JP4909542B2 - Housing and manufacturing method of housing - Google Patents

Housing and manufacturing method of housing Download PDF

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JP4909542B2
JP4909542B2 JP2005215286A JP2005215286A JP4909542B2 JP 4909542 B2 JP4909542 B2 JP 4909542B2 JP 2005215286 A JP2005215286 A JP 2005215286A JP 2005215286 A JP2005215286 A JP 2005215286A JP 4909542 B2 JP4909542 B2 JP 4909542B2
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terminal
bent
housing
main body
molding
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JP2007033164A (en
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博之 戸張
均 本間
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Alps Alpine Co Ltd
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Alps Electric Co Ltd
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本発明はインサート成形端子を有する筐体及びその製造方法に関し、特にインサート成形時に端子を金型で保持することのできる筐体及びその製造方法に関する。   The present invention relates to a housing having an insert-molded terminal and a manufacturing method thereof, and more particularly to a housing capable of holding a terminal with a mold during insert molding and a manufacturing method thereof.

従来より、樹脂によって構成され内部に端子をインサート成形により有した筐体が知られている。このような筐体としては、例えば自動車や二輪車に用いられるスロットルバルブの回転角度を検出する検出装置がある。検出装置の場合、センサが筐体に取付けられており、端子にはセンサと接続するセンサ接続部と、外部にセンサからの出力を取り出すための外部接続部とが形成され、これらセンサ接続部と外部接続部が筐体の外部に露出するようにインサート成形される。このような筐体を有した検出装置としては、例えば特許文献1に挙げるようなものがある。
特開2002−39789号公報
2. Description of the Related Art Conventionally, a housing made of resin and having a terminal inside by insert molding is known. An example of such a case is a detection device that detects a rotation angle of a throttle valve used in, for example, an automobile or a two-wheeled vehicle. In the case of the detection device, the sensor is attached to the housing, and a sensor connection portion connected to the sensor is formed at the terminal, and an external connection portion for taking out an output from the sensor is formed on the terminal. Insert molding is performed so that the external connection portion is exposed to the outside of the housing. As a detection apparatus having such a casing, for example, there is one disclosed in Patent Document 1.
JP 2002-39789 A

しかし、このように端子を筐体内にインサート成形する場合、端子は樹脂流れによって変形することがあり、これによって接続部の外部露出部分が曲がるなどしてセンサや外部機器と接続できないおそれがあった。そのため、端子に筐体外部に突出する突起部を設けて、インサート成形時にはその突起が金型に当接するようにすることで、樹脂流れによる端子の変形を防ぐものが知られていた。図7には突起を備えた端子をインサート成形された筐体の断面図を示している。   However, when the terminal is insert-molded in the housing in this way, the terminal may be deformed by the resin flow, which may cause the externally exposed portion of the connection portion to be bent, etc., and may not be connected to the sensor or the external device. . For this reason, it has been known to provide a terminal with a protruding portion that protrudes outside the housing and prevent the terminal from being deformed by a resin flow by inserting the protrusion into a mold during insert molding. FIG. 7 shows a cross-sectional view of a housing in which a terminal having a protrusion is insert-molded.

図7に示すように、筐体100内部に端子101が埋設された状態となっており、端子101の一端部はセンサに接続するためのセンサ接続部101aであり、他端部は外部に接続するための外部接続部101bであり、これら接続部は水平方向位置が異なるために、端子101は中間位置で屈曲している。端子の屈曲位置には、外方に向かって突出する突起部101cが形成されており、この突起部101cの先端がインサート成形時に金型に当接し、端子101が樹脂流れによって屈曲しないようにしていた。   As shown in FIG. 7, the terminal 101 is embedded in the housing 100, one end of the terminal 101 is a sensor connecting portion 101 a for connecting to the sensor, and the other end is connected to the outside. The external connection portion 101b is connected to each other, and since these connection portions have different horizontal positions, the terminal 101 is bent at an intermediate position. A protruding portion 101c protruding outward is formed at the bent position of the terminal, and the tip of the protruding portion 101c abuts on the mold during insert molding so that the terminal 101 is not bent by the resin flow. It was.

