TWI773222B - Electric bicycle booster of inner-rotor-type wheel hub motor using one-stage involute planetary gear reduction mechanism with small teeth number differences - Google Patents

Electric bicycle booster of inner-rotor-type wheel hub motor using one-stage involute planetary gear reduction mechanism with small teeth number differences Download PDF

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TWI773222B
TWI773222B TW110111453A TW110111453A TWI773222B TW I773222 B TWI773222 B TW I773222B TW 110111453 A TW110111453 A TW 110111453A TW 110111453 A TW110111453 A TW 110111453A TW I773222 B TWI773222 B TW I773222B
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hub
planetary gear
rotor
shaft
shell
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TW202237472A (en
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林文一
張芷玲
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宏國學校財團法人宏國德霖科技大學
林文一
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Abstract

一種具一階漸開線少齒差行星齒輪減速傳動機構之內轉子式輪轂電機的電動自行車助力裝置,包括定子與轉子的輪轂電機、轉子與帶有偏心轉軸的輪轂轉軸結合成一體、定子支架、具環狀內齒輪的齒圈、具有銷孔的行星齒輪、帶有銷子與自潤襯套的輸出中介件、輪轂左右側定軸以及含殼左右側蓋的輪轂外殼。定子支架與輪轂右側定軸為一體的構件。轉子與輪轂轉軸藉由在輪轂左右側定軸內的兩個軸承在定子內側做轉動。藉由螺母與C型扣環將輪轂電機定位於定子支架內部。輪轂轉軸的偏心轉軸帶動行星齒輪繞固定於定子支架的齒圈做行星運動,行星齒輪藉由孔銷接合方式帶動輸出中介件做等速對心的旋轉運動,再由干涉配合於殼體內的輸出中介件帶動輪轂外殼做輸出轉動。藉此,將能以較少齒數即可達成高減速比與高機械效率的一階漸開線少齒差行星齒輪減速傳動機構應用於內轉子式輪轂電機,以實現電動自行車內轉子式輪轂電機的助力裝置小型化、高機械效率與提升助力之效果。 An electric bicycle power assist device with an inner rotor type hub motor of a first-order involute planetary gear deceleration transmission mechanism, comprising a stator and a rotor hub motor, a rotor and a hub shaft with an eccentric shaft combined into one, a stator bracket , a ring gear with an annular internal gear, a planetary gear with a pin hole, an output intermediate piece with a pin and a self-lubricating bushing, a fixed shaft on the left and right sides of the hub, and a hub shell with left and right side covers of the shell. The stator bracket is an integral component with the fixed shaft on the right side of the hub. The rotor and the hub rotating shaft rotate inside the stator through two bearings in the left and right fixed shafts of the hub. The hub motor is positioned inside the stator bracket by means of the nut and the C-shaped retaining ring. The eccentric shaft of the hub shaft drives the planetary gear to make a planetary motion around the ring gear fixed on the stator bracket. The planetary gear drives the output intermediate member to rotate at a constant speed through the engagement of holes and pins, and then interferes with the output in the casing. The intermediate piece drives the hub shell to do output rotation. In this way, the first-order involute planetary gear reduction transmission mechanism with small teeth difference, which can achieve high reduction ratio and high mechanical efficiency with a small number of teeth, is applied to the inner rotor type in-wheel motor, so as to realize the inner-rotor type in-wheel motor of electric bicycles. The miniaturization of the booster device, high mechanical efficiency and the effect of boosting the booster.

Description

具一階漸開線少齒差行星齒輪減速傳動機構之內轉子式輪轂電機的電動自行車助力裝置 Electric bicycle booster with first-order involute less tooth difference planetary gear reduction transmission mechanism with inner rotor type hub motor

本發明係有關於一種電動自行車內轉子式輪轂電機助力裝置的一階漸開線少齒差行星齒輪減速傳動機構,尤指一種可以實現小型化、高機械效率與大幅提升助力效果的電動自行車內轉子式輪轂電機助力傳動機構之技術。 The invention relates to a first-order involute less tooth difference planetary gear reduction transmission mechanism of an inner rotor type hub motor booster of an electric bicycle, in particular to an inner rotor of an electric bicycle that can realize miniaturization, high mechanical efficiency and greatly improve the boosting effect. The technology of rotor-type in-wheel motor power transmission mechanism.

