TWI588462B - Automatic driving system for manual transmission scooter - Google Patents

Automatic driving system for manual transmission scooter Download PDF

Info

Publication number
TWI588462B
TWI588462B TW104137630A TW104137630A TWI588462B TW I588462 B TWI588462 B TW I588462B TW 104137630 A TW104137630 A TW 104137630A TW 104137630 A TW104137630 A TW 104137630A TW I588462 B TWI588462 B TW I588462B
Authority
TW
Taiwan
Prior art keywords
locomotive
driving
shift
drive
throttle
Prior art date
Application number
TW104137630A
Other languages
Chinese (zh)
Other versions
TW201716763A (en
Inventor
黃天助
陳惟銓
林晃民
偕睿仁
Original Assignee
財團法人工業技術研究院
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 財團法人工業技術研究院 filed Critical 財團法人工業技術研究院
Priority to TW104137630A priority Critical patent/TWI588462B/en
Publication of TW201716763A publication Critical patent/TW201716763A/en
Application granted granted Critical
Publication of TWI588462B publication Critical patent/TWI588462B/en

Links

Description

打檔機車耐久的自動測試裝置Durable automatic test device for locomotives

本發明係關於一種自動測試裝置,特別是一種打檔機車耐久的自動測試裝置。 The present invention relates to an automatic test device, and more particularly to an automatic test device for durable endurance locomotives.

由於機車具有輕便及機動性佳等優點,早已是台灣日常生活不可或缺的交通工具,平均每年大約有65至70萬輛的需求規模。近年隨著消費者意識的提高及生活水準的提升,消費者對於機車產品品質的要求也越來越高,除了一般的性能、安全、舒適外,耐用性也是一個重要的指標。 Due to its light weight and good maneuverability, the locomotive has long been an indispensable means of transportation in Taiwan's daily life, with an average annual demand of about 650,000 to 700,000 units. In recent years, with the improvement of consumer awareness and the improvement of living standards, consumers are increasingly demanding the quality of locomotive products. In addition to general performance, safety and comfort, durability is also an important indicator.

一般而言,車輛行駛於道路時,由於道路之高低起伏,使車體承受著道路反饋的各種衝擊。雖然衝擊力量不至於馬上造成車輛產品損壞,但車體在長期的使用下,會不斷的累積損傷,當累積損傷達到車體承受的上限時,便造成毀損。國內外車輛大廠針對車輛耐久性的評估,其發展已有相當久的歴史,目前主要是透過測試人員在公共道路上進行耐久測試。然而,耐久測試的標準越來越嚴格,測試里程從早期的幾千公里拉長至現在的一萬五千公里,未來更有可能再延長至三萬公里。測試里程的拉長使得測試人員的負擔加重。因此,研發人員應致力研發一種自動測試裝置來取代傳統透過人力的方式來測試車體的耐用度,以降低測試人員的負擔。 Generally speaking, when the vehicle is driving on a road, the vehicle body is subjected to various impacts of road feedback due to the undulation of the road. Although the impact force does not immediately cause damage to the vehicle product, the vehicle body will continue to accumulate damage under long-term use. When the cumulative damage reaches the upper limit of the vehicle body, it will cause damage. The evaluation of vehicle durability by domestic and foreign vehicle manufacturers has a long history of development. At present, it is mainly through endurance testing on public roads by testers. However, the standards for endurance testing are becoming more and more stringent, and the test mileage has been extended from the early thousands of kilometers to the current 15,000 kilometers, and it is more likely to be extended to 30,000 kilometers in the future. The length of the test mileage increases the burden on the tester. Therefore, R&D personnel should strive to develop an automatic test device to replace the traditional manpower method to test the durability of the car body to reduce the burden on testers.

本發明在於提供一種打檔機車耐久的自動測試裝置,藉以解決傳統需透過人力的方式來測試車體的耐用度的問題。 The invention provides an automatic test device for durable endurance of a locomotive, thereby solving the problem that the durability of the vehicle body is tested by a traditional method.

一種打檔機車耐久的自動測試裝置,包含一動力計位移裝置、一變檔驅動裝置、一油門驅動裝置、一離合器驅動裝置、一煞車驅動 裝置及一控制裝置。動力計位移裝置用以設置於一打檔機車之一動力輪,並感測出打檔機車之一行駛距離資訊。變檔驅動裝置用以裝設於打檔機車,並驅動打檔機車之一打檔桿,以驅動打檔機車換檔。油門驅動裝置用以裝設於打檔機車,並驅使打檔機車之一油門轉動。離合器驅動裝置用以裝設於打檔機車,並驅動打檔機車之一離合器。煞車驅動裝置用以裝設於打檔機車,並驅動打檔機車之一煞車。控制裝置用以接收行駛距離資訊,並依行駛距離資訊控制變檔驅動裝置、油門驅動裝置、離合器驅動裝置及煞車驅動裝置,以令打檔機車對應行駛距離資訊之一時速資訊趨近一預設時速資訊。 A durable automatic test device for a locomotive, comprising a power meter displacement device, a shift drive device, a throttle drive device, a clutch drive device, and a brake drive Device and a control device. The power meter displacement device is configured to be disposed on one of the power wheels of one of the locomotives, and senses the travel distance information of one of the locomotives. The shift driving device is installed on the shifting locomotive and drives one of the shifting locomotives to drive the shifting locomotive to shift gears. The throttle driving device is installed on the shifting locomotive and drives the throttle of one of the shifting locomotives to rotate. The clutch drive device is mounted on the shift locomotive and drives one of the clutches of the shift locomotive. The brake driving device is installed on the locomotive and drives one of the locomotives. The control device is configured to receive the driving distance information, and control the shift driving device, the throttle driving device, the clutch driving device and the braking driving device according to the driving distance information, so that the speed information of the driving locomotive corresponding to the driving distance information approaches a preset Speed information.

根據上述實施例之打檔機車耐久的自動測試裝置,是透過控制裝置來控制變檔驅動裝置油門驅動裝置、離合器驅動裝置及煞車驅動裝置打檔機車對應行駛距離資訊之一時速資訊與一預設時速資訊間的關係來作為耐用合格判斷之依據。 According to the above embodiment, the automatic testing device for the endurance of the locomotive is controlled by the control device to control the speed information and the preset information of the driving distance information of the shift driving device throttle driving device, the clutch driving device and the brake driving device. The relationship between the speed information is used as the basis for the durability judgment.

