JPS6212418A - Support structure for horizontally laid power unit - Google Patents

Support structure for horizontally laid power unit

Info

Publication number
JPS6212418A
JPS6212418A JP15047985A JP15047985A JPS6212418A JP S6212418 A JPS6212418 A JP S6212418A JP 15047985 A JP15047985 A JP 15047985A JP 15047985 A JP15047985 A JP 15047985A JP S6212418 A JPS6212418 A JP S6212418A
Authority
JP
Japan
Prior art keywords
power unit
support members
torque
elastic
vehicle body
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
JP15047985A
Other languages
Japanese (ja)
Inventor
Takeshi Edahiro
毅志 枝廣
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.)
Mazda Motor Corp
Original Assignee
Mazda Motor 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 Mazda Motor Corp filed Critical Mazda Motor Corp
Priority to JP15047985A priority Critical patent/JPS6212418A/en
Publication of JPS6212418A publication Critical patent/JPS6212418A/en
Pending legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60KARRANGEMENT OR MOUNTING OF PROPULSION UNITS OR OF TRANSMISSIONS IN VEHICLES; ARRANGEMENT OR MOUNTING OF PLURAL DIVERSE PRIME-MOVERS IN VEHICLES; AUXILIARY DRIVES FOR VEHICLES; INSTRUMENTATION OR DASHBOARDS FOR VEHICLES; ARRANGEMENTS IN CONNECTION WITH COOLING, AIR INTAKE, GAS EXHAUST OR FUEL SUPPLY OF PROPULSION UNITS IN VEHICLES
    • B60K5/00Arrangement or mounting of internal-combustion or jet-propulsion units
    • B60K5/12Arrangement of engine supports
    • B60K5/1208Resilient supports
    • B60K5/1216Resilient supports characterised by the location of the supports relative to the motor or to each other

Abstract

PURPOSE:To prevent first and second resilient support members for supporting the front and rear sections of a power unit from exciting vibration, by positioning these resilient support members such that the resilient center among them is positioned on the torque roll axis of the power unit. CONSTITUTION:A power unit 4 is composed of an engine 7, a transmission 8 and a differential gear integrally incorporated with the transmission 8. In this arrangement the power unit 4 is supported at its front and rear ends, resiliently by first and second resilient support members 11, 12 which are opposed in the longitudinal direction so that the torque axis of the power unit is laid there between and which are spaced from each other by a predetermined distance, and is supported at its both side sections by third and fourth resilient support members 13, 14 at positions which are spaced from each other by a predetermined distance in the direction of torque roll axis Z of the power unit. Further, the first and second support member 11, 12 are arranged so that the resilient center V among them is positioned on the torque roll axis Z.

Description

【発明の詳細な説明】 (産業上の利用分野) 本発明は、エンジン、トランスミッション等を備えた横
置式パワーユニットの支持構造に関する。
DETAILED DESCRIPTION OF THE INVENTION (Field of Industrial Application) The present invention relates to a support structure for a horizontal power unit equipped with an engine, a transmission, and the like.

(従来技術) 例えば、フロントエンジンフロントドライブ車にあって
は、エンジンやトランスミッション等でなるパワーユニ
ットは、エンジンのトルク軸(クランク軸)が車体左右
方向に向くように車体前部のエンジンルーム内に横置き
に配置されるのが通例であるが、その場合、エンジンの
ローリング運動の慣性主軸とタイヤの回転軸とが互いに
並行し、このためタイヤの回転によるトルク反力が直接
エンジンのローリング方向に作用する。このため、上述
のような横置式パワーユニットを搭載した車輌において
は、エンジンは、それ自体の振動が車体に伝わりにくい
ように車体に支持されていることに加えて、タイヤの回
転によるトルク反力が受は止められるように支持されて
いることが要求される。
(Prior art) For example, in a front-engine, front-drive vehicle, the power unit consisting of the engine, transmission, etc. is placed horizontally in the engine room at the front of the vehicle with the engine's torque shaft (crankshaft) facing left and right of the vehicle. In this case, the main axis of inertia of the engine's rolling motion and the axis of rotation of the tire are parallel to each other, so that the torque reaction force due to the rotation of the tire acts directly on the rolling direction of the engine. do. For this reason, in vehicles equipped with the above-mentioned horizontally mounted power unit, the engine is supported by the vehicle body so that its own vibrations are less likely to be transmitted to the vehicle body, and the torque reaction force due to the rotation of the tires is also The uke is required to be supported so that it can be stopped.

