China Hot selling China Manufacturer of Industrial Forged Component Parts for Male-Female Shaft

Product Description

About Factory 

With more than 18 years’ histiory, we are a professinal manufacturer for drop forged products such as forged chain (X348 X458 X658 X678 X698 F100 F160), scraper chain (10160, 14218, 14226, 142N), conveyor trolley (X348, X458, X678, XT160), and drive chain (X348, X458, X678), and so forth standard moulds of chain. 

Besides, we can also produce as per your drawing or sample, special link chain, pusher, pin and plate, according to customers’ unique requirements.

Product Description

1) Material: Alloy steel, 40Cr, 42CrMo and so on.
2) Types: 10160, 14218, 14226, 2571, 26014, 142N, 150D, S30, and so on. (Or as per your drawing)
3) Process: Moulding→Forging→Polishing & Blasting→Fine machining→Heat treatment→Blasting→Inspecting & testing→Packing

Product Show

Technical Data

Model Pitch Dimension Lateral Corner Standard Measured Length (mm) Measured Quantity Tensile Strength (KN) Weight (Kg/m)
80H 80 73 42 18.4 20 34.5 19.5 7 3032/3058 38 250 7.8
X348 76.6 46 27 12.7 12.7 20.6 13.5 9 3050.5/3095.2 40 110 3.2
X458 102.4 57 37 16 16 26.5 17.5 9 3063.1/3090.2 30 210 5.2
468H 102.4 84.1 47.8 18 29.5 42.9 22.2 9 3063.1/3090.2 30 318 11.5
X658 153.2 55.6 35 16 16 57.2 17.5 7 3055.1/3082.8 20 210 4
X678 153.2 77 50.8 22.2 21 34.2 25 7 3055.1/3082.8 20 320 9.5
678 153.2 77 50.8 22.2 21 34.2 25 7 3055.1/3082.8 20 320 9.5
698 153.2 95.25 64 28 25.4 41.3 32 5 3055.1/3082.8 20 515 17
998 229.4 95.25 67.5 28 25.4 41.3 32 5 3205/3232.4 13 515 14.8
9118 229.4 123.8 76.2 35 33.5 52 38.1 5 3205/3232.4 13 832 24.2
S348 76.6 38.9 28.6 12.7 12.7 20.6 13.5 9 3050.5/3095.2 40 110 3.2
S458 102.4 52.1 35 16 16 26.5 17.5 9 3063.1/3090.2 30 210 5.2
S678 153.2 69.8 50.8 22.2 21 34.2 25 7 3055.1/3082.8 20 320 9.5
S698 153.2 73 68.3 28 25.4 41.3 32 5 3055.1/3082.8 20 515 17
S9118 229.4 98.4 77.8 35 33.5 52 38.1 5 3205/3232.4 13 832 24.2
F100 100 57 37 16 16 26.5 17.5 9 2991.3/3018.3 30 210 5.2
F160 160 78 54 24 20.5 36 28 7 3190.7/3219.5 20 318 10.3

Products & Testing Equipments

Products Application

Packing & Delivery

Why Choose Us?

1. We are engaged in chain industry over 15 years with rich market experience. We keep improving production techniques. All the products have longer working life and have passed the market test.

2. We can design the correct chains with high quality material, good abrasion resistance, good corrosion, high strengthen and etc as per your request or the chain application.

3. We are the chain manufacturer; you can directly purchase the product from us with low price and high quality.

4. We have a professional team for international trade, they have abundant experiences and are always ready to solve problems for customers. So you have nothing to worry about.

5. We have the long-term cooperative forwarder who can give us the lowest freight. And it can help you to save the freight. What’s more, for the FCL, we will design the packages as per the container sizes with the largest capacity to save the shipping cost for both of us.


Material: Alloy
Structure: Combined Chain
Surface Treatment: Polishing
Chain Size: 1/2"*11/128"
Feature: Fire Resistant, Oil Resistant, Heat Resistant
Certificate: SGS and ISO Standard
US$ 5/Piece
1 Piece(Min.Order)

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Can a conveyor chain be used in pharmaceutical manufacturing?

Yes, conveyor chains can be used in pharmaceutical manufacturing for various applications. Conveyor systems play a crucial role in the efficient and safe transportation of pharmaceutical products throughout the manufacturing process. Here are some key considerations when using conveyor chains in pharmaceutical manufacturing:

1. Material Selection:

– Choose conveyor chains made from materials that are suitable for pharmaceutical applications, such as stainless steel or FDA-approved plastic. These materials offer corrosion resistance, cleanliness, and compliance with industry regulations.