由於新冠肺炎疫情持續的關係,在歐美人們因害怕搭乘擁擠且密閉的地鐵或公車,兼具環保以及可維持社交距離的自行車成了當紅的交通工具,從倫敦、巴黎、柏林、米蘭,美國的費城、丹佛,哥倫比亞的波哥大,以及澳洲雪梨、墨爾本等各大城市紛紛擴建自行車道及補貼購置自行車,鼓勵市民以自行車作為交通工具,各大自行車廠的產能供不應求。而當上下班或休閒目的地距離較遠或是路途有上坡路段的騎乘人,具有電機助力裝置的電動自行車更符合需求。因此近年來電動自行車市場一直在成長,在歐洲各國都維持相當高的銷售熱潮,因此電動自行車是台灣自行車產業持續在世界自行車產業上領先並獲利的重要關鍵方向。 Due to the continuous relationship between the new crown pneumonia epidemic, people in Europe and the United States are afraid of taking crowded and closed subways or buses. Bicycles that are both environmentally friendly and can maintain social distance have become a popular means of transportation. From London, Paris, Berlin, Milan, the United States Philadelphia, Denver, Bogota in Colombia, Sydney, Melbourne and other major cities in Australia have expanded bicycle lanes and subsidized the purchase of bicycles to encourage citizens to use bicycles as a means of transportation. The production capacity of major bicycle factories is in short supply. When commuting to get off work or leisure destinations are far away or there are uphill sections on the road, electric bicycles with motor-assisted devices are more suitable for the needs. Therefore, the electric bicycle market has been growing in recent years, and has maintained a fairly high sales boom in European countries. Therefore, electric bicycles are an important key direction for Taiwan's bicycle industry to continue to lead and make profits in the world bicycle industry.

目前市面上通用的電動自行車助力裝置乃使用無 刷輪轂式電機,又根據電機裡是否經過齒輪減速機構而區分成無刷無齒輪轂電機與無刷有齒輪轂電機。圖1係市面上常用的無刷有齒輪轂電機裡的齒輪減速機構的實際圖,包含了中心齒輪51、三個中間的惰輪52及其輪盤53(固定件)及齒圈54。市面上無刷有齒輪轂電機的齒輪減速機都是採用定心齒輪系,雖然齒圈54的齒數很多如93齒,但其減速比不高,如中心齒輪51齒數為21,則減速比才-4.4(負號代表輸出輸入轉向相反)。新型專利第M484555號『具單向功能的自行車助力馬達』採用複式齒輪系,銷接在同一軸的大徑齒部與小徑齒部分別與中心齒輪和齒圈嚙合,此種複式齒輪系的減速比經由配齒(如中心齒輪20齒帶動大徑齒部60齒,與大徑齒部一起轉動的小徑齒部20齒帶動齒圈93齒)可以得到比定心齒輪系較高減速比(約-14),但也需要大的齒輪配合。因此市面上輪轂電機的齒輪減速機構其減速與提升轉矩效果不佳,致使爬長陡坡較沒力。 At present, the general electric bicycle power assist devices on the market use no Brush hub motors are divided into brushless gearless hub motors and brushless gear hub motors according to whether the motor passes through a gear reduction mechanism. FIG. 1 is an actual diagram of a gear reduction mechanism in a brushless geared hub motor commonly used in the market, including a central gear 51 , three intermediate idler gears 52 , a wheel disc 53 (fixed part) and a ring gear 54 . The gear reducers with brushless gear hub motors on the market all use a centering gear system. Although the number of teeth of the ring gear 54 is many, such as 93 teeth, its reduction ratio is not high. If the number of teeth of the center gear 51 is 21, the reduction ratio is only -4.4 (minus sign indicates that the output and input are reversed). The new patent No. M484555 "Bicycle booster motor with one-way function" adopts a compound gear train. The large-diameter tooth part and the small-diameter tooth part pinned on the same shaft mesh with the central gear and the ring gear respectively. The reduction ratio can be obtained through gear matching (for example, the 20 teeth of the central gear drive the 60 teeth of the large-diameter tooth part, and the 20 teeth of the small-diameter tooth part that rotates with the large-diameter tooth part drive the 93 teeth of the ring gear) to obtain a higher reduction ratio than the centering gear train. (about -14), but also requires large gears. Therefore, the gear reduction mechanism of the in-wheel motor on the market has poor deceleration and torque enhancement effects, resulting in less power to climb long steep slopes.

