JPH06129954A - Drum testing device - Google Patents

Drum testing device

Info

Publication number
JPH06129954A
JPH06129954A JP4281853A JP28185392A JPH06129954A JP H06129954 A JPH06129954 A JP H06129954A JP 4281853 A JP4281853 A JP 4281853A JP 28185392 A JP28185392 A JP 28185392A JP H06129954 A JPH06129954 A JP H06129954A
Authority
JP
Japan
Prior art keywords
drum
tire
road
force
road surface
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
JP4281853A
Other languages
Japanese (ja)
Inventor
Kazutomi Kobayashi
一臣 小林
Masahiro Takayama
正博 高山
Fumio Takahashi
二三男 高橋
Mamoru Horiuchi
守 堀内
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.)
Bridgestone Corp
Original Assignee
Bridgestone 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 Bridgestone Corp filed Critical Bridgestone Corp
Priority to JP4281853A priority Critical patent/JPH06129954A/en
Publication of JPH06129954A publication Critical patent/JPH06129954A/en
Pending legal-status Critical Current

Links

Abstract

PURPOSE:To measure the force applied from a road surface to a tire accurately while covering a real speed and frequency range. CONSTITUTION:A drum main unit is supported by a drum bearing 18 and it is supported by a post 14 via a piezoelectric detection sensor 16. The circumferential speed of the drum main unit 20 can be set to 50km/h or more and a removable type road surface segment 24 with a surface which is obtained by casting an actual road in a mold is fixed on an outer peripheral. A tire press device 48 for pressing a tire 52 is placed at the side of the drum main unit 20. In the title device 10, the outer peripheral of the drum main unit 20 is covered with the removable type road surface segment 24 with the surface which is obtained by casting an actual road in a mold, thus obtaining a stationary and random road-surface input adapted to the actual road and accurately measuring the road-surface input of three crossing directions over a wide frequency range by the piezoelectric force detection sensor 16.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は走行中のタイヤが路面か
ら受ける力を測定するドラム試験装置に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a drum tester for measuring the force received by a running tire from the road surface.

【0002】[0002]

【従来の技術】タイヤの走行試験のための従来のドラム
試験装置では、路面性状を実際に近似させる手段とし
て、表面にセーフティーウォークを貼ったもの、表面を
木製としたもの、また表面に人工的な突起物を固定し、
路面凹凸を代用としたもの等がある。路面からタイヤに
加わる力を測定する手段としては、ドラム表面の一部を
力検出器で支持する機構としたもの、また、タイヤのユ
ニフォミティ試験機のように、タイヤ内部の不均一性に
起因する力を測定するために、スムーズな表面を持つド
ラムのドラム軸に直交3方向のロードセルを配置したも
の等がある。
2. Description of the Related Art In a conventional drum tester for running tests of tires, as a means for actually approximating the road surface condition, a surface with a safety walk, a surface with a wooden surface, or an artificial surface. Fix the protrusions,
There is a substitute for uneven road surface. As a means to measure the force applied to the tire from the road surface, a mechanism in which a part of the drum surface is supported by a force detector is used, and like the uniformity tester of the tire, it is caused by unevenness inside the tire. In order to measure the force, there is one in which load cells in three orthogonal directions are arranged on the drum shaft of a drum having a smooth surface.

【0003】[0003]

【発明が解決しようとする課題】ところで、タイヤの走
行試験としては、実際の様々な路面上を走行した時に路
面からタイヤに加わる力を実際の速度で走行させて測定
することが望ましい。また、タイヤに加わる力は常に変
化しているため、広範囲な周波数にわたって正確に測定
できることが望ましい。
By the way, as a tire running test, it is desirable to measure the force applied to the tire from the road surface at an actual speed when running on various actual road surfaces. Further, since the force applied to the tire is constantly changing, it is desirable that the force can be accurately measured over a wide range of frequencies.

