• concrete pump hardened elbow System 1
concrete pump hardened elbow

concrete pump hardened elbow

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Product parameters:

Name

Material

Specification

Weight

Common life time

Life tine for two end parts

Max work

pressure

Normal bend

ZG40Mn2

DN125R27590°

16kgs

6000-8000m³

1000-3000m³

126 bar

Wear-resistant bend

Mn13-4

DN125R27590°

16.5kgs

20000-25000m³

2000-7000m³

132 bar

Twin wall bend

Cr20NiCu1Mo+G20

DN125R27590°

15kgs

60000-80000m³

20000-30000m³

91 bar

Twin wall bend

GX350+G20

DN125R27590°

15kgs

80000-150000m³

40000-50000m³

98 bar












Product Specifications Model:









Packaging and transport:

No.1 Export standard packing  

No.2 Seaworthy packing  

No.3 other ways or according to the customer demand








Why choose us:

1. We are a comprehensive manufacturing and trading company.

2. Our company is one of the biggest manufacturing and trading companies in China.

3. We have been specialized in producing concrete pump spare parts for 10 years and specialized in producing all kinds of concrete pump parts. As Concrete Pump Pipe, Concrete Pump Elbow, Concrete Pump Rubber Hose, Concrete Pump Wear Plate, Concrete Pump S Valve, Concrete Pump Piston and so on.

4. We are famous for our superior quality, competitive prices, first-class craftworks, safe package and prompt delivery.

5. We have been supplying concrete pump parts for SCHWING, PUTZMEISTER, SANY, CIFA, KYOKUTO, ZOOMLION for 10 years, so we can promise you the quality and best price.







Q: The strength criterion of mechanical parts design is briefly introduced
1, the strength criterion requires that the working stress of the mechanical parts should not exceed allowable stress [Sigma]. The formula is typical: (3-16) lim - ultimate stress of brittle materials by static stress on the ultimate strength, the static stress of plastic materials, the yield limit of zero stress the fatigue limit. S - Safety factor. 2. stiffness criteria mechanical components are subject to elastic deformation when subjected to load. Stiffness is the ability to resist deformation of materials, mechanical parts, or structures subjected to external forces. The stiffness of the material is measured by the external force required to produce the unit deformation. The stiffness of a mechanical part depends on its modulus of elasticity, E or shear modulus, G, geometry and size, and the form of external forces. It is an important work in mechanical design to analyze the rigidity of mechanical parts. For some parts that need to be strictly deformed (such as wings, machine tools, spindles, etc.), stiffness analysis is necessary to control the deformation. We also need to control the stiffness of the parts to prevent vibration or instability. In addition, a spring, such as a spring, must be used to control its stiffness to a reasonable value to ensure its specific function. The stiffness criterion is that the elastic deformation of a component subjected to load is not greater than the allowable elastic deformation. The expression of the stiffness criterion is (3 - 17) y is an elastic deformation quantity, such as deflection, longitudinal elongation (shortening): [y] is the corresponding allowable elastic deformation. The elastic deformation of a part can be obtained by theoretical calculation or by experiment. The allowable deformation depends on the use of the part, and is determined by theoretical analysis or experience.
Q: What are the basic criteria for the design of mechanical parts?
(2) the demolition of the old machine parts of the work, the stress components and their connections, should meet a predetermined maximum load enough strength, stiffness and stability during normal operation should not occur due to the work cycle or stress or fatigue fracture times have broken, excessive deformation or collapse; also must considering the stability of the whole mechanical equipment under the premise of the anti overturning wind or anti slide, especially those with mechanical vibration displacement load or its expected quality uneven distribution.(3) adequate adaptability to the use of the environment. The work equipment of the demolition of the old machine parts must be used to the environment (such as temperature, humidity, air pressure, wind load, snow load, vibration, and electrostatic, magnetic and electric fields, radiation, dust, microorganism, animal and corrosive medium) has enough ability to adapt, especially anti corrosion or erosion, aging wear, anti-interference ability, not because the electrical components affect the physical, chemical and biological caused by accident.
Q: Where are the machine parts designed to be finished?
To the mechanical processing plant ah, there are many machinery processing plants are based on the processing of parts to others to survive, and our products are parts of those machinery factory processing
Q: I am engaged in the mechanical design work, asks the three-dimensional mechanical component model to download the website.
3D resource network, standard parts library, community resource library are all free. Most of the members can see and download it. No charge after registration.
Q: And parts, components, institutions, the relationship between the threeIs the key a part?
The part is a processing unit, is processed. Parts of component is the moving unit. Mechanism is to achieve complete movement of the unit. For example, bicycle chain is composed of many parts (chain, pin, etc.) is a chain sprocket component; parts, but to "the pedals and sprocket" together, and form component. Several components constitute a chain drive mechanism. Similarly, key parts.
Q: In mechanical design, what is the significance of drawing 3D drawings?.
Advantages: first, look at the intuitive ah, design some complex parts and components, do not express several views.After assembly, the parts can be checked for size. And whether or not to interfere.Three, the software has powerful functions, such as calculation of volume, weight, force analysis and so on, these are two-dimensional software can not compare.
Q: their own materials, hope that the older generation can be under the guidance of the younger brother, brother, thank you very much
Knowledge of material knowledge of machine parts is usually required:1., first learn some basic knowledge, such as material mechanics, theoretical mechanics, metal materials, heat treatment, metallographic, hot processing, cold processing.2. then learn more about your work unit product. Technical data of main components, performances, requirements and common materials.3., online access to the same or similar industry related information.
Q: What is the design procedure of mechanical parts urgently ah?!
5. assembly and parts diagram design. According to the structure and size of parts assembly sketches to determine the complete assembly and parts diagram design. (according to the plan to determine the main dimensions, structure design, parts drawing, sorting out the map) four, as the case with technical documentation requirements, design and coding machine calculation manual, manual, standard parts list, purchased parts list, etc. in the conditions of acceptance in the design process, such as a link the problem is feasible or not, need to return to revise the previous design, until the problem is solved. Sometimes, for this reason, even the whole project has to be knocked over. Therefore, the mechanical design process is an iterative process. (standard and outsourcing parts arrangement, specification preparation, acceptance documents
Q: Before listening to the teacher mentioned that, when the design of components, we should take into account the actual processing capacity of the factory, and some look very simple things, the factory is unable to process! I want to know what the reason is!!!
1, processing equipment is not complete, the technical level of the.3. process of processing 2. kimihito,
Q: University contact with some simple PLC, ladder diagram, but also to understand.I University of mechanical manufacturing, graduate students made a machine tool parts, mechanical design, University contact with some simple PLC, ladder diagram, but also to understand. Now work in contact with CNC machine tools, want to learn some numerical control system, electrical knowledge, to the job after adding some capital. Online to find some 840D information, that means too hard to see, what NCU, PCU, wiring, address completely do not understand. How do I study?
NC, with FANUC, specific also don't understand. PLC, there are many brands, there are Ashkenazi SIEMENS, legal genealogy, Schneider, Japanese MITSUBISHI, OMRON, etc., Taiwan Delta, Yong Hong and so on other brands.

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