しかし、図7に示すような筐体の場合、端子101に突起部101cが形成されていて複雑な形状となっていたため、端子101の製造の際に歩留まりを悪化させる原因となっていた。また、端子101の形状が複雑であることにより、端子101にメッキを行う際、及び輸送の際に変形を生じることがあった。   However, in the case of the case as shown in FIG. 7, the protrusion 101 c is formed on the terminal 101 and has a complicated shape, which causes the yield to deteriorate when the terminal 101 is manufactured. Further, since the shape of the terminal 101 is complicated, deformation may occur when the terminal 101 is plated and transported.

本発明は上記課題を鑑みてなされたものであり、単純な形状で確実に樹脂流れに対抗できる端子を有した筐体及びその製造方法を提供することを目的とする。   The present invention has been made in view of the above problems, and an object of the present invention is to provide a casing having a terminal that can reliably resist resin flow with a simple shape and a method for manufacturing the same.

上記課題を解決するため、本発明に係る筐体は、樹脂からなる本体部内に端子部がインサート成形されてなる筐体において、
上記端子部は両端部にそれぞれ上記本体部から突出する接続部を有すると共に、該接続部間に略直角に屈曲した屈曲部を有し、上記本体部は上記屈曲部及びその周囲部の外側面及び側面を外部に露出させる露出部を有し、上記端子部の屈曲部は周囲部よりも幅狭に形成されてなることを特徴して構成されている。
In order to solve the above problems, a housing according to the present invention is a housing in which a terminal portion is insert-molded in a main body portion made of resin.
The terminal portion has connection portions protruding from the main body portion at both ends, and a bent portion bent substantially at a right angle between the connection portions, and the main body portion is an outer surface of the bent portion and the surrounding portion. And an exposed portion that exposes the side surface to the outside, and the bent portion of the terminal portion is formed to be narrower than the peripheral portion .

さらに、本発明に係る筐体は、上記端子部は上記屈曲部から両接続部まで略直線状に形成されてなることを特徴として構成されている。   Furthermore, the housing according to the present invention is characterized in that the terminal portion is formed in a substantially linear shape from the bent portion to both connecting portions.

さらにまた、本発明に係る筐体の製造方法は、金型により樹脂からなる本体部内に端子部をインサート成形してなる筐体の製造方法において、
上記金型には上記筐体の外形に対応した筐体成形部を形成し、上記端子部には両端部に接続部を形成すると共に、該接続部間に略直角に屈曲した屈曲部を形成し、
上記筐体成形部には上記端子部の屈曲部及びその周囲部を保持する露出成形部を形成し、該露出成形部に上記屈曲部及びその周囲部の外側面及び側面を当接させた状態で上記端子部を筐体成形部内に配置すると共に、上記筐体成形部に樹脂材料を注入して本体部を成形することを特徴として構成されている。
Furthermore, the manufacturing method of the housing according to the present invention is a manufacturing method of a housing formed by insert molding a terminal portion in a main body portion made of resin by a mold.
The mold is formed with a casing molding portion corresponding to the outer shape of the casing, and the terminal portion is formed with a connecting portion at both ends, and a bent portion bent at a substantially right angle is formed between the connecting portions. And
An exposed molded part that holds the bent part of the terminal part and its peripheral part is formed in the casing molded part, and the bent part and the outer surface and side surfaces of the peripheral part are in contact with the exposed molded part The terminal portion is arranged in the housing molding portion, and the body portion is molded by injecting a resin material into the housing molding portion.

本発明に係る筐体によれば、端子部は両端部にそれぞれ本体部から突出する接続部を有すると共に、接続部間に略直角に屈曲した屈曲部を有し、本体部は屈曲部及びその周囲部の外側面及び側面を外部に露出させる露出部を有してなることにより、金型により本体部を成形する際に、端子部の屈曲部及びその周囲部の外側面及び側面を金型に当接保持させることができるので、4方向から端子部の移動を規制できて確実な保持が可能であると共に、製造時の歩留まりのよい単純な形状の端子部で樹脂流れに対抗することができる。   According to the housing according to the present invention, the terminal portion has the connection portions protruding from the main body portions at both ends, and has the bent portions bent substantially at right angles between the connection portions. By having an exposed portion that exposes the outer side surface and side surface of the peripheral portion to the outside, when molding the main body portion with the mold, the bent portion of the terminal portion and the outer side surface and side surface of the peripheral portion are molded. Since the terminal part can be controlled from four directions and can be held securely, the terminal part has a simple shape with good yield at the time of manufacture, and can resist resin flow. it can.

