Adjustable porcelain eye screen plate

By designing an adjustable ceramic eye mesh plate, adopting a separate structure for the mounting base and mesh plate, and combining it with a locking mechanism, the problem of severe ceramic eye wear in traditional stranding machines has been solved, achieving adjustable and stable ceramic eyes and reducing maintenance costs.

CN223665229UActive Publication Date: 2025-12-12CHANGZHOU RONIS SPECIAL CONDUCTOR CO LTD
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Patent Information

Application Number
CN202423241660.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-12-12
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

The wire mesh on traditional stranding machines has a fixed structure, which leads to severe wear of the ceramic eye and requires frequent replacement, resulting in resource waste and increased production costs.

Method used

An adjustable ceramic eye mesh plate is designed, which adopts a separate structure of mounting base and mesh plate, combined with a locking mechanism, so that the mesh plate can be positioned, locked and adjusted within the hollow ring, avoiding continuous use of a single ceramic eye in the same position.

Benefits of technology

This reduces maintenance frequency, lowers maintenance costs, extends the lifespan of the ceramic eyepiece, and meets usage requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an adjustable porcelain eye screen, which relates to the technical field of stranding machines, and comprises a mounting seat, and the top of the mounting seat is provided with an integrally formed hollow ring; the screen plate is embedded in the inner side of the hollow ring, porcelain eye mounting holes are distributed in the end face of the screen plate, and an arc-shaped open groove in an arc shape is formed in the middle of the screen plate; and the locking mechanism is arranged between the mounting seat and the screen plate, and the locking mechanism is used for locking the position of the screen plate in the hollow ring of the mounting seat. The porcelain eye screen plate is arranged to be of a split structure of the mounting seat and the screen plate, the hollow ring on the mounting seat is used for positioning the screen plate, and the locking mechanism is matched for locking the position of the screen plate in the hollow ring, so that the screen plate can be detached and replaced on the mounting seat, and the screen plate can be conveniently detached and replaced. Meanwhile, the positions of the porcelain eyes can be adjusted through rotation of the screen plate in the hollow ring, the situation that single porcelain eye is prone to abrasion and damage when used continuously at the same position is avoided, and therefore the maintenance frequency is reduced, the cost is reduced, and the use requirement is better met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a stranding machine technical field, in particular to an adjustable porcelain eye screen plate. BACKGROUND

[0002] The porcelain eye screen plate is one of important components of the stranding machine, and the single filaments pass through the porcelain eye of the screen plate and then enter the mold for stranding during the operation of the stranding machine.

[0003] In the prior art, the screen plate on the traditional stranding machine is of fixed structure, and the single filaments always pass through a certain place of the porcelain eye during use, which causes serious wear of the porcelain eye and frequent replacement of the porcelain eye, thereby increasing the maintenance frequency and causing resource waste and increased production cost, and it is difficult to meet the use requirement. UTILITY MODEL CONTENT

[0004] The utility model discloses a kind of adjustable porcelain eye screen plates to solve the problems raised in the above background.

[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of adjustable porcelain eye screen plate, comprising:

[0006] Mounting seat, the mounting seat top is provided with the hollow ring of integrated molding;

[0007] Screen plate, the screen plate is embedded in the inside of hollow ring, the screen plate end surface is distributed with porcelain eye mounting hole, the middle part of the screen plate is equipped with the arc-shaped slot of circular arc shape;

[0008] Locking mechanism, the locking mechanism is arranged between mounting seat and screen plate, and the locking mechanism is used for the locking of the position of screen plate in the hollow ring of mounting seat.

[0009] Preferably, the locking mechanism comprises:

[0010] Screw hole, the screw hole is spaced apart and provided along the outer periphery of hollow ring;

[0011] Positioning slot, the positioning slot is one-to-one corresponding with screw hole and is spaced apart and provided along the outer periphery of screen plate;

[0012] Positioning screw, the positioning screw is screw-connected in the inside of screw hole, and the end of the positioning screw extends to the inside of positioning slot.