【0004】ところで、走行中のタイヤが路面から受け
る力は、非常に低速でタイヤが殆ど静的な変形のみを受
ける場合には、この力はタイヤ軸に伝達される力に等し
く、従って、その測定のための検出器はタイヤ軸に設け
たものでも代用できる。しかし、速度が20km/h以上の
ような通常の走行条件では、タイヤが動的な振動を起こ
し、路面とタイヤ踏面の間に働く力と、タイヤ軸に伝達
される力とは一般に異なってくることが知られている。
本発明が対象とするものは、路面とタイヤの間の力であ
り、従って、その測定には路面(ドラム)側に検出器を
設ける必要がある。
By the way, the force received by the running tire from the road surface is equal to the force transmitted to the tire shaft when the tire is subjected to only static deformation at a very low speed, and therefore A detector provided on the tire shaft can be used as a detector for the measurement. However, under normal driving conditions such as a speed of 20 km / h or more, the tire dynamically vibrates, and the force acting between the road surface and the tire tread surface is generally different from the force transmitted to the tire shaft. It is known.
What the present invention is concerned with is the force between the road surface and the tire, and therefore its measurement requires the provision of a detector on the road surface (drum) side.

【0005】ところが、ドラムの表面の一部を力検出器
で支持するドラム試験装置では、速度や周波数域をカバ
ーすることはできるが、タイヤがドラム表面の力検出器
を通過する短時間だけのデータしか取れないため、路面
形態としては単一突起のようなパルス的入力のものに限
られ、定常ランダム的な路面入力の測定には適さない。
この場合、ドラム表面の力検出部をドラム表面全体に拡
大すれば目的を達成できるが、実際には、ドラム表面を
細かくセグメントに分割し、各セグメント毎に力検出セ
ンサを取り付けなければならず、不経済で実用的でな
い。
However, a drum tester in which a part of the drum surface is supported by a force detector can cover the speed and frequency range, but only for a short time when the tire passes through the force detector on the drum surface. Since only data can be obtained, the road surface morphology is limited to pulse-like input such as a single projection, and is not suitable for steady random road surface input measurement.
In this case, the purpose can be achieved by enlarging the force detection unit on the drum surface over the entire drum surface, but in reality, the drum surface must be divided into fine segments, and a force detection sensor must be attached to each segment. It is uneconomical and impractical.

【0006】一方、ユニフォミティ試験装置では、ドラ
ム軸で力を検出する機構を持つものがあるが、ドラム表
面がスムーズであることを前提に作られていること、速
度が低速度に限られていること、ドラム軸力の検出器に
歪みゲージ式ロードセルを使用しており、測定可能周波
数範囲が低周波に限られること等により、首記目的を達
成することはできない。
On the other hand, although some uniformity testing devices have a mechanism for detecting a force on the drum shaft, they are made on the assumption that the drum surface is smooth, and the speed is limited to a low speed. The strain gauge type load cell is used as a drum axial force detector, and the measurable frequency range is limited to a low frequency.

【0007】また、いずれの試験装置もドラムの表面形
状が実際の路面の表面形状とは異なっているため、試験
装置で走行させた際のタイヤに加わる力と実路面で走行
させた際のタイヤに加わる力との間には誤差が生じる。
Further, since the surface shape of the drum is different from the actual surface shape of the road surface in any of the test devices, the force applied to the tire when the test device is run and the tire when the actual road surface is run. There is an error between the force applied to and.

【0008】本発明は上記事実を考慮し、路面からタイ
ヤに加わる力を実際の速度や周波数の範囲をカバーしつ
つ正確に測定することのできるドラム試験装置を提供す
ることが目的である。
In consideration of the above facts, an object of the present invention is to provide a drum test apparatus capable of accurately measuring a force applied to a tire from a road surface while covering an actual speed or frequency range.

