたものであり、簡単な構成でワークに強度差をつけることが可能な熱間プレス成形方法及び金型を提供することを目的とする。
However, the above conventional configuration requires a first heating means for heating a portion of the work to be high in strength separately from the second heating means for heating the whole work, so that the heating equipment becomes large. In addition, since heat transfer occurs in the workpiece during heating or conveyance of the steel plate, it is difficult to control the temperature distribution.
This invention is made | formed in view of the situation mentioned above, and it aims at providing the hot press molding method and metal mold | die which can give an intensity | strength difference to a workpiece | work with simple structure.

上記目的を達成するために、本発明は、加熱されたワークを金型によってプレス成形するとともに、前記金型と前記ワークとの間に冷媒を流して当該ワークを冷却する熱間プレス成形方法において、前記ワークのうち高強度にする部分と低強度にする部分との境界に、前記金型の成形面から突出する凸部を設けて前記金型と前記ワークとの密着度を、高強度にする部分における前記金型と前記ワークとの密着度より高くしたことを特徴とする。
上記構成によれば、ワークのうち高強度にする部分と低強度にする部分との境界における金型とワークとの密着度を、高強度にする部分における金型とワークとの密着度より高くしたため、密着性を高めた部分によって、低強度にする部分のワークに冷媒が流れることを抑制できる。
In order to achieve the above object, the present invention provides a hot press molding method in which a heated work is press-molded by a mold, and a coolant is passed between the mold and the work to cool the work. In addition, a protrusion projecting from the molding surface of the mold is provided at the boundary between the portion to be high strength and the portion to be low strength of the workpiece, so that the degree of adhesion between the mold and the workpiece is high strength. said mold at a portion to have higher than adhesiveness between the work you characterized.
According to the above configuration, the degree of adhesion between the mold and the workpiece at the boundary between the portion to be high strength and the portion to be low strength of the workpiece is higher than the degree of adhesion between the mold and the workpiece at the portion to be high strength. For this reason, it is possible to suppress the refrigerant from flowing to the work of the portion to be reduced in strength by the portion having improved adhesion.

本発明は、加熱されたワークを金型によってプレス成形するとともに、前記金型と前記ワークとの間に冷媒を流して当該ワークを冷却する熱間プレス成形方法において、前記ワークのうち高強度にする部分と低強度にする部分との境界における前記金型と前記ワークとの密着度を、高強度にする部分における前記金型と前記ワークとの密着度より高くする凸部を前記ワークの前記境界に設けたことを特徴とする。
上記構成によれば、ワークの境界に凸部を設けるという簡単な構成で、低強度にする部
分のワークに冷媒が流れることを抑制できる。
The present invention provides a hot press molding method in which a heated work is press-molded with a mold and a coolant is allowed to flow between the mold and the work to cool the work. A convex portion that makes the degree of adhesion between the mold and the workpiece at the boundary between the portion to be reduced and the portion to be low strength higher than the degree of adhesion between the mold and the workpiece at the portion to be high strength. It is provided at the boundary.
According to the said structure, it can suppress that a refrigerant | coolant flows into the workpiece | work of the part made into low intensity | strength by the simple structure of providing a convex part in the boundary of a workpiece | work.

上記構成において、前記凸部を前記金型に一体又は別体に設けてもよい。
上記構成において、前記境界における前記金型と前記ワークの間に密着性を高める部材を配置してもよい。
上記構成によれば、境界における金型とワークの間に密着性を高める部材を配置するという簡単な構成で、低強度にする部分のワークに冷媒が流れることを抑制できる。
The said structure WHEREIN: You may provide the said convex part in the said metal mold | die integrally or separately.
The said structure WHEREIN: You may arrange | position the member which improves adhesiveness between the said metal mold | die and the said workpiece | work in the said boundary.
According to the said structure, it can suppress that a refrigerant | coolant flows into the workpiece | work of the part made into low intensity | strength by the simple structure of arrange | positioning the member which improves adhesiveness between the metal mold | die and a workpiece | work in a boundary.

また、本発明は、加熱されたワークをプレス成形するとともに、前記ワークとの間に冷媒を流して当該ワークを冷却する金型において、前記ワークのうち高強度にする部分と低強度にする部分との境界に、前記金型の成形面から突出する凸部を設けて前記金型と前記ワークとの密着度を、高強度にする部分における前記金型と前記ワークとの密着度より高くしたことを特徴とする。
上記構成によれば、ワークのうち高強度にする部分と低強度にする部分との境界における金型とワークとの密着度を、高強度にする部分における金型とワークとの密着度より高くしたため、密着性を高めた部分によって、低強度にする部分のワークに冷媒が流れることを抑制できる。
Further, the present invention provides a mold for press-molding a heated workpiece and cooling the workpiece by flowing a coolant between the workpiece and a portion for increasing the strength and a portion for decreasing the strength. Protrusions protruding from the molding surface of the mold are provided at the boundary between the mold and the work so that the degree of adhesion between the mold and the work is higher than the degree of adhesion between the mold and the work at the portion where the strength is increased. It is characterized by that.
According to the above configuration, the degree of adhesion between the mold and the workpiece at the boundary between the portion to be high strength and the portion to be low strength of the workpiece is higher than the degree of adhesion between the mold and the workpiece at the portion to be high strength. For this reason, it is possible to suppress the refrigerant from flowing to the work of the portion to be reduced in strength by the portion having improved adhesion.