[0013] Preferably, the locking mechanism further comprises:

[0014] External thread slot, the external thread slot is provided at the position of the outer periphery of hollow ring, and the inner cavity section of hollow ring is T-shaped;

[0015] The internally threaded end cap is threadedly sleeved in the externally threaded slotted position of the hollow ring, and the diameter of the end port of the mounting base is smaller than the diameter of the internal cavity of the internally threaded end cap.

[0016] Preferably, the hollow ring is fixedly connected with at least one positioning protrusion, and the outer peripheral wall of the net plate is spaced apart and provided with a plurality of positioning grooves matched with the positioning protrusions.

[0017] Preferably, the locking mechanism further comprises:

[0018] The insertion rod is slidably inserted into the position of the outer peripheral wall of the hollow ring;

[0019] The insertion slot is spaced apart and provided on the outer peripheral wall of the net plate;

[0020] The reset spring is arranged at the position of the end of the insertion rod away from the insertion slot, and the reset spring is used to drive the insertion rod to be automatically inserted into the corresponding insertion slot.

[0021] Preferably, the hollow cover is fixedly connected with the corresponding position of the outer peripheral wall of the hollow ring and the insertion rod, the T-shaped pull rod is slidably connected in the hollow cover, the end of the T-shaped pull rod away from the insertion rod is annular and extends to the outside of the hollow cover, the reset spring is arranged between the hollow cover and the T-shaped pull rod, and the end of the insertion rod is fixedly connected with the end face of the T-shaped pull rod.

[0022] The technical effects and advantages of the present application are as follows:

[0023] The porcelain eye net plate is set as a split type structure of the mounting base and the net plate, the net plate is positioned by the hollow ring on the mounting base, the position of the net plate in the hollow ring is locked by the locking mechanism, the net plate can be disassembled and replaced on the mounting base, the position of the porcelain eye can be adjusted by rotating the net plate in the hollow ring, the single porcelain eye is prevented from being continuously used at the same position and being easily worn and damaged, the maintenance frequency is reduced, the cost is reduced, and the use requirement is better met. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 It is a three-dimensional structure schematic view of the porcelain eye net plate in the embodiment 1 of the present application.

[0025] Figure 2 It is a front partial cross-sectional structure schematic view of the porcelain eye net plate in the embodiment 1 of the present application.

[0026] Figure 3 It is one of three-dimensional structure schematic views of the porcelain eye net plate in the embodiment 2 of the present application.

[0027] Figure 4 It is the second three-dimensional structure schematic view of the porcelain eye net plate in the embodiment 2 of the present application.

[0028] Figure 5 It is the structure schematic view of the front section of the porcelain eye screen plate of the utility model embodiment 3.

[0029] Figure 6 It is the structure schematic view of the A place of the utility model Figure 5 embodiment.

[0030] In the figure: 100, mounting seat; 101, hollow ring; 200, screen plate; 201, arc-shaped slot; 202, porcelain eye mounting hole; 300, locking mechanism; 301, screw hole; 302, positioning groove; 303, positioning screw; 311, outer thread slot; 312, inner thread end cover; 313, positioning lug; 314, positioning groove; 321, hollow cover; 322, T-shaped pull rod; 323, return spring; 324, insertion rod; 325, insertion slot. DETAILED DESCRIPTION

[0031] The technical scheme in the utility model embodiments will be clearly and completely described with reference to the drawings in the utility model embodiments, and obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0032] The utility model provides a kind of adjustable porcelain eye screen plate.

