제품 설명
제품 설명
오토바이 체인은 40Mn, 30CrMnTi, 20Mn과 같은 우수한 강철로 제작됩니다. 고정밀 기계 및 장비를 사용하여 스탬핑, 절단, 롤링, 냉간 단조 등의 공정을 거친 후, 등온 탄질화 열처리로 강화하고 방청 처리를 합니다. 마지막으로, 저장성에서 수입한 자동 조립 및 검사 라인을 통해 조립, 리벳팅, 예비 인발 및 검사를 거쳐 모든 체인이 우수한 성능을 발휘하도록 보장합니다.
오토바이 스프로킷은 20CrMnTi, 1045 등의 고품질 강철로 제작됩니다. 고정밀 스탬핑, 레벨링, 선삭, 밀링 등의 공정을 거친 후 고온 담금질로 강화하고, 쇼트 블라스팅 후 전기 도금, 스프레이 도장 등의 표면 처리를 합니다.
상세 사진
| 브라질 | AX100, BIZ125, BIZ98/00, C70, C90, C100, CB250, CB400, CBR450, CBX150, CBX200, CBX250, CD100, CG125, CG150, CRYPTON, DREAM, DS80, DT100, DT125, DT200, FAN125, FD115, FR80, FS80, G7S/KW100, HUNTER125, JOG CY50, KMX125/KTZ, LB80, MAX125, MB100, NX150, NXR150, POP100, RD125, RD135, RDZ125, RDZ135, RX100, RX100/125 RX115/135, TITAN150, TITAN2000, TS100ER, TSZCN125, V80, WEB NEW, XL125, XL185, XLR125, XR200, XR200R, XR250, XRE300, XTZ125 06/07, YER115, YER125, YES125 |
| 아르헨티나 | AX100, AXIS90, C70, C90, C100, C110, CB250, CBX150, CBX200, CD110, CG125 TODAY, CRYPTON, DAELTM, DAX70, DT125, ECONO C90 LUXE, ELITE50, GY6-50, GY6-60, GY6-80, GY6-100, GY6-125, GY6-150, MAX100, NXR125, NX150, RX100, SMASH, STROM125, TITAN150, TITAN99, TITAN2000, YBR125, V80, WAVE110, XLR125, XR200R, XR250, ZANELLA200 |
| 콜럼비아 | ACTIVE110, AKT110, AK125, AKT125, AX100, AX125, AXIS90, BIZ, BOXER CT100, BWS125, C50, C70/CD70/JH70, C90/CD90/JH90, C100, C110, CB150, CBF150, CD100, CG125, CG150, CG200, CICLON125, CRYPTON, CT100, CRUX, DISCOVER100, DISCOVER135, DT125, DT125K, ECO, EM125, EN125, FD115, FR50, FR80, FXD125, GN125, GN125H, GRAND, GS125 GSD-16LIBERO, GSX, GY6-150, GY6-200, HERO, JD100, JL110MIX, KW100, LB80, MT90/V50, PULSAR, RX100, RX115, RX125, RX135, SMASH110, SRZ150, TIGER, TITAN99, TITAN150, TR125, TS/CN125, TS/CR125, V50, V80, WY147, XF90, XF125, XL125, XL185, XR200, YBR125 |
| 아프리카 | AG100, AP125-9G, AP150, A100, AX100, BAJ100, BAJ205, BAJ3W, BS125, C50, C75, CB110, CB125, CB150, CD100, CD110, CG125, CG150, CG200, CT100, DT125, FR80, GK125, JH70, K90, KYMCO, MB100, QLINK RC100, RE205, RX115, RX125, RX135, RZ100, V50, V80, SY125, TVS125, TVS160, YB100 |
| 인도 | 액티바, 아파치, 바자즈 CT100DLX, 바자즈 디스커버, 바자즈 펄서, CBZ 스타, CD100, CD-CLEL AX, CRUX, CT100, DASHAION NEW MODEL, DISCOVER135, ENT, EWIRE, FIERO F2, KB-4S, KRZIMA-R, LIBG-5, NXV, PASHAION, PLATINA100, PLATINA150, PULSAR, R15, SCOOTY PEP, SPLANDER, STAR, SYARCTS, SUPEX SPLINDG, TVS GLX, TVS VICTOR, VICTOR, VLAMEAR, XCD125, XLS |
| 필리핀 제도 | AURA110, B120, BARAKO, C100, C70DD, CG125, CRYPTON, CRYPTON-Z/X1, DT125, G7S, HAWK1 50-2, HD3, MIO, MSX125S/ZESTX110-1, RAIDER150, RS100, SAP110/MSX125-1, SHOGUN PRO, 쇼군/쇼군125, 스매시, 스타-X 125, 스타-X 150/155(ZS), 스타-X 155(JL), STX125, TM110S, WAVE 100R, WAVE110, WAVE125, WELL 125R, WIND125, X-120, X4/GP125, X-PLORER-Z 200 신제품 XRM, YL2 DX, YL2GF, ZEST X110-2/WELL 125S |
| 인도네시아 공화국 | 앱솔루트 레보, 알파/포스-1, 아스트레아/CBDDA, 비트, 블레이드, C7000, C7OMK 7 라인, CB100, CG125, FR80, GL100, GLK, GLPRO, GL PRO CDI, GLPRO NEOTECH, GRAND, JUPITER-Z, KARISMA, KAZE, L2SN, MEGA PRO NEW 2007, MIO SOUL, MIO/JUPITER MX, NINJA, PRIMA, PX150, RC110, RC80, REVO, RG110, RX100, RXK NEW 2003, RXK/RXK NEW, RXS/RXKING |