將普通行星齒輪減速機中的太陽齒拿掉且當固定的齒圈與行星齒輪的齒數相差非常少稱為少齒差行星齒輪減速機。少齒差行星齒輪減速機相較有定心輪的減速機構(含簡單與複式齒輪系)有較高的減速比,因此可以提升輪轂電機的輸出轉矩的效果,而且齒數可以較小,即較小的體積與重量。目前一階少齒差行星齒輪減速機可分為漸開線少齒差減速機、擺線針輪減速機與諧波減速機。然而擺線針輪減速機需要相當精確的中心距與相當精確的齒形,否則輸出速度與轉矩相當容易產生波動。發明專利第I694952號『電動自行車電動補助力之諧波齒輪傳動機構』 乃將諧波減速機應用於電動自行車之助力裝置中,但諧波減速機因具有柔輪,因此剛性與強度都較差,壽命往往較低,此外製造成本也相當高。至於漸開線少齒差減速機並無上述兩種減速機的缺點,但其齒輪組的齒廓設計較困難,容易有齒廓上的干涉,因此必須採用移位齒輪及非標準模數的設計技術才能克服齒廓設計的難點。 The sun gear in the ordinary planetary gear reducer is removed and the difference between the number of teeth of the fixed ring gear and the planetary gear is very small, which is called a planetary gear reducer with small tooth difference. Compared with the reduction mechanism with centering wheel (including simple and compound gear trains), the planetary gear reducer with small tooth difference has a higher reduction ratio, so it can improve the output torque effect of the hub motor, and the number of teeth can be smaller, that is Small size and weight. At present, the first-order small tooth difference planetary gear reducer can be divided into involute small tooth difference reducer, cycloidal pinwheel reducer and harmonic reducer. However, the cycloid reducer needs a fairly precise center distance and a fairly precise tooth profile, otherwise the output speed and torque are quite easy to fluctuate. Invention Patent No. I694952 "The Harmonic Gear Transmission Mechanism of Electric Bicycle Electric Power Assist" The harmonic reducer is used in the power assist device of the electric bicycle, but the harmonic reducer has a flexible wheel, so the rigidity and strength are poor, the life is often low, and the manufacturing cost is also quite high. As for the involute small tooth difference reducer, it does not have the shortcomings of the above two reducers, but the tooth profile design of its gear set is more difficult, and it is easy to have interference on the tooth profile. Therefore, it is necessary to use shift gears and non-standard modules Design technology can overcome the difficulty of tooth profile design.

另一種常見的是RV減速機,由於第一階乃使用中心輪(太陽齒)帶動行星齒輪,第二階則使用少齒差擺線針輪減速機構,構造複雜,體積相對較大,重量相對重,因此並不適合做為電動自行車助力裝置。 Another common type is the RV reducer. Since the first stage uses the center wheel (sun gear) to drive the planetary gears, and the second stage uses the cycloidal pinwheel reduction mechanism with small tooth difference, the structure is complex, the volume is relatively large, and the weight is relatively high. It is heavy, so it is not suitable as a power assist device for electric bicycles.

本發明主要係針對現行電動自行車的內轉子式輪轂電機之齒輪減速機構以及習知的齒輪減速機應用於電動自行車助力裝置的缺失,所為的全新發明。 The present invention is mainly aimed at the lack of the gear reduction mechanism of the inner rotor type hub motor of the current electric bicycle and the application of the conventional gear reducer to the electric bicycle power assist device, and is a new invention.

本發明的主要目的在於提供一種一階漸開線少齒差行星齒輪減速機構於電動自行車的助力裝置,主要是將一階漸開線少齒差行星齒輪減速機構應用於電動自行車的內轉子式輪轂電機上,藉以實現小型化、高機械效率與提升助力之效果。圖2係本發明所使用的一階漸開線少齒差行星齒輪減速機構的示意圖,其中輪轂轉軸23包括了偏心轉軸24,兩者是接合成一體或一體成形,具環狀內齒輪的齒圈12是固定件,輪轂轉軸23的偏心轉軸24帶動行星齒輪11繞固定的齒圈12做行星運動,並藉由孔銷接合方式帶動輸出中介件14(或輸出軸)與輪轂轉軸23 的輸入軸在相同軸線上做旋轉運動。此種孔銷接合方式為行星齒輪11上有四或六個銷孔13,對應輸出中介件14上也有四或六個銷子15以及套在銷子上的自潤襯套16,但必須滿足dh=db+2e,其中dh為銷孔13的直徑,db為自潤襯套16外圓的直徑,e為偏心轉軸的偏心距。藉此,孔銷接合方式相當於一個平行四邊形機構,因而行星齒輪11的轉速藉由孔銷接合方式傳遞至輸出中介件14做等速對心的旋轉運動。圖3係一階漸開線少齒差行星齒輪減速機構的分解示意圖(其中習知之軸與齒輪之間的鍵槽與平鍵並未繪示),其減速比公式為