上記構成において、上型及び下型を備え、前記上型及び下型の少なくとも一方に前記凸部を設けてもよい。
上記構成によれば、上型及び下型の少なくとも一方に凸部を設けるという簡単な構成で、低強度にする部分のワークに冷媒が流れることを抑制できる。
In the above configuration, an upper mold and a lower mold may be provided, and the convex portion may be provided on at least one of the upper mold and the lower mold.
According to the said structure, it can suppress that a refrigerant | coolant flows into the workpiece | work of the part made low intensity | strength by the simple structure of providing a convex part in at least one of an upper mold | type and a lower mold | type.

上記構成において、上型及び下型を備え、前記上型及び下型の両方に位置をずらして前記凸部を設けてもよい。
上記構成によれば、上型及び下型の両方に位置をずらして凸部を設けるという簡単な構成で、低強度にする部分のワークに冷媒が流れることを抑制できる。
The said structure WHEREIN: An upper mold | type and a lower mold | type may be provided, and the said convex part may be provided by shifting a position in both the said upper mold | type and a lower mold | type.
According to the said structure, it can suppress that a refrigerant | coolant flows into the workpiece | work of the part made into low intensity | strength with the simple structure of providing a convex part by shifting a position to both an upper mold | type and a lower mold | type.

本発明によれば、ワークのうち高強度にする部分と低強度にする部分との境界における金型とワークとの密着度を、高強度にする部分における金型とワークとの密着度より高くしたため、密着性を高めた部分によって、低強度にする部分のワークに冷媒が流れることを抑制でき、簡単な構成でワークに強度差をつけることができる。
また、ワークの境界に凸部を設けるという簡単な構成で、低強度にする部分のワークに冷媒が流れることを抑制でき、ワークに強度差をつけることができる。
また、境界における金型とワークの間に密着性を高める部材を配置するという簡単な構成で、低強度にする部分のワークに冷媒が流れることを抑制でき、ワークに強度差をつけることができる。
According to the present invention, the degree of adhesion between the mold and the workpiece at the boundary between the portion to be high strength and the portion to be low strength of the workpiece is higher than the adhesion between the die and the workpiece at the portion to be high strength. Therefore, the portion where the adhesion is enhanced can suppress the flow of the refrigerant to the workpiece of the portion to be reduced in strength, and the workpiece can be provided with a difference in strength with a simple configuration.
In addition, with a simple configuration in which a convex portion is provided at the boundary of the workpiece, it is possible to suppress the flow of the refrigerant to the workpiece at the portion to be reduced in strength, and to make a difference in strength between the workpieces.
In addition, with a simple configuration in which a member that enhances adhesion between the mold and the workpiece at the boundary is disposed, it is possible to suppress the flow of the refrigerant to the portion of the workpiece to be reduced in strength, and to make a difference in strength between the workpieces. .

また、上型及び下型の少なくとも一方に凸部を設けるという簡単な構成で、低強度にする部分のワークに冷媒が流れることを抑制でき、ワークに強度差をつけることができる。
また、上型及び下型の両方に位置をずらして凸部を設けるという簡単な構成で、低強度にする部分のワークに冷媒が流れることを抑制でき、ワークに強度差をつけることができる。また、ワークの境界が薄くなるのを防止できる。
In addition, with a simple configuration in which a convex portion is provided on at least one of the upper die and the lower die, it is possible to suppress the flow of the refrigerant to the work in the portion to be reduced in strength, and to make a difference in strength between the work.
Further, with a simple configuration in which the convex portions are provided by shifting the positions of both the upper die and the lower die, it is possible to suppress the flow of the refrigerant to the work in the portion to be reduced in strength, and to make a difference in strength between the work. Moreover, it can prevent that the boundary of a workpiece | work becomes thin.