以上關於本發明內容的說明及以下實施方式的說明係用以示範與解釋本發明的原理,並且提供本發明的專利申請範圍更進一步的解釋。The above description of the present invention and the following description of the embodiments are intended to illustrate and explain the principles of the invention, and to provide a further explanation of the scope of the invention.

請參閱圖1至圖3。圖1為根據本發明第一實施例所述之自動測試裝置與打檔機車的方塊示意圖。圖2為圖1之打檔機車之一側的平面示意圖。圖3為圖1之打檔機車之另一側的平面示意圖。 Please refer to Figure 1 to Figure 3. 1 is a block diagram of an automatic test device and a shift locomotive according to a first embodiment of the present invention. 2 is a plan view showing one side of the shift locomotive of FIG. 1. 3 is a plan view showing the other side of the shifting locomotive of FIG. 1.

本實施例之打檔機車耐久的自動測試裝置10,用以裝設於一打檔機車20。打檔機車20具有一油門21、一離合器22、一打檔桿23、一煞車24、一引擎25及一動力輪26。自動測試裝置10是用來取代原本的機車駕駛而讓打檔機車20自動行駛,藉此可透過自動測試裝置10來測試打檔機車20的耐用度。實際上透過自動測試裝置10來自動駕駛打檔機車20時,會將打檔機車20置於一承載台15上。承載台15在動力輪26下方設有動力滾輪16。打檔機車20之動力輪26放置於承載台之動力滾輪16上,以令打檔機車20之動力輪26能帶動動力滾輪16旋轉,且使得動力輪26產生一阻力而在受一負載測試。此外,打檔機車20之前方會放置一氣流產生器30。氣流產生器30所產生之氣流會沿箭頭A所指示之方向吹向打檔機車20,以讓測試條件更貼近實際路況。 The durable automatic test device 10 for the locomotive of the present embodiment is mounted on a locomotive 20. The locomotive 20 has a throttle 21, a clutch 22, a shift lever 23, a brake 24, an engine 25 and a power wheel 26. The automatic test device 10 is used to drive the locomotive 20 automatically in place of the original locomotive driving, whereby the durability of the locomotive 20 can be tested by the automatic test device 10. Actually, when the automatic shifting device 10 is used to automatically drive the shifting locomotive 20, the shifting locomotive 20 is placed on a carrying platform 15. The carrier 15 is provided with a power roller 16 below the power wheel 26. The power wheel 26 of the locomotive 20 is placed on the power roller 16 of the carrier to enable the power wheel 26 of the locomotive 20 to rotate the power roller 16 and cause the power wheel 26 to generate a resistance to be tested by a load. In addition, an airflow generator 30 is placed in front of the locomotive 20. The airflow generated by the airflow generator 30 is directed toward the steering locomotive 20 in the direction indicated by arrow A to bring the test conditions closer to the actual road conditions.

進一步來說,自動測試裝置10包含一動力計位移裝置100、一離合器驅動裝置200、一油門驅動裝置300、一變檔驅動裝置400、一煞車驅動裝置500、一轉速感測器600、一溫度感測器700及一控制裝置800。動力計位移裝置100用以設置於動力滾輪16上,並感測出打檔機車20之一行駛距離資訊,行駛距離資訊包含打檔機車20行走之距離與車速,可由偵測動力滾輪16之RPM換算為打檔機車20之速度,並可偵 測動力滾輪16之轉動圈數,換算為打檔機車20行走之距離。離合器驅動裝置200用以裝設於打檔機車20之離合器22上,並驅動打檔機車20之打檔桿23,以驅動打檔機車20換檔。油門驅動裝置300用以裝設於打檔機車20之油門21把手上,並驅使打檔機車20之油門21把手轉動。變檔驅動裝置400用以裝設於打檔機車20之打檔桿23上,並驅動打檔機車20之打檔桿23。煞車驅動裝置500用以裝設於打檔機車20,並驅動打檔機車20之一煞車24。轉速感測器600用以設置於打檔機車20之引擎25,以感測引擎25的一轉速資訊。溫度感測器700用以裝設於打檔機車20之引擎25,以感測引擎25的一溫度資訊。控制裝置800用以接收行駛距離資訊、轉速資訊及轉速資訊。其中,控制裝置800依行駛距離資訊離合器驅動裝置200、油門驅動裝置300、變檔驅動裝置400及煞車驅動裝置500,以令打檔機車20對應行駛距離資訊之一時速資訊(請暫參閱圖7之細實線)趨近一預設時速資訊(請暫參閱圖7之粗實線)。也就是說,是透過預設時速資訊與實際時速資訊之關係作為監視打檔機車20是否依照預設時速資訊行走,如超出預設時速資訊範圍,可由控制裝置800調整到預設時速資訊之範圍內。詳細測試方式容後一併說明。 Further, the automatic test device 10 includes a power meter displacement device 100, a clutch drive device 200, a throttle drive device 300, a shift drive device 400, a brake drive device 500, a rotational speed sensor 600, and a temperature. The sensor 700 and a control device 800. The dynamometer displacement device 100 is disposed on the power roller 16 and senses the travel distance information of one of the locomotives 20. The travel distance information includes the distance traveled by the locomotive 20 and the vehicle speed, and the RPM of the power roller 16 can be detected. Converted to the speed of the locomotive 20, and can be detected The number of rotations of the power roller 16 is measured and converted into the distance traveled by the locomotive 20. The clutch driving device 200 is mounted on the clutch 22 of the shifting locomotive 20 and drives the shifting lever 23 of the shifting locomotive 20 to drive the shifting locomotive 20 to shift gears. The throttle driving device 300 is mounted on the handle of the throttle 21 of the locomotive 20 and drives the throttle 21 of the locomotive 20 to rotate. The shift driving device 400 is mounted on the shift lever 23 of the shift locomotive 20 and drives the shift lever 23 of the shift locomotive 20. The brake driving device 500 is installed on the shift locomotive 20 and drives one of the shifting locomotives 20 to brake the vehicle 24. The speed sensor 600 is configured to be disposed on the engine 25 of the locomotive 20 to sense a speed information of the engine 25. The temperature sensor 700 is mounted on the engine 25 of the locomotive 20 to sense a temperature information of the engine 25. The control device 800 is configured to receive travel distance information, rotational speed information, and rotational speed information. The control device 800 is based on the travel distance information clutch driving device 200, the throttle driving device 300, the shift driving device 400, and the brake driving device 500, so that the driving locomotive 20 corresponds to one of the travel distance information (please refer to FIG. 7 for details). The thin solid line) approaches a preset speed information (please refer to the thick solid line in Figure 7 for details). That is to say, the relationship between the preset speed information and the actual speed information is used to monitor whether the locomotive 20 travels according to the preset speed information. If the preset speed information range is exceeded, the control device 800 can adjust the range to the preset speed information. Inside. The detailed test method will be explained later.

