JPS6124667A - Method of manufacturing steering wheel - Google Patents

Method of manufacturing steering wheel

Info

Publication number
JPS6124667A
JPS6124667A JP14721584A JP14721584A JPS6124667A JP S6124667 A JPS6124667 A JP S6124667A JP 14721584 A JP14721584 A JP 14721584A JP 14721584 A JP14721584 A JP 14721584A JP S6124667 A JPS6124667 A JP S6124667A
Authority
JP
Japan
Prior art keywords
rim
core material
steering wheel
manufacturing
lightweight
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP14721584A
Other languages
Japanese (ja)
Inventor
Hiroaki Hosaka
保坂 裕明
Isamu Yano
矢野 勇
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Mitsubishi Electric Corp
Original Assignee
Mitsubishi Electric Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Mitsubishi Electric Corp filed Critical Mitsubishi Electric Corp
Priority to JP14721584A priority Critical patent/JPS6124667A/en
Publication of JPS6124667A publication Critical patent/JPS6124667A/en
Pending legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B62LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
    • B62DMOTOR VEHICLES; TRAILERS
    • B62D1/00Steering controls, i.e. means for initiating a change of direction of the vehicle
    • B62D1/02Steering controls, i.e. means for initiating a change of direction of the vehicle vehicle-mounted
    • B62D1/04Hand wheels

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Transportation (AREA)
  • Mechanical Engineering (AREA)
  • Steering Controls (AREA)

Abstract

PURPOSE:To enhance the mass productivity of rims, by using a rectilinear lightweight shape holding material as a core material, by bending the core material into a ring shape to form a rim after a reinforcing plastic layer is formed around the periphery of the core material and by subjecting the rim to a design mold upon joining of the rim and sporks. CONSTITUTION:Upon manufacturing of a steerling wheel or a steering wheel rim in particular, unidirectionally reinforcing fibers 1b are applied around a rectilinear lightweight shape holding material as a core material 1a having a length corresponding to a necessary diameter of the rim 1. Then the core material 1a is bent into a ring shape with both end abutting parts 1d being fitted together. Then the fibers 1b are impregnated with thermo-hardened resin to be hardened so that a reinforced plastic layer 1c is formed. Further, a design mold is applied to the rim with the use of rubber and resin before or arter the joning of the rim 1 and sporks. With this arrangement, since a rectilinear lightweight shape holding material is used as a core material 1a, the mass production of rims 1 may be made with a high degree of efficiency.

Description

【発明の詳細な説明】 〔発明の技術分野〕 本発明は強化プラスチックを用いたステアリングホイー
ルの特にリムの製造方法に関するものである。
DETAILED DESCRIPTION OF THE INVENTION [Technical Field of the Invention] The present invention relates to a method for manufacturing a steering wheel, particularly a rim, using reinforced plastic.

〔従来技術〕[Prior art]

一般に自動車のノヘンドル、即ちステアリングホイール
は第1〜第2図に示す構造のもので、第1図はステアリ
ングホイールをステアリングシフトに固設した時の側面
図、第2図はその正面図である。図において、(1)は
握シ部となるリング状のリム、(2)はリム(1)の内
側に固設したスポーク、 (31i’Jl。
In general, a steering wheel for an automobile has a structure shown in FIGS. 1 and 2. FIG. 1 is a side view of the steering wheel fixed to a steering shift, and FIG. 2 is a front view thereof. In the figure, (1) is a ring-shaped rim that becomes a grip, (2) is a spoke fixed inside the rim (1), (31i'Jl).

リムの中心部でスポークに固設されているボスで。At the boss that is fixed to the spoke in the center of the rim.