また、本発明に係る筐体によれば、端子部の屈曲部は周囲部よりも幅狭に形成されてなることにより、屈曲部の曲げに伴う側面の膨らみを抑えることができ、金型により屈曲部を確実に保持することができる。   Further, according to the housing according to the present invention, the bent portion of the terminal portion is formed to be narrower than the peripheral portion, thereby suppressing the bulging of the side surface accompanying the bending of the bent portion. The bent portion can be securely held.

さらに、本発明に係る筐体によれば、端子部は屈曲部から両接続部まで略直線状に形成されてなることにより、端子部を単純な形状とできるので、コストダウンを図ることができる共に、樹脂流れに対する変形も生じにくくすることができる。   Furthermore, according to the housing according to the present invention, since the terminal portion is formed in a substantially linear shape from the bent portion to both connection portions, the terminal portion can be made in a simple shape, so that the cost can be reduced. In both cases, deformation of the resin flow can be made difficult to occur.

さらにまた、本発明に係る筐体の製造方法によれば、金型には筐体の外形に対応した筐体成形部を形成し、端子部には両端部に接続部を形成すると共に、接続部間に略直角に屈曲した屈曲部を形成し、筐体成形部には端子部の屈曲部及びその周囲部を保持する露出成形部を形成し、露出成形部に屈曲部及びその周囲部の外側面及び側面を当接させた状態で端子部を筐体成形部内に配置すると共に、筐体成形部に樹脂材料を注入して本体部を成形することにより、金型により端子部の屈曲部及びその周辺部を保持して樹脂流れによる圧力に対抗し、端子部の変形を防止することができる。   Furthermore, according to the method for manufacturing the casing according to the present invention, the mold is formed with a casing molding portion corresponding to the outer shape of the casing, the terminal portion is formed with connection portions at both ends, and the connection is made. A bent portion that is bent at a substantially right angle is formed between the portions, an exposed molded portion that holds the bent portion of the terminal portion and its peripheral portion is formed in the housing molded portion, and the bent portion and its peripheral portion are formed in the exposed molded portion. The terminal part is arranged in the housing molding part with the outer surface and the side surface in contact with each other, and the body part is molded by injecting a resin material into the housing molding part, whereby the bent part of the terminal part is formed by a mold. And the peripheral part can be hold | maintained and it can resist the pressure by a resin flow, and can prevent a deformation | transformation of a terminal part.

本発明の実施形態について、図面に沿って詳細に説明する。図1は本実施形態における筐体の正面図である。本実施形態における筐体は、回転弁などの回転角度を検出する検出部(図示しない)が取付けられるものであって、樹脂材からなる本体部1内に端子部2が一体的にインサート成形されてなるものである。   Embodiments of the present invention will be described in detail with reference to the drawings. FIG. 1 is a front view of a housing in the present embodiment. The housing in this embodiment is provided with a detection unit (not shown) for detecting a rotation angle such as a rotary valve, and the terminal unit 2 is integrally insert-molded in the main body unit 1 made of a resin material. It will be.

図1に示すように、本体部1の下部には検出部を収容するための収容部10が形成されている。また、本体部1の周縁部には、筐体を固定するための固定部11が形成されている。また、本体部1内には端子部2が5本並んで埋設された状態となっており、端子部2はその両端部がそれぞれ本体部1の外側に露出している。   As shown in FIG. 1, a housing part 10 for housing the detection part is formed in the lower part of the main body part 1. A fixing portion 11 for fixing the housing is formed on the peripheral edge of the main body portion 1. Further, five terminal portions 2 are embedded side by side in the main body portion 1, and both end portions of the terminal portion 2 are exposed to the outside of the main body portion 1.

図1に現れているのは、端子部2の一端部であって検出部と接続するためのセンサ接続部20である。センサ接続部20は、先端部がL字状に曲げられて本体部1の前面側に突出しており、この突出した部分により検出部と接続することができる。   Appearing in FIG. 1 is a sensor connection unit 20 for connecting to one end of the terminal unit 2 and the detection unit. The sensor connecting portion 20 has a tip portion bent into an L shape and protrudes to the front surface side of the main body portion 1 and can be connected to the detection portion by the protruding portion.