【0009】[0009]

【課題を解決するための手段】請求項1記載の発明は、
外周に被試験体を接触させるドラムと、前記ドラムを回
転させる軸の支持部に直交3方向に働く力の検出器と、
を備えたドラム試験装置において、前記ドラム外周面を
ほぼ全周に亘って類実路表面とし、前記ドラムの周速度
の最高値を20km/h以上としたことを特徴としている。
The invention according to claim 1 is
A drum for contacting an object to be tested with an outer periphery, and a detector for detecting a force acting in three directions orthogonal to a support portion of a shaft for rotating the drum,
In the drum testing apparatus including the above, the outer peripheral surface of the drum is formed as a real road surface over substantially the entire circumference, and the maximum value of the peripheral speed of the drum is set to 20 km / h or more.

【0010】また、請求項2記載の発明は、請求項1記
載のドラム試験装置において、前記検出器が圧電型検出
器であることを特徴としている。
The invention according to claim 2 is characterized in that, in the drum testing apparatus according to claim 1, the detector is a piezoelectric type detector.

【0011】[0011]

【作用】請求項1記載の発明のドラム試験装置によれ
ば、ドラムの外周に被試験体であるタイヤを接触させて
ドラムを回転させることにより、軸の支持部に設けられ
た検出器によってドラムに作用する直交3方向の力、即
ち、タイヤに作用する直交3方向の力のそれぞれを検出
することができる。特に、本発明のドラムは、外周がほ
ぼ全周に亘って類実路表面とされており、周速度の最高
値が20km/h以上とされているので、実走行に即した直
交3方向に働く定常ランダム的な路面入力を長時間に亘
って測定することができる。
According to the drum test apparatus of the present invention, the tire, which is the object to be tested, is brought into contact with the outer periphery of the drum to rotate the drum, and the drum is detected by the detector provided on the support portion of the shaft. The forces in the three orthogonal directions acting on the tire, that is, the forces in the three orthogonal directions acting on the tire can be detected. In particular, the drum of the present invention has an outer circumference that is a real road surface over almost the entire circumference, and has a maximum peripheral speed of 20 km / h or more. It is possible to measure a stationary random road surface input over a long period of time.

【0012】また、請求項2記載の発明のドラム試験装
置によれば、検出器が圧電型検出器であるため、広範囲
な周波数範囲にわたる力を正確に測定することができ
る。
According to the drum test apparatus of the second aspect of the invention, since the detector is a piezoelectric type detector, it is possible to accurately measure the force over a wide frequency range.

【0013】[0013]

【実施例】本発明の一実施例を図1乃至図5にしたがっ
て説明する。ここで、図1は本発明の一実施例に係るド
ラム試験装置の平面図、図2は図1に示すドラム試験装
置の側面図、図3は図1に示すドラム試験装置の正面図
である。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS An embodiment of the present invention will be described with reference to FIGS. Here, FIG. 1 is a plan view of a drum testing apparatus according to an embodiment of the present invention, FIG. 2 is a side view of the drum testing apparatus shown in FIG. 1, and FIG. 3 is a front view of the drum testing apparatus shown in FIG. .

【0014】図1に示すように、本実施例のドラム試験
装置10は、基礎床面上の置かれる基底フレーム12を
備え、基底フレーム12上には、一対の支柱14が所定
間隔をおいて立設されている。
As shown in FIG. 1, the drum testing apparatus 10 of this embodiment includes a base frame 12 placed on a foundation floor surface, and a pair of columns 14 are arranged on the base frame 12 at predetermined intervals. It is erected.

