• CONCRETE DELIVERY ELBOW PM TYPE 90DEG R281 DN110 System 1
  • CONCRETE DELIVERY ELBOW PM TYPE 90DEG R281 DN110 System 2
  • CONCRETE DELIVERY ELBOW PM TYPE 90DEG R281 DN110 System 3
CONCRETE DELIVERY ELBOW PM TYPE 90DEG R281 DN110

CONCRETE DELIVERY ELBOW PM TYPE 90DEG R281 DN110

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
100 pc
Supply Capability:
10000 pc/month

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concrete pump elbow table

 


Wear-resistant Single or Double Concrete Pump Elbow

Type 

Singe Elbow 

Double Elbow 

Model

DN125

DN150

DN175

DN125

Material

Casting Steel ,ST52

Inside 

 40Cr

Outside 

Size

R275*90°

R275*90°+110

36°

F2000

R275*90°

R275*90°+110

R275*45°

R275*90°+211

R400*30°

A3000

R275*45°

R275*90°+211

R275*25°

R275*90°+411

R400*45°

471B

R275*25°

R275*90°+411

R275*20°

R275*90°+424

R400*30°

571B

R275*20°

R275*90°+424

R275*15°

R275*45°+170

R488*90°

A1000

R275*15°

R275*45°+170

R180*90°

R275*45°+310

R500*90

C1000

R180*90°

R275*45°+310

R232*60°

R275*45°+310

R280*90°

B2000

R232*60°

R275*45°+310

R240*36°

20°Lengthen 



R240*36°

20°Lengthen 

R240*30°

25°+740



R240*30°

25°+740

R240*15°

40°Zoomlion



R240*15°

40°Zoomlion

R385*29°




R385*29°


R315*33°




R315*33°


Technic

Forged


Average life

25,000cubic

50,000cubic

Appliciation

Used in concrete transport in construction work



1.product profile:The double layer concrete pump elbow is developed by ourselves through new

technology and process.


2.characteristic:the inner layer of this concrete pump elbow undergoes heat treatment,and then the rigitiry can reach 62-65HRC.


3.characteristic:the outer layer of the concrete pump elbow possess good toughness properties

to protect the inner layer,so the security of the elbow is improved. 


4.life:the experiment done abroad shows that the life of our concrete pump elbow can reach 35000-50000cbm,got the customers' praise


5.Beside the double layer concrete pump elbow,we produce all kinds of concrete pump parts,

straight pipe hose flange coupling and so on. 