此外,控制裝置800接收到之溫度資訊或轉速資訊高於一安全值,則控制裝置800用以離合器驅動裝置200、油門驅動裝置300、控制變檔驅動裝置400、煞車驅動裝置500停止作動,以保護打檔機車20之引擎25。其中安全值與打檔機車20之廠牌與型號有關。 In addition, when the temperature information or the rotational speed information received by the control device 800 is higher than a safe value, the control device 800 stops the actuation of the clutch driving device 200, the throttle driving device 300, the control shift driving device 400, and the braking driving device 500. The engine 25 of the locomotive 20 is protected. The safety value is related to the brand and model of the locomotive 20.

更進一步來說,請參閱圖4至圖6。圖4為圖2之變檔驅動裝置的立體示意圖。圖5為圖3之油門驅動裝置的立體示意圖。圖6為圖2之離合器驅動裝置的立體示意圖。 Further, please refer to Figures 4-6. 4 is a perspective view of the shift driving device of FIG. 2. Figure 5 is a perspective view of the throttle driving device of Figure 3. Figure 6 is a perspective view of the clutch driving device of Figure 2;

如圖4所示,離合器驅動裝置200包含一第一架體210、一第一組裝件220、一第一驅動馬達230、一第一傳動件240及一第一掣動件250及一螺帽251。第一組裝件220與第一驅動馬達230皆固定於第一 架體210,帶動第一傳動件240轉動。第一組裝件220為環狀,並用以裝設於打檔機車20之把手上。第一掣動件250與螺帽251固定。第一傳動件240例如為螺桿連接於第一驅動馬達230之輸出軸,且第一傳動件240穿設並嚙合於螺帽251內,使得第一傳動件240轉動而驅動螺帽251與第一掣動件250作直線運動,造成第一掣動件250能夠按壓控制打檔機車20之離合器22之握桿,進而模擬機車駕駛按壓離合器22之握桿,以利換檔動作。 As shown in FIG. 4, the clutch driving device 200 includes a first frame 210, a first assembly 220, a first driving motor 230, a first transmission member 240, a first raking member 250, and a nut. 251. The first assembly 220 and the first driving motor 230 are both fixed to the first The frame body 210 drives the first transmission member 240 to rotate. The first assembly member 220 is annular and is mounted on the handle of the shift locomotive 20. The first damper 250 is fixed to the nut 251. The first transmission member 240 is, for example, a screw coupled to the output shaft of the first drive motor 230, and the first transmission member 240 is bored and engaged in the nut 251 such that the first transmission member 240 rotates to drive the nut 251 and the first The swaying member 250 is linearly moved, so that the first swaying member 250 can press and control the grip of the clutch 22 of the locomotive locomotive 20, thereby simulating the locomotive driving the grip of the pressing clutch 22 to facilitate the shifting action.

如圖5所示,油門驅動裝置300包含一第二驅動馬達310、一轉動件320、一第二掣動件330及一第二傳動件340。轉動件320固定於第二驅動馬達310之軸出軸。第二掣動件330之外形例如為曲形板狀,曲形板狀配合打檔機車20之把手弧度,其用以裝設並貼附固定於油門21之把手上。第二傳動件340例如為金屬線或尼龍線,其銜接轉動件320與第二掣動件330以帶動第二掣動件330轉動,進而模擬機車駕駛轉油門21的動作。 As shown in FIG. 5, the throttle driving device 300 includes a second driving motor 310, a rotating member 320, a second raking member 330, and a second transmitting member 340. The rotating member 320 is fixed to the shaft output shaft of the second drive motor 310. The outer shape of the second swaying member 330 is, for example, a curved plate shape, and the curved plate shape cooperates with the handle arc of the locomotive locomotive 20 for attaching and attaching to the handle of the throttle 21 . The second transmission member 340 is, for example, a metal wire or a nylon wire, which engages the rotating member 320 and the second agitating member 330 to drive the second agitating member 330 to rotate, thereby simulating the action of the locomotive driving the throttle valve 21.

如圖6所示,變檔驅動裝置400包含一第二架體410、一馬達420及一第三掣動件430,第三掣動件430並裝設於第二架體410,第二架體410之另一端孔洞412固定於駕駛踏板上,一第三掣動件430上端兩個孔洞431其中一個孔洞431固定於打檔桿23之檔位踏板上。第三掣動件430受馬達420帶動而旋轉,當第三掣動件430帶動打檔桿23之檔位踏板往下為一檔,往下輕一些為N檔,然後當第三掣動件430帶動打檔桿23之檔位踏板往上為二檔,再往上為三檔,再往上為四檔,再往上為五檔,然後當第三掣動件430帶動打檔桿23之檔位踏板往下為為四檔,再往下為為三檔,再往下為為二檔,再往下為為一檔,構成一個循環換檔。 As shown in FIG. 6 , the shifting drive device 400 includes a second frame 410 , a motor 420 and a third damper 430 . The third damper 430 is mounted on the second frame 410 . The other end hole 412 of the body 410 is fixed to the driving pedal, and one of the two holes 431 at the upper end of the third damper 430 is fixed to the gear pedal of the shift lever 23. The third swaying member 430 is rotated by the motor 420. When the third damper member 430 drives the gear shifting lever 23, the gear pedal is down to the first gear, and the lower gear is the N gear, and then the third swaying member. 430 drives the shift lever 23 to shift the pedal to the second gear, and then to the third gear, and then to the fourth gear, and then to the fifth gear, and then when the third crank member 430 drives the shift lever 23 The gear pedal is down to the fourth gear, and then down to the third gear, then down to the second gear, and then down to the first gear, forming a cyclic shift.

在本實施例中,離合器驅動裝置200、油門驅動裝置300、變檔驅動裝置400及煞車驅動裝置500彼此可相對活動,以共用裝設於不同尺寸之打檔機車。所謂的可相對活動是指各自分離,彼此之間並無直接 相連,僅透過傳輸線和控制裝置800間接相連而已。 In the present embodiment, the clutch driving device 200, the throttle driving device 300, the shift driving device 400, and the brake driving device 500 are relatively movable with each other to share the driving locomotives installed in different sizes. The so-called relative activities mean that they are separated and there is no direct relationship between them. Connected, indirectly connected only through the transmission line and the control device 800.