図2には、図1のA−A断面図を示している。この図に示すように、端子部2には上述のセンサ接続部20が一端部に形成されると共に、他端部は外部と接続するために用いられる外部接続部21として、本体部1から突出するように形成されている。また、センサ接続部20と外部接続部21の間の中間位置には略L字状に屈曲された屈曲部22が形成されている。   FIG. 2 is a cross-sectional view taken along the line AA in FIG. As shown in this figure, the terminal portion 2 has the above-described sensor connection portion 20 formed at one end portion, and the other end portion protrudes from the main body portion 1 as an external connection portion 21 used for connection to the outside. It is formed to do. Further, a bent portion 22 bent in a substantially L shape is formed at an intermediate position between the sensor connecting portion 20 and the external connecting portion 21.

図3には、端子部2の斜視図を示している。この図に示すように、端子部2はそれぞれ細板状に形成され、センサ接続部20及び外部接続部21はさらに幅狭に形成される。また、屈曲部22からセンサ接続部20まで、及び屈曲部22から外部接続部21までは略直線状に形成されていて、端子部2全体としては突起部を有しない単純な形状とされている。このため、端子部2を容易に形成することができ、製造時の歩留まりも高くすることができる。   FIG. 3 shows a perspective view of the terminal portion 2. As shown in this figure, the terminal portions 2 are each formed in a thin plate shape, and the sensor connection portion 20 and the external connection portion 21 are further narrowed. Further, the bent portion 22 to the sensor connecting portion 20 and the bent portion 22 to the external connecting portion 21 are formed in a substantially straight shape, and the terminal portion 2 as a whole has a simple shape having no protrusion. . For this reason, the terminal part 2 can be formed easily and the yield at the time of manufacture can also be made high.

図4には、端子部2の屈曲部22付近拡大斜視図を示している。この図に示すように、屈曲部22は周囲部23との間に段差部22aを有し、周囲部23に比べてやや幅狭に形成されている。このように、屈曲部22が幅狭に形成されていることにより、端子部2の曲げに伴う屈曲部22側面の外方への膨らみが、端子部2全体の側面より外方まで突出しないようにすることができる。後述するように屈曲部22の側面は金型による本体部1の成形時には金型に保持されるが、曲げの際に屈曲部22の側面が膨らんで端子部2全体の側面よりも突出していると、金型による保持が不安定になる。屈曲部22が幅狭に形成されていることで、それを防止することができる。   FIG. 4 shows an enlarged perspective view of the vicinity of the bent portion 22 of the terminal portion 2. As shown in this figure, the bent portion 22 has a stepped portion 22 a between itself and the peripheral portion 23, and is formed to be slightly narrower than the peripheral portion 23. As described above, since the bent portion 22 is formed to be narrow, the outward bulging of the side surface of the bent portion 22 due to the bending of the terminal portion 2 does not protrude outward from the side surface of the entire terminal portion 2. Can be. As will be described later, the side surface of the bent portion 22 is held by the mold when the main body portion 1 is molded by the mold, but the side surface of the bent portion 22 swells and protrudes from the entire side surface of the terminal portion 2 during bending. Then, the holding by the mold becomes unstable. It can prevent that the bending part 22 is formed narrowly.

本体部1には、端子部2の屈曲部22が外部に露出するように露出部12が形成されている。図5には、本体部1の露出部12付近における拡大斜視図を示している。露出部12は、図1に示すように本体部1において収容部10の上部に開口状に形成されるもので、図5に示すように端子部2の屈曲部22とその周囲部23について外側面と側面を露出させる。屈曲部22の周囲部23は、屈曲部22よりもセンサ接続部20側の部分と、屈曲部22よりも外部接続部21側の部分の両方を有しており、金型により筐体が成形される際には、端子部2のうち露出部12から露出する屈曲部22及び周囲部23が、金型によって保持される。   The exposed portion 12 is formed in the main body portion 1 so that the bent portion 22 of the terminal portion 2 is exposed to the outside. FIG. 5 shows an enlarged perspective view of the main body 1 near the exposed portion 12. As shown in FIG. 1, the exposed portion 12 is formed in the body portion 1 so as to have an opening in the upper portion of the accommodating portion 10, and as shown in FIG. 5, the bent portion 22 and the peripheral portion 23 of the terminal portion 2 are external. Expose the sides and sides. The peripheral portion 23 of the bent portion 22 has both a portion closer to the sensor connecting portion 20 than the bent portion 22 and a portion closer to the external connecting portion 21 than the bent portion 22, and the casing is molded by a mold. In doing so, the bent portion 22 and the peripheral portion 23 exposed from the exposed portion 12 of the terminal portion 2 are held by the mold.