本発明の実施形態に係る金型を備えたプレス成形装置を模式的に示す断面図である。It is sectional drawing which shows typically the press molding apparatus provided with the metal mold | die which concerns on embodiment of this invention. 型締めしたプレス成形装置を模式的に示す断面図である。It is sectional drawing which shows typically the press-molding apparatus clamped. 金型で成形するワークを示す図であり、(A)は斜視図、(B)は平面図である。It is a figure which shows the workpiece | work shape | molded with a metal mold | die, (A) is a perspective view, (B) is a top view. 図2のIV−IV断面を示す図である。It is a figure which shows the IV-IV cross section of FIG. 金型で成形したワークを示す斜視図である。It is a perspective view which shows the workpiece | work shape | molded with the metal mold | die. 本発明の変形例に係る金型で形成したワークを示す斜視図である。It is a perspective view which shows the workpiece | work formed with the metal mold | die which concerns on the modification of this invention. 本発明の変形例に係る金型で形成したワークを示す斜視図である。It is a perspective view which shows the workpiece | work formed with the metal mold | die which concerns on the modification of this invention. 本発明の変形例に係る金型を模式的に示す断面図である。It is sectional drawing which shows typically the metal mold | die which concerns on the modification of this invention. 本発明の変形例に係る金型を模式的に示す断面図である。It is sectional drawing which shows typically the metal mold | die which concerns on the modification of this invention. 本発明の変形例に係る金型を模式的に示す断面図である。It is sectional drawing which shows typically the metal mold | die which concerns on the modification of this invention. 本発明の変形例に係る金型を模式的に示す断面図である。It is sectional drawing which shows typically the metal mold | die which concerns on the modification of this invention. 本発明の変形例に係る金型を模式的に示す断面図である。It is sectional drawing which shows typically the metal mold | die which concerns on the modification of this invention. 本発明の変形例に係る熱間プレス成形方法を模式的に示す断面図である。It is sectional drawing which shows typically the hot press molding method which concerns on the modification of this invention. 本発明の変形例に係る熱間プレス成形方法を模式的に示す断面図である。It is sectional drawing which shows typically the hot press molding method which concerns on the modification of this invention. 本発明の変形例に係る熱間プレス成形方法を模式的に示す断面図である。It is sectional drawing which shows typically the hot press molding method which concerns on the modification of this invention.

以下、図面を参照して本発明の実施形態について説明する。
図1は、本実施形態に係る金型を備えたプレス成形装置を模式的に示す断面図である。図2は、型締めしたプレス成形装置を模式的に示す断面図である。なお、図1、図2及び以下に示す図では、ワークと金型との間の隙間を強調して図示している。
プレス成形装置1は、金型10と、この金型10によって成形するワーク20を保持するブランクホルダ2とを備えて構成されている。金型10は、設置面Sに配置される下型11と、下型11の上方に配置される上型12とを有している。下型11は固定の凸型であり、上型12は可動の凹型である。下型11及び上型12には、冷媒(例えば、水等の液体)を流す冷媒路13が設けられるとともに、下型11及び上型12の成形面に冷媒路13に連通する複数の供給口14が設けられ、これらの供給口14から冷媒がワーク20に直接供給されるようになっている。
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
FIG. 1 is a cross-sectional view schematically showing a press molding apparatus provided with a mold according to the present embodiment. FIG. 2 is a cross-sectional view schematically showing a press-molding apparatus that has been clamped. In FIGS. 1 and 2 and the drawings shown below, the gap between the workpiece and the mold is emphasized.
The press molding apparatus 1 includes a mold 10 and a blank holder 2 that holds a workpiece 20 to be molded by the mold 10. The mold 10 includes a lower mold 11 disposed on the installation surface S and an upper mold 12 disposed above the lower mold 11. The lower mold 11 is a fixed convex mold, and the upper mold 12 is a movable concave mold. The lower mold 11 and the upper mold 12 are provided with a refrigerant path 13 through which a refrigerant (for example, a liquid such as water) flows, and a plurality of supply ports communicating with the refrigerant path 13 on the molding surfaces of the lower mold 11 and the upper mold 12 14 is provided, and the refrigerant is directly supplied to the workpiece 20 from these supply ports 14.

上型12の周縁にはワーク押さえ面15が形成され、ワーク押さえ面15に対向するようにブランクホルダ2が設けられている。
ブランクホルダ2には設置面Sを下から貫通してブランクホルダ2を押すクッションピン3が接続され、クッションピン3は油圧シリンダ(不図示)に支持されており、油圧シリンダの作用でクッションピン3は、常にブランクホルダ2を押し上げている。
A work pressing surface 15 is formed on the periphery of the upper mold 12, and the blank holder 2 is provided so as to face the work pressing surface 15.
A cushion pin 3 that pushes the blank holder 2 through the installation surface S from below is connected to the blank holder 2, and the cushion pin 3 is supported by a hydraulic cylinder (not shown). Always pushes up the blank holder 2.

