Project backgroundThe production of a prototype of a flagship charging station for a new energy vehicle brand requires the complete display of core functional areas such as recharge stakes, photovoltaic roofs, rest areas, with overall reduction of over 90 per cent and light interaction.

Main Structure ProductionThe capping of the charging station is based on the Aclytic thermal bending process, which displays a translucent photovoltaic effect through multilayering. The poles are supported by metal piping carts, and surfaces are laced to reduce steel structure. The main charger is shaped through precision injections, and separate improbable parts of the gun interface are plugged to ensure smooth activity.
Characteristic Details Processing
Charged gun wires use soft glue injection to maintain natural downfall
The display screen is printed with high-photo-photo film UV to display charge-state animation
Ground space markers are made by laser engraving dent filling process
Tables and chairs in the rest area are micro-processed with wood and surfaces are used for old treatment
Material Applications Programme
Architect: Anti-conversion composite sheet
Transparent component: scratch-proof polycarbonate
Metal component: Antioxidation alloy plating
Landscape vegetation: environmentally friendly fibre material
Surface process
Basic treatment:
EMPLOYMENT OF EMPLOYED IN COMPLETE FOR COMPLETE
Use of special patches at seams
Hand-crafted and fine-drived.
Professional coating:
Underground paints use retro-enhanced paints
The main color uses a micrometer-grade sprayer.
Identifier text is trans-printed using trans-printing techniques
Effect enhancement:
ELECTRONIC ELECTRONIC PLACE OF MEDIUM PARTS
Photovoltaic surface plating gradient membrane
The ground's going to wear it down.
Dynamic system integration
The charge-state indicator light changes with the program
The penthouse has a colourable atmosphere light.
Interactive screen displays simulated charge data
With wireless charge demonstration module