Advanced technology is used on crankshaft surface
process and post polishing. Thus, can this technology
be applied in other fields? Does it have same effect
and advantage when applied in other fields?
Firstly, the key technology of crankshaft
remanufacturing mainly includes precision process
and surface treatment of machine parts. If recycle
can be realized in crankshaft remanufacturing, this
key technology can be applied in other fields. For
example, for parts which are easy to be abraded on
surface, post process can be realized if their sizes can
be reduced. Thus, the key technology of crankshaft
remanufacturing can be applied in reprocessing of
parts with surface abrasion.
Secondly, crankshaft remanufacturing is actually
a renovating technology because some parts only
abrade surface without affecting inside. Therefore,
crankshaft remanufacturing technology can be used
to renovate some parts. In fact, eliminated parts can
have new effect if their surface rusting is removed
and polished through remanufacturing technology.
Therefore, the key technology of crankshaft
remanufacturing can be applied in renovating fields.
Finally, the technical theory of crankshaft
remanufacturing is a technology of wastes recycling.
The technical theory can be used in the reprocessing
of other eliminated parts. Meanwhile, the key
technology of crankshaft remanufacturing can be
used to realize the process of polish, renovating and
reprocessing. In many circumstances, parts should be
evaluated and processed on labels and specifications
according to evaluation system. Thus
remanufacturing technology can be truly achieved.
4.2 Effect of Crankshaft
Remanufacturing Technology
The key technology of crankshaft remanufacturing
has great effect on its technical theory and
application range. This technology can be applied to
reprocessing engine crankshafts and other similar
parts. Thus, wastes recycle can be realized.
However, how do we evaluate the actual effect of
crankshaft remanufacturing technology?
Firstly, the most remarkable effect of crankshaft
remanufacturing technology is the recycle of parts.
Generally, recycle and utilization are different ideas.
The reprocessing idea of crankshaft remanufacturing
technology realizes the reuse of abandoned parts.
These parts can be utilized twice after reprocessed
and polished by advanced reprocessing technology.
Thus, cost is controlled and resource waste is
reduced.
Secondly, the application effect of crankshaft
remanufacturing technology can maximize its
support for green manufacturing. With the spread of
environmental protection idea, people pay more
attention to the development of green manufacturing.
The core idea of green manufacturing is energy
conservation and waste avoiding. If the key
technology of crankshaft remanufacturing works,
green manufacturing will be greatly promoted. This
technology can recycle and reuse wastes on their
original position, which greatly realizes the
comprehensive development of green manufacturing.
5 CONCLUSIONS
In this work, remanufacturing application ideas and
effects are analyzed. Besides, remanufacturing
technology on the background of energy
conservation and environmental protection can solve
the problem of resource recycle. The characteristic
and application skills are emphasized in the analysis
of remanufacturing technology. Thus, the key
technology can be used to realize the recycle of
abandoned crankshafts. As one of the most common
parts in engine, crankshaft has a high probability of
loss because of its high frequency of using. In the
process of remanufacturing, the expected effect
should be confirmed, and the final evaluation should
be made according to the actual effect. In conclusion,
the application of remanufacturing key technology
plays an important role in crankshaft
remanufacturing. Besides, it lays a certain foundation
for the development of green industry.
ACKNOWLEDGEMENTS
This work was supported by science and engineering
key project of Research and Application of
Crankshaft Remanufacturing Key Technology from
Education Department in Sichuan. Project number:
14ZA0337
REFERENCES
Yan Xiaoling, Dong Xiaoyun, Wang Xinyue, Zhu Yingyu,
Wang Wanglong, 2013(10):20-24. Detection method
for remanufactured crankshaft based on ultrasonic
phased array technology. Modern Manufacturing
Engineering.
Liu Huaiyin, Feng Guosheng, Liu Huaijin, Gao Shuang,
2014(01):40-44. Fatigue life analysis of
remanufactured crankshaft. Journal of Shijiazhuang
Tiedao University: Natural Science Edition.
Liu Xiaoxu, Chen Min. Study on the crankshaft design
technology of small type internal-combustion engine
for remanufacture. Machinery Design & Manufacture.
Key Technology and Application of Crankshaft Remanufacturing
189