ワーク20を熱間プレス成形する際には、図1に示すように、所定温度(焼き入れ可能な温度)まで加熱したワーク20を下型11及びブランクホルダ2上に配置し、上型12を下型11に向けて下降する。上型12のワーク押さえ面15がワーク20に当たると、ワーク20が上型12とブランクホルダ2によって挟持されて引っ張られ、ワーク20にしわが生じるのが防止される。さらに、図2に示すように、上型12が下降すると、金型10が型締めされてワーク20が下型11と上型12と間の形状に沿って絞られる。そして、供給口14から冷媒がワーク20に直接供給されることで、ワーク20が冷却(焼き入れ)される。ワーク20が冷却されると、上型12を上昇させ、ワーク20を取り出して、熱間プレス成形の工程が終了する。   When the workpiece 20 is hot press-molded, as shown in FIG. 1, the workpiece 20 heated to a predetermined temperature (temperature at which quenching can be performed) is placed on the lower mold 11 and the blank holder 2, and the upper mold 12 is Lower toward the lower mold 11. When the work pressing surface 15 of the upper mold 12 hits the work 20, the work 20 is sandwiched and pulled by the upper mold 12 and the blank holder 2 to prevent the work 20 from being wrinkled. Further, as shown in FIG. 2, when the upper mold 12 is lowered, the mold 10 is clamped and the work 20 is squeezed along the shape between the lower mold 11 and the upper mold 12. Then, the work 20 is cooled (quenched) by supplying the coolant directly to the work 20 from the supply port 14. When the workpiece 20 is cooled, the upper mold 12 is raised, the workpiece 20 is taken out, and the hot press molding process is completed.

図3は、金型10で成形するワーク20を示す図であり、図3(A)は斜視図、図3(B)は平面図である。
ワーク20は、鋼板を熱間プレス成形によって断面ハット状に成形され、幅方向両端部にフランジ21を有する。本実施形態のワーク20は、例えば自動車の車体を補強する補強部材に使用され、高強度となる高張力鋼板を用いて形成されている。補強部材としてのワーク20は、フランジ21の延出方向略中央に位置する境界22を境に、車内空間を確保する強度の高い高強度部23と、車体への衝撃を吸収する強度の低い低強度部24とを備えている。なお、境界22の位置は、適宜変更可能である。
FIGS. 3A and 3B are views showing a workpiece 20 to be molded by the mold 10, FIG. 3A is a perspective view, and FIG. 3B is a plan view.
The workpiece 20 is formed from a steel plate in a hat shape by hot press forming, and has flanges 21 at both ends in the width direction. The workpiece 20 of the present embodiment is used, for example, as a reinforcing member that reinforces the body of an automobile, and is formed using a high-strength steel plate that has high strength. The workpiece 20 as a reinforcing member includes a high-strength portion 23 having a high strength that secures a vehicle interior space, and a low-low strength that absorbs an impact on the vehicle body, with a boundary 22 positioned substantially in the center of the flange 21 in the extending direction. And a strength portion 24. Note that the position of the boundary 22 can be changed as appropriate.

高強度部と低強度部とを一体に形成する方法としては、第1加熱手段によって高強度部を加熱した後に、第2加熱手段によってワーク全体を加熱してプレス成形することで、高強度にする部分を焼き入れ可能温度まで加熱させ、低強度にする部分を焼き入れ可能温度に到達しないように加熱し、成形されたワーク中に高強度部と低強度部とを一体に形成する熱間プレス成形方法がある。この方法では、鋼板全体を加熱する第2加熱手段とは別に、鋼板の高強度にする部分を加熱する第1加熱手段を必要とするため、加熱設備が大掛かりになってしまう。また、ワークの加熱中や搬送中にワーク内に伝熱が生じるため、温度分布を制御することが困難である。   As a method of integrally forming the high-strength portion and the low-strength portion, the high-strength portion is heated by the first heating means, and then the entire workpiece is heated and press-molded by the second heating means, thereby achieving high strength. The part to be heated is heated to a quenchable temperature, the part to be made low strength is heated so as not to reach the quenchable temperature, and the high strength part and the low strength part are integrally formed in the molded workpiece. There is a press molding method. In this method, apart from the second heating means for heating the entire steel plate, the first heating means for heating the portion of the steel plate that has high strength is required, so that the heating equipment becomes large. In addition, since heat transfer occurs in the workpiece during heating or conveyance of the workpiece, it is difficult to control the temperature distribution.

また、金型内にヒータ、或いは、冷媒を通す冷媒路を設け、高強度部の抜熱(冷却)の度合いを高くし、高強度部を冷却(焼き入れ)することにより、成形されたワーク中に高強度部と低強度部とを一体に形成する熱間プレス成形方法がある。この方法では、ワークの冷却を金型との接触による間接的な抜熱によって行うため、冷却に時間がかかり、ワークを製造するサイクルタイムが長くなってしまう。
冷却方法としては、複数の供給口から冷媒をワークに直接供給する直接水冷方法があるが、冷却したい部分に供給口を設けるといった従来の直接水冷方法では、冷媒の流れを制御することが難しく、その結果焼き入れ位置を制御することができない。
以下、本実施形態に係る高強度部23及び低強度部24を一体に形成するための構成について詳細に説明する。
In addition, a molded workpiece is provided by providing a heater or refrigerant path in the mold to increase the degree of heat removal (cooling) of the high-strength part and cooling (quenching) the high-strength part. There is a hot press molding method in which a high-strength portion and a low-strength portion are integrally formed. In this method, since the workpiece is cooled by indirect heat removal by contact with the mold, the cooling takes time, and the cycle time for manufacturing the workpiece becomes long.
As a cooling method, there is a direct water cooling method in which a refrigerant is directly supplied to a workpiece from a plurality of supply ports, but in a conventional direct water cooling method in which a supply port is provided in a portion to be cooled, it is difficult to control the flow of the refrigerant, As a result, the quenching position cannot be controlled.
Hereinafter, a configuration for integrally forming the high-strength portion 23 and the low-strength portion 24 according to the present embodiment will be described in detail.