ステアリングシャフト(4)への取付部となる。以上の
構成における。従来のステアリングホイールにおいては
、リム(1)を初め、スポーク(2)およびボス(3)
がいずれも炭素鋼により形成され、リム(1)の芯金と
スポーク(2)およびスポーク(2)とボス(3)は溶
接されかつ、リム(1)は前記のとおシゴム又は樹脂に
より意匠モールドさ庇ソモる。このように、スチールを
主体にして構成されているため軽いものでも2kgの重
量を持っていた。このため、特に高速走行時にステアリ
ングホイールに振動を生じ、操作安定性を低下させると
ともにドライバーに不快感を与えるという欠点があシ、
また燃費ち増大するという欠点があった。そこで出願人
は特願昭57−231448にて強化プラスチックを用
いたステアリングホイールを発明し特許出願した。その
強化プラスチック製ステアリングホイールは上記の従来
の欠点を除去するために成されたものであシ、軽量で充
分な強度を持ち、走行時に振動が生じず操作性も勝れ、
かつ燃費を低減出来る効果を有するものである。
This is the attachment part to the steering shaft (4). In the above configuration. A conventional steering wheel includes a rim (1), spokes (2), and a boss (3).
Both are made of carbon steel, the core metal of the rim (1) and the spokes (2), and the spokes (2) and the bosses (3) are welded, and the rim (1) is molded with the above-mentioned metal rubber or resin. I'm under your protection. In this way, since it was mainly constructed of steel, even the lightest one had a weight of 2 kg. This has the disadvantage of causing vibrations in the steering wheel, especially when driving at high speeds, reducing operational stability and causing discomfort to the driver.
Another drawback was that fuel consumption increased. Therefore, the applicant invented a steering wheel using reinforced plastic and filed a patent application in Japanese Patent Application No. 57-231448. The reinforced plastic steering wheel was created to eliminate the above-mentioned drawbacks of the conventional technology.It is lightweight and has sufficient strength, does not generate vibrations when driving, and has excellent operability.
It also has the effect of reducing fuel consumption.

因に、そのステアリングホイールのうち本発明の要旨で
もあるリムの構成を中心に第3〜第5図にもとすき簡単
に説明する。図において、(1)及び(2)は前記説明
のリム及びスポークである。(1a)はリム(1)の芯
材で例えば発泡フオーム材等のプラスチック又はゴム等
からなる軽量発泡部材である。
Incidentally, the configuration of the rim of the steering wheel, which is also the gist of the present invention, will be briefly explained with reference to FIGS. 3 to 5. In the figure, (1) and (2) are the rim and spokes described above. (1a) is the core material of the rim (1), which is a lightweight foam member made of plastic, rubber, etc., such as a foam material.

(1b)はその芯材(1a)の周囲に巻かれた炭素繊維
やアルミナ繊維から成る一方向強化繊維、  (IC)
はその一方向強化繊維に樹脂等を含浸させ強化された強
化プラスチック層、  (1d)は後述する結合金具を
取付けるために設けた溝部であり、他の径寸法よシ細く
しである。(5)はそのリムの溝部(1d)に係合され
て固設される結合金具、(6)は固定ねじて図示してい
ないがスポーク(2)の側面にも設けてあシ。
(1b) is a unidirectional reinforcing fiber made of carbon fiber or alumina fiber wrapped around the core material (1a), (IC)
(1d) is a reinforced plastic layer made by impregnating the unidirectional reinforcing fibers with a resin or the like, and (1d) is a groove provided for attaching a coupling fitting, which will be described later, and is a comb that is thinner than the other diameters. (5) is a coupling fitting that is fixed by being engaged with the groove (1d) of the rim, and (6) is a fixing screw that is also provided on the side of the spoke (2), although not shown.

第5図に示すようにリム(1)とスポーク(2)鉱固設
されている。なお、ステアリメグホイールの軽量化を図
るため第5図の一実施例ではスポーク(2)も芯材(2
a)に軽量発泡部材を使用し、それに一方向強化繊維に
よる強化グラスチック層(2C)を設けたものを採用し
ているがスポークの材質に限定されるものではない。
As shown in Figure 5, the rim (1) and spokes (2) are fixedly installed. In order to reduce the weight of the steering wheel, in the embodiment shown in Fig. 5, the spokes (2) are also made of core material (2).
In a), a lightweight foam member is used and a reinforced glass layer (2C) made of unidirectional reinforcing fibers is provided thereon, but the material of the spokes is not limited to this.