この要求が満たされないでエンジンが支持されると、エ
ンジンが低回転時特にアイドリング時には上記慣性主軸
まわりの回転振動が車体に伝わり、一方エンジンが高回
転時にはトルクロール軸まわりの回転振動が車体に伝わ
り、騒音が増大したり、乗り心地が悪化するという問題
がある。
If the engine is supported without this requirement being met, rotational vibrations around the principal axis of inertia will be transmitted to the car body when the engine is running at low speeds, especially when idling, while rotational vibrations around the torque roll axis will be transmitted to the car body when the engine is running at high speeds. , there are problems such as increased noise and worsened ride comfort.

ここで、上記トルクロール軸とは、公知のように、トル
クの発生するトルク軸と、慣性主軸とによって定まる軸
であって、拘束されないパワーユニットにクランク軸回
りのトルクをかけた時のパワーユニットの回転の中心軸
をいい、エンジンの高回転時、つまりパワーユニットの
強制振動数が固有振動数よりも十分に大となる高周波の
トルク変動を受けている時に路上記トルクロール軸のま
わりにパワーユニットが回転振動するものである。
Here, the above-mentioned torque roll axis is, as is well known, an axis determined by the torque axis where torque is generated and the principal axis of inertia, and is the rotation of the power unit when torque around the crankshaft is applied to the unrestrained power unit. The power unit rotates around the torque roll axis above the road when the engine rotates at high speeds, that is, when the forced vibration frequency of the power unit is sufficiently larger than the natural frequency and receives high-frequency torque fluctuations. It is something to do.

上記慣性主軸はデファレンシャルギヤの出力軸に平行な
水平軸に対してパワーユニットの重心を通り、水平から
10°〜15°程度の角度α傾斜しており、上記トルク
ロール軸は重心を通り、上記角度αと次式の関係にある
角度βだけ慣性主軸に対して傾斜している。
The main axis of inertia passes through the center of gravity of the power unit with respect to a horizontal axis parallel to the output shaft of the differential gear, and is inclined at an angle α of about 10° to 15° from the horizontal, and the torque roll axis passes through the center of gravity and is inclined at an angle α of about 10° to 15° from the horizontal. It is inclined with respect to the principal axis of inertia by an angle β having the relationship between α and the following equation.

tan β= (IX / IZ ) ・tan αた
だし、Iにはロール慣性主軸まわりのモーメントであり
、Iz は重心を通り略鉛直なヨーイング慣性主軸まわ
りのモーメントであり、一般にIx<Izであるので、
α〉βとなる。
tan β= (IX / IZ) ・tan α However, I is the moment around the principal axis of roll inertia, and Iz is the moment about the principal axis of yawing inertia, which is approximately vertical through the center of gravity, and generally Ix<Iz, so
α>β.

上記慣性主軸まわりの回転振動の防止技術としては、実
開昭57−135426号に開示されたものが知られて
いる。
As a technique for preventing rotational vibration around the principal axis of inertia, the technique disclosed in Japanese Utility Model Application Laid-Open No. 57-135426 is known.

(発明の目的) 本発明は、上記トルクロール軸まわりの回転振動を防止
することのできる横置式パワーユニットの支持構造を提
供することを目的とするものである。
(Object of the Invention) An object of the present invention is to provide a support structure for a horizontal power unit that can prevent rotational vibration around the torque roll axis.

