3 Design of Household Appliances Considering Remanufacturing …
43
the case filter module assembly (with the fastening point of 17.0/20 points), which
requires disassembly through the auxiliary equipment, were derived as the target
parts requiring improvement. In the case of the deco-cover front assembly, which
was fastened by the adhesive method and could not be disassembled, it improved
from 7.9 points to 20.0 points after improving the convenience of remanufacturing
by changing the fastening method by snap fit method. The time required for the
work process was reduced from 225 to 40 s, which is about 185 s shorter. The case
filter module assembly, which was hampered by the convenience of remanufacturing
due to the insertion of auxiliary equipment in the disassembly stage, improved the
convenience by changing the connection method between the case filter assembly
and the filter. As a result of improving the convenience of remanufacturing of the
water purifier model selected as the sample, the working time was reduced by 192 s
in total.
References
Bettles (2002) Design for manufacture & assembly (DFMA)-the boothroyd & dewhurst approach.
In: Competitive performance through advanced technology
Hatcher GD, Ijomah WL, Windmill JF (2013) Design for remanufacturing in China: a case study
of electrical and electronic equipment. J Remanuf 3:3
Hj JO, Hwang YW, Park JH, Kang HY (2011) Environmental impact evaluation for the automotive
remanufacturing parts and remanufacturing toner cartridge using the LCA methodology. Korea
Solid Wastes Eng Soc 28(7):770–777
Jun YS, Kang HY, Jo HJ, Baek CY, Kim YC (2019) Evalustion of environmental impact and
benefits for remanufactured construction equipment parts using life cycle assessment. Proc Manuf
33:288–295
Kang HY, Jun YS, Jo HJ, Baek CY, Kim YC (2018) Korea’s remanufacturing industry in comparison
with its global status: a case study. J Remanuf 8(1–2):81–91
Korea Institute of Industrial Technology (2018) Ministry of Trade, Industry and Energy, Korea Institute of Energy Technology Evaluation and Planning. Resource Circulation Technology Roadmap
(In Korean)
Matsumoto M, Umeda Y (2011) An analysis of remanufacturing practices in Japan. J Remanuf, 1:2
Sakao T, Mizuyama H (2014) Understanding of a product/service system design: a holistic approach
to support design for remanufacturing. J Remanuf 4–1:1–24
Stead JG, Stead WE (2004) Sustainable strategic management. In: A greenleaf publishing book, pp
20–21
Sundin E (2004) Product and process design for successful remanufacturing. Linköpings Universitet,
Linköping, Sweden, pp 1–3
Yi HC, Chang YS (2007) Development of the disassemblability evaluation methods of the products
for remanufacturing. Clean Technol 13(2):134–142
43
the case filter module assembly (with the fastening point of 17.0/20 points), which
requires disassembly through the auxiliary equipment, were derived as the target
parts requiring improvement. In the case of the deco-cover front assembly, which
was fastened by the adhesive method and could not be disassembled, it improved
from 7.9 points to 20.0 points after improving the convenience of remanufacturing
by changing the fastening method by snap fit method. The time required for the
work process was reduced from 225 to 40 s, which is about 185 s shorter. The case
filter module assembly, which was hampered by the convenience of remanufacturing
due to the insertion of auxiliary equipment in the disassembly stage, improved the
convenience by changing the connection method between the case filter assembly
and the filter. As a result of improving the convenience of remanufacturing of the
water purifier model selected as the sample, the working time was reduced by 192 s
in total.
References
Bettles (2002) Design for manufacture & assembly (DFMA)-the boothroyd & dewhurst approach.
In: Competitive performance through advanced technology
Hatcher GD, Ijomah WL, Windmill JF (2013) Design for remanufacturing in China: a case study
of electrical and electronic equipment. J Remanuf 3:3
Hj JO, Hwang YW, Park JH, Kang HY (2011) Environmental impact evaluation for the automotive
remanufacturing parts and remanufacturing toner cartridge using the LCA methodology. Korea
Solid Wastes Eng Soc 28(7):770–777
Jun YS, Kang HY, Jo HJ, Baek CY, Kim YC (2019) Evalustion of environmental impact and
benefits for remanufactured construction equipment parts using life cycle assessment. Proc Manuf
33:288–295
Kang HY, Jun YS, Jo HJ, Baek CY, Kim YC (2018) Korea’s remanufacturing industry in comparison
with its global status: a case study. J Remanuf 8(1–2):81–91
Korea Institute of Industrial Technology (2018) Ministry of Trade, Industry and Energy, Korea Institute of Energy Technology Evaluation and Planning. Resource Circulation Technology Roadmap
(In Korean)
Matsumoto M, Umeda Y (2011) An analysis of remanufacturing practices in Japan. J Remanuf, 1:2
Sakao T, Mizuyama H (2014) Understanding of a product/service system design: a holistic approach
to support design for remanufacturing. J Remanuf 4–1:1–24
Stead JG, Stead WE (2004) Sustainable strategic management. In: A greenleaf publishing book, pp
20–21
Sundin E (2004) Product and process design for successful remanufacturing. Linköpings Universitet,
Linköping, Sweden, pp 1–3
Yi HC, Chang YS (2007) Development of the disassemblability evaluation methods of the products
for remanufacturing. Clean Technol 13(2):134–142