〔発明の概要〕[Summary of the invention]

本発明は、上記の構成からなるステアリングホイールの
製造方法に関し、特にリムの量産を行う場合に、その製
造方法に特徴を持たせたものである。つまり、リムの必
要径に相当する長さを有する直線状の軽量保形材を芯材
として、その周囲に一方向強化繊維を配設し、その一方
向強化繊維が巻かれた芯材をリング状に曲げ、その両端
部の突合せ部を固着させ、それにプラスチックを含浸さ
せて強化プラスチック層とし、それにリムとスポークと
を接合させ、その前後に意匠モールドを行うような工程
を有したステアリングホイールの製造方法を提供するも
のである。
The present invention relates to a method of manufacturing a steering wheel having the above-mentioned configuration, and is particularly characterized in the case of mass-producing rims. In other words, a linear lightweight shape-retaining material with a length equivalent to the required diameter of the rim is used as a core material, unidirectional reinforcing fibers are arranged around it, and the core material around which the unidirectional reinforcing fibers are wound is used as a ring. A steering wheel that has a process of bending it into a shape, fixing the abutting parts at both ends, impregnating it with plastic to form a reinforced plastic layer, joining the rim and spokes to it, and performing design molding before and after that. A manufacturing method is provided.

〔発明の実施例〕[Embodiments of the invention]

以下9本発明のステアリングホイールの製造方法につい
て第6〜第8図にもとすいて詳細に説iする。まず、第
6図に示すように2例えば、ウレタン、ポリエチ、ポリ
プロピレン等のプラスチック又はゴム材の中実の発泡フ
オーム材又は薄肉のパイプ材から成る直線状のもので、
コイル状に曲げても、破損しない程度の強度1弾性をも
ち、リムの必要径に相当する長さの軽量課形材で構成さ
れている。なお、その芯材(1a)は任意の位置にスポ
ーク(2)を取シ付ける溝部(1d)を有するように加
工されているが、リム(1)とスポーク(2)の接続を
他の方法で行う場合は溝部(旬)を事前に形成する必要
はない。
The method for manufacturing a steering wheel according to the present invention will be described in detail below with reference to FIGS. 6 to 8. First, as shown in Fig. 6, a straight piece made of a solid foam material or a thin pipe material made of plastic or rubber such as urethane, polyethylene, or polypropylene is used.
It is made of a lightweight sectioned material that has enough strength and elasticity to not break even when bent into a coil shape, and has a length that corresponds to the required diameter of the rim. Although the core material (1a) is processed to have a groove (1d) for attaching the spokes (2) at any position, it is possible to connect the rim (1) and spokes (2) by other methods. If this is done, it is not necessary to form the grooves in advance.

次に上記リムの芯材(1a)の周囲に円周方向に炭素繊
維、ガラス繊維あるいはアルミナ繊維からなる連続した
一方向強化繊維(Ib)ft10°〜60°の間の一定
角度で編組機又はワイディングマシンで交差して巻回す
る。この場合2強度の点を考慮し。
Next, continuous unidirectional reinforcing fibers (Ib) made of carbon fiber, glass fiber or alumina fiber are placed around the core material (1a) of the rim in the circumferential direction using a braiding machine or Wrap it in a criss-cross manner using a winding machine. In this case, consider two points of strength.

その配役は自由に選定出来る。The cast can be chosen freely.

次に、一方向強化繊維が編組又は巻かれた芯材(1a)
の両端部が突合された場合、相互に噛合わされるように
加工する。
Next, a core material (1a) in which unidirectional reinforcing fibers are braided or wound
When both ends are butted, they are machined so that they mesh with each other.

次に、上記芯材(1a)をリング状に曲げ、その両端部
を第7〜第8図に示すように突き合せて固着する。
Next, the core material (1a) is bent into a ring shape, and both ends thereof are butted and fixed as shown in FIGS. 7 and 8.