(発明の構成) 本発明は、エンジン、トランスミッション等を備え、ト
ルク軸が車体横方向に配置された横置式パワーユニット
の支持構造であって、前記パワーユニットの前後部を弾
性支持するようトルク軸を車体前後方向に挟み、所定距
離隔てて配置された第1および第2弾性支持部材と、前
記パワーユニットの両側部を弾性支持するよう車体横方
向に所定距離隔てて配置された第3および第4弾性支持
部材とを備え、前記第1および第2弾性支持部材は、そ
れらの弾性中心が前記トルクロール軸上に位置するよう
に配置されていることを特徴とするものである。
(Structure of the Invention) The present invention provides a support structure for a horizontal power unit that includes an engine, a transmission, etc., and has a torque shaft disposed in the lateral direction of a vehicle body, the torque shaft being connected to the vehicle body so as to elastically support the front and rear portions of the power unit. first and second elastic support members sandwiched in the front-rear direction and placed a predetermined distance apart; and third and fourth elastic supports placed a predetermined distance apart in the lateral direction of the vehicle body so as to elastically support both sides of the power unit. The first and second elastic support members are arranged such that their centers of elasticity are located on the torque roll axis.

(発明の効果) 上記構成の本発明の横置式パワーユニットの支持構造に
おいては、パワーユニットの前後部を支持する第1およ
び第2弾性支持部材の弾性中心が上記トルクロール軸上
に位置するように配置されているので、エンジンの振動
時特にアイドリング時、これら第1および第2弾性支持
部材に振動モーメントが入らず、これらの弾性支持部材
による振動の加振が防止できる。
(Effects of the Invention) In the support structure for a horizontal power unit of the present invention configured as described above, the elastic centers of the first and second elastic support members supporting the front and rear parts of the power unit are arranged so as to be located on the torque roll axis. Therefore, when the engine vibrates, especially when idling, no vibration moment is applied to these first and second elastic support members, and vibrations caused by these elastic support members can be prevented.

(実施例) 以下、添付図面を参照しつつ本発明の好ましい実施例に
よる横置式パワーユニットの支持構造について説明する
(Example) Hereinafter, a support structure for a horizontal power unit according to a preferred embodiment of the present invention will be described with reference to the accompanying drawings.

第1図はパワーユニットの配置状態を示すもので、同図
に示すように、車体1の前部に形成されたエンジンルー
ム2内には、パワーユニットマウントメンバー3が車体
前後方向に(図例では車体前方を矢印Fで示し、車体後
方を矢印Rで示す)配設され、該メンバー3にパワーユ
ニット4がマウントされている。ここで、上記マウント
メンバー3は、その前後両端部3a、3bにおいて防振
ラバー5・・・5を夫々介して車体1にボルト6・・・
6を用いて取付けられている。
FIG. 1 shows the arrangement of the power unit. As shown in the figure, a power unit mount member 3 is installed in the engine compartment 2 formed at the front of the vehicle body 1 in the longitudinal direction of the vehicle body (in the example shown, the vehicle body The front part is indicated by arrow F, and the rear part of the vehicle body is indicated by arrow R), and a power unit 4 is mounted on the member 3. Here, the mount member 3 is attached to the vehicle body 1 with bolts 6 through anti-vibration rubbers 5 at both front and rear ends 3a and 3b, respectively.
It is installed using 6.

一方、上記パワーユニット4は、エンジン7と、該エン
ジン7の一側方に取付けられたトランスミッション8と
、該トランスミッション8に一体化されたディファレン
シャルギヤ装置9とで構成されており、エンジン7のト
ルク軸Xが車体1の左右方向を向くように横置きに配置
されていると共に、上記ディファレンシャルギヤ装置9
からはドライブシャフト10.10が車体左右方向に夫
々延びてそれらの端部に左右の車輪(図示せず)が連結
されている。
On the other hand, the power unit 4 is composed of an engine 7, a transmission 8 attached to one side of the engine 7, and a differential gear device 9 integrated with the transmission 8. The differential gear device 9 is arranged horizontally so that X faces the left and right direction of the vehicle body 1, and the differential gear device 9
Drive shafts 10 and 10 extend in the left and right directions of the vehicle body, and left and right wheels (not shown) are connected to their ends.

上記パワーユニット4は、第1図および第2図に示され
ているように、その前後部が第1および第2弾性支持部
材11および12によって、その両側部が第3および第
4弾性支持部材13および14によって上記メンバー3
および車体1にそれぞれ支持されている。
As shown in FIGS. 1 and 2, the power unit 4 has first and second elastic support members 11 and 12 at its front and rear sides, and third and fourth elastic support members 13 at both sides. and 14 by said member 3
and are supported by the vehicle body 1, respectively.