2. Cleanliness and Sanitation:

– Ensure that the conveyor chain design allows for easy cleaning and sanitation. Smooth surfaces, minimal crevices, and access for cleaning equipment are important to maintain a hygienic environment.

3. Contamination Control:

– Implement measures to prevent contamination of pharmaceutical products. This includes using chain lubricants that are safe for pharmaceutical applications and implementing proper handling and storage procedures.

4. Product Protection:

– Choose conveyor chain systems that minimize product damage or degradation. This can include utilizing gentle product handling features such as low-friction surfaces, adjustable speed controls, and proper product spacing.

5. Regulatory Compliance:

– Ensure that the conveyor chain system complies with pharmaceutical industry regulations and guidelines, such as Good Manufacturing Practices (GMP) and the requirements of regulatory bodies like the FDA.

6. Integration with Equipment:

– Consider the integration of conveyor chains with other equipment in the pharmaceutical manufacturing process, such as labeling machines, filling machines, and packaging equipment. The conveyor system should provide seamless operation and synchronization with these machines.

By carefully selecting and designing conveyor chains specifically for pharmaceutical manufacturing, it is possible to meet the stringent requirements of the industry in terms of cleanliness, product integrity, and regulatory compliance.


How do you calculate the power requirements for a conveyor chain?

Calculating the power requirements for a conveyor chain involves considering various factors. Here’s a step-by-step process:

1. Determine the total weight to be transported: Measure or estimate the total weight of the material or product that will be carried by the conveyor chain. This includes the weight of the product itself, any packaging, and additional loads.

2. Determine the speed of the conveyor: Determine the desired speed at which the conveyor chain will operate. This is typically measured in feet per minute (FPM) or meters per second (m/s).

3. Calculate the required capacity: Multiply the total weight by the desired speed to determine the required capacity of the conveyor system. This will give you the weight per unit of time (e.g., pounds per minute or kilograms per hour).

4. Consider the conveyor’s design factors: Take into account various design factors such as the type and pitch of the conveyor chain, the coefficient of friction between the chain and the conveyor components, and any incline or decline angles of the conveyor system. These factors affect the power requirements.

5. Determine the required power: Use the following formula to calculate the power requirements:

Power (in horsepower) = (Capacity × Friction Factor) ÷ (33,000 × Efficiency)


– Capacity is the weight per unit of time (from step 3)

– Friction Factor is the ratio of chain tension to chain weight, taking into account the design factors

– 33,000 is a conversion factor to convert the units to horsepower

– Efficiency is the overall efficiency of the conveyor system, typically expressed as a decimal value (e.g., 0.95 for 95% efficiency)

6. Select a suitable motor: Based on the calculated power requirements, select a motor that can provide the necessary power to drive the conveyor chain. Consider factors such as motor type, motor efficiency, and overload capacity.

It’s important to note that the power requirements may vary depending on specific conveyor system designs and operating conditions. Consulting with a qualified engineer or conveyor manufacturer is recommended to ensure accurate calculations and proper motor selection.


How do you calculate the required length of a conveyor chain?

Calculating the required length of a conveyor chain involves considering several factors related to the conveyor system and the specific application. Here’s a step-by-step guide:

  1. Determine the Conveyor Length: Measure the total length of the conveyor path, including any horizontal, inclined, or vertical sections.
  2. Account for Sprocket Centers: Identify the locations of the sprockets or drive units along the conveyor path. Measure the distance between each pair of adjacent sprockets.
  3. Calculate the Number of Links: Divide the total conveyor length by the pitch of the chain to determine the number of links required. The pitch is the distance between the center of two consecutive pins on the chain.
  4. Consider Tension Adjustment: Take into account any tension adjustment requirements based on the specific application. This may include allowances for tensioning devices or tension variations due to load fluctuations.
  5. Include End Connections: Consider the length of the end connections, such as master links or connecting pins, which are used to join the ends of the chain. Include their dimensions in the total chain length calculation.
  6. Add Safety Factors: Incorporate appropriate safety factors to ensure adequate chain length for proper tensioning and to accommodate any potential stretching or wear over time.

It’s important to note that the calculation of the required chain length is an estimation based on various factors and may require adjustments during the installation and tensioning process. Consulting the conveyor manufacturer’s guidelines or working with an experienced engineer can provide more precise calculations based on the specific conveyor system and application requirements.

China Hot selling China Manufacturer of Industrial Forged Component Parts for Male-Female Shaft  China Hot selling China Manufacturer of Industrial Forged Component Parts for Male-Female Shaft
editor by CX 2023-08-29