In addition to material accumulation 3D printing, these 3 unusual things

In recent years, 3D printing has gradually formed more unusual characteristics on the technical characteristics of material accumulation, and thus expanded a wider application space. In addition to making other machines, 3D printers can also replicate themselves; 3D printers can make objects much larger than themselves; 3D printers can implement 2D printing of ordinary printers.

As we all know, the biggest difference between 3D printing and traditional material reduction manufacturing is that the material manufacturing needs to remove and cut the production materials to complete the processing, while 3D printing is just the opposite, through the gradual accumulation of materials. Made into a product, also known as " additive manufacturing ." Based on this, 3D printing technology has been evolving and evolving. In recent years, more and more unusual features have been formed, and thus a broader application space has been expanded.

Not just making other machines, 3D printers can also copy themselves

"Machine manufacturing machines" is the general trend of manufacturing development in the "Industry 4.0" era. The main production target of 3D printing equipment is machinery. From micro-sensors to parts of aircraft ships to complete robots, the types of machinery born from 3D printers can be said to be all-encompassing. However, the most amazing product of 3D printing is probably the number itself. 3D printing devices with self-cloning capabilities are receiving more and more attention in the industry.

In 2007, Dr. Adrian Bowyer, a senior lecturer in mechanical engineering at the University of Bath in the UK, successfully developed the world's first self-replicating 3D printer in the open source 3D printer project RepRap. In 2015, RepBap enthusiast RevarBat developed a 3D printer called “Snappy”. 73% of all parts of this 3D printer can be produced with 3D printers. Recently, self-replicating 3D printers has attracted the attention of the aerospace industry and is expected to achieve landing applications. Researchers at the Department of Mechanical and Aerospace Engineering at Carleton University in Canada are experimenting with a fully self-replicating 3D printer that is expected to be used to build settlements and other structures in space. Because it can effectively reduce the cost of launch, self-replicating 3D printers will greatly change the face of space exploration.

Thanks to the additive nature of the material, 3D printers can make objects much larger than themselves.

In the process of reducing the material, the machine learns about the raw materials, and the resulting product rarely has too many objects larger than the machine itself. And 3D printing, thanks to the cumulative production characteristics of its materials, can create objects that are much larger than the equipment itself. This is also the focus of the aerospace industry. After all, the characteristics of 3D printing, such as self-reliance, local materials, and accumulated resources, are too precious for space exploration activities with poor environment and lack of resources.
Last month, California-based microgravity engineering company Made in Space was commissioned by NASA to announce the development of the space additive manufacturing project Archinaut, which aims to create large-scale structures in space, involving the development of a space-capable work. A 3D printer equipped with a robot arm. One of the main attractions of the Archinaut system is that it can build a much larger structure than itself, which is critical for space manufacturing because it is difficult to launch large production systems into space from Earth.

2D printing function of ordinary printer, 3D printer can also get

3D printing technology has been produced from three-dimensional objects since its birth, and seems to have nothing to do with the long-standing 2D printing. However, in recent years, some people in the industry have begun to try to use 2D printers for 2D printing, and have achieved certain results. As the technology matures, 3D printers may be able to incorporate the functions of ordinary 2D printers and evolve into 2D and 3D printing integrated devices.

In 2016, American designer Jason Preuss successfully printed 2D oil paintings using a 3D printer. These paintings were only a few millimeters thick and almost as thick as a few sheets. The production process is not easy. It requires complicated software stacking and program setting. It divides a picture into different color areas. After a series of programs, it prints them layer by layer with a 3D printer. This is undoubtedly a very Great engineering.

As a disruptive technology, 3D printing has great potential to be tapped. Its unusual characteristics will create more new possibilities for research in other fields of research.

Meat Deboning Machine

Deboning chicken is a time-consuming process and large meat processing plants deal with significant amounts of meat. Even if a plant employs a large number of workers to debone poultry manually, it will still be costlier and more time-consuming than utilizing deboning machines. Additionally, manual deboning has a negative effect on the freshness and quality of the meat. To solve these problems, Helper deboners provide excellent efficiency and output.

You can preprocess the poultry by cutting them into parts, and then efficiently debone separated meat by Helper deboner, which means customers only need to purchase the meat and segment it. Sunby deboners can quickly debone the meat and has less influence on the meat quality during the processing. Moreover, there are many models of deboners to meet your different demands.


After processing, minced poultry can be made into chicken nuggets, sausages, etc.. The remaining crushed bone can be made into pet feed because it contains a lot of protein to that makes for high quality nutritional supplements.


QGJ-100 300-350kg/h

QGJ-130 600-800kg/h
QGJ-160 1200-1500kg/h
QGJ-180 2000-3000kg/h
QGJ-220 3000-4000kg/h
QGJ-300 4000-5000kg/h

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