此外,在實際測試前,可先對自動測試裝置10進行校正動作,依照上述調整至適合之檔位。 In addition, before the actual test, the automatic test device 10 can be first corrected, and adjusted to the appropriate gear position according to the above.

請參閱圖7。圖7為圖1之打檔機車實際測試之距離時速關係的曲線圖。在各裝置皆裝設於打檔機車20,並對自動測試裝置10進行校正後,則可透過自動測試裝置10對打檔機車20進行測試。其測試原理為先在測試軟體內導入一預設距離時速表。預設距離時速表載有打檔機車20合格的行駛距離資訊與時速資訊的關係。接著,啟動自動測試裝置10,控制裝置800則會依行駛距離資訊控制離合器驅動裝置200、油門驅動裝置300、變檔驅動裝置400及煞車驅動裝置500,以令打檔機車20對應行駛距離資訊之一時速資訊(如圖7之細實線)趨近一預設時速資訊(如圖7之粗實線)。若打檔機車20在經過規定距離的測試後,打檔機車20實際的距離時速資訊(如圖7之細實線)趨近預設的距離時速資訊(請暫參閱圖7之粗實線),則代表打檔機車20依照原預設時速資訊作耐用測試。反之,則須調整到原預設時速資訊作耐用測試。 Please refer to Figure 7. Fig. 7 is a graph showing the relationship between the speed and the speed of the actual test of the shifting locomotive of Fig. 1. After each device is installed in the shift locomotive 20 and the automatic test device 10 is calibrated, the locomotive 20 can be tested by the automatic test device 10. The test principle is to first introduce a preset distance speedometer in the test software. The preset distance speedometer carries the relationship between the travel distance information and the speed information of the locomotive 20. Next, the automatic test device 10 is activated, and the control device 800 controls the clutch drive device 200, the throttle drive device 300, the shift drive device 400, and the brake drive device 500 according to the travel distance information, so that the shift locomotive 20 corresponds to the travel distance information. The first-speed information (such as the thin solid line in Figure 7) approaches a preset speed information (as shown by the thick solid line in Figure 7). If the locomotive 20 passes the test of the specified distance, the actual distance speed information of the locomotive 20 (as shown by the thin solid line in Fig. 7) approaches the preset distance speed information (please refer to the thick solid line in Fig. 7 for details) , on behalf of the shifting locomotive 20 for durability testing according to the original preset speed information. On the contrary, it must be adjusted to the original preset speed information for durability testing.

請參閱圖8。圖8為根據本發明第二實施例所述之油門驅動裝置裝設於打檔機車之油門的平面示意圖。 Please refer to Figure 8. Figure 8 is a plan view showing the throttle driving device installed in the throttle of the shifting locomotive according to the second embodiment of the present invention.

本實施例之油門驅動裝置300a包含一油門套筒310a、一第一活動桿320a、第二活動桿330a、一固定架340a及一驅動馬達350a。油門套筒310a套設於打檔機車20之油門21,並透過螺絲或螺栓緊固於油門21。第一活動桿320a之一端固定於油門套筒310a。第二活動桿330a之一端可分離地卡合於第一活動桿320a遠離油門套筒310a之一端。第一活動桿320a與第二活動桿330a,例如透過相匹配第一活動桿320a的內栓槽,與第二活動桿330a的外栓槽桿而可分離地卡合,可適合於不同車型之打檔機車20測試。固定架340a固定於一工作台40上。驅動馬達350a裝設於固定架340a,且驅動馬達350a之輸出軸固定於第二活動桿330a遠離第一活動桿320a之一端。當驅動馬達350a啟動時,驅動馬達350a會透過第一活動桿320a與第二活動桿330a來帶動油門套筒310a轉動,並透過油門套筒310a帶動油門21轉動。The throttle driving device 300a of the present embodiment includes a throttle sleeve 310a, a first movable lever 320a, a second movable lever 330a, a fixed bracket 340a, and a drive motor 350a. The throttle sleeve 310a is sleeved on the throttle 21 of the shift locomotive 20 and fastened to the throttle 21 by screws or bolts. One end of the first movable lever 320a is fixed to the throttle sleeve 310a. One end of the second movable lever 330a is detachably engaged with the first movable lever 320a away from one end of the throttle sleeve 310a. The first movable rod 320a and the second movable rod 330a are detachably engaged with the outer bolt groove of the second movable rod 330a, for example, by matching the inner bolt groove of the first movable rod 320a, and are suitable for different models. The locomotive 20 test. The holder 340a is fixed to a table 40. The driving motor 350a is mounted on the fixing frame 340a, and the output shaft of the driving motor 350a is fixed to one end of the second movable lever 330a away from the first movable lever 320a. When the driving motor 350a is activated, the driving motor 350a drives the throttle sleeve 310a to rotate through the first movable lever 320a and the second movable lever 330a, and drives the throttle 21 to rotate through the throttle sleeve 310a.

值得注意的是,本實施例之第一活動桿320a與第二活動桿330a皆具有一萬向接頭。萬向接頭是為了提升組裝方便性,但並不以此為限,在其他實施例中,第一活動桿320a與第二活動桿330a也可以不具有萬向接頭。It should be noted that the first movable rod 320a and the second movable rod 330a of the embodiment both have a universal joint. The universal joint is for the purpose of improving the assembly convenience, but is not limited thereto. In other embodiments, the first movable rod 320a and the second movable rod 330a may not have a universal joint.

請參閱圖9A與圖9B。圖9A為根據本發明第三實施例所述之變檔驅動的平面示意圖。圖9B為圖9A之另一視角的平面示意圖。Please refer to FIG. 9A and FIG. 9B. 9A is a schematic plan view of a shift drive according to a third embodiment of the present invention. Figure 9B is a plan view of another perspective of Figure 9A.