次に、上記一方向強化繊維部(1b)にプラスチツりを
含浸させ、加熱硬化させて2強化グラスチック層を形成
する。最後にリム(1)とスポーク(2)を接合した後
又は接合する前にゴム又は樹脂によシ意匠モールドを行
う。このようにして第2図に示す形状のステアリングホ
イールを製作することが出来る。
Next, the unidirectional reinforcing fiber portion (1b) is impregnated with plastic and heated and cured to form a second reinforcing glass layer. Finally, after or before joining the rim (1) and spokes (2), a rubber or resin molding is performed. In this way, a steering wheel having the shape shown in FIG. 2 can be manufactured.

〔発明の効果〕〔Effect of the invention〕

本発明は2以上説明したとおシ、ステアリングホイール
のリムの製造に関し2個々のリング状の芯材よシ製造を
初めるのではなく、リムの芯材として直線状の軽量保形
材を使用し、その芯材の周囲を一方向強化繊維を配設し
、必要な径のリングに合せて任意の長さに切断し、その
両端を突合せてリング状とし、スポーク(2)との接続
を例えば結合金具(5)などを用いて固着させ、プラス
チックを含浸し加熱硬化させて強化プラスチック層を形
成し、ゴム又は樹脂によシ意匠モールドを行ってステア
リングホイールを製造するものであシ、芯材として直線
状の軽量保形材を使用したことにょシ。
As described above, the present invention relates to manufacturing the rim of a steering wheel.2 Instead of starting with manufacturing individual ring-shaped core materials, the present invention uses a linear lightweight shape-retaining material as the core material of the rim. A unidirectional reinforcing fiber is placed around the core material, cut to an arbitrary length to match the required diameter of the ring, and the two ends are butted together to form a ring shape, and the connection with the spokes (2) is made by joining, for example. Steering wheels are manufactured by fixing the material using metal fittings (5), etc., impregnating it with plastic and curing it by heating to form a reinforced plastic layer, and then molding it into a rubber or resin design.As a core material. Made using linear lightweight shape-retaining material.

その取扱いが非常に行い易くなシ、リムの量産を行う場
合、非常に有効であシ、原価低減に多大なる効果を発揮
すると共に品質上も安定した製品を作シ出す効果を奏す
るものである。
It is very easy to handle, and is very effective when mass producing rims.It has a great effect on cost reduction and produces products with stable quality. .

【図面の簡単な説明】[Brief explanation of drawings]

第1〜第2図はステアリングの概念図を示すもので、第
1図はステアリングホイールをステアリングシャフトに
固設した時の側面図、第2図はその正面図である。第3
〜第5図は先に出願した発明めリムの構成を示すもので
、第3図は芯材に一方向強化繊維を配設した状態図、第
4図はスポークの接合金具を取シ付けた状態図、第5図
はリムとスポークとを接合した時の概念を示す断面図。 第6〜第8図は本発明の一実施例を示すもので。 第6図はコイル状の長尺のリム芯材に一方向強化繊維を
巻回している状態、図、第7図はリング状に曲げた時の
概念図、第8図は接合部の拡大図である。 図において、(1)はリム、  (1a)は芯材、  
(1b)は一方向強化繊維、  (1c)は強化プラス
チック層、(2)はスポーク、(3)はボス、(4)は
ステアリングシャフトである。なお各図中同一符号は同
一か相当部分を示す。
1 and 2 show conceptual diagrams of the steering, with FIG. 1 being a side view when the steering wheel is fixed to the steering shaft, and FIG. 2 being a front view thereof. Third
~Figure 5 shows the configuration of the rim of the invention previously applied for, Figure 3 is a state diagram with unidirectional reinforcing fibers arranged in the core material, and Figure 4 is a diagram with the spoke joint fittings attached. FIG. 5 is a cross-sectional view showing the concept when the rim and spokes are joined. 6 to 8 show one embodiment of the present invention. Figure 6 shows the state in which unidirectional reinforcing fibers are wound around a long coiled rim core material, Figure 7 is a conceptual diagram when bent into a ring shape, and Figure 8 is an enlarged view of the joint. It is. In the figure, (1) is the rim, (1a) is the core material,
(1b) is a unidirectional reinforced fiber, (1c) is a reinforced plastic layer, (2) is a spoke, (3) is a boss, and (4) is a steering shaft. Note that the same reference numerals in each figure indicate the same or corresponding parts.

