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JPH04331844A - Timing belt and belt transmission device - Google Patents

Timing belt and belt transmission device

Info

Publication number
JPH04331844A
JPH04331844A JP10008891A JP10008891A JPH04331844A JP H04331844 A JPH04331844 A JP H04331844A JP 10008891 A JP10008891 A JP 10008891A JP 10008891 A JP10008891 A JP 10008891A JP H04331844 A JPH04331844 A JP H04331844A
Authority
JP
Japan
Prior art keywords
pitch
belt
pulley
difference
timing
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.)
Granted
Application number
JP10008891A
Other languages
Japanese (ja)
Other versions
JPH0676817B2 (en
Inventor
Hideaki Kawahara
英昭 川原
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.)
Bando Chemical Industries Ltd
Original Assignee
Bando Chemical Industries Ltd
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 Bando Chemical Industries Ltd filed Critical Bando Chemical Industries Ltd
Priority to JP10008891A priority Critical patent/JPH0676817B2/en
Publication of JPH04331844A publication Critical patent/JPH04331844A/en
Publication of JPH0676817B2 publication Critical patent/JPH0676817B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

PURPOSE:To prolong the tooth cut life of a belt by setting the pitch difference of a timing belt for the designed pitch difference of a timing pulley and the belt pitch for the set pitch of the pulley to each specific rate. CONSTITUTION:As for the pulley P of a transmission device A, a plurality of tooth parts 2 are formed in a certain set pitch PP on the outer periphery of a pulley body 1, and the height from each top edge to a pitch line LP is set equal to a designed pitch line difference PLDP. While, as for a belt B, a number of tooth parts 12 are formed in a certain pitch PB on the bottom part of a belt body 11. In this case, the pitch line difference PLDB as the height from the pitch line PB of the center of the center body 13 of the belt body 11 to the surface of a woven fabric between each tooth part 12 is set larger by 10-20% than the set difference PLDP. Further, the pitch PB is set larger by 0.02-0.15% than the designed pitch PP.

Description

【発明の詳細な説明】[Detailed description of the invention]

【0001】0001

【産業上の利用分野】この発明は、タイミングベルト及
びそれをタイミングプーリと組み合わせてなるタイミン
グベルト伝動装置に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a timing belt and a timing belt transmission device combining the same with a timing pulley.

【0002】0002

【従来の技術】タイミングベルトにおいては、どの歯数
のタイミングプーリにも正確に噛み合うように、ベルト
のピッチ(歯部間のピッチ。以下同じ)をプーリの設計
ピッチに、またベルトのピッチラインディファレンスを
プーリの設計ピッチラインディファレンスにそれぞれ正
確に一致させることが行われている。
[Prior Art] In a timing belt, in order to accurately mesh with a timing pulley of any number of teeth, the pitch of the belt (pitch between teeth; hereinafter the same) is adjusted to the designed pitch of the pulley, and the pitch line of the belt is adjusted. The difference is precisely matched to the design pitch line difference of the pulley.

【0003】一方、今日までの研究や実験により、ベル
トの歯欠け寿命に関して、ベルトのプーリとのピッチ差
が若干マイナスのときに最も寿命が長くなることが知ら
れている。ベルトに負荷トルクが掛けられるとき、ベル
ト歯が最も大きい歯荷重を受け持つベルト張り側付近で
、ベルトが伸ばされてベルトピッチが大きくなる。これ
により、ベルトピッチとプーリピッチとがずれて荷重を
各歯に均等に分担させることができなくなり、1つの歯
に過大な歯荷重が掛かる。
On the other hand, research and experiments conducted to date have revealed that the life of the belt without tooth loss is longest when the pitch difference between the belt and the pulley is slightly negative. When a load torque is applied to the belt, the belt is stretched and the belt pitch increases near the belt tension side where the belt teeth bear the largest tooth load. As a result, the belt pitch and the pulley pitch deviate, making it impossible to distribute the load equally to each tooth, and an excessive tooth load is applied to one tooth.

【0004】そこで、予め、ベルトが伸ばされることを
考慮して、その分、ベルトピッチを小さめにしておけば
、ベルトに負荷トルクが掛けられたとき、ベルト張り側
付近でベルトピッチがプーリピッチと略一致して、荷重
を略均等に分担することができ、これによりベルトの歯
欠け寿命を長くすることができる。
[0004] Therefore, if the belt pitch is made smaller in advance by taking into consideration that the belt will be stretched, when a load torque is applied to the belt, the belt pitch near the belt tension side will be reduced to a pulley pitch. At the same time, the load can be shared approximately equally, thereby increasing the tooth chipping life of the belt.

【0005】しかしながら、小歯数のプーリにおいて、
ピッチ差をマイナスにするためにベルトピッチを短くす
ると、ベルトと噛合歯数の多い他の歯数のプーリとの組
合せについては、ピッチ差が噛合歯数間で累積されてベ
ルト歯部とプーリ歯部とが噛み合わなくなる。
However, in a pulley with a small number of teeth,
If the belt pitch is shortened to make the pitch difference negative, for combinations of the belt and pulleys with other numbers of teeth that have a large number of meshing teeth, the pitch difference will accumulate between the number of meshing teeth and the belt teeth and pulley teeth will be reduced. The parts do not mesh together.