Figure 110111453-A0305-02-0006-1
,其中z i 代表齒輪i的齒數。如前所述,單式與複式齒輪系其93齒的圈齒的減速比才-4.4與-14(尚需大徑齒部60齒),使用一階漸開線少齒差行星齒輪減速機構能以較少的齒數即可達成較高的減速比,如行星齒輪11、齒圈12的齒數各為20與21時減速比可達成-20;各為30與31時減速比可達成-30;各為40與41時減速比可達成-40。顯而易見,使用一階漸開線少齒差行星齒輪減速機構於電動自行車的內轉子式輪轂電機之動力傳動機構上,可以實現小型化、輕量化與提升助力的效果。此外一階相較二階行星齒輪減速機構其機械效率可以達到更高。 The main purpose of the present invention is to provide a first-order involute planetary gear reduction mechanism with small tooth difference in the power assist device of an electric bicycle, mainly applying the first-order involute small tooth difference planetary gear reduction mechanism to the inner rotor type of the electric bicycle. On the hub motor, in order to achieve the effect of miniaturization, high mechanical efficiency and boosting power. 2 is a schematic diagram of the first-order involute planetary gear reduction mechanism with small tooth difference used in the present invention, wherein the hub rotating shaft 23 includes an eccentric rotating shaft 24, which are joined into one body or integrally formed, with teeth of the annular internal gear. The ring 12 is a fixed part. The eccentric shaft 24 of the hub shaft 23 drives the planetary gear 11 to make a planetary motion around the fixed ring gear 12, and drives the output intermediate member 14 (or output shaft) and the input of the hub shaft 23 by means of hole-pin engagement. The shafts rotate on the same axis. This kind of hole-pin engagement method is that there are four or six pin holes 13 on the planetary gear 11, and there are also four or six pins 15 on the corresponding output intermediate member 14 and a self-lubricating bushing 16 set on the pins, but must meet the requirements. dh = d b + 2e, wherein dh is the diameter of the pin hole 13, db is the diameter of the outer circle of the self-lubricating bushing 16, and e is the eccentricity of the eccentric shaft. In this way, the hole-pin engagement method is equivalent to a parallelogram mechanism, so the rotational speed of the planetary gear 11 is transmitted to the output intermediate member 14 through the hole-pin engagement method to perform a constant-velocity centered rotational motion. 3 is an exploded schematic diagram of a first-order involute planetary gear reduction mechanism with small tooth difference (the conventional keyway and flat key between the shaft and the gear are not shown), and the reduction ratio formula is:
Figure 110111453-A0305-02-0006-1
, where zi represents the number of teeth of gear i . As mentioned above, the reduction ratios of the 93-tooth ring teeth of the single-type and compound-type gear systems are only -4.4 and -14 (the large-diameter teeth are still required to be 60 teeth), and the first-order involute planetary gear reduction mechanism with small tooth difference is used. A higher reduction ratio can be achieved with a smaller number of teeth. For example, when the teeth of the planetary gear 11 and the ring gear 12 are 20 and 21 respectively, the reduction ratio can reach -20; when the teeth are 30 and 31, the reduction ratio can reach -30 ; When each is 40 and 41, the reduction ratio can reach -40. Obviously, the use of the first-order involute planetary gear reduction mechanism with small tooth difference in the power transmission mechanism of the inner rotor type in-wheel motor of the electric bicycle can achieve the effect of miniaturization, light weight and boosting power. In addition, the mechanical efficiency of the first-order planetary gear reduction mechanism can be higher than that of the second-order planetary gear reduction mechanism.