Claims (4)

【特許請求の範囲】[Claims] (1)握り部となるリング状のリムと、ステアリングシ
ヤフトへの取付部であるボスと、リムとボスを一体連結
するスポークとからなるステアリングホイールの製造方
法において、上記リムの必要径に相当する長さを有する
直線状の軽量保形材を芯材として、その周囲に一方向強
化繊維を配設する工程と、その芯材をリング状に曲げて
両端部の突合せ部を噛合る工程と、一方向強化繊維に熱
硬化性樹脂を含浸し硬化させ強化プラスチック層を形成
する工程と、リムとスポークとを接合する前又は後に意
匠モールドを行なう工程とからなるステアリングホイー
ルの製造方法。
(1) In a method for manufacturing a steering wheel consisting of a ring-shaped rim that serves as a grip, a boss that is an attachment part to the steering shaft, and spokes that integrally connect the rim and boss, the diameter corresponds to the required diameter of the rim. A process of arranging unidirectional reinforcing fibers around a long linear lightweight shape-retaining material as a core material, and a process of bending the core material into a ring shape and engaging the abutting parts of both ends, A method for manufacturing a steering wheel comprising the steps of impregnating and curing unidirectional reinforcing fibers with a thermosetting resin to form a reinforced plastic layer, and performing design molding before or after joining a rim and spokes.
(2)上記芯材としてプラスチック材の薄肉円筒を用い
たことを特徴とする特許請求の範囲第(1)項記載のス
テアリングホイールの製造方法。
(2) The method for manufacturing a steering wheel according to claim (1), wherein a thin cylinder made of plastic material is used as the core material.
(3)上記芯材として軽量発泡部材を用いたことを特徴
とする特許請求の範囲第(1)項記載のステアリングホ
イールの製造方法。
(3) The method for manufacturing a steering wheel according to claim (1), characterized in that a lightweight foam member is used as the core material.
(4)上記意匠モールドとしてゴム又は樹脂を用いたこ
とを特徴とする特許請求の範囲第(1)項ないし第(3
)項のいずれかに記載のステアリングホイールの製造方
法。
(4) Claims (1) to (3) characterized in that rubber or resin is used as the design mold.
) The method for manufacturing a steering wheel according to any of the above items.
JP14721584A 1984-07-16 1984-07-16 Method of manufacturing steering wheel Pending JPS6124667A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP14721584A JPS6124667A (en) 1984-07-16 1984-07-16 Method of manufacturing steering wheel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP14721584A JPS6124667A (en) 1984-07-16 1984-07-16 Method of manufacturing steering wheel

Publications (1)

Publication Number Publication Date
JPS6124667A true JPS6124667A (en) 1986-02-03

Family

ID=15425172

Family Applications (1)

Application Number Title Priority Date Filing Date
JP14721584A Pending JPS6124667A (en) 1984-07-16 1984-07-16 Method of manufacturing steering wheel

Country Status (1)

Country Link
JP (1) JPS6124667A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS63112265A (en) * 1986-10-29 1988-05-17 Toyoda Gosei Co Ltd Steering wheel
JPH0346408A (en) * 1989-07-14 1991-02-27 Jeco Co Ltd Clock

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS63112265A (en) * 1986-10-29 1988-05-17 Toyoda Gosei Co Ltd Steering wheel
JPH0346408A (en) * 1989-07-14 1991-02-27 Jeco Co Ltd Clock

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