【0006】すなわち、具体例として、例えば規格ピッ
チが14mmで、かつベルト幅が15mm,12mmの
2種類のタイミングベルトについて、そのプーリ(プー
リ歯数28T −28T O )に対する歯部のピッチ
差を変化させ、そのときのベルトの歯欠け耐久寿命の変
化を図5に示す。尚、破損モードは全て歯部の剪断によ
る。耐久寿命に影響を与える他の要因を取り除くために
、ピッチ差の変量はプーリの外径を変化させることで行
う。図示のとおり、ベルトの耐久寿命は、プーリとのピ
ッチ差が−0.05mm付近で最大となり、ピッチ差が
0の場合と比べ約3倍に増大する。さらに、ピッチ差が
0付近では、寿命特性を示す線の傾きが大きいので、ピ
ッチ差が例えば0.01mm変化しただけで耐久寿命が
約30%も変化するが、ピッチ差が−0.05mm付近
では約5%程度の変化しかない。このように小歯数のプ
ーリに対しベルトのピッチ差をマイナスとすることで、
ベルトの耐久寿命を向上させ、かつそのばらつきを少な
くすることができる。
That is, as a specific example, for two types of timing belts with a standard pitch of 14 mm and belt widths of 15 mm and 12 mm, the pitch difference of the tooth portion with respect to the pulley (number of pulley teeth 28T - 28T O ) is changed. Figure 5 shows the changes in the tooth chipping durability life of the belt at that time. Note that the failure mode is all due to shearing of the teeth. In order to eliminate other factors that affect the durability life, the variation of the pitch difference is done by changing the outer diameter of the pulley. As shown in the figure, the durable life of the belt reaches its maximum when the pitch difference between the belt and the pulley is around -0.05 mm, which is approximately three times longer than when the pitch difference is 0. Furthermore, when the pitch difference is around 0, the slope of the line indicating the life characteristics is large, so if the pitch difference changes by, for example, 0.01 mm, the durability life changes by about 30%, but when the pitch difference is around -0.05 mm, There is only a change of about 5%. In this way, by making the belt pitch difference negative for pulleys with a small number of teeth,
It is possible to improve the durability life of the belt and reduce its variation.

【0007】[0007]

【発明が解決しようとする課題】ところが、ピッチ差を
−0.05mmとするために、ベルトのピッチを13.
95mmにした場合、例えば120T プーリに80T
 の歯部を有するベルトが噛み合うとすると、ピッチ差
が累積して80T で4.0mm(=0.05mm×8
0)のずれが生じ、ベルトの歯部がプーリと噛み合わな
くなる。従って、通常は、歯欠け寿命の低下を犠牲にし
て、ベルト及びプーリのピッチ及びピッチラインディフ
ァレンスを一致させることが行われている。
However, in order to set the pitch difference to -0.05 mm, the pitch of the belt must be set to 13.
If you set it to 95mm, for example, 80T to a 120T pulley.
If a belt with teeth of
0), and the teeth of the belt no longer mesh with the pulley. Therefore, it is common practice to match the pitch and pitch line difference of the belt and pulley at the expense of reducing tooth chipping life.

【0008】さらに、タイミングベルトにおいては、心
体の下部から歯部表面に沿って織物で補強されている。 織布による補強は歯欠け寿命の向上に不可欠のものであ
る。このとき、ベルトピッチラインは、心体の略中央に
位置するので、ピッチラインディファレンスは心体の径
と織布の圧縮時の厚みとで決まる。しかし、圧縮時の織
布の厚みは、織布自身の厚みや芯巻テンションによる圧
縮率のばらつき等によって大きなばらつきがある。従っ
て、織布で補強したベルトにおいては、ピッチラインデ
ィファレンスにかなりのばらつきが生じており、このピ
ッチラインディファレンスのばらつきによりプーリに対
しピッチ差のばらつきを招いている。
Furthermore, in the timing belt, the core is reinforced with fabric along the tooth surface from the bottom. Reinforcement with woven fabric is essential for improving tooth chipping life. At this time, since the belt pitch line is located approximately at the center of the core, the pitch line difference is determined by the diameter of the core and the thickness of the woven fabric when compressed. However, the thickness of the woven fabric when compressed varies widely due to the thickness of the woven fabric itself and variations in compression rate due to core winding tension. Therefore, in belts reinforced with woven fabric, there is considerable variation in pitch line difference, and this variation in pitch line difference causes variation in pitch difference between pulleys.

【0009】上記のように、ピッチ差が変化することで
、ベルトの歯欠け寿命が大きく変化するので、従来の織
布で補強されたタイミングベルトでは、寿命のばらつき
が大きくなるのは避けられず、伝動装置の信頼性の点で
不十分であった。
[0009] As mentioned above, a change in the pitch difference greatly changes the tooth loss life of the belt, so it is inevitable that a timing belt reinforced with conventional woven fabric will have a wide variation in life. However, the reliability of the transmission was insufficient.

【0010】この発明の目的は、以上の諸問題を一挙に
解決し、織布で補強されたタイミングベルトであっても
その歯欠け寿命を長くして、ベルト伝動装置の信頼性を
向上させることにある。
The purpose of the present invention is to solve the above-mentioned problems all at once, to extend the life of a timing belt reinforced with woven fabric, and to improve the reliability of a belt transmission device. It is in.