図4は、図2のIV−IV断面を示す図である。図5は、金型10で成形したワーク20を示す斜視図である。
本実施形態では、図4に示すように、冷媒路13及び供給口14をワーク20の高強度部23側だけに設けており、上型12には、ワーク20の境界22に対応して直線状に延びる凸部(ビード)16を形成している。この凸部16は下型11に向けて突出する突起状に形成されており、凸部16の高さは、型締めした金型10内に冷媒を供給した際に低強度部24側に冷媒が入り込まない程度の高さに設定される。
4 is a view showing a cross section taken along the line IV-IV in FIG. FIG. 5 is a perspective view showing the workpiece 20 formed by the mold 10.
In the present embodiment, as shown in FIG. 4, the refrigerant path 13 and the supply port 14 are provided only on the high-strength portion 23 side of the workpiece 20, and the upper mold 12 has a straight line corresponding to the boundary 22 of the workpiece 20. The convex part (bead) 16 extended in the shape is formed. The convex portion 16 is formed in a protruding shape that protrudes toward the lower mold 11, and the height of the convex portion 16 is such that when the refrigerant is supplied into the clamped mold 10, The height is set so as not to enter.

このように構成された金型10を用いると、金型10を型締めした際に、境界22における金型10とワーク20との密着度が高くなり、供給口14から冷媒を供給すると、冷媒は低強度部24に流れることはなく、高強度部23だけに流れる。これにより、高強度部23だけを急速に冷却できるので、高強度部23だけを焼き入れすることができ、高強度部23の強度を低強度部24の強度より高くすることができる。なお、成形されたワーク20には、図5に示すように、凸部16に対応する位置に凸部16の跡25が残る。   When the mold 10 configured in this way is used, when the mold 10 is clamped, the degree of adhesion between the mold 10 and the workpiece 20 at the boundary 22 increases, and when the refrigerant is supplied from the supply port 14, the refrigerant Does not flow to the low-strength portion 24 but flows only to the high-strength portion 23. Thereby, since only the high-strength part 23 can be rapidly cooled, only the high-strength part 23 can be quenched and the strength of the high-strength part 23 can be made higher than that of the low-strength part 24. As shown in FIG. 5, a mark 25 of the convex portion 16 remains on the molded workpiece 20 at a position corresponding to the convex portion 16.

本実施形態では、供給口14をワーク20の一方(高強度にする高強度部23)側に設けるとともに、一方と他方(低強度にする低強度部24)の間の境界22の上型12に凸部16を形成するといった簡単な構成により、強度の高い高強度部23と強度の低い低強度部24との両方を一体に有するワーク20を容易に形成することができる。また、金型10に加熱装置を設ける必要がないので、金型10の構成が簡素化する。さらに、従来のように、高強度部専用の加熱手段を必要としないため、加熱装置が大掛かりにならない。
本実施形態では、低強度部24を冷媒で直接冷却していないが、焼き入れが完了し、ワーク20の形状が変化しない温度までワーク20の温度が低下した段階で、ワーク20を金型10から取り出すことが可能なので、ワーク20を製造するサイクルタイムが極端に長くなることはない。
In the present embodiment, the supply port 14 is provided on one side of the workpiece 20 (high strength portion 23 for increasing strength), and the upper mold 12 of the boundary 22 between one side and the other (low strength portion 24 for decreasing strength). The workpiece 20 having both the high-strength portion 23 having high strength and the low-strength portion 24 having low strength can be easily formed by a simple configuration in which the convex portion 16 is formed. Moreover, since it is not necessary to provide a heating device in the mold 10, the configuration of the mold 10 is simplified. Further, unlike the prior art, no heating means dedicated to the high-strength portion is required, so that the heating device does not become large.
In the present embodiment, the low-strength portion 24 is not directly cooled by the refrigerant, but when the quenching is completed and the temperature of the workpiece 20 is lowered to a temperature at which the shape of the workpiece 20 does not change, the workpiece 20 is removed from the mold 10. Therefore, the cycle time for manufacturing the workpiece 20 does not become extremely long.

