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Plate splicing mortise and tenon joint structure and clamping piece machining method thereof
The invention discloses a plate splicing mortise and tenon joint structure and a clamping piece machining method thereof. The plate splicing mortise and tenon joint structure comprises an integrally-formed clamping piece. The clamping piece comprises an upper clamping plate, a lower clamping plate, two connecting plates and a limiting block, all of which are integrally formed. The two ends of the upper clamping plate and the two ends of the lower clamping plate are connected through the connecting plates. An empty groove is formed by the inner sides of the two connecting plates and the edge sides of the upper clamping plate and the lower clamping plate. The limiting block is located on the edge of one side of the lower clamping plate, and the limiting block and the connecting plates are located on the same side. According to the plate splicing mortise and tenon joint structure and the clamping piece machining method thereof, the plate splicing firmness is guaranteed, meanwhile, the plate splicing convenience and dismounting flexibility are improved, the machining technology is simple and easy to operate, and machining waste is few; and the integrally-formed clamping piece is arranged on a plate and spliced with an I-shaped clamping strip, and finally plate splicing is achieved. According to the plate splicing mortise and tenon joint structure and the clamping piece machining method thereof, stress of the plate is transferred to the clamping piece, and therefore the requirement of the splicing structure for the strength of the plate is greatly reduced, and the plate cost can be greatly reduced.
本发明公开了一种板材拼接榫卯结构及其卡件加工方法,包括一体成型的卡件,卡件包括一体成型的上卡板、下卡板、两块连接板和限位块,上卡板和下卡板的两端分别通过连接板连接,两块连接板的内侧与上卡板和下卡板的边侧形成一空槽,限位块位于下卡板一侧边缘处,且与连接板位于同侧。本发明在保证板材拼接牢固度的同时,提高了板材拼接的便捷性和拆卸的灵活性,且加工工艺简单易操作,加工废料少;通过在板材上安装一体成型的卡件,与工字卡条拼接,最终实现板材的拼接,本发明将板材的受力转移至卡件上,因此大大降低了拼接结构对于板材本身强度的要求,能够极大的降低板材的成本。
Plate splicing mortise and tenon joint structure and clamping piece machining method thereof
The invention discloses a plate splicing mortise and tenon joint structure and a clamping piece machining method thereof. The plate splicing mortise and tenon joint structure comprises an integrally-formed clamping piece. The clamping piece comprises an upper clamping plate, a lower clamping plate, two connecting plates and a limiting block, all of which are integrally formed. The two ends of the upper clamping plate and the two ends of the lower clamping plate are connected through the connecting plates. An empty groove is formed by the inner sides of the two connecting plates and the edge sides of the upper clamping plate and the lower clamping plate. The limiting block is located on the edge of one side of the lower clamping plate, and the limiting block and the connecting plates are located on the same side. According to the plate splicing mortise and tenon joint structure and the clamping piece machining method thereof, the plate splicing firmness is guaranteed, meanwhile, the plate splicing convenience and dismounting flexibility are improved, the machining technology is simple and easy to operate, and machining waste is few; and the integrally-formed clamping piece is arranged on a plate and spliced with an I-shaped clamping strip, and finally plate splicing is achieved. According to the plate splicing mortise and tenon joint structure and the clamping piece machining method thereof, stress of the plate is transferred to the clamping piece, and therefore the requirement of the splicing structure for the strength of the plate is greatly reduced, and the plate cost can be greatly reduced.
本发明公开了一种板材拼接榫卯结构及其卡件加工方法,包括一体成型的卡件,卡件包括一体成型的上卡板、下卡板、两块连接板和限位块,上卡板和下卡板的两端分别通过连接板连接,两块连接板的内侧与上卡板和下卡板的边侧形成一空槽,限位块位于下卡板一侧边缘处,且与连接板位于同侧。本发明在保证板材拼接牢固度的同时,提高了板材拼接的便捷性和拆卸的灵活性,且加工工艺简单易操作,加工废料少;通过在板材上安装一体成型的卡件,与工字卡条拼接,最终实现板材的拼接,本发明将板材的受力转移至卡件上,因此大大降低了拼接结构对于板材本身强度的要求,能够极大的降低板材的成本。
Plate splicing mortise and tenon joint structure and clamping piece machining method thereof
一种板材拼接榫卯结构及其卡件加工方法
LIANG BAOWEI (Autor:in)
24.12.2021
Patent
Elektronische Ressource
Chinesisch
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