本實施例之變檔驅動裝置400a包含一支撐架410a、一第一組裝夾420a、一驅動馬達430a、一旋轉桿440a及一第二組裝夾450a。第一組裝夾420a例如為萬能夾鉗,並固定於支撐架410a之一側。第一組裝夾420a夾固於打檔機車20之駕駛踏板。驅動馬達430a固定於支撐架410a之另一側。旋轉桿440a固定於驅動馬達430a之輸出軸。第二組裝夾450a之一端可活動地固定於旋轉桿440a上,第二組裝夾450a之另一端具有一活動夾460a而可分離地夾固於打檔機車20之打檔桿23之檔位踏板上。當驅動馬達430a啟動時,驅動馬達430a會透過旋轉桿440a帶動第二組裝夾450a上抬或下壓打檔桿23之檔位踏板。旋轉桿440a上有設置複數個調整孔441a,可適合於不同車型之打檔機車20,因駕駛踏板與打檔桿23之檔位踏板間之不同距離,將可活動式調整第二組裝夾450a之位置以固定於打檔桿23之檔位踏板上。The shift driving device 400a of the embodiment includes a support frame 410a, a first assembly clip 420a, a drive motor 430a, a rotating rod 440a and a second assembly clip 450a. The first assembly clip 420a is, for example, a universal clamp and is fixed to one side of the support frame 410a. The first assembly clip 420a is clamped to the steering pedal of the shift locomotive 20. The drive motor 430a is fixed to the other side of the support frame 410a. The rotating lever 440a is fixed to the output shaft of the drive motor 430a. One end of the second assembly clip 450a is movably fixed to the rotating rod 440a, and the other end of the second assembly clip 450a has a movable clip 460a detachably clamped to the shift pedal of the shift lever 23 of the shift locomotive 20 on. When the driving motor 430a is activated, the driving motor 430a drives the second assembly clip 450a to raise or lower the gear pedal of the shift lever 23 through the rotating lever 440a. The rotating rod 440a is provided with a plurality of adjusting holes 441a, which can be adapted to the shifting locomotive 20 of different models, and the second assembling clip 450a can be movablely adjusted due to the different distance between the driving pedal and the shifting pedal of the shifting lever 23. The position is fixed to the gear pedal of the shift lever 23.

根據上述實施例之打檔機車耐久的自動測試裝置,是透過控制裝置來控制變檔驅動裝置油門驅動裝置、離合器驅動裝置及煞車驅動裝置打檔機車對應行駛距離資訊之一時速資訊與一預設時速資訊間的關係來作耐用測試。According to the above embodiment, the automatic testing device for the endurance of the locomotive is controlled by the control device to control the speed information and the preset information of the driving distance information of the shift driving device throttle driving device, the clutch driving device and the brake driving device. The relationship between speed information is used for durability testing.

再者,變檔驅動裝置、油門驅動裝置、離合器驅動裝置及煞車驅動裝置彼此可相對活動,以共用裝設於不同尺寸之打檔機車。 Furthermore, the shift drive device, the throttle drive device, the clutch drive device and the brake drive device are relatively movable to each other to share the shift locomotives of different sizes.

雖然本發明以前述之較佳實施例揭露如上,然其並非用以限定本發明,任何熟習相像技藝者,在不脫離本發明之精神和範圍內,當可作些許之更動與潤飾,因此本發明之專利保護範圍須視本說明書所附之申請專利範圍所界定者為準。While the present invention has been described above in terms of the preferred embodiments thereof, it is not intended to limit the invention, and the invention may be modified and modified without departing from the spirit and scope of the invention. The patent protection scope of the invention is subject to the definition of the scope of the patent application attached to the specification.

10‧‧‧自動測試裝置 10‧‧‧Automatic test device

15‧‧‧承載台 15‧‧‧Loading station

16‧‧‧動力滾輪 16‧‧‧Power roller

20‧‧‧打檔機車 20‧‧‧shift locomotive

21‧‧‧油門 21‧‧‧ throttle

22‧‧‧離合器 22‧‧‧Clutch

23‧‧‧打檔桿 23‧‧‧shift lever

24‧‧‧煞車 24‧‧‧煞车

25‧‧‧引擎 25‧‧‧ engine

26‧‧‧動力輪 26‧‧‧Power Wheel

30‧‧‧氣流產生器 30‧‧‧Airflow generator

40‧‧‧工作台 40‧‧‧Workbench

100‧‧‧動力計位移裝置 100‧‧‧Power Meter Displacement Device

200‧‧‧離合器驅動裝置 200‧‧‧Clutch drive

210‧‧‧第一架體 210‧‧‧First body

220‧‧‧第一組裝件 220‧‧‧First assembly

230‧‧‧第一驅動馬達 230‧‧‧First drive motor

240‧‧‧第一傳動件 240‧‧‧First transmission parts

250‧‧‧第一掣動件 250‧‧‧First moving piece

310      第二驅動馬達 320      轉動件 330      第二掣動件 340      第三傳動件 300a     油門驅動裝置 310a     油門套筒 320a     第一活動桿 321a     內栓槽 330a     第二活動桿 331a     外栓槽桿 340a     固定架 350a     驅動馬達 400      變檔驅動裝置 410      第二架體 420      伸縮驅動件 430      第三掣動件 400a     變檔驅動裝置 410a     支撐架 420a     第一組裝夾 430a     驅動馬達 440a     旋轉桿 441a     調整孔 450a第二組裝夾 460a     活動夾 500      煞車驅動裝置 600      轉速感測器 700      溫度感測器 800      控制裝置 A         方向310 second drive motor 320 rotating member 330 second tilting member 340 third transmitting member 300a throttle driving device 310a throttle sleeve 320a first movable rod 321a inner bolt groove 330a second movable rod 331a outer bolt rod 340a fixed bracket 350a Drive motor 400 shift drive unit 410 second frame 420 telescopic drive member 430 third tilt member 400a shift drive unit 410a support frame 420a first assembly clip 430a drive motor 440a rotary lever 441a adjustment hole 450a second assembly clip 460a Activity clamp 500 brake drive 600 speed sensor 700 temperature sensor 800 control unit A direction

圖1為根據本發明第一實施例所述之自動測試裝置與打檔機車的方塊示意圖。 1 is a block diagram of an automatic test device and a shift locomotive according to a first embodiment of the present invention.

圖2為圖1之打檔機車之一側的平面示意圖。 2 is a plan view showing one side of the shift locomotive of FIG. 1.

圖3為圖1之打檔機車之另一側的平面示意圖。 3 is a plan view showing the other side of the shifting locomotive of FIG. 1.

圖4為圖2之變檔驅動裝置的立體示意圖。 4 is a perspective view of the shift driving device of FIG. 2.

圖5為圖3之油門驅動裝置的立體示意圖。 Figure 5 is a perspective view of the throttle driving device of Figure 3.

圖6為圖2之離合器驅動裝置的立體示意圖。 Figure 6 is a perspective view of the clutch driving device of Figure 2;

圖7為圖1之打檔機車實際測試之距離時速關係的曲線圖。 Fig. 7 is a graph showing the relationship between the speed and the speed of the actual test of the shifting locomotive of Fig. 1.