【0015】図4に示すように、各支柱14の上部平面
部分には4隅に取り付けられた検出器としての圧電型力
検出センサ16を介してドラム軸受18が取り付けられ
ている。この圧電型力検出センサ16には圧電素子が内
蔵されており、直交3方向(X、Y、Z軸方向、図1乃
至図4参照)に作用する力をそれぞれ電気信号に変換す
ることができ、測定可能な周波数の上限は500Hz 以
上となっている。ここで、圧電型力検出センサ16とし
ては、一例としてキスラー社製の圧電型3分力センサを
使用することができる。これらの圧電型力検出センサ1
6はケーブルを介して測定値指示用のアンプ(図示せ
ず)に連結されている。なお、各圧電型力検出センサ1
6の取り付け方向は全て同一方向である。
As shown in FIG. 4, drum bearings 18 are attached to the upper plane portions of the columns 14 via piezoelectric force detection sensors 16 as detectors attached at the four corners. The piezoelectric type force detection sensor 16 has a built-in piezoelectric element and can convert forces acting in three orthogonal directions (X, Y, Z axis directions, see FIGS. 1 to 4) into electric signals. The upper limit of the measurable frequency is 500 Hz or higher. Here, as the piezoelectric type force detection sensor 16, for example, a piezoelectric type three component force sensor manufactured by Kistler can be used. These piezoelectric force detection sensors 1
Reference numeral 6 is connected to a measurement value indicating amplifier (not shown) via a cable. Each piezoelectric force detection sensor 1
The mounting directions of 6 are all the same.

【0016】図1に示すように、支柱14間には、ドラ
ム本体20が配設されており、このドラム本体20は、
両端に設けられた軸22を介してドラム軸受18へ軸支
されている。
As shown in FIG. 1, a drum body 20 is arranged between the columns 14, and the drum body 20 is
It is pivotally supported by the drum bearing 18 via shafts 22 provided at both ends.

【0017】図3に示すように、このドラム本体20の
外周上には、周方向に4分割した実路(粗れたアスファ
ルト舗装路面、スムーズなアスファルト舗装路面、石畳
等)の型取りをした表面を有する着脱式路面セグメント
24がボルトで固定されている。
As shown in FIG. 3, on the outer periphery of the drum body 20, a real road divided into four in the circumferential direction (a rough asphalt pavement surface, a smooth asphalt pavement surface, a stone pavement, etc.) was molded. A removable road segment 24 having a surface is bolted.

【0018】図1に示すように、一方のドラム軸受18
の側方には、ドラム本体20の軸22が突出しており、
先端側には、フレキシブルカップリング26を介して軸
28が同軸的に配設されている。この軸28は、基底フ
レーム12の側方に配設された第2の基底フレーム30
に立設された支柱32の上部に取り付けられた軸受34
に軸支されている。この軸28には、軸受34とフレキ
シブルカップリング26との間にブレーキ装置36のブ
レーキディスク38が固着されており、このブレーキデ
ィスク38は、支柱32の上部に取り付けられたブレー
キディスクキャリパの摩擦材(図示せず)が押しつけら
れて回転が制動されるようになっている。
As shown in FIG. 1, one drum bearing 18
The shaft 22 of the drum body 20 is projected to the side of the
A shaft 28 is coaxially arranged on the distal end side via a flexible coupling 26. This axis 28 is connected to a second base frame 30 arranged laterally of the base frame 12.
Bearings 34 mounted on the upper part of the columns 32 standing upright
Is supported by. A brake disc 38 of a brake device 36 is fixed to the shaft 28 between a bearing 34 and a flexible coupling 26. The brake disc 38 is a friction material of a brake disc caliper attached to an upper portion of a column 32. A rotation (not shown) is pressed to stop the rotation.

【0019】また、軸28は、軸受34のブレーキディ
スク38側とは反対側に突出した先端にプーリー40が
固着されている。このプーリー40の下方には、動力伝
達ベルト42を介してプーリー44が配設されており、
このプーリー44は電動機46で回転されるようになっ
ている。
A pulley 40 is fixed to the tip of the shaft 28, which protrudes to the side opposite to the brake disc 38 side of the bearing 34. Below the pulley 40, a pulley 44 is arranged via a power transmission belt 42,
The pulley 44 is rotated by an electric motor 46.