達成本發明目的的技術手段,係包括一階漸開線少齒差行星齒輪減速機構、包含定子、轉子與帶有偏心轉軸之輪轂轉軸的輪轂電機以及輪轂外殼這三個次組合件,前面兩個次組合件裝設於輪轂外殼內部,並藉由支撐和連接構件將這三個次組合件組裝成具本發明功效的具一階漸開線少齒差行星齒輪減速傳動機構之內轉子式輪轂電機的電動自行 車助力裝置,其減速增力的運動順序為輪轂轉軸的偏心轉軸帶動行星齒輪繞固定於定子支架上的齒圈做行星運動,行星齒輪藉由孔銷接合的等速機構將其轉速等速傳遞至與轉子相同旋轉軸心的輸出中介件,再由干涉配合於殼體內的輸出中介件帶動輪轂外殼做轉動,由於輪轂外殼係藉由幅條連接輪框,最後由輪轂外殼帶動輪圈轉動。輪轂左右兩側定軸通過左右兩個軸承支撐旋轉的輸轂外殼。右側的輪轂定軸與殼體內的定子支架為一體的構件,藉由螺母與C型扣環將輪轂電機定位於定子支架內部,此外齒圈也鎖固於定子支架。 The technical means to achieve the purpose of the present invention include three sub-assemblies of a first-order involute planetary gear reduction mechanism with small tooth difference, a hub motor including a stator, a rotor and a hub shaft with an eccentric shaft, and a hub shell. The three sub-assemblies are installed inside the hub shell, and the three sub-assemblies are assembled into an inner-rotor type planetary gear reduction transmission mechanism with a first-order involute small tooth difference with the effect of the present invention through the supporting and connecting members. Electric bikes with in-wheel motors Vehicle booster, the motion sequence of deceleration and boosting is that the eccentric shaft of the hub shaft drives the planetary gear to make a planetary motion around the ring gear fixed on the stator bracket, and the planetary gear transmits its rotational speed at a constant speed through a constant speed mechanism engaged by a hole pin. To the output intermediate member with the same rotation axis as the rotor, the hub shell is driven to rotate by the output intermediate member which is interference fit in the casing. Since the hub shell is connected to the wheel frame by the spokes, finally the hub shell drives the wheel rim to rotate. The fixed shafts on the left and right sides of the wheel hub support the rotating hub casing through two left and right bearings. The wheel hub fixed shaft on the right is an integral component with the stator bracket in the housing. The hub motor is positioned inside the stator bracket by means of a nut and a C-shaped retaining ring, and the ring gear is also locked and fixed to the stator bracket.

11:行星輪 11: Planetary gear

12:齒圈 12: Ring gear

13:銷孔 13: pin hole

14:輸出中介件 14: Output middleware

15:銷子 15: Pins

16:自潤襯套 16: Self-lubricating bushing

17:螺絲 17: Screws

21:定子 21: Stator

22:轉子 22: Rotor

23:輪轂轉軸 23: Wheel hub shaft

24:偏心轉軸 24: Eccentric shaft

25:螺母 25: Nut

26:C型扣環 26: C-type buckle

27:右二滾珠軸承 27: Right second ball bearing

28:左二滾珠軸承 28: Left second ball bearing

31:殼主體 31: Shell body

32:殼右側蓋 32: Right side cover of the shell

33:殼左側蓋 33: Shell left cover

34:螺絲 34: Screws

41:輪轂右側定軸 41: Fixed shaft on the right side of the hub

42:輪轂左側定軸 42: Fixed shaft on the left side of the hub

43:定子支架 43: Stator bracket

44:右一滾珠軸承 44: Right ball bearing

45:左一滾珠軸承 45: Left ball bearing

46:右側密封件 46: Right side seal

47:左側密封件 47: Left side seal

51:中心齒輪 51: Central gear

52:惰輪 52: Idler

53:輪盤 53: Roulette

54:齒圈 54: Ring gear

圖1係無刷有齒輪轂電機裡的齒輪減速機構的實際圖。 Figure 1 is an actual diagram of a gear reduction mechanism in a brushless geared hub motor.

圖2係本發明一階漸開線少齒差行星齒輪減速機構的示意圖。 2 is a schematic diagram of the first-order involute planetary gear reduction mechanism with small tooth difference of the present invention.

圖3係本發明一階漸開線少齒差行星齒輪減速機構的分解示意圖。 3 is an exploded schematic view of the first-order involute planetary gear reduction mechanism with small tooth difference of the present invention.

圖4係本發明實施例電動自行車助力裝置的立體圖。 4 is a perspective view of an electric bicycle power assist device according to an embodiment of the present invention.

圖5係本發明實施例電動自行車助力裝置的分解圖,其中殼主體與習知之配件如軸承、螺絲、密封件並未繪示。 5 is an exploded view of an electric bicycle power assist device according to an embodiment of the present invention, wherein the housing body and conventional accessories such as bearings, screws and seals are not shown.

圖6係本發明實施例電動自行車助力裝置的剖視圖。 6 is a cross-sectional view of an electric bicycle power assist device according to an embodiment of the present invention.