【0011】[0011]

【課題を解決するための手段】上記の目的を達成すべく
、この発明では、タイミングベルトのピッチラインディ
ファレンス及びピッチをそれぞれプーリに対して予め積
極的に所定量だけ異ならせるようにした。
[Means for Solving the Problems] In order to achieve the above object, in the present invention, the pitch line difference and the pitch of the timing belt are made to differ from each other by a predetermined amount in advance with respect to the pulley.

【0012】具体的には、請求項1の発明では、タイミ
ングプーリの外周歯部に噛み合う歯部を内周に有し、タ
イミングプーリに巻き掛けられるタイミングベルトとし
て、ピッチラインディファレンスをプーリの設計ピッチ
ラインディファレンスに対し10〜20%高くし、かつ
ピッチをプーリの設計ピッチに対し0.02〜0.15
%大きくしたことを特徴とする。
Specifically, in the invention of claim 1, the timing belt has teeth on the inner circumference that mesh with the outer circumferential teeth of the timing pulley and is wound around the timing pulley, and the pitch line difference is adapted to the design of the pulley. 10 to 20% higher than the pitch line difference, and the pitch is 0.02 to 0.15 higher than the pulley design pitch.
It is characterized by increasing the percentage.

【0013】請求項2の発明では、外周に歯部を有する
タイミングプーリと、該タイミングプーリの歯部に噛み
合う歯部を内周に有し、タイミングプーリに巻き掛けら
れるタイミングベルトとからなるタイミングベルト伝動
装置として、タイミングベルトのピッチラインディファ
レンスをプーリの設計ピッチラインディファレンスに対
し10〜20%高くし、かつ、タイミングベルトのピッ
チをプーリの設計ピッチに対し0.02〜0.15%大
きくしたことを特徴とする。
[0013] According to the second aspect of the invention, there is provided a timing belt comprising a timing pulley having teeth on the outer periphery and a timing belt having teeth on the inner periphery that mesh with the teeth of the timing pulley and being wound around the timing pulley. As a transmission device, the pitch line difference of the timing belt is made 10 to 20% higher than the designed pitch line difference of the pulley, and the pitch of the timing belt is made larger than the designed pitch of the pulley by 0.02 to 0.15%. It is characterized by what it did.

【0014】[0014]

【作用】上記の構成により、請求項1又は2の発明では
、ベルトのピッチラインディファレンスがプーリの設計
ピッチラインディファレンスに対し10〜20%高く、
かつプーリの設計ピッチに対しベルトのピッチが0.0
2〜0.15%大きいので、小歯数のプーリに噛み合っ
たときには、ベルトピッチはプーリピッチに対し0.2
〜0.5%短く、大歯数のプーリに噛み合ったときには
ベルトピッチとプーリピッチとは略一致する。具体例を
挙げると、設計ピッチが14.00mm、ピッチライン
ディファレンスが1.4mmのプーリに対し、ベルトピ
ッチが14.003mm(0.02%アップ)、ベルト
ピッチラインディファレンスが1.54mm(10%ア
ップ)のタイミングベルトを巻き掛けるとする。この場
合、28T プーリに巻き掛けたときには、ピッチ差は
−0.028mmとなり(0.2%短くなる)、120
T プーリに巻き掛けたときにはピッチ差は−0.00
4mmとなる(0.003%短くなる)。
[Operation] With the above configuration, in the invention according to claim 1 or 2, the pitch line difference of the belt is 10 to 20% higher than the designed pitch line difference of the pulley.
And the belt pitch is 0.0 with respect to the pulley design pitch.
Since it is 2 to 0.15% larger, when meshing with a pulley with a small number of teeth, the belt pitch is 0.2% larger than the pulley pitch.
When the belt is short by ~0.5% and meshes with a pulley having a large number of teeth, the belt pitch and pulley pitch substantially match. To give a specific example, for a pulley with a design pitch of 14.00 mm and a pitch line difference of 1.4 mm, the belt pitch is 14.003 mm (0.02% increase) and the belt pitch line difference is 1.54 mm ( 10% increase). In this case, when wrapped around a 28T pulley, the pitch difference is -0.028 mm (0.2% shorter), and 120
T When wrapped around the pulley, the pitch difference is -0.00
4mm (0.003% shorter).

【0015】また、設計ピッチが8.00mm、ピッチ
ラインディファレンスが0.686mmのプーリに対し
、ベルトピッチが8.012mm(0.15%アップ)
、ベルトピッチラインディファレンスが0.823mm
(20%アップ)のタイミングベルトを巻き掛けるとす
ると、18T プーリに巻き掛けたときには、ピッチ差
は−0.036mmとなり(0.45%短くなる)、1
56T プーリに巻き掛けたときにはピッチ差は−0.
006mmとなる(0.08%短くなる)。
[0015] Also, for a pulley with a design pitch of 8.00 mm and a pitch line difference of 0.686 mm, the belt pitch is 8.012 mm (0.15% increase).
, belt pitch line difference is 0.823mm
If a timing belt (20% increase) is wound around an 18T pulley, the pitch difference will be -0.036mm (0.45% shorter), and 1
When wrapped around the 56T pulley, the pitch difference is -0.
006 mm (0.08% shorter).