【0020】なお、電動機46は回転数が可変できるよ
うになっており、少なくともドラム本体20の周速度が
20km/h以上となるような回転数まで回転できる。本実
施例のドラム本体20は、周速度が50km/h以上でるよ
うになっている。
The rotation speed of the electric motor 46 is variable, and the rotation speed of the drum body 20 can be at least 20 km / h or more. The drum body 20 of this embodiment has a peripheral speed of 50 km / h or more.

【0021】図2及び図3に示すように、ドラム本体2
0の軸方向とは直交する方向の側方には、タイヤ押圧装
置48が配設れており、試験タイヤ押圧装置48のホイ
ール50に装着された被試験体としてのタイヤ52を、
タイヤ押圧装置48のシリンダ装置54によってドラム
本体20へ押圧できるようになっている。
As shown in FIGS. 2 and 3, the drum body 2
A tire pressing device 48 is arranged laterally in a direction orthogonal to the axial direction of 0, and a tire 52 as a test object mounted on a wheel 50 of the test tire pressing device 48 is
The cylinder device 54 of the tire pressing device 48 can press the drum body 20.

【0022】次に、本実施例のドラム試験装置10を使
用したタイヤの走行試験方法を説明する。
Next, a tire running test method using the drum test apparatus 10 of this embodiment will be described.

【0023】先ず、ドラム本体20の外周に所定の着脱
式路面セグメント24をボルト固定する。その後、電動
機46でドラム本体20を所定の速度で回転させ試験タ
イヤ押圧装置48のタイヤ52を、シリンダ装置54に
よってドラム本体20の着脱式路面セグメント24へ所
定の荷重で押圧して、圧電型力検出センサ16によっ
て、各方向に作用する力を測定する。
First, a predetermined removable road surface segment 24 is bolted to the outer periphery of the drum body 20. Then, the drum body 20 is rotated at a predetermined speed by the electric motor 46, and the tire 52 of the test tire pressing device 48 is pressed by the cylinder device 54 against the removable road surface segment 24 of the drum main body 20 with a predetermined load to generate a piezoelectric force. The detection sensor 16 measures the force acting in each direction.

【0024】本実施例のドラム試験装置10では、ドラ
ム本体20外周が全て実路の型取りをした表面を有する
着脱式路面セグメント24で覆われており、ドラム本体
20の周速度が50km/h以上でるようになっているた
め、実路に則した定常ランダム的な路面入力を得ること
ができ、広範囲な周波数にわたる直交3方向の路面入力
を圧電型力検出センサ16で正確に測定することができ
る。
In the drum testing apparatus 10 of the present embodiment, the outer periphery of the drum body 20 is entirely covered with the removable road surface segment 24 having a surface which is formed by molding the actual road, and the peripheral speed of the drum body 20 is 50 km / h. As described above, it is possible to obtain a steady random road surface input that conforms to the actual road, and it is possible to accurately measure road surface inputs in three orthogonal directions over a wide range of frequencies with the piezoelectric force detection sensor 16. it can.

【0025】なお、図5(A)、(B)、(C)には、
それぞれ本実施例のドラム試験装置で測定した3種類の
タイヤ(タイヤサイズ195/65R14、内圧2.0
kg/cm2、荷重350kg)の実際の直交3方向の力(測
定時の速度はドラム周速度で50km/h)を測定した一例
が示されている。
5 (A), (B), and (C),
Three types of tires (tire size 195 / 65R14, internal pressure 2.0, respectively) measured by the drum test apparatus of this example
An example is shown in which the actual forces in three orthogonal directions (kg / cm 2 , load 350 kg) (velocity at the time of measurement is 50 km / h at drum peripheral velocity) are measured.

