Produktbeschreibung

 

Produktbeschreibung

BICYCLE SADDLE
Matrial Leather
MOQ 200 PCS
Packing Carton or according to customers
OEM Accept

 

Verpackung & Versand

Company Profile

HangZhou FEITIAN BICYCLE CO.,LTD located in feng jia zhai town industrial zone guang zong county.We are professional manufacture specialied in producing chain wheel&crank, saddle, inner tube, tyre, pedal, front axle, rear axle, MTB bicycle, BMX bicycle, lady bike, child toys, etc.With professional workshops and production line, 10 years export experience, and our productions get a well sale to the bicycle factory and accessories manufactures production all over the country, which based on good quality, cheap price, and perfect after-sales service. So our export sales have been growing year by year. Our productions are spreading over 40 countries and regions including Southeast Asia, East Europe, Africa, and South America.

Our company will serve you wholeheartedly and look CZPT to establishing cooperation and common development with you!
 

Trade Show

 


 

 

Häufig gestellte Fragen

1. What is your terms of packing?
A: Generally, we pack our goods in neutral white boxes or brown cartons. If you need to customize, we can customize it for you
2.What’s your payment terms?
A:T/T 30% as deposit, and 70% before delivery. We’ll show you the photos of the products and packages
before you pay the balance.
3. What is your terms of delivery?
A: EXW, FOB, CFR, CIF.
4. How about your delivery time?
A: Generally, it will take 30 to 60 days after receiving your advance payment. The specific delivery time depends
on the items and the quantity of your order.
5.Can you produce according to the samples? 
A: Yes, we can produce by your samples or technical drawings. We can build the molds and fixtures.
6. What is your sample policy? 
A: We can supply the sample if we have ready parts in stock, but the customers have to pay the sample cost and the courier cost. 
7.When can i get the price?
We usually quote within 24 hours after getting your detailed requirements, like size, quantity etc. If it is an urgent order, you can call us directly.
 

 
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Condition: New
Certification: CE, BSCI, EEC, ISO9001
Customized: Customized
Anwendung: Kids Bike, Road Bike, Mountain Bike, Ordinary Bicycle
Name: Saddle
Transport Package: Carton
Anpassung:
Verfügbar

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Kundenspezifische Anfrage

Radritzel

Compatibility of Chain Sprockets with Wheels

In general, chain sprockets are designed to work with specific types of wheels, and there are certain requirements for ensuring proper compatibility:

  • Chain Size and Pitch: The chain sprocket must match the size and pitch of the chain it is intended to work with. For example, if you have a roller chain with a pitch of 0.625 inches, you need a sprocket with the same pitch to ensure a proper fit.
  • Number of Teeth: The number of teeth on the sprocket should be compatible with the number of chain links. The chain should mesh smoothly with the sprocket without any binding or skipping.
  • Tooth Profile: The tooth profile of the sprocket should match the shape of the chain’s rollers to ensure smooth engagement and minimize wear.
  • Shaft Size: The center hole (bore) of the sprocket should match the diameter of the shaft it will be mounted on. Using the correct shaft size ensures a secure fit and prevents wobbling.
  • Hub Configuration: Some sprockets have hubs, which are extensions on either side of the sprocket. The hub’s length and configuration should match the requirements of the specific application.
  • Material and Strength: Consider the material and strength of the sprocket based on the application’s load and environmental conditions. Heavy-duty applications may require sprockets made of robust materials to withstand the forces and stresses.

It’s crucial to follow the manufacturer’s specifications and guidelines when selecting a chain sprocket for a particular wheel. Mixing incompatible sprockets and wheels can result in premature wear, inefficiencies, and potential safety hazards. If you are unsure about the compatibility, consult with the manufacturer or a knowledgeable expert to ensure you choose the right sprocket for your specific application.

Radritzel

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:

  • Steel: 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.
  • Stainless Steel: 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.
  • Plastics: 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.
  • Aluminum: 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.

Radritzel

Wie überträgt eine Radkettenbaugruppe Kraft?

In einem mechanischen System ist die Kraftübertragung mittels eines Rad-Kettenrad-Systems eine gängige Methode, insbesondere bei Drehbewegungen. Der Prozess der Kraftübertragung durch ein Rad-Kettenrad-System umfasst die folgenden Schritte:

1. Eingangsquelle:

Der Kraftübertragungsprozess beginnt mit einer Eingangsquelle, beispielsweise einem Elektromotor, einem Verbrennungsmotor oder menschlicher Arbeitskraft. Diese Eingangsquelle liefert die notwendige Drehkraft (das Drehmoment), um das System anzutreiben.

2. Radrotation:

Wenn die Kraftquelle eine Rotationskraft auf das Rad ausübt, beginnt es sich um seine Mittelachse zu drehen. Die Konstruktion und die Materialeigenschaften des Rades sind entscheidend, um der einwirkenden Last standzuhalten und eine reibungslose Rotation zu gewährleisten.

3. Eingriff des Kettenrads:

An dem Rad ist ein Kettenrad befestigt, ein Zahnrad, das mit einer Kette in Eingriff kommt. Wenn sich das Rad dreht, greifen die Zähne des Kettenrads in die Kettenglieder ein und bilden so ein formschlüssiges Antriebssystem.

4. Kettenrotation:

Sobald das Kettenrad in die Kette eingreift, wird die Drehkraft auf die Kette übertragen. Die Kettenglieder leiten diese Drehbewegung entlang ihrer gesamten Länge weiter.

5. Angetriebene Komponente:

Das andere Ende der Kette ist mit einem angetriebenen Kettenrad verbunden, das an dem zu bewegenden Bauteil befestigt ist. Dieses angetriebene Bauteil kann beispielsweise ein weiteres Rad, ein Förderband oder ein anderes Maschinenteil sein, das Bewegung benötigt.

6. Kraftübertragung:

Durch den Eingriff der Kette in das Kettenrad dreht sich auch das angetriebene Kettenrad und überträgt die Drehbewegung auf das angetriebene Bauteil. Dieses erhält nun über Rad, Kettenrad und Kette Kraft und Bewegung von der Antriebsquelle.

7. Ausgabe und Betrieb:

Das angetriebene Bauteil erfüllt seine vorgesehene Funktion auf Grundlage der aufgenommenen Energie und Bewegung. Beispielsweise überträgt bei einem Fahrrad die Kette mit Ritzel die Kraft vom Treten des Fahrers auf das Hinterrad und treibt so das Fahrrad vorwärts.

Insgesamt stellt eine Rad-Kettenrad-Baugruppe eine effiziente und zuverlässige Methode der Kraftübertragung dar, die häufig in verschiedenen Anwendungen eingesetzt wird, darunter Fahrräder, Motorräder, Industriemaschinen und Fördersysteme.

China Best Sales Crank Mountain Bike Chain Wheel Crank Set Bicycle Crank CZPT Sprocket  China Best Sales Crank Mountain Bike Chain Wheel Crank Set Bicycle Crank CZPT Sprocket
editor by CX 2024-02-16