以上説明したように、本実施形態によれば、ワーク20のうち高強度部23と低強度部24との境界22における金型10とワーク20との密着度を、高強度部23における金型10とワーク20との密着度より高くする構成とし、より具体的には、境界22における金型10に凸部16を設ける構成とした。この構成により、凸部16によって、低強度部24に冷媒が流れることを抑制でき、簡単な構成でワーク20に強度差をつけることができる。   As described above, according to the present embodiment, the degree of adhesion between the mold 10 and the workpiece 20 at the boundary 22 between the high-strength portion 23 and the low-strength portion 24 of the workpiece 20 is determined. 10 and the workpiece 20 are configured to have a higher degree of adhesion, and more specifically, the convex portion 16 is provided on the mold 10 at the boundary 22. With this configuration, it is possible to suppress the refrigerant from flowing into the low-strength portion 24 by the convex portion 16, and to make a difference in strength between the workpieces 20 with a simple configuration.

但し、上記実施形態は本発明の一態様であり、本発明の趣旨を逸脱しない範囲において適宜変更可能であるのは勿論である。
例えば、上記実施形態では、加熱したワーク20を下型11に配置したが、金型10に加熱手段を設け、ワーク20を下型11に配置した後に加熱し、その後、プレス成形してもよい。
また、上記実施形態では、冷却時間を短縮するため、冷媒路13及び供給口14は、下型11及び上型12の両側に設けていたが、下型11及び上型12の一方に設けてもよい。
However, the above embodiment is an aspect of the present invention, and it is needless to say that the embodiment can be appropriately changed without departing from the gist of the present invention.
For example, in the above embodiment, the heated workpiece 20 is arranged in the lower mold 11. However, a heating means may be provided in the mold 10, the workpiece 20 may be arranged after being arranged in the lower mold 11, and then press-molded. .
Moreover, in the said embodiment, in order to shorten cooling time, although the refrigerant path 13 and the supply port 14 were provided in the both sides of the lower mold | type 11 and the upper mold | type 12, it provided in one of the lower mold | type 11 and the upper mold | type 12. Also good.

また、上記実施形態では、凸部16の高さを、型締めした金型10内に冷媒を供給した際に低強度部24側に冷媒が入り込まない程度の高さに設定されていたが、低強度部24に焼き入れが入らない程度に、若干量の冷媒が低強度部24に侵入するのを許容する高さであってもよい。
また、上記実施形態では、凸部16の高さは、当該凸部16に押されたワーク20に跡25が残る程度に設定されていたが、凸部16に押された部分のワーク20が弾性変形により戻って跡25が残らない程度に設定されてもよい。
In the above embodiment, the height of the convex portion 16 is set to such a height that the refrigerant does not enter the low strength portion 24 side when the refrigerant is supplied into the mold 10 that has been clamped. It may be a height that allows a small amount of refrigerant to enter the low-strength portion 24 so that the low-strength portion 24 is not quenched.
Moreover, in the said embodiment, although the height of the convex part 16 was set to such an extent that the trace 25 remains in the workpiece | work 20 pushed by the said convex part 16, the workpiece | work 20 of the part pushed by the convex part 16 is set. It may be set to such an extent that the trace 25 does not remain after returning by elastic deformation.

また、上記実施形態では、上型12に直線状の凸部16を設けていたが、凸部16の全体形状はこれに限定されるものではない。例えば、図6に示すように、断続的な直線状の境界22(跡125)が形成されるように、断続的な直線状の凸部(不図示)を設けてもよい。なお、図6の例では、境界22を形成する平行に延びる2本の直線に沿って跡125が断続的に形成されるような凸部が設けられているが、これに限定されるものではなく、例えば1本の直線に沿って断続的に凸部が設けられてもよい。また、図7に示すように、複数の点状の境界22(跡225)が形成されるように、複数の点状の凸部(不図示)を設けてもよい。   Moreover, in the said embodiment, although the linear convex part 16 was provided in the upper mold | type 12, the whole shape of the convex part 16 is not limited to this. For example, as shown in FIG. 6, an intermittent linear protrusion (not shown) may be provided so that an intermittent linear boundary 22 (trace 125) is formed. In the example of FIG. 6, the convex portions are provided so that the traces 125 are intermittently formed along two parallel straight lines forming the boundary 22. However, the present invention is not limited to this. For example, a convex part may be provided intermittently along one straight line. Further, as shown in FIG. 7, a plurality of dot-like convex portions (not shown) may be provided so that a plurality of dot-like boundaries 22 (traces 225) are formed.

また、上記実施形態では、凸部16を断面矩形状に形成したが、凸部16の断面形状はこれに限定されるものではなく、例えば、図8に示すように、凸部316を断面半円状に形成してもよい。
また、上記実施形態では、凸部16を上型12に設けていたが、下型11に設けてもよく、下型11及び上型12の両方に設けてもよい。下型11及び上型12の両方に凸部を設ける場合には、上型12及び下型11の凸部の位置を一致させてもよいし、ワーク20の境界22が薄くなるのを防止するため、図9に示すように、凸部416を上型12及び下型11にずらして設けてもよい。
Moreover, in the said embodiment, although the convex part 16 was formed in cross-sectional rectangular shape, the cross-sectional shape of the convex part 16 is not limited to this, For example, as shown in FIG. You may form circularly.
Moreover, in the said embodiment, although the convex part 16 was provided in the upper mold | type 12, you may provide in the lower mold | type 11, and you may provide in both the lower mold | type 11 and the upper mold | type 12. When providing a convex part in both the lower mold | type 11 and the upper mold | type 12, you may match the position of the convex part of the upper mold | type 12 and the lower mold | type 11, and it prevents that the boundary 22 of the workpiece | work 20 becomes thin. Therefore, as shown in FIG. 9, the convex portion 416 may be provided by being shifted to the upper mold 12 and the lower mold 11.