[0033] Embodiment 1, as Figures 1-2 shown, porcelain eye screen plate includes mounting seat 100, screen plate 200 and locking mechanism 300, mounting seat 100 top is provided with the integrally formed hollow ring 101, screen plate 200 is embedded in the inside of hollow ring 101, screen plate 200 end face is distributed with porcelain eye mounting hole 202, the middle part of screen plate 200 is equipped with the arc-shaped slot 201 of circular arc, locking mechanism 300 is arranged between mounting seat 100 and screen plate 200, locking mechanism 300 is used for the locking of screen plate 200 position in the hollow ring 101 of mounting seat 100;Setting arc-shaped slot 201 on screen plate 200 can provide a force point for worker, facilitate worker to carry screen plate 200, by setting integrally formed hollow ring 101 on mounting seat 100, cooperate with the mounting hole of hollow ring 101, screen plate 200 can be movably embedded in the hole of hollow ring 101 and be positioned and installed, to realize the split structure between screen plate 200 and mounting seat 100, compared with traditional integrated structure, such design makes screen plate 200 can be individually disassembled and adjusted, the setting of locking mechanism 300 is to realize the locking of screen plate 200 position in the hole of hollow ring 101, to guarantee the stability of screen plate 200 in use process.

[0034] The locking mechanism 300 includes screw holes 301, positioning grooves 302, and positioning screws 303. The screw holes 301 are spaced apart along the outer periphery of the hollow ring 101. The positioning grooves 302 correspond one-to-one with the screw holes 301 and are spaced apart along the outer periphery of the mesh plate 200. The positioning screws 303 are threaded into the screw holes 301, and the ends of the positioning screws 303 extend into the positioning grooves 302. The positioning screws 303 are threadedly installed through multiple screw holes 301 on the outer wall of the hollow ring 101. In conjunction with multiple positioning screws 303 spaced apart on the outer periphery of the mesh plate 200, the positioning screws 303 can be inserted into or removed from the positioning grooves 302 as they rotate within the screw holes 301. At the same time, by rotating the mesh plate 200, the positioning grooves 302 at different positions on the outer periphery of the mesh plate 200 correspond to the screw holes 301 on the hollow ring 101, thereby adjusting the position of the ceramic eye on the mesh plate 200 and preventing the ceramic eye from being easily worn and damaged by continuous use in a single position.

[0035] Example 2, as follows Figures 3-4 As shown, the ceramic eye mesh plate includes a mounting base 100, a mesh plate 200, and a locking mechanism 300. The mounting base 100 has an integrally formed hollow ring 101 at its top. The mesh plate 200 is embedded inside the hollow ring 101. The end face of the mesh plate 200 is covered with ceramic eye mounting holes 202. The middle of the mesh plate 200 has an arc-shaped slot 201. The locking mechanism 300 is located between the mounting base 100 and the mesh plate 200. The locking mechanism 300 is used to lock the mesh plate 200 within the hollow ring 101 of the mounting base 100. The arc-shaped slot 201 on the mesh plate 200 provides leverage for workers. To facilitate workers' handling of the mesh plate 200, an integrally formed hollow ring 101 is provided on the mounting base 100. With the mounting holes on the hollow ring 101, the mesh plate 200 can be movably embedded in the holes of the hollow ring 101 for positioning and installation. This achieves a separate structure between the mesh plate 200 and the mounting base 100. Compared with the traditional integrated structure, this design allows the mesh plate 200 to be disassembled and adjusted separately. The locking mechanism 300 is provided to lock the mesh plate 200 in the hole of the hollow ring 101 to ensure the stability of the mesh plate 200 during use.