更に、上記各弾性支持半没11〜14のうち、第1、第
2弾性支持手段11.12は、トランスミッション8の
前QW ’fR及Uディファレンシャルギヤ装置9の後
端部において、すなわち上記トルク軸Xを車体前後方向
に挟み、所定圧離隔てて配置されて、上記メンバー3に
パワーユニット4を弾性的に支持し、また第3、第4弾
性支持手段13.14は、エンジン7及びトランスミッ
ション8の各−側部において、すなわちトルクロール軸
Z方向に所定間隔を隔てた位置で、車体1に同じくパワ
ーユニット4を弾性的に支持している。ここで、この実
施例においては、上記第1弾性支持部材11(第2弾性
支持部材12についても同様)は、第1〜3図に示すよ
うに内筒15及び外筒16とこれらを連結する弾性ラバ
ー17とでなるラバーブツシュで構成されており、パワ
ーユニット4に固着されたブラケット18(第2弾性支
持部材12についてはブラケット19)に上記内筒15
が軸支され且つ上記外筒16がマウントメンバー3に取
付部16aを介して固着されていることにより、パワー
ユニット4の上記メンバー3への、つまり車体1への振
動の伝達を低減させるようになっている。尚、第3、第
4弾性支持部材13.14においてはラバーブツシュの
外筒側がブラケット13a、14aを夫々介してパワー
プラント4に固着されている。
Further, among the elastic support semi-recesses 11 to 14, the first and second elastic support means 11.12 are located at the rear end of the front QW 'fR and U differential gear device 9 of the transmission 8, that is, at the rear end of the The third and fourth elastic support means 13 and 14 are disposed at a predetermined distance apart from each other in the longitudinal direction of the vehicle, and elastically support the power unit 4 on the member 3. Similarly, the power unit 4 is elastically supported on the vehicle body 1 at each side, that is, at positions separated by a predetermined interval in the torque roll axis Z direction. Here, in this embodiment, the first elastic support member 11 (the same applies to the second elastic support member 12) connects the inner cylinder 15 and the outer cylinder 16 as shown in FIGS. The inner cylinder 15 is configured of a rubber bush consisting of an elastic rubber 17, and is attached to a bracket 18 (bracket 19 for the second elastic support member 12) fixed to the power unit 4.
is pivotally supported and the outer cylinder 16 is fixed to the mount member 3 via the attachment part 16a, thereby reducing the transmission of vibrations of the power unit 4 to the member 3, that is, to the vehicle body 1. ing. In the third and fourth elastic support members 13 and 14, the outer cylinder sides of the rubber bushes are fixed to the power plant 4 via brackets 13a and 14a, respectively.

上記第1および第2弾性支持部材11および12は、そ
れらの間の弾性中心■が第4図および第5図に示されて
いるように上記トルクロール軸Z上に位置するようにし
て配置されている。この第1、第2弾性支持部材の弾性
中心■は、両弾性部材の位置、両弾性部材の高低2つの
弾性主軸の向き及び両生軸方向のバネ定数により決定さ
れ、これらのチューニングにより上記弾性中心■がトル
クロール軸Z上に位置させている。これによって、この
第1および第2弾性支持部材11および12による振動
の加振が防止できるようになっている。なお、図におい
て、符号Xはトルク軸を、符号Wはパワーユニット4の
重心をそれぞれ示す。
The first and second elastic support members 11 and 12 are arranged such that the elastic center (2) between them is located on the torque roll axis Z, as shown in FIGS. 4 and 5. ing. The elastic centers of the first and second elastic support members are determined by the positions of both elastic members, the orientations of the two high and low elastic principal axes of both elastic members, and the spring constants in the biaxial directions, and by tuning these, the elastic centers (2) is located on the torque roll axis Z. This makes it possible to prevent vibrations from being caused by the first and second elastic support members 11 and 12. In addition, in the figure, symbol X indicates a torque axis, and symbol W indicates the center of gravity of the power unit 4, respectively.