圖8為根據本發明第二實施例所述之油門驅動裝置裝設於打檔機車之油門的平面示意圖。 Figure 8 is a plan view showing the throttle driving device installed in the throttle of the shifting locomotive according to the second embodiment of the present invention.

圖9A為根據本發明第三實施例所述之變檔驅動的平面示意圖。 9A is a schematic plan view of a shift drive according to a third embodiment of the present invention.

圖9B為圖9A之另一視角的平面示意圖。 Figure 9B is a plan view of another perspective of Figure 9A.

10‧‧‧自動測試裝置 10‧‧‧Automatic test device

20‧‧‧打檔機車 20‧‧‧shift locomotive

21‧‧‧油門 21‧‧‧ throttle

22‧‧‧離合器 22‧‧‧Clutch

23‧‧‧打檔桿 23‧‧‧shift lever

24‧‧‧煞車 24‧‧‧煞车

25‧‧‧引擎 25‧‧‧ engine

26‧‧‧動力輪 26‧‧‧Power Wheel

100‧‧‧動力計位移裝置 100‧‧‧Power Meter Displacement Device

200‧‧‧離合器驅動裝置 200‧‧‧Clutch drive

300‧‧‧油門驅動裝置 300‧‧‧ throttle drive

400‧‧‧變檔驅動裝置 400‧‧  variable speed drive

500‧‧‧煞車驅動裝置 500‧‧‧ brake drive

600‧‧‧轉速感測器 600‧‧‧Speed Sensor

700‧‧‧溫度感測器 700‧‧‧temperature sensor

800‧‧‧控制裝置 800‧‧‧Control device

Claims (14)

