Jiangsu Runshan Precision Machinery Technology Co., Ltd

China

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TIME POSITION ADJUSTING MECHANISM FOR CAULDRON-SHAPED STRUCTURE OF DOUBLE-SIDED CIRCULAR LOOM

      
Application Number CN2020135088
Publication Number 2021/232755
Status In Force
Filing Date 2020-12-10
Publication Date 2021-11-25
Owner JIANGSU RUNSHAN PRECISION MACHINERY TECHNOLOGY CO., LTD (China)
Inventor
  • Zheng, Zeshan
  • Li, Jinchi
  • Zheng, Jiasen

Abstract

A time position adjusting mechanism for a cauldron-shaped structure (1) of a double-sided circular loom. A sleeve hole is formed in the middle of the cauldron-shaped structure (1), and a center shaft (2) is fixed in the sleeve hole by means of a sleeve (3). An upper needle plate (5) and a needle plate seat (6) are arranged at the bottom of the center shaft (2), and a horizontal step face (31) is formed on a lower portion of the sleeve (3). A middle core (7) and a cutting disc (8) are sequentially fixed to an outer side of the horizontal step face (31). The middle core (7) comprises a middle core base (71) and a middle core main body (72). The middle core base (71) is fixed to the horizontal step face (31) of the sleeve (3), and the middle core main body (72) is fixed to the cutting disc (8). A time position adjusting mechanism (9) is provided between the middle core base (71) and the middle core main body (72), and the time position adjusting mechanism (9) comprises a first adjusting assembly (91), a second adjusting assembly (92) and a stop screw(93). The first adjusting assembly (91) is fixed onto the middle core main body (72), the second adjusting assembly (92) is fixed onto the middle core base (71), and the stop screw (93) penetrates through two sides of the second adjusting assembly (92) to oppositely push the first adjusting assembly (91), so that relative positions of the middle core base (71) and the middle core main body (72) are adjusted. By using the adjusting mechanism, the time position of an inner ring of the cauldron-shaped structure may be quickly adjusted, and the adjustment precision and efficiency are high.

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