【0016】このように、小プーリに対してはピッチ差
はマイナスとなり、大プーリにも十分に噛み合う。
[0016] In this way, the pitch difference is negative with respect to the small pulley, and there is sufficient meshing with the large pulley.

【0017】タイミングベルト伝動では、その殆どの場
合、駆動及び従動プーリの少なくとも一方が小プーリと
なっている。そして、この小プーリ側では噛合歯数が少
ないために、ベルトは必ず小プーリ側で疲労して寿命に
至る。しかしながら、本発明では、小プーリにおけるピ
ッチ差をマイナスとして、ベルトの疲労を小さくしたの
で、ベルト寿命を長くすることができる。
In most cases of timing belt transmission, at least one of the driving and driven pulleys is a small pulley. Since the number of meshing teeth on this small pulley side is small, the belt always fatigues on the small pulley side and reaches the end of its life. However, in the present invention, the pitch difference in the small pulleys is made negative to reduce fatigue of the belt, so that the belt life can be extended.

【0018】また、プーリに対するベルトのピッチライ
ンディファレンス及びピッチ差の大きなばらつきがあっ
ても、上記のようにピッチ差が適量だけマイナスになっ
ていれば、ベルト寿命のばらつきが小さくなるので、ベ
ルトの信頼性は増す。
Furthermore, even if there is a large variation in the pitch line difference and pitch difference of the belt with respect to the pulley, if the pitch difference is negative by an appropriate amount as described above, the variation in belt life will be reduced. reliability increases.

【0019】さらに、心体の径が同じで、ベルトピッチ
ラインディファレンスを大きくするので、ベルトにおけ
る心体下部の補強部分の面積は増大する。このことによ
り、ベルト歯部の歯元にクラックが生じてもそれが進展
するのは抑制され、よってベルトの歯欠け寿命を長くす
ることができる。
Furthermore, since the belt pitch line difference is increased while the diameter of the core is the same, the area of the reinforced portion of the belt below the core increases. As a result, even if a crack occurs at the tooth base of the belt tooth portion, the crack is prevented from progressing, and the life of the belt with missing teeth can be extended.

【0020】このとき、ベルトのピッチラインディファ
レンスをプーリの設計ピッチラインディファレンスに対
し最低でも10%大きくしなければ、小プーリであって
もピッチ差がさほどマイナスにならないので、耐久性向
上の効果は小さい。逆に、ベルトのピッチラインディフ
ァレンスがプーリの設計ピッチラインディファレンスに
対し20%を越えて大きくなると、小プーリでのピッチ
差がマイナスになり過ぎ、長期間のベルト走行時に磨耗
の問題が生じる。このことから、ベルトのピッチライン
ディファレンスはプーリの設計ピッチラインディファレ
ンスに対し10〜20%増大させる。
[0020] At this time, unless the pitch line difference of the belt is made at least 10% larger than the designed pitch line difference of the pulley, the pitch difference will not be so negative even with a small pulley, so it is difficult to improve durability. The effect is small. Conversely, if the pitch line difference of the belt becomes larger than 20% of the designed pitch line difference of the pulleys, the pitch difference between the small pulleys becomes too negative, causing problems with wear during long-term belt running. . From this, the pitch line difference of the belt is increased by 10 to 20% relative to the designed pitch line difference of the pulley.

【0021】また、大プーリでのピッチ差を0近くにす
るために、ベルトのピッチはプーリの設計ピッチよりも
0.02〜0.15%程度大きくしている。
Furthermore, in order to make the pitch difference between the large pulleys close to 0, the pitch of the belt is set approximately 0.02 to 0.15% larger than the designed pitch of the pulleys.

【0022】[0022]

【実施例】以下、本発明の実施例を図面に基づいて説明
する。
Embodiments Hereinafter, embodiments of the present invention will be explained based on the drawings.

【0023】(実施例1)図1は本発明の実施例1に係
るタイミングベルト伝動装置Aを示し、この伝動装置A
はタイミングプーリPとその外周に巻き掛けられるタイ
ミングベルトBとで構成される。上記タイミングプーリ
Pは、そのプーリ本体1の外周に複数の歯部2,2,…
を有し、これら歯部2,2,…は一定のピッチPP で
形成され、その各々の先端からピッチラインLP まで
の高さがピッチラインディファレンスPLDP とされ
ている。
(Embodiment 1) FIG. 1 shows a timing belt transmission device A according to Embodiment 1 of the present invention.
is composed of a timing pulley P and a timing belt B wrapped around the outer circumference of the timing pulley P. The timing pulley P has a plurality of teeth 2, 2, . . . on the outer periphery of the pulley main body 1.
The teeth 2, 2, . . . are formed at a constant pitch PP, and the height from the tip of each tooth to the pitch line LP is a pitch line difference PLDP.