本体部1の露出部12については、本体部1のインサート成形後に接着剤によってこれを封止する。したがって、最終的な製品の段階では端子部2の屈曲部22及びその周囲部23は、外部に露出しないようにしている。端子部2の屈曲部22及びその周囲部23には従来のような突起部がないので、熱による膨張や収縮を繰り返しても、接着剤に対する負荷が少なく、剥離やクラックなどを低減することができる。   About the exposed part 12 of the main-body part 1, this is sealed with an adhesive agent after insert molding of the main-body part 1. Therefore, at the final product stage, the bent portion 22 and the peripheral portion 23 of the terminal portion 2 are not exposed to the outside. Since the bent portion 22 and the peripheral portion 23 of the terminal portion 2 do not have conventional protrusions, even if the expansion and contraction due to heat are repeated, the load on the adhesive is small, and peeling and cracking can be reduced. it can.

次に、本実施形態における筐体の製造方法について説明する。筐体は、金型30内に端子部2を配置した状態で、金型30に樹脂を注入し成形するインサート成形により形成される。図6には、本体部1を形成する金型の略上半分の断面図を示している。図6では、端子部2の断面を含むように図2と同じ位置での断面を示している。この図に示すように、金型30には、本体部1の外形に対応した空間部である筐体成形部31が形成されており、端子部2が筐体成形部31内に配置される。   Next, the manufacturing method of the housing | casing in this embodiment is demonstrated. The casing is formed by insert molding in which a resin is injected into the mold 30 and molded in a state where the terminal portion 2 is disposed in the mold 30. FIG. 6 shows a cross-sectional view of a substantially upper half of the mold forming the main body 1. In FIG. 6, the cross section at the same position as in FIG. 2 is shown so as to include the cross section of the terminal portion 2. As shown in this figure, the mold 30 is formed with a housing molding portion 31 that is a space corresponding to the outer shape of the main body portion 1, and the terminal portion 2 is disposed in the housing molding portion 31. .

また金型30には、本体部1の露出部12に対応して、露出成形部32が筐体成形部31に突出するように形成されており、この露出成形部32が端子部2の屈曲部22及び周囲部23に当接し、端子部2を保持する。さらに、金型30の露出成形部32は、端子部2の屈曲部22及び周囲部23の側面を挟持するように当接し、これらを保持する。このように、金型30の露出成形部32は、端子部2を屈曲部22及び周囲部23において4方向から移動を規制し、保持する。   Further, the mold 30 is formed so that the exposed molding portion 32 protrudes from the housing molding portion 31 corresponding to the exposed portion 12 of the main body portion 1, and the exposed molding portion 32 is bent of the terminal portion 2. The terminal portion 2 is held by contacting the portion 22 and the peripheral portion 23. Further, the exposed molding portion 32 of the mold 30 abuts and holds the side surfaces of the bent portion 22 and the peripheral portion 23 of the terminal portion 2. As described above, the exposed molding portion 32 of the mold 30 regulates and holds the terminal portion 2 from the four directions at the bent portion 22 and the peripheral portion 23.

金型30内に端子部2を配置した状態で、樹脂材料が金型30の筐体成形部31に注入されると、樹脂流れによって端子部2は圧力を受ける。しかし、端子部2は屈曲部22とセンサ接続部20側の周囲部23、及び外部接続部21側の周囲部23が金型30の露出成形部32によって保持されているので、樹脂流れによる圧力に対抗することができ、端子部2を変形させることなく本体部1を成形することができる。   When the resin material is injected into the housing molding part 31 of the mold 30 in a state where the terminal part 2 is disposed in the mold 30, the terminal part 2 receives pressure due to the resin flow. However, since the terminal portion 2 is held by the bent portion 22 and the peripheral portion 23 on the sensor connection portion 20 side and the peripheral portion 23 on the external connection portion 21 side by the exposed molding portion 32 of the mold 30, pressure due to the resin flow Therefore, the main body 1 can be molded without deforming the terminal 2.

