家电科技 ›› 2025, Vol. 0 ›› Issue (zk): 629-633.doi: 10.19784/j.cnki.issn1672-0172.2025.99.130

• 第七部分 工业设计与用户体验 • 上一篇    下一篇

高端立柜式空调亚克力外观工艺研究

罗袁伟, 王振勇, 贾己晓, 郑力鑫   

  1. TCL空调器(中山)有限公司 广东中山 528427
  • 发布日期:2025-12-30
  • 作者简介:罗袁伟,硕士学位。研究方向:空调CMF外观技术研究。E-mail:yuanwei1.luo@tcl.com。

Research on the acrylic exterior craftsmanship of high-end floor-standing cabinet air conditioners

LUO Yuanwei, WANG Zhenyong, JIA Jixiao, ZHENG Lixin   

  1. TCL Air Conditioner (Zhongshan) Co., Ltd. Zhongshan 528427
  • Published:2025-12-30

摘要: 目前高端立柜式空调普遍采用亚克力作为外观面板,但传统方案需额外增加透明衬板进行组装,导致材料、模具、运输及人工综合成本居高不下。通过取消透明衬板,采用一体化组装工艺,可显著降低外观组件制造成本、运输成本。并验证不同温湿度环境亚克力尺寸变化、静态悬挂测试、不同激光雕刻工艺、压合保护工艺,解决了取消透明衬板所带来的亚克力储运尺寸变化大、双面胶粘接失效、组装缝隙不均匀、压合应力开裂等问题,顺利实现高端柜机亚克力无衬板组装一次良率稳定在95%以上。该方案为高端立柜式空调亚克力外观,提供了一条低成本、高可靠的全新技术路线。

关键词: 亚克力, 热弯工艺, 一体化组装, 温湿度控制, 应力开裂

Abstract: Currently, high-end floor-standing air conditioners widely use acrylic for exterior panels. However, traditional solutions require an additional transparent backing plate for assembly, leading to high comprehensive costs in materials, molds, transportation, and labor. By eliminating the transparent backing plate and adopting an integrated assembly process, the manufacturing and transportation costs of exterior components can be significantly reduced. Through validation of acrylic dimensional changes under different temperature and humidity conditions, static suspension tests, various laser engraving techniques, and lamination protection processes, issues such as significant dimensional variations in storage and transportation, double-sided tape adhesion failure, uneven assembly gaps, and stress cracking during lamination—caused by the removal of the backing plate—have been resolved. This successfully achieves a stable first-pass yield rate of over 95% for high-end floor-standing air conditioners with acrylic panels assembled without a backing plate. This solution provides a new technical approach for high-end floor-standing air conditioner acrylic exteriors that is low-cost, highly reliable.

Key words: Acrylic, Hot bending process, Integrated assembly, Temperature and humidity control, Stress cracks

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