一種打檔機車耐久的自動測試裝置,包含:一動力計位移裝置,該動力計位移裝置用以設置於一打檔機車之一動力滾輪上,並感測出該打檔機車之一行駛距離資訊;一變檔驅動裝置,該變檔驅動裝置裝設於該打檔機車之一打檔桿上,並驅動該打檔機車之該打檔桿,以驅動該打檔機車換檔;一油門驅動裝置,該油門驅動裝置用裝設於該打檔機車之一油門上,並驅使該打檔機車之該油門轉動;一離合器驅動裝置,該離合器驅動裝置用以裝設於該打檔機車之一離合器之一握桿上,並驅動該打檔機車之該離合器;一煞車驅動裝置,該煞車驅動裝置用以裝設於該打檔機車之一煞車上,並驅動該打檔機車之該煞車;一控制裝置,該控制裝置用以接收該行駛距離資訊,並依該行駛距離資訊控制該變檔驅動裝置、該油門驅動裝置、該離合器驅動裝置及該煞車驅動裝置,以令該打檔機車對應該行駛距離資訊之一時速資訊趨近一預設時速資訊;其中該離合器驅動裝置包含一第一架體、一第一組裝件、一第一驅動馬達、一第一傳動件及一第一掣動件,該第一組裝件與該第一驅動馬達皆固定於該第一架體,該第一掣動件用以裝設於該打檔桿,該第一傳動件連接於該第一驅動馬達之輸出軸並穿設該第一掣動件,使該第一掣動件受該第一傳動件之帶動而相對該第一架體位移。 The invention relates to a durable automatic test device for a locomotive, comprising: a power meter displacement device, which is arranged on a power roller of one of the locomotives and senses a driving distance information of the one of the locomotives a shifting drive device mounted on one of the shifting locomotives and driving the shifting lever of the shifting locomotive to drive the shifting locomotive to shift; a throttle drive a throttle drive device mounted on one of the throttles of the shift locomotive and driving the throttle of the shift locomotive to rotate; a clutch drive device for mounting on one of the shift locomotives One of the clutches is gripped on the rod and drives the clutch of the shifting locomotive; a brake driving device is mounted on one of the driving locomotives and drives the braking of the driving locomotive; a control device for receiving the travel distance information, and controlling the shift drive device, the throttle drive device, the clutch drive device, and the brake drive device according to the travel distance information The speed information of the driving locomotive corresponding to the driving distance information approaches a preset speed information; wherein the clutch driving device comprises a first frame body, a first assembly part, a first driving motor, and a first a first driving member and the first driving motor are fixed to the first frame body, and the first rocking member is mounted on the gear bar, the first The transmission member is coupled to the output shaft of the first drive motor and passes through the first oscillating member, so that the first oscillating member is displaced relative to the first frame by the first transmission member. 如請求項1所述之打檔機車耐久的自動測試裝置,更包含一轉速感測器,該轉速感測器用以設置於該打檔機車之一引擎,以感測該引擎的一轉速資訊。 The automatic test device for the durable end of the locomotive according to claim 1, further comprising a speed sensor, wherein the speed sensor is disposed on one of the engines of the locomotive to sense a speed information of the engine. 如請求項2所述之打檔機車耐久的自動測試裝置,更包含一溫度感測器,該溫度感測器用以裝設於該打檔機車之該引擎,以感測該引擎的一溫度資訊。 The automatic testing device for the durable end of the locomotive according to claim 2, further comprising a temperature sensor, wherein the temperature sensor is installed on the engine of the locomotive to sense a temperature information of the engine . 如請求項3所述之打檔機車耐久的自動測試裝置,其中當該引擎的溫度資訊或轉速資訊高於一安全值,則該控制裝置用以控制該變檔驅動裝置、該油門驅動裝置、該離合器驅動裝置、該煞車驅動裝置停止作動。 The automatic testing device for the durable end of the locomotive according to claim 3, wherein when the temperature information or the rotational speed information of the engine is higher than a safe value, the control device is configured to control the shift driving device, the throttle driving device, The clutch driving device and the brake driving device are stopped. 如請求項1所述之打檔機車耐久的自動測試裝置,其中該變檔驅動裝置、該油門驅動裝置、該離合器驅動裝置及該煞車驅動裝置彼此可相對活動。 An automatic test apparatus for a durable end of a locomotive according to claim 1, wherein the shift drive, the throttle drive, the clutch drive, and the brake drive are movable relative to each other. 如請求項1所述之打檔機車耐久的自動測試裝置,其中該控制裝置依據該預設時速資訊與該實際時速資訊之關係作為監視調整用。 The automatic testing device for the durable end of the locomotive according to claim 1, wherein the control device uses the relationship between the preset speed information and the actual speed information as a monitoring adjustment. 如請求項1所述之打檔機車耐久的自動測試裝置,其中該第一傳動件為螺桿。 The durable automatic testing device for a locomotive according to claim 1, wherein the first transmission member is a screw. 如請求項1所述之打檔機車耐久的自動測試裝置,其中該油門驅動裝置包含一第二驅動馬達、一轉動件、一第二掣動件及一第二傳動件,該轉動件固定於該第二驅動馬達之軸出軸,該第二掣動件用以裝設於該油門把手上,該第二傳動件銜接該轉動件與該第二掣動件以帶動該第二掣動件轉動。 The automatic testing device for the durable end of the locomotive according to claim 1, wherein the throttle driving device comprises a second driving motor, a rotating member, a second raking member and a second transmitting member, the rotating member is fixed to a shaft of the second driving motor, the second swaying member is mounted on the throttle handle, the second transmission member engaging the rotating member and the second swaying member to drive the second swaying member Turn. 如請求項8所述之打檔機車耐久的自動測試裝置,其中該第二傳動件為線。 The durable automatic test apparatus for a locomotive according to claim 8, wherein the second transmission member is a wire. 如請求項8所述之打檔機車耐久的自動測試裝置,其中該變檔驅動裝置包含一第二架體、一伸縮驅動件及一第三掣動件,該伸縮驅動件裝設於該第二架體,該第三掣動件設置於該伸縮驅動件,以受該伸縮驅動件帶動而相對該第二架體位移,且該伸縮驅動件用以裝設於該離合器。 The automatic test apparatus for the endurance of the locomotive according to claim 8, wherein the shift drive device comprises a second frame body, a telescopic drive member and a third sliding member, wherein the telescopic drive member is mounted on the The second frame is disposed on the telescopic driving member to be displaced relative to the second frame by the telescopic driving member, and the telescopic driving member is mounted on the clutch. 一種打檔機車耐久的自動測試裝置,包含:一動力計位移裝置,該動力計位移裝置用以設置於一打檔機車之一動力滾輪上,並感測出該打檔機車之一行駛距離資訊;一變檔驅動裝置,該變檔驅動裝置裝設於該打檔機車之一打檔桿上,並驅動該打檔機車之該打檔桿,以驅動該打檔機車換檔;一油門驅動裝置,該油門驅動裝置用裝設於該打檔機車之一油門上,並驅使該打檔機車之該油門轉動;一離合器驅動裝置,該離合器驅動裝置用以裝設於該打檔機車之一離合器之一握桿上,並驅動該打檔機車之該離合器;一煞車驅動裝置,該煞車驅動裝置用以裝設於該打檔機車之一煞車上,並驅動該打檔機車之該煞車;一控制裝置,該控制裝置用以接收該行駛距離資訊,並依該行駛距離資訊控制該變檔驅動裝置、該油門驅動裝置、該離合器驅動裝置及該煞車驅動裝置,以令該打檔機車對應該行駛距離資訊之一時速資訊趨近一預設時速資訊; 其中該油門驅動裝置包含一油門套筒、一第一活動桿、第二活動桿、一固定架及一驅動馬達,該油門套筒套設於該打檔機車之該油門,該第一活動桿之一端固定於該油門套筒,該第二活動桿之一端可分離地卡合於該第一活動桿遠離該油門套筒之一端,該驅動馬達裝設於該固定架,且該驅動馬達之輸出軸固定於該第二活動桿遠離該第一活動桿之一端。 The invention relates to a durable automatic test device for a locomotive, comprising: a power meter displacement device, which is arranged on a power roller of one of the locomotives and senses a driving distance information of the one of the locomotives a shifting drive device mounted on one of the shifting locomotives and driving the shifting lever of the shifting locomotive to drive the shifting locomotive to shift; a throttle drive a throttle drive device mounted on one of the throttles of the shift locomotive and driving the throttle of the shift locomotive to rotate; a clutch drive device for mounting on one of the shift locomotives One of the clutches is gripped on the rod and drives the clutch of the shifting locomotive; a brake driving device is mounted on one of the driving locomotives and drives the braking of the driving locomotive; a control device for receiving the travel distance information, and controlling the shift drive device, the throttle drive device, the clutch drive device, and the brake drive device according to the travel distance information To make the play-speed locomotive to be one of the driving speed information from the information reaching a preset speed information; The throttle driving device includes a throttle sleeve, a first movable rod, a second movable rod, a fixed frame and a driving motor, and the throttle sleeve is sleeved on the throttle of the driving locomotive, the first movable rod One end is fixed to the throttle sleeve, and one end of the second movable rod is detachably engaged with the first movable rod away from one end of the throttle sleeve, the drive motor is mounted on the fixed frame, and the drive motor is The output shaft is fixed to the second movable rod away from one end of the first movable rod. 如請求項11所述之打檔機車耐久的自動測試裝置,其中該第一活動桿具有一內栓槽,與第二活動桿具有一外栓槽桿,該內栓槽可分離地卡合該外栓槽桿。 The automatic testing device for the durable end of the locomotive according to claim 11, wherein the first movable rod has an inner bolt groove, and the second movable rod has an outer bolt groove, and the inner bolt groove is detachably engaged with the inner rod External bolting rod. 一種打檔機車耐久的自動測試裝置,包含:一動力計位移裝置,該動力計位移裝置用以設置於一打檔機車之一動力滾輪上,並感測出該打檔機車之一行駛距離資訊;一變檔驅動裝置,該變檔驅動裝置裝設於該打檔機車之一打檔桿上,並驅動該打檔機車之該打檔桿,以驅動該打檔機車換檔;一油門驅動裝置,該油門驅動裝置用裝設於該打檔機車之一油門上,並驅使該打檔機車之該油門轉動;一離合器驅動裝置,該離合器驅動裝置用以裝設於該打檔機車之一離合器之一握桿上,並驅動該打檔機車之該離合器;一煞車驅動裝置,該煞車驅動裝置用以裝設於該打檔機車之一煞車上,並驅動該打檔機車之該煞車;一控制裝置,該控制裝置用以接收該行駛距離資訊,並依該行駛距離資訊控制該變檔驅動裝置、該油門驅動裝置、該離合器驅動裝置及該 煞車驅動裝置,以令該打檔機車對應該行駛距離資訊之一時速資訊趨近一預設時速資訊;其中,該變檔驅動裝置包含一支撐架、一第一組裝夾、一驅動馬達、一旋轉桿及一第二組裝夾,該第一組裝夾固定於該支撐架之一側,且該第一組裝夾係可夾固於該打檔機車之駕駛踏板上,該驅動馬達固定於該支撐架之另一側,該旋轉桿固定於該驅動馬達之輸出軸,該第二組裝夾之一端可活動地固定於該旋轉桿上,該第二組裝夾之另一端夾固於該打檔機車之該打檔桿之檔位踏板上。 The invention relates to a durable automatic test device for a locomotive, comprising: a power meter displacement device, which is arranged on a power roller of one of the locomotives and senses a driving distance information of the one of the locomotives a shifting drive device mounted on one of the shifting locomotives and driving the shifting lever of the shifting locomotive to drive the shifting locomotive to shift; a throttle drive a throttle drive device mounted on one of the throttles of the shift locomotive and driving the throttle of the shift locomotive to rotate; a clutch drive device for mounting on one of the shift locomotives One of the clutches is gripped on the rod and drives the clutch of the shifting locomotive; a brake driving device is mounted on one of the driving locomotives and drives the braking of the driving locomotive; a control device for receiving the travel distance information, and controlling the shift drive device, the throttle drive device, the clutch drive device and the driving distance information according to the travel distance information The brake driving device is configured to make the speed information of the driving locomotive corresponding to the driving distance information approach a preset speed information; wherein the shift driving device comprises a support frame, a first assembly clip, a driving motor, and a a rotating rod and a second assembly clip, the first assembly clip is fixed to one side of the support frame, and the first assembly clip is clamped to a driving pedal of the driving locomotive, and the driving motor is fixed to the support On the other side of the frame, the rotating rod is fixed to the output shaft of the driving motor, one end of the second assembling clip is movably fixed to the rotating rod, and the other end of the second assembling clip is clamped to the driving locomotive The shift lever is on the gear pedal. 如請求項13所述之打檔機車耐久的自動測試裝置,其中該旋轉桿上有設置複數個調整孔,該第二組裝夾可活動地固定於該些調整孔之一,以活動地調整該第二組裝夾之位置。 The automatic testing device for the durable end of the locomotive according to claim 13, wherein the rotating rod is provided with a plurality of adjusting holes, and the second assembling clip is movably fixed to one of the adjusting holes to actively adjust the The position of the second assembly clip.
TW104137630A 2015-11-13 2015-11-13 Automatic driving system for manual transmission scooter TWI588462B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
TW104137630A TWI588462B (en) 2015-11-13 2015-11-13 Automatic driving system for manual transmission scooter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW104137630A TWI588462B (en) 2015-11-13 2015-11-13 Automatic driving system for manual transmission scooter