また、上記実施形態では、凸部は突起状であったが、凸部の断面形状はこれに限定されるものではなく、例えば、図10及び図11に示すように、凸部は段状であってもよい。なお、図10の例では上型12及び下型11の両方に段状の凸部516を、図11の例では上型12に段状の凸部616を設けているが、上型12及び下型11の少なくとも一方に凸部を設ければよく、例えば、図示を省略するが段状の凸部を下型11に設けてもよい。
また、図10では、高強度部23と低強度部24とで厚さが同じになるように段状の凸部516を設けたが、高強度部23と低強度部24とで厚さが異なるように段状の凸部を設けてもよい。図12の例では、高強度部23側が厚くなるように段状の凸部716を設けているが、低強度部24側が厚くなるように段状の凸部を設けてもよい。
なお、図8中の符号325、図9中の符号425、図10中の符号525、図11中の符号625、及び、図12中の符号725は、それぞれ凸部416,516,616,716によって形成された跡である。
Moreover, in the said embodiment, although the convex part was protrusion shape, the cross-sectional shape of a convex part is not limited to this, For example, as shown in FIG.10 and FIG.11, a convex part is step shape. There may be. In the example of FIG. 10, stepped protrusions 516 are provided on both the upper mold 12 and the lower mold 11, and in the example of FIG. 11, stepped protrusions 616 are provided on the upper mold 12. A convex portion may be provided on at least one of the lower mold 11. For example, although not illustrated, a stepped convex portion may be provided on the lower mold 11.
Further, in FIG. 10, the stepped convex portion 516 is provided so that the thickness is the same between the high-strength portion 23 and the low-strength portion 24, but the thickness is high between the high-strength portion 23 and the low-strength portion 24. You may provide a step-shaped convex part so that it may differ. In the example of FIG. 12, the step-like convex portion 716 is provided so that the high-strength portion 23 side is thick, but the step-like convex portion may be provided so that the low-strength portion 24 side is thick.
In addition, the code | symbol 325 in FIG. 8, the code | symbol 425 in FIG. 9, the code | symbol 525 in FIG. 10, the code | symbol 625 in FIG. 11, and the code | symbol 725 in FIG. It is a trace formed by.

また、上記実施形態では、境界22における金型10とワーク20との密着度を高める部材(凸部)を金型10に設けていたが、金型10のメンテナンス性を鑑みて、当該部材(凸部)を、例えば、図13及び図14に示すように、ワーク20側に設けてもよい。凸部の形状は特に限定されるものではなく、図13の例のように、ワーク20の上面の境界22に対応する位置に断面略矩形状の凸部26を、図14の例では、ワーク20を略波状に形成することでワーク20の上面の境界22に対応する位置に断面略半円状の凸部126を形成してもよい。
また、凸部は、ワーク20に一体でなくともよく、図15に示すように、ワーク20の境界22に対応する位置に別体の凸部226を設けてもよい。別体の凸部226の材料は、ワーク20と同一でもよいし、例えばシリコン等の耐熱性を有する材料であってもよい。これにより、ワーク自体を加工する必要がないので、ワークに凸部を設ける場合に比べ、ワークの製造が容易となる。
なお、ワーク20側に設ける凸部の全体形状は直線状に限られるものではなく、図6及び図7に示したように、断続的な形状であってもよい。
Moreover, in the said embodiment, although the member (convex part) which raises the adhesiveness of the metal mold | die 10 and the workpiece | work 20 in the boundary 22 was provided in the metal mold | die 10, in view of the maintainability of the metal mold | die 10, the said member ( For example, as shown in FIGS. 13 and 14, the convex portion may be provided on the workpiece 20 side. The shape of the convex portion is not particularly limited, and a convex portion 26 having a substantially rectangular cross section is formed at a position corresponding to the boundary 22 on the upper surface of the workpiece 20, as in the example of FIG. A convex portion 126 having a substantially semicircular cross section may be formed at a position corresponding to the boundary 22 on the upper surface of the workpiece 20 by forming 20 in a substantially wave shape.
Moreover, the convex part does not need to be integrated with the workpiece 20, and a separate convex part 226 may be provided at a position corresponding to the boundary 22 of the workpiece 20, as shown in FIG. The material of the separate convex portion 226 may be the same as that of the workpiece 20 or may be a heat-resistant material such as silicon. Thereby, since it is not necessary to process a workpiece | work itself, manufacture of a workpiece | work becomes easy compared with the case where a convex part is provided in a workpiece | work.
Note that the overall shape of the convex portion provided on the workpiece 20 side is not limited to a linear shape, and may be an intermittent shape as shown in FIGS. 6 and 7.