| 중동 | AN125, AN150, BAJAJ150, BWS50, BWS100, CG250, CB250, CB150, DIO50 ZX, DT125, GS50, GY6, JH70, JOG50, JOG70, KAB, KS4, KVB110,L110 A, MIO125, MIO150 2V, MIO150 4V, RE205, RX135, SYM125, SYM150, UZ125, UZ/V125, VINO 50, WH100, WH125, YP250, ZY100, ZY125 |
| 칠면조 | ACTIVA, AN125, C110, CD70, CD100, CD110, CM125, CUB, CUB LIF3VALF, CUB110, CG125, CG150, CG200, CG250, SCT125, SCT150, CBF125, CBF150, GY6, FIZY, SPACY, WH100, WH125, WAVE110, YBR125 |
| 말레이시아 | C70, C70Z, EG110, EX5, EX5 클래스, FR80, GBO, GBO-J, KISS II, KR150, KRISS, LC35, MZ125, RC110/RG110, RC80, RXS, RXZ, SRL110, TZM150, WAVE 100, WAVE 125, Y 100/Y110, Y 125Z, Y80 |
| 태국 | A100SR, AX100, BEAT, BEST, C50K2, C70, DASH, DREAM, DT125, FR8ON, JR120, JUXEDO, KAZE, KR150-6, KS150-4/SERPICO, LS125, MIO, NOVAS, RC100/RC80, RXS, SMASH, SONIC, TENA, VR150, WAVE110, WAVE125, Y100, Y80M |
회사 소개
팀고 I&E 유한회사(항저우)는 제조, 무역 및 공급을 통합하는 전문 기업입니다. 1996년에 설립된 팀고는 이전에는 LZNF라는 이름으로 알려졌으며, 자동차 부품, 식품 생산 및 관련 서비스의 수출입 및 국내 무역을 주력 사업으로 하고 있습니다. 또한 ISO9001:2000 품질경영시스템 인증을 획득했습니다.
팀고는 오랜 역사와 높은 전문성, 강력한 기술력을 자랑하는 뛰어난 제조업체이자 수출업체입니다. 또한 고객의 샘플이나 도면에 따라 신제품을 개발하는 데에도 탁월한 역량을 보유하고 있습니다. 현재 당사 제품은 남미, 아시아, 아프리카 등 여러 시장에서 높은 인기를 누리고 있습니다.
저희 회사는 "사람 중심, 고객 중심, 정직성 최우선, 성과 중시"라는 원칙을 고수합니다. 상호 이익을 추구하는 목표를 달성하기 위해 고객의 시간과 공간을 절약하고 시장 점유율을 확보하는 데 최선을 다하겠습니다. 풍부한 자원과 탁월한 서비스로 고객의 높은 기대를 충족시켜 드릴 것을 약속드립니다.
저희를 믿고 선택하시는 것은 당신이 지금까지 내린 가장 현명한 선택이 될 것입니다!
포장 및 배송
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| 유형: | 오토바이 변속기 |
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| 인증: | ISO9001:2000 |
| 재료: | 강철 |
| 샘플: |
US$ 4개입
1개 (최소 주문 수량) | 주문 샘플 |
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| 맞춤 설정: |
사용 가능
| 맞춤형 요청 |
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.shipping-cost-tm .tm-status-off{background: none;padding:0;color: #1470cc}
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배송비:
단위당 예상 운송비. |
배송비 및 예상 배송 시간에 관한 정보입니다. |
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| 결제 방법: |
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초기 납부금 전액 지불 |
| 통화: | 미국$ |
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| 반품 및 환불: | 제품 수령 후 최대 30일 이내에 환불을 신청할 수 있습니다. |
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Calculating Torque Requirements for a wheel sprocket Assembly
Calculating the torque requirements for a wheel sprocket assembly involves considering various factors that contribute to the torque load. The torque requirement is crucial for selecting the appropriate motor or power source to drive the system effectively. Here’s a step-by-step guide:
- 1. Determine the Load Torque: Identify the torque required to overcome the resistance or load in the system. This includes the torque needed to move the load, overcome friction, and accelerate the load if applicable.
- 2. Identify the Sprocket Radius: Measure the radius of the sprocket (distance from the center of the sprocket to the point of contact with the chain or belt).
- 3. Calculate the Tension in the Chain or Belt: If using a chain or belt drive, calculate the tension in the chain or belt. Tension affects the torque required for power transmission.
