Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Monorail embedded hinge for refrigerator
The invention discloses a monorail embedded hinge for a refrigerator. The monorail embedded hinge comprises a mounting plate, an extension plate, a refrigerator door, cabinet bodies and a refrigeratorstorage cavity. Two rotary shafts are rotatably fixed to the opposite surfaces of the mounting plate and the refrigerator door correspondingly. The two rotary shafts are connected through a rotary plate arranged horizontally. The two rotary shafts are rotatably sleeved to the two ends of the rotary plate. The mounting plate or the refrigerator door is provided with an embedment groove used for embedding the two rotary shafts and the rotary plate. The refrigerator door and the mounting plate are in limited connection through a guide sliding groove for guiding the refrigerator door to move anda sliding groove guide shaft. The sliding groove guide shaft slidably penetrates into the guide sliding groove. Through the monorail embedded hinge for the refrigerator, hinged rotation of the refrigerator door can be realized through a transmission rotating mechanism with the rotary plate. Through two arc-shaped grooves with different retraction functions formed in the guide sliding groove, the refrigerator door and the cabinet body can be normally opened and closed under the condition of the minimum distance between the refrigerator door and a front panel of the refrigerator storage cavity,the gaps between the refrigerator door, the cabinet body and a refrigerator body are greatly reduced, and the monorail embedded hinge is more suitable for installation of the refrigerator body embedded in the cabinet body.
本发明公开了一种冰箱单轨嵌入式铰链,包括安装板、延伸板、箱门、柜体和冰箱储存腔,所述安装板和所述箱门相对面上分别转动固定有一根转轴,两根转轴之间通过水平设置的转动板相连,转动板的两端分别与两根转轴转动套接,安装板或箱门上开设有用于将两根转轴和内嵌的内嵌槽,箱门与安装板之间通过用于引导箱门运动的导向滑槽和滑槽导向轴限位相连,滑槽导向轴滑动穿设在导向滑槽内;本发明利用带转动板的传动转动机构实现箱门的铰接转动,通过导向滑槽设有两段具有不同回缩功能的弧形槽可以实现箱门与柜体、箱门与不行储存腔前面板最小间距调节下的正常开合,大大减小了箱门与柜体以及冰箱主体的间隙,更加适用于内嵌在柜体冰箱主体的安装。
Monorail embedded hinge for refrigerator
The invention discloses a monorail embedded hinge for a refrigerator. The monorail embedded hinge comprises a mounting plate, an extension plate, a refrigerator door, cabinet bodies and a refrigeratorstorage cavity. Two rotary shafts are rotatably fixed to the opposite surfaces of the mounting plate and the refrigerator door correspondingly. The two rotary shafts are connected through a rotary plate arranged horizontally. The two rotary shafts are rotatably sleeved to the two ends of the rotary plate. The mounting plate or the refrigerator door is provided with an embedment groove used for embedding the two rotary shafts and the rotary plate. The refrigerator door and the mounting plate are in limited connection through a guide sliding groove for guiding the refrigerator door to move anda sliding groove guide shaft. The sliding groove guide shaft slidably penetrates into the guide sliding groove. Through the monorail embedded hinge for the refrigerator, hinged rotation of the refrigerator door can be realized through a transmission rotating mechanism with the rotary plate. Through two arc-shaped grooves with different retraction functions formed in the guide sliding groove, the refrigerator door and the cabinet body can be normally opened and closed under the condition of the minimum distance between the refrigerator door and a front panel of the refrigerator storage cavity,the gaps between the refrigerator door, the cabinet body and a refrigerator body are greatly reduced, and the monorail embedded hinge is more suitable for installation of the refrigerator body embedded in the cabinet body.
本发明公开了一种冰箱单轨嵌入式铰链,包括安装板、延伸板、箱门、柜体和冰箱储存腔,所述安装板和所述箱门相对面上分别转动固定有一根转轴,两根转轴之间通过水平设置的转动板相连,转动板的两端分别与两根转轴转动套接,安装板或箱门上开设有用于将两根转轴和内嵌的内嵌槽,箱门与安装板之间通过用于引导箱门运动的导向滑槽和滑槽导向轴限位相连,滑槽导向轴滑动穿设在导向滑槽内;本发明利用带转动板的传动转动机构实现箱门的铰接转动,通过导向滑槽设有两段具有不同回缩功能的弧形槽可以实现箱门与柜体、箱门与不行储存腔前面板最小间距调节下的正常开合,大大减小了箱门与柜体以及冰箱主体的间隙,更加适用于内嵌在柜体冰箱主体的安装。
Monorail embedded hinge for refrigerator
一种冰箱单轨嵌入式铰链
HU TAO (Autor:in) / YANG WENMING (Autor:in) / XU DEYA (Autor:in) / ZHANG XIANG (Autor:in) / SUN YAFEI (Autor:in)
10.07.2020
Patent
Elektronische Ressource
Chinesisch