為利 貴審查委員能進一步瞭解本發明的技術特徵與手段,茲以具體實施例並配合圖示加以詳細說明如後: In order to help your examiners to further understand the technical features and means of the present invention, the following specific examples and illustrations are described in detail:

請同時參閱圖4至圖6,圖4係本發明實施例電動自行車助力裝置的立體圖;圖5係本發明實施例電動自行車助力裝置的分解圖,其中 殼主體與習知之配件如軸承27、28、44、45,螺絲17、34,密封件46、47並未繪示;圖6係本發明實施例電動自行車助力裝置的剖視圖。在本發明實施例電動自行車助力裝置包括一階漸開線少齒差行星齒輪減速機構、內轉子式輪轂電機以及輪轂外殼這三個次組合件,前面兩個次組合件裝設於輪轂外殼內部,並藉由支撐和連接構件將這三個次組合件組裝成具本發明功效的具一階漸開線少齒差行星齒輪減速傳動機構之內轉子式輪轂電機的電動自行車助力裝置。 Please refer to FIGS. 4 to 6 at the same time. FIG. 4 is a perspective view of an electric bicycle power assist device according to an embodiment of the present invention; and FIG. 5 is an exploded view of an electric bicycle power assist device according to an embodiment of the present invention. The housing body and conventional accessories such as bearings 27, 28, 44, 45, screws 17, 34, and seals 46, 47 are not shown; FIG. 6 is a cross-sectional view of an electric bicycle power assist device according to an embodiment of the present invention. In the embodiment of the present invention, the electric bicycle power assist device includes three sub-assemblies: a first-order involute planetary gear reduction mechanism with small tooth difference, an inner-rotor hub motor, and a hub shell. The first two sub-assemblies are installed inside the hub shell. , and the three sub-assemblies are assembled by supporting and connecting members into an electric bicycle power assist device with a first-order involute less tooth difference planetary gear reduction transmission mechanism with an inner rotor type in-wheel motor with the effect of the present invention.

支撐和連接構件包括輪轂右側定軸41與輪轂左側定軸42。輪轂右側定軸41與輪轂左側定軸42的一部份是裝設在輪轂外殼的內部,一部分是在輪轂外殼之外部並可藉由螺母(未繪出)鎖固於車架的前叉或後叉上(未繪出)。 The supporting and connecting members include a fixed shaft 41 on the right side of the hub and a fixed shaft 42 on the left side of the hub. A part of the fixed shaft 41 on the right side of the hub and the fixed shaft 42 on the left side of the hub are installed inside the hub shell, and a part is outside the hub shell and can be locked to the front fork or the frame of the frame by a nut (not shown). on the rear fork (not shown).

輪轂外殼包括殼主體31、殼右側蓋32與殼左側蓋33,三者藉由螺絲34做接合。實際應用時,輪轂外殼可藉由幅條(未繪出)連接輪框(未繪出),並由輪轂外殼帶動輪圈轉動。 The hub shell includes a shell body 31 , a right side cover 32 and a left side cover 33 , which are joined by screws 34 . In practical application, the hub shell can be connected to the wheel frame (not shown) by means of spokes (not shown), and the wheel rim is driven by the hub shell to rotate.

內轉子式輪轂電機包括一定子21、一個裝設於定子21內側的轉子22,帶有偏心轉軸24之輪轂轉軸23與轉子22結合為一體。藉由一個螺母25及一個C型扣環26將輪轂電機定位於定子支架43內部。 The inner rotor type in-wheel motor includes a stator 21 , a rotor 22 installed inside the stator 21 , and a hub rotating shaft 23 with an eccentric rotating shaft 24 is integrated with the rotor 22 . The hub motor is positioned inside the stator bracket 43 by a nut 25 and a C-shaped retaining ring 26 .

定子支架43與輪轂右側定軸41為一體的構件。 The stator bracket 43 is an integral member with the fixed shaft 41 on the right side of the hub.

轉子22與輪轂轉軸23藉由一個右二滾珠軸承27與一個左二滾珠軸承28分別樞接於輪轂右側定軸41與輪轂左側定軸42。 The rotor 22 and the hub shaft 23 are pivotally connected to the hub right fixed shaft 41 and the hub left fixed shaft 42 via a second right ball bearing 27 and a second left ball bearing 28 , respectively.