【0024】一方、タイミングベルトBは、図2に拡大
詳示するように、ベルト本体11を備え、その底部には
多数の歯部12,12,…が長さ方向に一定ピッチPB
 で並んで形成されており、この歯部12,12,…を
上記タイミングプーリP外周の歯部2,2,…に噛合さ
せることで、プーリPとの間で回転動力を同期して伝達
するようにしている。上記ベルト本体11は、クロロプ
レンゴム(ネオプレン)、スチレンブタジエンゴム、エ
ピクロロヒドリンゴム、ポリウレタンゴム、水素添加ア
クリロニトリルブタジエンゴム等からなるもので、ベル
トBの使用目的に適した公知のゴム配合物により形成さ
れる。
On the other hand, as shown in enlarged detail in FIG. 2, the timing belt B includes a belt main body 11, and a large number of teeth 12, 12, .
By meshing the teeth 12, 12, ... with the teeth 2, 2, ... on the outer periphery of the timing pulley P, rotational power is transmitted synchronously with the pulley P. That's what I do. The belt body 11 is made of chloroprene rubber (neoprene), styrene-butadiene rubber, epichlorohydrin rubber, polyurethane rubber, hydrogenated acrylonitrile-butadiene rubber, etc., and is formed from a known rubber compound suitable for the intended use of the belt B. be done.

【0025】上記ベルト本体11の内部にはエンドレス
の複数本の心体13,13,…(補強体)がベルト幅方
向に一定間隔をあけて並列にかつ各々ベルト長さ方向に
対し傾斜して螺旋状に埋設されている。この各心体13
は、歯部12,12間の底面でベルト本体11の下面か
ら露出するように配置されるもので、例えばアラミド繊
維(芳香族ポリアミド繊維)やポリアリレート繊維等、
高強度でかつ高弾性率の繊維からなる。
Inside the belt main body 11, a plurality of endless core members 13, 13, ... (reinforcing members) are arranged in parallel at regular intervals in the belt width direction, and each inclined with respect to the belt length direction. It is buried in a spiral pattern. Each of these bodies 13
is arranged so as to be exposed from the bottom surface of the belt body 11 at the bottom surface between the teeth 12, 12, and is made of, for example, aramid fiber (aromatic polyamide fiber), polyarylate fiber, etc.
Consists of high strength and high modulus fibers.

【0026】また、上記ベルト本体11の各歯部12の
表面(歯面)から心体13の下面にかけて補強織布14
が被覆されている。この補強織布14は6ナイロン、6
6ナイロン、46ナイロン、芳香族ポリエステル、テト
ロン、綿、レーヨン、テフロン系等からなる糸又は混紡
糸を単独又は組み合わせて使用し、ベルト用補強織布と
して要求される耐摩耗性、摩擦係数を満たすように織成
される。
Further, a reinforcing fabric 14 is provided from the surface (tooth surface) of each tooth portion 12 of the belt body 11 to the lower surface of the core body 13.
is covered. This reinforcing fabric 14 is made of 6 nylon, 6
Using yarns or blended yarns made of nylon 6, nylon 46, aromatic polyester, tetron, cotton, rayon, Teflon, etc., either singly or in combination, satisfies the abrasion resistance and friction coefficient required for reinforcing woven fabrics for belts. It is woven like this.

【0027】そして、ベルトBにおいては、上記心体1
3中心のピッチラインLB から歯部12,12間の溝
底面における織布14表面までの高さであるピッチライ
ンディファレンスPLDB が上記プーリPの設計ピッ
チラインディファレンスPLDPよりも10〜20%大
きく設定され(PLDB =1.1〜1.2PLDP 
)、かつ歯部12,12,…のピッチPBはプーリPの
歯部2,2,…の設計ピッチPP よりも0.02〜0
.15%の範囲で大きくされている(PB =1.00
02〜1.0015PP )。
[0027] In the belt B, the above-mentioned core body 1
The pitch line difference PLDB, which is the height from the pitch line LB at the center of 3 to the surface of the woven fabric 14 at the bottom of the groove between the teeth 12, 12, is 10 to 20% larger than the designed pitch line difference PLDP of the pulley P. is set (PLDB = 1.1~1.2PLDP
), and the pitch PB of the teeth 12, 12, ... is 0.02 to 0 less than the design pitch PP of the teeth 2, 2, ... of the pulley P.
.. It is increased in the range of 15% (PB = 1.00
02~1.0015PP).

【0028】上記ベルトBのピッチラインディファレン
スPLDB のプーリPの設計ピッチラインディファレ
ンスPLDP に対する増大変量は、10%未満のとき
には、小プーリPであってもピッチ差がさほどマイナス
にならず、耐久性向上の効果が小さい一方、20%を越
えると、小プーリでのピッチ差がマイナスになり過ぎて
、長期間のベルトBの走行時に磨耗の問題が生じるので
、10〜20%増大させることが必要である。
When the increase in the pitch line difference PLDB of the belt B with respect to the designed pitch line difference PLDP of the pulley P is less than 10%, even if the pulley P is small, the pitch difference will not be so negative, and durability will be improved. On the other hand, if it exceeds 20%, the pitch difference in the small pulleys will become too negative, causing problems with wear when belt B runs for a long period of time, so it is recommended to increase it by 10 to 20%. is necessary.

【0029】また、大プーリでのピッチ差を0近くにす
るために、ベルトBのピッチPB はプーリPの設計ピ
ッチPP よりも0.02〜0.15%程度大きくする
必要がある。
Furthermore, in order to make the pitch difference at the large pulley close to 0, the pitch PB of the belt B needs to be about 0.02 to 0.15% larger than the designed pitch PP of the pulley P.

