家电科技 ›› 2025, Vol. 0 ›› Issue (3): 80-84.doi: 10.19784/j.cnki.issn1672-0172.2025.03.013

• 论文 • 上一篇    下一篇

冰箱内置式制冰机多参数协同优化技术研究

刘林威, 李成硕, 王启安, 李平, 刘殿   

  1. 小米(武汉)科技有限公司 湖北武汉 430000
  • 发布日期:2025-08-19
  • 作者简介:刘林威,硕士学位。研究方向:制冰机性能。地址:湖北省武汉市江夏区小米武汉科技园。E-mail:wei2360391337@163.com。

Research on multi parameter collaborative optimization technology for refrigerator built in ice maker

LIU Linwei, LI Chengshuo, WANG Qi'an, LI Ping, LIU Dian   

  1. Xiaomi (Wuhan) Technology Co., Ltd. Wuhan 430000
  • Published:2025-08-19

摘要: 目前制冰领域内普遍存在制冰质量与制冰速度协同提升的平衡性问题,主要归因于风速调控精度不足、脱冰温度控制偏差以及框架结构的热传导效率低下。而当前研究多集中于单一参数的优化改进,导致制冰性能提升受限。为此,以制冰出口风速、冰块脱冰温度及制冰框架结构为优化对象,通过实验与仿真结合的方法协同优化,确定了制冰最优出风口风速3.17 m/s、最优脱冰温度-12 ℃,冰格间最大温差降低67.6%,实现了在制冰质量≥90%的条件下,制冰周期缩短至60 min的技术突破。

关键词: 自动制冰机, 脱冰温度, 风口风速, 制冰框架, 制冰质量

Abstract: At present, there is a common balance problem in the field of ice making between the quality and speed of ice making, mainly due to insufficient accuracy in wind speed regulation, deviation in de icing temperature control, and low thermal conductivity efficiency of the frame structure. However, current research mainly focuses on optimizing and improving a single parameter, which limits the improvement of ice making performance. Therefore, takes the ice making outlet wind speed, ice de icing temperature, and ice making frame structure as optimization objects. Through a combination of experimental and simulation methods, the optimal air outlet wind speed for ice making was determined to be 3.17 m/s, the optimal de icing temperature was -12 ℃, and the maximum temperature difference between ice cells was reduced by 67.6%. This achieved a technological breakthrough in shortening the ice making cycle to 60 minutes under the condition of ice making quality≥90%.

Key words: Automatic ice maker, De-icing temperature, Airspeed at the air outlet, Ice-making frame, Ice-making quality

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