一階漸開線少齒差行星齒輪減速機構包括具四或六個銷孔13的行星齒輪11、藉由螺絲17固定於定子支架43的齒圈12以及帶有四或六個 銷子15與套在銷子上的自潤襯套16的輸出中介件14。本發明功效的具一階漸開線少齒差行星齒輪減速傳動機構之內轉子式輪轂電機的電動自行車助力裝置,其減速增力的運動順序為輪轂轉軸23之偏心轉軸24帶動行星齒輪11繞齒圈12做行星運動,並藉由行星齒輪11上的銷孔13與輸出中介件14上的銷子15與自潤襯套16的孔銷接合的等速機構將行星齒輪11的轉速等速傳遞至與轉子21相同旋轉軸心的輸出中介件14,再由干涉配合於殼主體31內的輸出中介件14帶動輪轂外殼做轉動,由於輪轂外殼係藉由幅條連接輪框,最後由輪轂外殼帶動輪圈做輸出轉動。 The first-order involute planetary gear reduction mechanism with small tooth difference includes a planetary gear 11 with four or six pin holes 13, a ring gear 12 fixed to the stator bracket 43 by screws 17, and a planetary gear 12 with four or six pin holes 13. The output intermediate member 14 of the pin 15 and the self-lubricating bushing 16 sleeved on the pin. The electric bicycle power assist device of the inner rotor type hub motor with the first-order involute less tooth difference planetary gear deceleration transmission mechanism with the effect of the present invention, the movement sequence of deceleration and boosting is that the eccentric rotating shaft 24 of the hub rotating shaft 23 drives the planetary gear 11 to revolve The ring gear 12 performs planetary motion, and the rotational speed of the planetary gear 11 is made constant by the constant speed mechanism in which the pin hole 13 on the planetary gear 11 and the pin 15 on the output intermediate member 14 are engaged with the hole pin of the self-lubricating bushing 16 It is transmitted to the output intermediate member 14 with the same rotation axis as the rotor 21, and then the hub shell is driven to rotate by the output intermediate member 14 which is interference-fitted in the shell body 31. Since the hub shell is connected to the wheel frame by the spokes, the The shell drives the rim to do output rotation.

輪轂外殼分別藉由一個右一滾珠軸承44與一個左一滾珠軸承45在輪轂右側定軸41與輪轂左側定軸42這兩定軸上做輸出旋轉運動。 The hub shell performs output rotational motion on the fixed shaft 41 on the right side of the hub and the fixed shaft 42 on the left side of the hub through a right ball bearing 44 and a left ball bearing 45 respectively.

綜上所述,本發明實施例之內轉子式輪轂電機使用一階漸開線少齒差行星齒輪減速機構具有以較小尺寸之齒輪即可達成高減速比、高機械效率和提升助力效果之特性,其與市面上內轉子式輪轂電機使用之定心齒輪減速機等習知技術相較,明顯具備功效之增進,具有進步性。另本發明申請前並未見於刊物,其新穎性亦毋庸置疑。本創作合於專利法之規定,爰依法提出發明專利之申請,祈請惠予審查並賜予專利,實感德便。 To sum up, the inner rotor type in-wheel motor of the embodiment of the present invention uses a first-order involute planetary gear reduction mechanism with small tooth difference, which can achieve a high reduction ratio, high mechanical efficiency, and improved power assist effect with a small size gear. Compared with the conventional technologies such as the centering gear reducer used in the inner rotor type in-wheel motor on the market, it has obvious improvement in efficiency and progress. In addition, the present invention has not been seen in publications before the application, and its novelty is beyond doubt. This creation complies with the provisions of the Patent Law, and it is necessary to file an application for an invention patent in accordance with the law. I pray for the review and grant of the patent.

11:行星輪 11: Planetary gear

12:齒圈 12: Ring gear

13:銷孔 13: pin hole

14:輸出中介件 14: Output middleware

15:銷子 15: Pins

16:自潤襯套 16: Self-lubricating bushing

17:螺絲 17: Screws

21:定子 21: Stator

22:轉子 22: Rotor

23:輪轂轉軸 23: Wheel hub shaft

24:偏心轉軸 24: Eccentric shaft

25:螺母 25: Nut

26:C型扣環 26: C-type buckle

27:右二滾珠軸承 27: Right second ball bearing

28:左二滾珠軸承 28: Left second ball bearing

31:殼主體 31: Shell body

32:殼右側蓋 32: Right side cover of the shell

33:殼左側蓋 33: Shell left cover

34:螺絲 34: Screws

41:輪轂右側定軸 41: Fixed shaft on the right side of the hub

42:輪轂左側定軸 42: Fixed shaft on the left side of the hub

43:定子支架 43: Stator bracket

44:右一滾珠軸承 44: Right ball bearing

45:左一滾珠軸承 45: Left ball bearing

46:右側密封件 46: Right side seal

47:左側密封件 47: Left side seal

Claims (1)