【0030】したがって、この実施例では、ベルトBの
ピッチラインディファレンスPLDB がプーリPの設
計ピッチラインディファレンスPLDP に対し10〜
20%高く、かつプーリPの設計ピッチPP に対しベ
ルトBのピッチPB が0.02〜0.15%大きいの
で、小歯数のプーリPに噛み合ったときには、ベルトピ
ッチPB はプーリピッチPP に対し0.2〜0.5
%短く、大歯数のプーリPに噛み合ったときにはベルト
ピッチPB とプーリピッチPP とは略一致し、小プ
ーリPに対してはピッチ差はマイナスとなり、大プーリ
Pにも十分に噛み合う。このため、小プーリPでのピッ
チ差をマイナスとして、ベルトBの疲労を小さくでき、
タイミングベルト伝動におけるベルト寿命を長くするこ
とができる。
Therefore, in this embodiment, the pitch line difference PLDB of the belt B is 10 to 10 with respect to the designed pitch line difference PLDP of the pulley P.
20% higher, and the pitch PB of the belt B is 0.02 to 0.15% larger than the design pitch PP of the pulley P, so when it meshes with the pulley P with a small number of teeth, the belt pitch PB is 0.0 compared to the pulley pitch PP. .2-0.5
When it meshes with a pulley P that is % short and has a large number of teeth, the belt pitch PB and the pulley pitch PP substantially match, and the pitch difference is negative for the small pulley P, and it also meshes well with the large pulley P. Therefore, the fatigue of the belt B can be reduced by making the pitch difference at the small pulley P negative.
The belt life in timing belt transmission can be extended.

【0031】また、プーリPに対するベルトBのピッチ
ラインディファレンスPLDB 及びピッチ差の大きな
ばらつきがあっても、上記のようにピッチ差が適量だけ
マイナスになっていれば、ベルト寿命のばらつきが小さ
くなるので、ベルトBの信頼性を向上させることができ
る。
Furthermore, even if there is a large variation in the pitch line difference PLDB and the pitch difference of the belt B with respect to the pulley P, if the pitch difference is negative by an appropriate amount as described above, the variation in belt life will be reduced. Therefore, the reliability of belt B can be improved.

【0032】さらに、心体13の径が同じで、ベルトピ
ッチラインディファレンスPLDBを大きくするので、
ベルトBにおける心体13,13,…下部の補強部分の
面積は増大する。その結果、ベルトBの各歯部12の歯
元にクラックが生じてもそれは進展せず、よってベルト
Bの歯欠け寿命を長くして、伝動装置Aの信頼性を高め
ることができる。
Furthermore, since the diameter of the core body 13 is the same and the belt pitch line difference PLDB is increased,
The area of the lower reinforcing portions of the core bodies 13, 13, . . . in the belt B increases. As a result, even if cracks occur at the root of each tooth portion 12 of the belt B, the cracks do not develop, thereby extending the life of the belt B with missing teeth and increasing the reliability of the transmission device A.

【0033】具体的には、例えば、設計ピッチPP が
14mm、設計ピッチラインディファレンスPLDP 
が1.4mmのプーリに対し、ベルトのピッチPB を
0.07%上げて14.01mmにし、ベルトのピッチ
ラインディファレンスPLDB を18%上げて1.6
5mmとした場合、28T プーリに噛み合ったときの
ピッチ差は−0.046mmに、120T プーリに噛
み合ったときのピッチ差は−0.003mmにそれぞれ
なる。このとき、120T プーリへの80T のベル
トの噛合いでもずれは0.24mmであり、バックラッ
シュにより十分に噛み合う。
Specifically, for example, if the design pitch PP is 14 mm and the design pitch line difference PLDP
For a pulley whose diameter is 1.4 mm, the belt pitch PB is increased by 0.07% to 14.01 mm, and the belt pitch line difference PLDB is increased by 18% to 1.6.
In the case of 5 mm, the pitch difference when meshing with a 28T pulley is -0.046 mm, and the pitch difference when meshing with a 120T pulley is -0.003 mm. At this time, even when the 80T belt meshes with the 120T pulley, the deviation is 0.24 mm, and the backlash ensures sufficient meshing.

【0034】(実施例2)図3は本発明の実施例2に係
るタイミングベルトB′を示し、ベルト本体11内に心
体13に加え、ポリアミド繊維等の不織布からなる補強
材14′を歯部12では高さ方向の中間部に位置し、歯
部12,12間では露出するように埋設したものである
。補強材14′は不織布からなるので、その内部にベル
ト本体11のゴムが含浸される。この実施例でも、上記
実施例1と同様の作用効果が得られる。
(Embodiment 2) FIG. 3 shows a timing belt B' according to Embodiment 2 of the present invention, in which, in addition to the core body 13, a reinforcing material 14' made of a nonwoven fabric such as polyamide fiber is provided inside the belt body 11. It is located in the middle part in the height direction in the part 12, and is buried so as to be exposed between the tooth parts 12, 12. Since the reinforcing material 14' is made of non-woven fabric, the rubber of the belt body 11 is impregnated into the reinforcing material 14'. This embodiment also provides the same effects as those of the first embodiment.