Publications (2)

Publication Number Publication Date
TW201716763A TW201716763A (en) 2017-05-16
TWI588462B true TWI588462B (en) 2017-06-21

Family

ID=59366997

Family Applications (1)

Application Number Title Priority Date Filing Date
TW104137630A TWI588462B (en) 2015-11-13 2015-11-13 Automatic driving system for manual transmission scooter

Country Status (1)

Country Link
TW (1) TWI588462B (en)

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1621990A (en) * 2004-12-22 2005-06-01 东南大学 Gas electric hybrid type driving robot for automobile test
TW200528699A (en) * 2004-02-17 2005-09-01 Cycling & Health Tech Ind R&D Automobile performance testing method and device
CN1847818A (en) * 2006-01-12 2006-10-18 中国兵器装备集团摩托车检测技术研究所 Automatic simulating unmanned motorcycle driving system
TW200734620A (en) * 2005-09-26 2007-09-16 Kokusai Keisokuki Kk Traveling test apparatus
CN102393308A (en) * 2011-09-07 2012-03-28 中国汽车技术研究中心 Driving robot used for automobile test
TWM432830U (en) * 2012-03-12 2012-07-01 Ming-Shang Fang Structure of motorcycle power testing device
CN102788702A (en) * 2011-05-20 2012-11-21 上海汽车集团股份有限公司 Road simulation test bed

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TW200528699A (en) * 2004-02-17 2005-09-01 Cycling & Health Tech Ind R&D Automobile performance testing method and device
CN1621990A (en) * 2004-12-22 2005-06-01 东南大学 Gas electric hybrid type driving robot for automobile test
TW200734620A (en) * 2005-09-26 2007-09-16 Kokusai Keisokuki Kk Traveling test apparatus
CN1847818A (en) * 2006-01-12 2006-10-18 中国兵器装备集团摩托车检测技术研究所 Automatic simulating unmanned motorcycle driving system
CN102788702A (en) * 2011-05-20 2012-11-21 上海汽车集团股份有限公司 Road simulation test bed
CN102393308A (en) * 2011-09-07 2012-03-28 中国汽车技术研究中心 Driving robot used for automobile test
TWM432830U (en) * 2012-03-12 2012-07-01 Ming-Shang Fang Structure of motorcycle power testing device

Also Published As

Publication number Publication date
TW201716763A (en) 2017-05-16

Similar Documents

Publication Publication Date Title
CN100585354C (en) Torque detection device for automobile seat angle adjuster
KR20100056377A (en) Simulation wheel and vehicle testing apparatus
WO2011104968A1 (en) Simulated wheel device and vehicle testing device
CN105352744A (en) Automobile suspension rack detection table and detection method
US10417930B1 (en) Vehicle driving simulator with pressure sensitive handlebar input sensor
CN107907331B (en) Wheel hub bearing rigidity testing machine
CN202903399U (en) A gyroscopic moment and axial clearance measuring machine of a crankshaft
CN101806659B (en) Durability test bed of automobile steering column lower bearing
CN201697740U (en) Device for measuring braking force of low-speed and high-torque engineering vehicle
CN106596138B (en) Electronic accelerator pedal performance online test bench
SE1650310A1 (en) Measuring Device for Assessing a Torque Parameter of a Vehicle and Method for Assessing a Torque Parameter of a Vehicle
TWI588462B (en) Automatic driving system for manual transmission scooter
KR101168999B1 (en) Sensing apparatus for pedal effort
CN205898470U (en) Vehicle comprehensive properties detecting system
US11506551B2 (en) Method and apparatus for dynamometer testing of a motor vehicle
KR20120133187A (en) Endurance testing apparatus for suspension
CN205120383U (en) Tire test atress platform
CN203287173U (en) Manual spring tension-compression testing machine
CN202471005U (en) Portable coordinate measuring machine swinging joint with balance mechanism
CN105953966A (en) Pedal force characteristic test bench
CN203561493U (en) A pedal durableness measuring apparatus
CN100561171C (en) Detector for motorcycle operation stability
CN203116968U (en) Drum-type vehicle brake detection apparatus
CN207456786U (en) Two-wheeled motor vehicle brake test device
CN104251780A (en) Four-wheel dynamic positioning axle distance measuring device