• Sany DN125/DN150 30/45/90 Degree Concrete Pump Elbow Pipe System 1
Sany DN125/DN150 30/45/90 Degree Concrete Pump Elbow Pipe

Sany DN125/DN150 30/45/90 Degree Concrete Pump Elbow Pipe

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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: What are the basic requirements for the design of mechanical parts?
In order to improve the strength of mechanical parts, the following measures can be adopted in principle at design time:Adopt a material of high strength;Make the part have enough sectional size;The sectional shape of a part is properly designed to increase the moment of inertia of the cross section;The mechanical properties of the material were improved by heat treatment and chemical heat treatment;Improve the manufacturing accuracy of moving parts to reduce the dynamic load at work;Reasonable allocation of parts of the machine in order to reduce the impact on the parts of the load.
Q: Force calculation is in the component diagram, the size of the component is obtained by force, and if you don't draw the parts first, how do you draw the general plan?How do you calculate the force of a part if you draw the part diagram first and don't know the size relation between the parts?
I seem to have seen the online video in this class. Draw a sketch first. Forget it. I'll look for it
Q: Machining process design of shaft parts is required
Is the design of the machining procedure for this shaft? Is it possible to do so?
Q: Where are the machine parts designed to be finished?
To get machinery processing plant processing, or have "car, milling, planing, drilling, welding" repair shop can also be completed
Q: What are the main functions of CAE software commonly used in the design of mechanical products or parts?
Strength, stiffness, modal analysis, structural optimization, and so on
Q: I am an ordinary graduate, two jobs to me, one is non-standard automatic design work, but the first half of the assembly in the workshop, and then to design. There is also a mechanical component CAD draftsman. After that, you can do part design. May I ask which job will have a future for you?
Also proposed non-standard automatic design. Think so: after doing automation design, the way is wide, have ability, still can own poineering work. After the parts drawing design, the work must be relatively fixed, and the scope of application is narrow, if the old units fail, it is not easy to find relevant work. This is general. Of course, more importantly, your own interests. Don't worry too much about workshop assembly design, have no time to experience is destined to be behind closed doors, there can be no creative (created to solve specific problems), no creativity, you can only do creative people performing tools.
Q: What is the significance of using this "three changes" in mechanical design?
Standardization refers to the products (especially parts) the quality, specifications, performance, technical index structure and other aspects of the unified regulations and standards to perform. As the standard of our country has already formed a huge system, there are national standards, industry standards and so on. In order to in line with international standards, some standards in China the rapidly move closer to international standards. The standard code such as GB, JB, ISO and so on, they are representative of the national standard of People's Republic of China machinery industry standards, the international organization for standardization standards.
Q: In mechanical design, what is the significance of drawing 3D drawings?.
For professionals, 3D map painting aims at first can visually see the three-dimensional geometry of parts, followed by analysis of the existence of the assembly interference, meets the design goal and the size, volume, stress analysis.For non professionals, they do not understand the specialized two-dimensional graph, and can help them understand the geometry of the object by means of the three-dimensional graph.
Q: their own materials, hope that the older generation can be under the guidance of the younger brother, brother, thank you very much
4. secondly, need to know these things into the product planning (or product itself), making the product form, content and behavior, can become useful, desirable, and feasible in economy and technology.5. usually the design requires originality and mechanical design is more improved and the use of existing conclusions. This requires the mechanical designer must understand the machining process.6., the processing technology is a very practical technology, can only operate by their own hands, it is possible to have experience and understanding of the technology. There is no shortcut. It is impossible to get inspiration through books.7., this is my experience for more than 40 years.
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!!!
There should be a lot of things. For example, the processing capacity of the equipment is only 1000mm, and the things you design have 1100mm, so the existing equipment can not be processed. For example, the surface roughness you require is Ra0.2, and the machining accuracy of your equipment can only be Ra0.8. That's more than the processing capacity of the equipment. And some things are processing problems, for example, you design things outside the small hole, there is a big hole inside, your device does not have this function.Think of these kinds of things for the time being.

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