【0035】本発明者は、設計ピッチラインディファレ
ンスPLDP が1.4mm、設計ピッチPP が14
.00mmの28T −28T のプーリに対し、ピッ
チラインディファレンスPLDB が1.65mm(1
8%アップ)、ピッチPB が14.01mm(0.0
07%アップ)で、ベルト幅が15mm,12mmの2
種類のタイミングベルト(本発明例)を試作するととも
に、従来例としてピッチラインディファレンスPLDB
 が1.4mm、ピッチPB が14.00mmのタイ
ミングベルトを試作した。これらの構成はいずれも上記
実施例2と同様であり、ベルト本体はポリウレタンゴム
製で、心体にアラミド繊維コードを使用し、補強材とし
てポリアミド繊維不織布を用いた。ピッチラインディフ
ァレンスPLDB の調整は上記補強材(不織布)の圧
縮量を変化させることで行った。 尚、耐久性のばらつきを比較するために、本発明例及び
従来例を共に試作例■〜■の3ロットずつ試作した。こ
れら各ベルトのピッチラインディファレンスPLDB 
及びピッチPB の測定結果を表1に示す。
The inventor has determined that the design pitch line difference PLDP is 1.4 mm and the design pitch PP is 14 mm.
.. 00mm 28T -28T pulley, pitch line difference PLDB is 1.65mm (1
8% increase), pitch PB was 14.01mm (0.0
07% up), and the belt width is 15mm and 12mm.
In addition to prototyping different types of timing belts (example of the present invention), pitch line difference PLDB was used as a conventional example.
A timing belt with a pitch of 1.4 mm and a pitch PB of 14.00 mm was manufactured. These structures were all the same as in Example 2, and the belt body was made of polyurethane rubber, an aramid fiber cord was used as the core, and a polyamide fiber nonwoven fabric was used as the reinforcing material. The pitch line difference PLDB was adjusted by changing the amount of compression of the reinforcing material (nonwoven fabric). In order to compare the variation in durability, three lots of prototypes ① to ① were produced for both the inventive example and the conventional example. Pitch line difference PLDB of each of these belts
Table 1 shows the measurement results for pitch and pitch PB.

【0036】[0036]

【表1】[Table 1]

【0037】そして、各ベルトを上記規定のプーリに巻
き掛け、15kgf の負荷でかつ1900rpm の
プーリ回転数でベルトを走行させて耐久性を比較し、そ
の結果を示したものが図4である。この図4によると、
本発明例の耐久寿命は従来例の約5倍程度となり、しか
も耐久寿命のばらつきも小さいことが裏付けられた。
[0037] Each belt was wound around the specified pulley as described above, and the belt was run under a load of 15 kgf and at a pulley rotation speed of 1900 rpm to compare the durability. The results are shown in Fig. 4. According to this figure 4,
The durability life of the example of the present invention was approximately five times that of the conventional example, and it was confirmed that the variation in durability life was also small.

【0038】[0038]

【発明の効果】以上説明したように、請求項1又は2の
発明によると、タイミングプーリの設計ピッチラインデ
ィファレンスに対しタイミングベルトのピッチラインデ
ィファレンスを10〜20%高くし、かつプーリの設計
ピッチに対しベルトのピッチを0.02〜0.15%大
きくしたことにより、ベルトのピッチがばらついていて
も、タイミングベルトの寿命を著しく向上させることが
できるとともに、その耐久寿命のばらつきを小さくして
、タイミングベルト伝動装置の信頼性を高めることがで
きるという実用上優れた効果を得ることができる。
As explained above, according to the invention of claim 1 or 2, the pitch line difference of the timing belt is made 10 to 20% higher than the designed pitch line difference of the timing pulley, and the design of the pulley is improved. By making the belt pitch 0.02 to 0.15% larger than the pitch, even if the belt pitch varies, the life of the timing belt can be significantly improved, and the variation in its durability life can be reduced. Therefore, it is possible to obtain a practically excellent effect of increasing the reliability of the timing belt transmission device.

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

【図1】本発明の実施例1に係るタイミングベルト伝動
装置の要部を示す正面図である。
FIG. 1 is a front view showing main parts of a timing belt transmission device according to a first embodiment of the present invention.

【図2】タイミングベルトの長さ方向の断面図である。FIG. 2 is a longitudinal sectional view of the timing belt.

【図3】実施例2に係るタイミングベルトの断面図であ
る。
FIG. 3 is a sectional view of a timing belt according to a second embodiment.

【図4】ベルトの耐久寿命特性図である。FIG. 4 is a diagram showing the durability life characteristics of the belt.

【図5】プーリとのピッチ差の変化に伴うベルトの耐久
寿命変化を示す特性図である。
FIG. 5 is a characteristic diagram showing changes in the durability life of the belt due to changes in the pitch difference between the belt and the pulley.