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

第1図は、本発明の実施例による横置式パワーユニット
の支持構造の平面図、 第2図は、第1図に示した支持構造の正面図、第3図は
、第1図の線III−IIIに沿う断面図、第4図およ
び第5図は、本実施例の支持構造に使用されている第1
および第2弾性支持部材の間の弾性中心を示す概略平面
図および概略正面図である。 1・・・・・・車体  4・・・・・・パワーユニット
11・・・・・・第1弾性支持部材 12・・・・・・第2弾性支持部材 13・・・・・・第3弾性支持部材 14・・・・・・第4−弾性支持部材 ■・・・・・・弾性中心 第4図 第5図
1 is a plan view of a support structure for a horizontal power unit according to an embodiment of the present invention, FIG. 2 is a front view of the support structure shown in FIG. 1, and FIG. 3 is a line taken along line III-- in FIG. 4 and 5 are cross-sectional views taken along line III, FIGS.
FIG. 3 is a schematic plan view and a schematic front view showing an elastic center between the first elastic support member and the second elastic support member. 1...Vehicle body 4...Power unit 11...First elastic support member 12...Second elastic support member 13...Third elasticity Support member 14... 4th - Elastic support member ■... Elastic center Fig. 4 Fig. 5

Claims (1)

【特許請求の範囲】[Claims] エンジン、トランスミッション等を備え、トルク軸が車
体横方向に配置された横置式パワーユニットの支持構造
であって、前記パワーユニットの前後部を弾性支持する
ようトルク軸を車体前後方向に挟み、所定距離隔てて配
置された第1および第2弾性支持部材と、前記パワーユ
ニットの両側部を弾性支持するよう車体横方向に所定距
離隔てて配置された第3および第4弾性支持部材とを備
え、前記第1および第2弾性支持部材は、それらの弾性
中心が前記トルクロール軸上に位置するように配置され
ていることを特徴とする横置式パワーユニットの支持構
造。
This is a support structure for a horizontally installed power unit that includes an engine, a transmission, etc., and has a torque shaft placed in the lateral direction of the vehicle body, and the torque shaft is sandwiched in the front and rear direction of the vehicle body so as to elastically support the front and rear parts of the power unit. first and second elastic support members arranged, and third and fourth elastic support members arranged at a predetermined distance apart in the lateral direction of the vehicle body so as to elastically support both sides of the power unit; A support structure for a horizontal power unit, wherein the second elastic support members are arranged such that their elastic centers are located on the torque roll axis.
JP15047985A 1985-07-09 1985-07-09 Support structure for horizontally laid power unit Pending JPS6212418A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP15047985A JPS6212418A (en) 1985-07-09 1985-07-09 Support structure for horizontally laid power unit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP15047985A JPS6212418A (en) 1985-07-09 1985-07-09 Support structure for horizontally laid power unit

Publications (1)

Publication Number Publication Date
JPS6212418A true JPS6212418A (en) 1987-01-21

Family

ID=15497784

Family Applications (1)

Application Number Title Priority Date Filing Date
JP15047985A Pending JPS6212418A (en) 1985-07-09 1985-07-09 Support structure for horizontally laid power unit

Country Status (1)

Country Link
JP (1) JPS6212418A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4901814A (en) * 1987-06-30 1990-02-20 Porsche Ag Mounting of an internal combustion engine
JPH0257720U (en) * 1988-10-21 1990-04-25
CN106061781A (en) * 2014-05-15 2016-10-26 株式会社普利司通 Engine apparatus support structure, and engine apparatus installation method
JP2019015192A (en) * 2017-07-04 2019-01-31 日産自動車株式会社 Power plant

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4901814A (en) * 1987-06-30 1990-02-20 Porsche Ag Mounting of an internal combustion engine
JPH0257720U (en) * 1988-10-21 1990-04-25
CN106061781A (en) * 2014-05-15 2016-10-26 株式会社普利司通 Engine apparatus support structure, and engine apparatus installation method
US9956862B2 (en) 2014-05-15 2018-05-01 Bridgestone Corporation Engine unit support structure and engine unit mounting method
JP2019015192A (en) * 2017-07-04 2019-01-31 日産自動車株式会社 Power plant

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