以上、本発明の実施形態について説明したが、本発明の適用は本実施形態に限られず、その技術的思想の範囲内において様々に適用されうるものである。本実施形態では、回転を検出する検出部を収容する検出装置の筐体について示したが、これには限られず、両端に本体部から突出する接続部を有する端子部をインサート成形してなる筐体であれば、他の装置であっても適用することができる。   Although the embodiment of the present invention has been described above, the application of the present invention is not limited to this embodiment, and can be variously applied within the scope of the technical idea. In the present embodiment, the case of the detection device housing the detection unit for detecting rotation is shown. However, the present invention is not limited to this. The case is formed by insert molding terminal portions having connection portions protruding from the main body at both ends. If it is a body, it can be applied to other devices.

本実施形態における筐体の正面図である。It is a front view of the housing | casing in this embodiment. 図1のA−A断面図である。It is AA sectional drawing of FIG. 端子部の斜視図である。It is a perspective view of a terminal part. 端子部の屈曲部付近の拡大斜視図である。It is an expansion perspective view near the bent part of a terminal part. 本体部の露出部付近の拡大斜視図である。It is an expansion perspective view near the exposure part of a main-body part. 本体部を形成する金型の略上半分の断面図である。It is sectional drawing of the substantially upper half of the metal mold | die which forms a main-body part. 従来の筐体の断面図である。It is sectional drawing of the conventional housing | casing.

符号の説明Explanation of symbols

1 本体部
2 端子部
10 収容部
11 固定部
12 露出部
20 センサ接続部
21 外部接続部
22 屈曲部
23 周囲部
30 金型
31 筐体成形部
32 露出成形部
DESCRIPTION OF SYMBOLS 1 Main-body part 2 Terminal part 10 Storage part 11 Fixing part 12 Exposed part 20 Sensor connection part 21 External connection part 22 Bending part 23 Peripheral part 30 Mold 31 Housing molding part 32 Exposed molding part

Claims (3)

樹脂からなる本体部内に端子部がインサート成形されてなる筐体において、
上記端子部は両端部にそれぞれ上記本体部から突出する接続部を有すると共に、該接続部間に略直角に屈曲した屈曲部を有し、上記本体部は上記屈曲部及びその周囲部の外側面及び側面を外部に露出させる露出部を有し、上記端子部の屈曲部は周囲部よりも幅狭に形成されてなることを特徴とする筐体。
In the case where the terminal part is insert-molded in the main body part made of resin,
The terminal portion has connection portions protruding from the main body portion at both ends, and a bent portion bent substantially at a right angle between the connection portions, and the main body portion is an outer surface of the bent portion and the surrounding portion. And a housing having an exposed portion for exposing a side surface to the outside, wherein the bent portion of the terminal portion is formed narrower than the peripheral portion .
上記端子部は上記屈曲部から両接続部まで略直線状に形成されてなることを特徴とする請求項記載の筐体。 Housing of claim 1, wherein said terminal portion, characterized by comprising a generally linear shape to both connection portions from the bent portion. 金型により樹脂からなる本体部内に端子部をインサート成形してなる筐体の製造方法において、
上記金型には上記筐体の外形に対応した筐体成形部を形成し、上記端子部には両端部に接続部を形成すると共に、該接続部間に略直角に屈曲した屈曲部を形成し、
上記筐体成形部には上記端子部の屈曲部及びその周囲部を保持する露出成形部を形成し、該露出成形部に上記屈曲部及びその周囲部の外側面及び側面を当接させた状態で上記端子部を筐体成形部内に配置すると共に、上記筐体成形部に樹脂材料を注入して本体部を成形することを特徴とする筐体の製造方法。
In the manufacturing method of the housing formed by insert molding the terminal part in the main body part made of resin by the mold,
The mold is formed with a casing molding portion corresponding to the outer shape of the casing, and the terminal portion is formed with a connecting portion at both ends, and a bent portion bent at a substantially right angle is formed between the connecting portions. And
An exposed molded part that holds the bent part of the terminal part and its peripheral part is formed in the casing molded part, and the bent part and the outer surface and side surfaces of the peripheral part are in contact with the exposed molded part A method for manufacturing a housing, comprising: arranging the terminal portion in a housing molding portion, and molding a main body portion by injecting a resin material into the housing molding portion.
JP2005215286A 2005-07-26 2005-07-26 Housing and manufacturing method of housing Active JP4909542B2 (en)

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