- 4. Account for Efficiency Losses: Consider the efficiency of the system. Not all the input power will be converted into output power due to friction and other losses. Account for this efficiency in your calculations.
- 5. Use the Torque Equation: The torque (T) can be calculated using the following equation:
T = (Load Torque × Sprocket Radius) ÷ (Efficiency × Tension)
It’s essential to use consistent units of measurement (e.g., Newton meters or foot-pounds) for all values in the equation.
Remember that real-world conditions may vary, and it’s advisable to add a safety factor to your calculated torque requirements to ensure the system can handle unexpected peak loads or variations in operating conditions.

Choosing the Right Material for a Sprocket to Ensure Longevity
Choosing the right material for a sprocket is crucial to ensure its longevity and reliable performance in a given application. The material selection depends on various factors such as load, speed, operating environment, and budget. Here are some common materials used for sprockets and their considerations:
- 강철: Steel sprockets are widely used in a wide range of applications due to their excellent strength, durability, and wear resistance. They are suitable for heavy-duty and high-speed operations. Different grades of steel, such as carbon steel or alloy steel, offer varying levels of hardness and strength.
- 스테인리스 스틸: Stainless steel sprockets are preferred when corrosion resistance is essential, making them suitable for applications where the sprocket is exposed to moisture, chemicals, or outdoor elements. They are commonly used in food processing, pharmaceutical, and marine industries.
- Cast Iron: Cast iron sprockets offer good wear resistance and are often used in low to medium-speed applications. They are cost-effective and provide excellent performance in less demanding conditions.
- 플라스틱: Plastic sprockets are lightweight and corrosion-resistant. They are commonly used in applications where low noise, self-lubrication, and resistance to chemicals or moisture are required. However, they have limited load-carrying capacity and may not be suitable for heavy-duty applications.
- 알류미늄: Aluminum sprockets are lightweight and commonly used in applications where weight reduction is critical, such as aerospace and certain machinery. However, they are not as durable as steel sprockets and are not suitable for high loads or harsh environments.
When choosing the right material for a sprocket, consider the following:
- Load Capacity: Select a material that can handle the expected loads in the application without deforming or wearing excessively.
- Speed: Higher speeds may require materials with better heat dissipation and wear resistance.
- Environment: Consider factors such as moisture, chemicals, temperature, and outdoor exposure. Choose a material with suitable corrosion resistance and resilience to environmental conditions.
- Maintenance: Some materials may require more frequent maintenance or lubrication to ensure longevity.
- Cost: Balance the material’s performance with the budget constraints of the project.
It’s essential to consult with sprocket manufacturers or material experts to determine the most appropriate material for your specific application. They can provide valuable insights and recommendations based on your requirements, helping to ensure the longevity and optimal performance of the sprocket in your machinery or equipment.

Advantages of Using a wheel sprocket Configuration
Using a wheel sprocket configuration for power transmission offers several advantages over other methods. Here are some key benefits:
1. Efficient Power Transmission:
The wheel sprocket assembly provide a highly efficient method of transmitting power between shafts with minimal energy loss. The teeth of the sprocket mesh with the links of the chain or the teeth of another sprocket, ensuring a positive engagement that reduces slippage and maximizes power transfer.
2. Versatility:
Wheels and sprockets are available in various sizes, configurations, and materials, making them highly versatile components for different applications. They can accommodate a wide range of speed and torque requirements, making them suitable for various mechanical systems.
3. Compact Design:
The compact design of wheel sprocket assemblies allows for space-saving installations in machinery. The concentric arrangement of the components minimizes the overall footprint, making it ideal for applications with limited space.
4. Precise Speed Control:
By selecting sprockets with different numbers of teeth, the gear ratio can be easily adjusted to achieve precise speed control in the driven shaft. This level of control is essential for many applications, such as conveyor systems, where different speeds are required for different processes.
5. High Torque Capacity:
wheel sprocket systems can handle high torque loads, making them suitable for heavy-duty applications. This high torque capacity is especially beneficial in industrial settings where large loads need to be moved or lifted.
6. Smooth and Quiet Operation:
When properly lubricated and maintained, the interaction between the sprocket and the chain or other sprockets results in smooth and quiet operation. This makes wheel sprocket systems preferable in applications where noise reduction is important.
7. Easy Installation and Maintenance:
Installing a wheel sprocket assembly is relatively straightforward, and they require minimal maintenance when used correctly. Periodic lubrication and tension adjustments are typically all that is needed to keep the system running smoothly.
8. Suitable for High-Speed Applications:
wheel sprocket configurations are well-suited for high-speed applications where belts or gears may not be as practical due to limitations in speed capabilities.
In summary, the wheel sprocket configuration offers efficient power transmission, versatility, compactness, precise speed control, high torque capacity, smooth operation, and ease of installation and maintenance. These advantages make it a popular choice in a wide range of mechanical systems and industrial applications.


editor by CX 2024-04-11