一种电磁先导头的套管成型装置
By designing a vertically movable stamping sleeve and an electromagnetic induction heating sleeve forming device, the problems of complicated assembly and poor sealing effect of traditional electromagnetic pilot head sleeve forming devices are solved, achieving rapid connection and efficient sealing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NINGBO FENGHUA JUNTENG MASCH MFG CO LTD
- Filing Date
- 2025-07-28
- Publication Date
- 2026-07-17
AI Technical Summary
Traditional electromagnetic pilot head sleeve forming devices suffer from problems such as complicated assembly, high manpower and time costs, and difficulty in ensuring the sealing effect between the base and the sleeve.
An electromagnetic pilot head sleeve forming device was designed. It utilizes a vertically movable stamping sleeve and an electromagnetic induction coil. Through the inclined surface structure of the stamping plate and the heating of the sleeve, the sleeve is quickly connected to the base and the sealing effect is ensured. Electromagnetic induction heating is used to improve the plasticity of the sleeve to facilitate deformation.
It enables quick connection between the sleeve and the base and significantly improves the sealing effect, reduces production costs, increases production efficiency and prevents material leakage.
Smart Images

Figure CN224508264U_ABST
Abstract
Claims
1. A cannula forming device for an electromagnetic pilot head, characterized in that include: The main body (1) is provided with a sleeve conveying station, a base conveying station and a forming station; The casing conveying device (2) is set at the casing conveying station to continuously feed the casing. The base conveying device (3) is set at the base conveying station to continuously feed the base; The station switching device (4) is set on the main body (1) to transfer the sleeve and the base to the molding station to press the base and the sleeve together. The station switching device (4) includes a rotating disk (41) rotatably set on the main body (1), and a number of support sleeves (411) are evenly arranged on the rotating disk (41). A stamping assembly (5) is set at the forming station to press the base and the sleeve together; The stamping assembly (5) includes a stamping sleeve (51) that can move up and down, and a stamping plate (511) is provided inside the stamping sleeve (51) near the center position, which can cause the top of the sleeve to retract inward and contact the outside of the base.
2. A cannula forming device for an electromagnetic pilot head according to claim 1, characterized in that The stamping plate (511) is also provided with a through hole at the center, and the bottom end of the through hole at the center of the stamping plate (511) expands outward to form an inclined surface.
3. A cannulation device for an electromagnetic pilot head according to claim 2, wherein, The stamping assembly (5) also includes an electromagnetic induction coil (55) spirally wound around the bottom of the stamping plate (511) for heating the sleeve.
4. A cannulation device for an electromagnetic pilot head according to claim 3, characterized in that The stamping assembly (5) includes a bracket (52) fixed to the top of the main body (1), and a telescopic drive (53) that can drive the stamping sleeve (51) to move up and down is vertically arranged on the stamping sleeve (51). The output end of the telescopic drive (53) is connected to the top of the stamping sleeve (51). The stamping assembly (5) also includes a guide rod (54) that is vertically arranged on the stamping sleeve (51) and slides with the bracket (52).
5. A cannulation device for an electromagnetic pilot head according to claim 1, wherein, The sleeve conveying device (2) includes a sleeve support platform (26) fixed at the top of the main body (1) near the stamping and forming assembly (5). The main body (1) also includes a first vibratory plate (21) at the top of the main body (1) for continuously feeding the sleeve, and the conveying track of the first vibratory plate (21) is connected to the sleeve support platform (26).
6. A cannulation device for an electromagnetic pilot head according to claim 5, wherein, The sleeve support platform (26) includes a first moving mechanism (22) fixed to the side of the sleeve support platform (26) and inserting the sleeve on the sleeve support platform (26) into the support sleeve (411). The first moving mechanism (22) is also vertically provided with a second moving mechanism (23) that can move the sleeve up and down. The output end of the second moving mechanism (23) is connected to a first support member (24). The first support member (24) is rotatably provided with a first clamping claw (25) that can clamp the sleeve. The first support member (24) is also provided with a first rotation drive member (241) that can drive the first clamping claw (25) to flip.
7. A cannulation device for an electromagnetic pilot head according to claim 1, wherein, The base conveying device (3) includes a base support platform (36) fixed on the top of the main body (1). The base conveying device (3) also includes a second vibrating plate (31) set on the main body (1) to continuously feed the base. The output track of the second vibrating plate (31) is connected to the base support platform (36).
8. A cannulation device for an electromagnetic pilot head according to claim 7, characterized in that The base conveying device (3) further includes a third moving mechanism (32) fixed to the side of the sleeve support platform (26) and inserting the base on the base support platform (36) into the sleeve. The third moving mechanism (32) is provided with a fourth moving mechanism (33) that can move the base up and down. The output end of the fourth moving mechanism (33) is connected to a second support member (34), and a second clamping claw (35) that can clamp the base is rotatably provided on the second support member (34). The second support member (34) is also provided with a second rotation drive member (341) that can drive the second clamping claw (35) to rotate.
9. A cannulation device for an electromagnetic pilot head according to claim 1, wherein, The workstation switching device (4) includes a third rotary drive (42) disposed on the top of the main body (1) and used to drive the rotary disk (41) to rotate.