【0026】ここで、図5(A)のグラフはタイヤの上
下(車両装着状態での上下方向であってドラム試験装置
においての上下方向ではない)力を示し、図5(B)の
グラフはタイヤの前後(車両装着状態での前後方向)力
を示し、図5(C)のグラフはタイヤの左右(車両装着
状態での軸方向)力を示す。なお、グラフの縦軸は力の
値を示し、0dBを1kgfとした対数表示としてい
る。また、グラフの横軸は周波数である。
Here, the graph of FIG. 5A shows the vertical force of the tire (the vertical direction when the vehicle is mounted, not the vertical direction in the drum testing apparatus), and the graph of FIG. The tire front-rear force (front-rear direction in the vehicle mounted state) is shown, and the graph in FIG. 5C shows the tire left-right (axial direction in the vehicle mounted state) force. The vertical axis of the graph represents the force value, which is logarithmic with 0 kg as 1 kgf. The horizontal axis of the graph is frequency.

【0027】[0027]

【発明の効果】本発明のドラム試験装置は、上記構成と
したので路面からタイヤに加わる力を実際の速度や周波
数の範囲をカバーしつつ正確に測定できるという優れた
効果を有する。
Since the drum testing apparatus of the present invention is constructed as described above, it has an excellent effect that the force applied to the tire from the road surface can be accurately measured while covering the actual speed and frequency range.

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

【図1】本発明の一実施例に係るドラム試験装置の平面
図である。
FIG. 1 is a plan view of a drum testing device according to an embodiment of the present invention.

【図2】図1に示すドラム試験装置の側面図である。2 is a side view of the drum testing device shown in FIG. 1. FIG.

【図3】図1に示すドラム試験装置の正面図である。FIG. 3 is a front view of the drum test apparatus shown in FIG.

【図4】圧電型力検出センサの配置状態を示す支柱上部
の斜視図である。
FIG. 4 is a perspective view of an upper portion of a support column showing an arrangement state of piezoelectric force detection sensors.

【図5】(A)は、本実施例のドラム試験装置で測定し
たタイヤの上下力を示すグラフであり、(B)はタイヤ
の前後力を示すグラフであり、(C)はタイヤの左右力
を示すグラフである。
5A is a graph showing the vertical force of the tire measured by the drum test apparatus of the present embodiment, FIG. 5B is a graph showing the longitudinal force of the tire, and FIG. It is a graph which shows power.

【符号の説明】[Explanation of symbols]

10 ドラム試験装置 16 圧電型力検出センサ(検出器) 20 ドラム本体 24 着脱式路面セグメント 52 タイヤ(被試験体) 10 Drum Test Device 16 Piezoelectric Force Detection Sensor (Detector) 20 Drum Main Body 24 Detachable Road Surface Segment 52 Tire (Test Object)

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】 外周に被試験体を接触させるドラムと、 前記ドラムを回転させる軸の支持部に直交3方向に働く
力の検出器と、を備えたドラム試験装置において、 前記ドラム外周面をほぼ全周に亘って類実路表面とし、
前記ドラムの周速度の最高値を20km/h以上としたこと
を特徴とするドラム試験装置。
1. A drum testing apparatus comprising: a drum for contacting an object to be tested with an outer periphery; and a detector for detecting a force acting in three directions orthogonal to a supporting portion of a shaft for rotating the drum, wherein Almost the entire circumference is made a real road surface,
A drum test apparatus, wherein the maximum peripheral speed of the drum is set to 20 km / h or more.
【請求項2】 前記検出器が圧電型検出器であることを
特徴とする請求項1記載のドラム試験装置。
2. The drum test apparatus according to claim 1, wherein the detector is a piezoelectric type detector.
JP4281853A 1992-10-20 1992-10-20 Drum testing device Pending JPH06129954A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP4281853A JPH06129954A (en) 1992-10-20 1992-10-20 Drum testing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP4281853A JPH06129954A (en) 1992-10-20 1992-10-20 Drum testing device

Publications (1)

Publication Number Publication Date
JPH06129954A true JPH06129954A (en) 1994-05-13

Family

ID=17644911

Family Applications (1)

Application Number Title Priority Date Filing Date
JP4281853A Pending JPH06129954A (en) 1992-10-20 1992-10-20 Drum testing device

Country Status (1)

Country Link
JP (1) JPH06129954A (en)

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