Q: How can one ensure proper functioning of concrete pump spare parts after installation?
To ensure proper functioning of concrete pump spare parts after installation, it is important to follow a few key steps. Firstly, it is crucial to carefully inspect and clean the parts before installation to ensure they are free from any debris or damage. Additionally, it is essential to use high-quality parts from reputable manufacturers to ensure durability and reliability. Regular maintenance and lubrication of the spare parts is also necessary to prevent wear and tear. Lastly, it is important to operate the concrete pump within its specified limits and avoid overloading, as this can cause stress on the spare parts and lead to malfunctioning.
Q: How does a hydraulic accumulator improve the performance of a concrete pump?
A hydraulic accumulator improves the performance of a concrete pump by storing excess hydraulic pressure and energy during low-demand periods and releasing it when needed. This allows for a smoother operation, reduced pump pulsation, and improved efficiency in delivering the concrete, resulting in enhanced performance and productivity.
Q: What are the different types of concrete pump hopper agitator shaft seals?
There are various types of concrete pump hopper agitator shaft seals, including packing seals, mechanical seals, and lip seals.
Q: What are the different types of concrete pump hopper cylinders seals?
Concrete pump hopper cylinder seals come in various types, each catering to specific needs and requirements. The most commonly used types are as follows: 1. Piston seals: These seals prevent leakage between the piston and cylinder bore. They are typically crafted from durable materials like rubber or polyurethane, ensuring resistance to wear and tear. 2. Rod seals: Installed on the piston rod, rod seals prevent leakage between the rod and cylinder head. They are commonly made of rubber or fabric-reinforced rubber, delivering reliable sealing even in high-pressure conditions. 3. Wiper seals: These seals are utilized to remove dirt, dust, and other contaminants from the retracting piston rod. They are usually composed of polyurethane or rubber, effectively sealing and protecting the cylinder. 4. Wear rings: Employed to decrease friction and prevent metal-to-metal contact between the piston and cylinder bore, wear rings are usually made of materials like bronze or Teflon. They significantly extend the cylinder's lifespan by reducing wear and tear. 5. Backup rings: These rings provide additional support and stability when used alongside other seals. Typically crafted from materials like rubber or PTFE, backup rings prevent extrusion and damage to the primary seal. In summary, the choice of the appropriate concrete pump hopper cylinder seal relies on factors such as the specific application, operating conditions, and desired performance characteristics. It is crucial to select seals that are compatible with the material being pumped, offer effective sealing, and have a long lifespan to ensure optimal performance and minimize maintenance needs.
Q: What are the skills of concrete pump?
The operator and equipment management personnel should carefully read the instructions, grasp the relevant knowledge of the structural principle, use and maintenance as well as pumping concrete; use and operation of the concrete pump, should be strictly in accordance with the execution of instructions
Q: What is the role of a concrete pump hopper agitator blade?
The role of a concrete pump hopper agitator blade is to ensure the consistency and flow of the concrete while it is being pumped. The agitator blade is designed to mix the concrete in the hopper, preventing it from settling or becoming too thick. By continuously stirring the concrete, the agitator blade helps to maintain its proper consistency, making it easier to pump and ensuring a more uniform distribution of the material. This is particularly important when working with large volumes of concrete or when pumping over long distances, as it helps to prevent blockages and maintain a smooth and efficient pumping process. Overall, the agitator blade plays a crucial role in the successful operation of a concrete pump, ensuring that the concrete remains in a workable state throughout the pumping process.
Q: Are there any specific safety precautions while replacing concrete pump spare parts?
Yes, there are several safety precautions to consider while replacing concrete pump spare parts. Firstly, it is important to wear personal protective equipment such as gloves, safety glasses, and a dust mask to protect against potential hazards. Additionally, one should ensure the pump is turned off and disconnected from the power source before attempting any repairs. It is also crucial to follow proper lifting techniques and use appropriate tools to avoid injuries. Lastly, it is advisable to have a clear understanding of the equipment and its components, and if unsure, consult with a professional or refer to the manufacturer's guidelines for safe replacement procedures.
Q: How often should concrete pump electric motors be inspected and maintained?
Concrete pump electric motors should be inspected and maintained regularly, ideally every 6 months to ensure optimal performance and prevent any potential issues or breakdowns.
Q: What are the advantages of using ceramic components in concrete pump spare parts?
There are several advantages of using ceramic components in concrete pump spare parts. Firstly, ceramic materials are known for their exceptional durability and wear resistance. Concrete pumps operate under high pressure and require components that can withstand the intense forces and abrasion. Ceramic parts have superior hardness and strength, making them highly resistant to wear and extending the lifespan of the spare parts. Secondly, ceramic components have excellent corrosion resistance. Concrete contains various chemicals and substances that can be corrosive to metals. By using ceramic parts, the risk of corrosion is significantly reduced, ensuring the longevity and reliability of the concrete pump spare parts. Additionally, ceramic materials have low friction coefficients. This means that when ceramic components are used in concrete pumps, there is less friction between the moving parts, resulting in reduced energy consumption and increased efficiency. This can lead to cost savings and improved overall performance of the concrete pump. Furthermore, ceramic parts have a high thermal resistance. Concrete pumps generate heat during operation, and this can cause damage or deformation to certain components. However, ceramic materials can withstand high temperatures without losing their structural integrity, ensuring the reliability and safety of the concrete pump. Lastly, ceramic components have excellent dimensional stability. They are less prone to expansion or contraction due to temperature changes, ensuring that the spare parts maintain their shape and fit accurately within the concrete pump. This precision fitting helps to minimize leakage and maintain the efficiency of the pump. In summary, the advantages of using ceramic components in concrete pump spare parts include exceptional durability, corrosion resistance, low friction, high thermal resistance, and dimensional stability. These benefits contribute to increased lifespan, improved performance, reduced maintenance costs, and enhanced overall efficiency of the concrete pump.
Q: What is the function of a concrete pump remote control antenna?
The primary role of a concrete pump remote control antenna is to establish a wireless connection between the remote control device and the concrete pump. This connection enables the operator to remotely manage various functions of the concrete pump, including initiating and terminating the pump, adjusting concrete speed and flow, and controlling boom movements. The antenna receives signals transmitted by the remote control device and transmits them to the concrete pump, enabling the operator to safely control the pump from a distance. By providing the operator with improved visibility of the pump and its surroundings, while maintaining complete operational control, this technology contributes to enhanced efficiency, accuracy, and safety at construction sites.

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