一種具一階漸開線少齒差行星齒輪減速傳動機構之內轉子式輪轂電機的電動自行車助力裝置,包括:支撐和連接構件,包括輪轂右側定軸與輪轂左側定軸,可連接於車架的前叉或後叉上;輪轂外殼,包括殼主體、殼右側蓋與殼左側蓋,該輪轂外殼同時藉由右一滾珠軸承與左一滾珠軸承在輪轂右側定軸與輪轂左側定軸的外側上做輸出旋轉運動,即可連接與帶動輪圈轉動;內轉子式輪轂電機,包括一定子、一個裝設於定子內側的轉子,帶有偏心轉軸之輪轂轉軸與轉子結合為一體;一階漸開線少齒差行星齒輪減速機構,包括具四或六個銷孔的行星齒輪、具有環狀內齒的齒圈與帶有四或六個銷子與自潤襯套的輸出中介件,可將轉子的旋轉運動以高減速比傳遞至輪轂外殼;其特徵在於:輪轂右側定軸亦作為定子支架,並藉由一個螺母及一個C型扣環將輪轂電機定位於定子支架內部,轉子與輪轂轉軸藉由右二滾珠軸承與左二滾珠軸承將其樞接於輪轂右側定軸與輪轂左側定軸,齒圈藉由螺絲固定於定子支架,輸出中介件干涉配合裝設於殼主體內,做輸入旋轉件的輪轂轉軸的偏心轉軸帶動行星齒輪繞固定的齒圈做行星運動,並藉由行星齒輪上的銷孔與輸出中介件上的銷子與自潤襯套的孔銷接合方式將行星齒輪的轉速等速傳遞至與轉子相同旋轉軸心的輸出中介件,再由輸出中介件帶動輪轂外殼做轉動。 An electric bicycle power assist device with a first-order involute planetary gear reduction transmission mechanism with an inner rotor type hub motor, comprising: a support and a connecting member, including a fixed shaft on the right side of the wheel hub and a fixed shaft on the left side of the wheel hub, which can be connected to the frame. On the front fork or rear fork; the wheel hub shell, including the shell body, the shell right side cover and the shell left side cover, the wheel hub shell at the same time by the right ball bearing and the left ball bearing on the outer side of the fixed shaft on the right side of the hub and the fixed shaft on the left side of the hub The output rotary motion can be connected and driven to rotate the wheel rim; the inner rotor type hub motor includes a stator, a rotor installed on the inner side of the stator, and the hub shaft with an eccentric shaft is integrated with the rotor; the first-order gradual The open-wire planetary gear reduction mechanism with small tooth difference includes a planetary gear with four or six pin holes, a ring gear with annular internal teeth, and an output intermediate with four or six pins and self-lubricating bushings. The rotary motion of the rotor is transmitted to the hub shell with a high reduction ratio; it is characterized in that: the fixed shaft on the right side of the hub is also used as a stator bracket, and a nut and a C-shaped retaining ring are used to position the hub motor inside the stator bracket, the rotor and the hub. The rotating shaft is pivotally connected to the fixed shaft on the right side of the wheel hub and the fixed shaft on the left side of the wheel hub through the second right ball bearing and the second left ball bearing, the gear ring is fixed to the stator bracket by screws, and the output intermediate member is installed in the shell body by interference fit. The eccentric rotating shaft of the hub rotating shaft of the input rotating part drives the planetary gear to make a planetary motion around the fixed ring gear, and the planetary gear is engaged by the pin hole on the planetary gear and the pin on the output intermediate piece and the hole pin of the self-lubricating bushing. The rotational speed of the gear is transmitted to the output intermediate member with the same rotation axis as the rotor at the same speed, and then the output intermediate member drives the hub shell to rotate.
TW110111453A 2021-03-30 2021-03-30 Electric bicycle booster of inner-rotor-type wheel hub motor using one-stage involute planetary gear reduction mechanism with small teeth number differences TWI773222B (en)

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TW403706B (en) * 1999-09-23 2000-09-01 Li Shu Shian Cycloidal retarding electric wheel motor
TW201534525A (en) * 2014-03-03 2015-09-16 Harmonic Innovation Technology Co Ltd Driving module with high torque
CN105932822A (en) * 2016-07-05 2016-09-07 天津迪思科博科技发展有限公司 Hub motor of micro electric bicycle
TWI568626B (en) * 2014-03-03 2017-02-01 諧波創新科技股份有限公司 Driving module of electric bike

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TW403706B (en) * 1999-09-23 2000-09-01 Li Shu Shian Cycloidal retarding electric wheel motor
TW201534525A (en) * 2014-03-03 2015-09-16 Harmonic Innovation Technology Co Ltd Driving module with high torque
TWI568626B (en) * 2014-03-03 2017-02-01 諧波創新科技股份有限公司 Driving module of electric bike
CN105932822A (en) * 2016-07-05 2016-09-07 天津迪思科博科技发展有限公司 Hub motor of micro electric bicycle

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