【符号の説明】[Explanation of symbols]

A…伝動装置 P…歯部 PP …ピッチ LP …ピッチライン PLDP …設計ピッチラインディファレンスB,B′
…ベルト 11…ベルト本体 12…歯部 13…心体 14…補強織布 14′…補強材 PB …ピッチ LB …ピッチライン
A...Transmission device P...Tooth portion PP...Pitch LP...Pitch line PLDP...Design pitch line difference B, B'
…Belt 11…Belt body 12…Tooth portion 13…Core body 14…Reinforcement fabric 14'…Reinforcement material PB…Pitch LB…Pitch line

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】  タイミングプーリの外周歯部に噛み合
う歯部を内周に有し、タイミングプーリに巻き掛けられ
るタイミングベルトであって、ピッチラインディファレ
ンスをプーリの設計ピッチラインディファレンスに対し
10〜20%高くし、かつピッチをプーリの設計ピッチ
に対し0.02〜0.15%大きくしたことを特徴とす
るタイミングベルト。
1. A timing belt that has teeth on its inner periphery that mesh with the outer teeth of the timing pulley, and is wound around the timing pulley, the pitch line difference being 10 to 10 times larger than the designed pitch line difference of the pulley. A timing belt characterized by being 20% higher and having a pitch 0.02 to 0.15% larger than the designed pitch of the pulley.
【請求項2】  外周に歯部を有するタイミングプーリ
と、該タイミングプーリの歯部に噛み合う歯部を内周に
有し、タイミングプーリに巻き掛けられるタイミングベ
ルトとからなるタイミングベルト伝動装置であって、タ
イミングベルトのピッチラインディファレンスをプーリ
の設計ピッチラインディファレンスに対し10〜20%
高くし、かつ、タイミングベルトのピッチをプーリの設
計ピッチに対し0.02〜0.15%大きくしたことを
特徴とするタイミングベルト伝動装置。
2. A timing belt transmission device comprising a timing pulley having teeth on its outer periphery, and a timing belt wound around the timing pulley and having teeth on its inner periphery that mesh with the teeth of the timing pulley. , the pitch line difference of the timing belt is 10 to 20% of the designed pitch line difference of the pulley.
A timing belt transmission device characterized in that the pitch of the timing belt is increased by 0.02 to 0.15% relative to the designed pitch of the pulley.
JP10008891A 1991-05-01 1991-05-01 Timing belts and belt transmissions Expired - Fee Related JPH0676817B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP10008891A JPH0676817B2 (en) 1991-05-01 1991-05-01 Timing belts and belt transmissions

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP10008891A JPH0676817B2 (en) 1991-05-01 1991-05-01 Timing belts and belt transmissions

Publications (2)

Publication Number Publication Date
JPH04331844A true JPH04331844A (en) 1992-11-19
JPH0676817B2 JPH0676817B2 (en) 1994-09-28

Family

ID=14264673

Family Applications (1)

Application Number Title Priority Date Filing Date
JP10008891A Expired - Fee Related JPH0676817B2 (en) 1991-05-01 1991-05-01 Timing belts and belt transmissions

Country Status (1)

Country Link
JP (1) JPH0676817B2 (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06300086A (en) * 1993-04-14 1994-10-25 Bridgestone Corp Belt
JPH07139592A (en) * 1993-11-19 1995-05-30 Mitsuboshi Belting Ltd Belt with gear and driving device therefor
WO2007123739A1 (en) * 2006-03-31 2007-11-01 The Gates Corporation Toothed power transmission belt
WO2019058949A1 (en) * 2017-09-22 2019-03-28 日立オートモティブシステムズ株式会社 Power steering device
WO2021241660A1 (en) 2020-05-29 2021-12-02 三ツ星ベルト株式会社 Toothed belt transmission device
JP2021188747A (en) * 2020-05-29 2021-12-13 三ツ星ベルト株式会社 Toothed belt transmission device

Cited By (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06300086A (en) * 1993-04-14 1994-10-25 Bridgestone Corp Belt
JPH07139592A (en) * 1993-11-19 1995-05-30 Mitsuboshi Belting Ltd Belt with gear and driving device therefor
WO2007123739A1 (en) * 2006-03-31 2007-11-01 The Gates Corporation Toothed power transmission belt
EP2306046A1 (en) * 2006-03-31 2011-04-06 The Gates Corporation Toothed power transmission belt
US8932165B2 (en) 2006-03-31 2015-01-13 The Gates Corporation Toothed power transmission belt
EP2930397A1 (en) * 2006-03-31 2015-10-14 The Gates Corporation Toothed power transmission belt
WO2019058949A1 (en) * 2017-09-22 2019-03-28 日立オートモティブシステムズ株式会社 Power steering device
JP2019055735A (en) * 2017-09-22 2019-04-11 日立オートモティブシステムズ株式会社 Power steering device
CN111108034A (en) * 2017-09-22 2020-05-05 日立汽车系统株式会社 Power steering apparatus
US11383758B2 (en) 2017-09-22 2022-07-12 Hitachi Astemo, Ltd. Power steering apparatus
WO2021241660A1 (en) 2020-05-29 2021-12-02 三ツ星ベルト株式会社 Toothed belt transmission device
JP2021188747A (en) * 2020-05-29 2021-12-13 三ツ星ベルト株式会社 Toothed belt transmission device
TWI762335B (en) * 2020-05-29 2022-04-21 日商三星皮帶股份有限公司 Toothed belt drive
KR20220138865A (en) 2020-05-29 2022-10-13 미쓰보 시베루토 가부시키 가이샤 toothed belt transmission
US12116084B2 (en) 2020-05-29 2024-10-15 Mitsuboshi Belting Ltd. Toothed belt transmission device

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