また、上記実施形態では、ワークを断面ハット状に成形したが、ワークの成形形状はこれに限定されるものではない。
また、上記実施形態では、冷媒として水を用いていたが、冷媒は液体に限らず気体であってもよい。
また、上記実施形態では、ワークを自動車の車体を補強する補強部材として説明したが、本発明は、高強度部と低強度部を有する種々のワークに適用可能である。
Moreover, in the said embodiment, although the workpiece | work was shape | molded by the cross-sectional hat shape, the shaping | molding shape of a workpiece | work is not limited to this.
Moreover, in the said embodiment, although water was used as a refrigerant | coolant, a refrigerant | coolant may be not only a liquid but gas.
Moreover, although the said embodiment demonstrated the workpiece | work as a reinforcement member which reinforces the vehicle body of a motor vehicle, this invention is applicable to the various workpiece | work which has a high intensity | strength part and a low intensity | strength part.

1 プレス成形装置
10 金型
11 下型
12 上型
16,116…716 凸部(密着性を高める部材)
20 ワーク
22 境界
23 高強度部(高強度にする部分)
24 低強度部(低強度にする部分)
26,126,226 凸部
DESCRIPTION OF SYMBOLS 1 Press molding apparatus 10 Mold 11 Lower mold 12 Upper mold 16,116 ... 716 Convex part (member which improves adhesiveness)
20 Work 22 Boundary 23 High-strength part (high-strength part)
24 Low strength part (part to make low strength)
26, 126, 226 Convex

Claims (6)

加熱されたワークを金型によってプレス成形するとともに、前記金型と前記ワークとの間に冷媒を流して当該ワークを冷却する熱間プレス成形方法において、
前記ワークのうち高強度にする部分と低強度にする部分との境界に、前記金型の成形面から突出する凸部を設けて前記金型と前記ワークとの密着度を、高強度にする部分における前記金型と前記ワークとの密着度より高くしたことを特徴とする熱間プレス成形方法。
In the hot press molding method in which a heated work is press-molded by a mold and a coolant is passed between the mold and the work to cool the work.
Protruding portions projecting from the molding surface of the mold are provided at the boundary between the portion to be high strength and the portion to be low strength of the workpiece to increase the degree of adhesion between the mold and the workpiece. A hot press molding method characterized in that the degree of adhesion between the mold and the workpiece at a part is higher.
加熱されたワークを金型によってプレス成形するとともに、前記金型と前記ワークとの間に冷媒を流して当該ワークを冷却する熱間プレス成形方法において、
前記ワークのうち高強度にする部分と低強度にする部分との境界における前記金型と前記ワークとの密着度を、高強度にする部分における前記金型と前記ワークとの密着度より高くする凸部を前記ワークの前記境界に設けたことを特徴とする熱間プレス成形方法。
In the hot press molding method in which a heated work is press-molded by a mold and a coolant is passed between the mold and the work to cool the work.
The degree of adhesion between the mold and the workpiece at the boundary between the high strength portion and the low strength portion of the workpiece is set higher than the adhesion between the mold and the workpiece at the high strength portion. A hot press molding method , wherein a convex portion is provided at the boundary of the workpiece .
前記凸部を前記金型に一体又は別体に設けたことを特徴とする請求項1に記載の熱間プレス成形方法。 The hot press molding method according to claim 1, wherein the convex portion is provided integrally with the mold or separately . 加熱されたワークをプレス成形するとともに、前記ワークとの間に冷媒を流して当該ワークを冷却する金型において、
前記ワークのうち高強度にする部分と低強度にする部分との境界に、前記金型の成形面から突出する凸部を設けて前記金型と前記ワークとの密着度を、高強度にする部分における前記金型と前記ワークとの密着度より高くしたことを特徴とする金型。
In the mold for cooling the workpiece by pressing a heated workpiece and flowing a coolant between the workpiece and the workpiece,
Protruding portions projecting from the molding surface of the mold are provided at the boundary between the portion to be high strength and the portion to be low strength of the workpiece to increase the degree of adhesion between the mold and the workpiece. A mold characterized by having a higher degree of adhesion between the mold and the workpiece at a portion.
上型及び下型を備え、
前記上型及び下型の少なくとも一方の前記境界に対応する位置に前記凸部を設けたことを特徴とする請求項4に記載の金型。
With upper and lower molds,
The mold according to claim 4, wherein the convex portion is provided at a position corresponding to the boundary of at least one of the upper mold and the lower mold.
上型及び下型を備え、
前記上型及び下型の両方に位置をずらして前記凸部を設けたことを特徴とする請求項5に記載の金型。
With upper and lower molds,
6. The mold according to claim 5, wherein the convex portions are provided by shifting the positions of both the upper mold and the lower mold.
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