[0036] The locking mechanism 300 further includes an external threaded slot 311 and an internal threaded end cap 312. The external threaded slot 311 is located on the outer periphery of the hollow ring 101, and the inner cavity of the hollow ring 101 has a T-shaped cross-section. The internal threaded end cap 312 is threadedly fitted onto the external threaded slot 311 of the hollow ring 101. The diameter of the port of the internal threaded end cap 312 furthest from the mounting base 100 is smaller than the inner cavity diameter of the internal threaded end cap 312. In this embodiment, the mesh plate 200 is embedded in the... After the hollow ring 101 is inserted into the cavity, the straight Canon 212 thread is screwed onto the external thread slot 311 of the hollow ring 101. Combined with the axial shape of the hole on the hollow ring 101 being one wide and one narrow, and the squeezing action of the internal thread end cap 312 on the end face of the stencil plate 200, the stencil plate 200 can be limited in the hole of the hollow ring 101, making the installation of the stencil plate 200 on the mounting base 100 more convenient and efficient. Similarly, it also makes the disassembly and replacement of the stencil plate 200 more convenient.

[0037] Furthermore, at least one positioning protrusion 313 is fixedly connected to the inner wall of the hollow ring 101, and multiple positioning grooves 314 matching the positioning protrusion 313 are spaced apart on the outer peripheral wall of the mesh plate 200. When the mesh plate 200 is embedded in the hole of the hollow ring 101, it is only necessary to make the positioning groove 314 on the mesh plate 200 engage with the positioning protrusion 313 on the inner wall of the hole of the hollow ring 101 to achieve the limiting of the mesh plate 200 in the inner radial direction of the hollow ring 101, keep the mesh plate 200 firmly installed inside the hollow ring 101, and at the same time, it can also meet the need to adjust the position of the ceramic eye by rotating the mesh plate 200.

[0038] Example 3, such as Figures 5-6 As shown, the ceramic eye mesh plate includes a mounting base 100, a mesh plate 200, and a locking mechanism 300. The mounting base 100 has an integrally formed hollow ring 101 at its top. The mesh plate 200 is embedded inside the hollow ring 101. The end face of the mesh plate 200 is covered with ceramic eye mounting holes 202. The middle of the mesh plate 200 has an arc-shaped slot 201. The locking mechanism 300 is located between the mounting base 100 and the mesh plate 200. The locking mechanism 300 is used to lock the mesh plate 200 within the hollow ring 101 of the mounting base 100. The arc-shaped slot 201 on the mesh plate 200 provides leverage for workers. To facilitate workers' handling of the mesh plate 200, an integrally formed hollow ring 101 is provided on the mounting base 100. With the mounting holes on the hollow ring 101, the mesh plate 200 can be movably embedded in the holes of the hollow ring 101 for positioning and installation. This achieves a separate structure between the mesh plate 200 and the mounting base 100. Compared with the traditional integrated structure, this design allows the mesh plate 200 to be disassembled and adjusted separately. The locking mechanism 300 is provided to lock the mesh plate 200 in the hole of the hollow ring 101 to ensure the stability of the mesh plate 200 during use.

[0039] The locking mechanism 300 further includes a rod 324, a slot 325, and a return spring 323. The rod 324 is slidably inserted into the outer peripheral wall of the hollow ring 101. The slots 325 are spaced apart on the outer peripheral wall of the mesh plate 200. The return spring 323 is located at the end of the rod 324 away from the slot 325. The return spring 323 drives the rod 324 to automatically insert into the corresponding slot 325. A hollow cover 321 is fixedly connected to the outer peripheral wall of the hollow ring 101 at the position corresponding to the rod 324. A T-shaped pull rod 322 is slidably connected inside the hollow cover 321. The end of the T-shaped pull rod 322 away from the rod 324 is annular. Extending to the outside of the hollow cover 321, a reset spring 323 is disposed between the hollow cover 321 and the T-shaped pull rod 322, and one end of the insertion rod 324 is fixedly connected to the end face of the T-shaped pull rod 322. In this embodiment, simply by pulling the T-shaped pull rod 322 outward, the end of the insertion rod 324 is pulled out of the slot 325 on the mesh plate 200, which releases the locking between the mesh plate 200 and the hollow ring 101, allowing the mesh plate 200 to rotate and adjust the position of the ceramic eye within the hollow ring 101. At the same time, it can also be directly disassembled and installed through the hole in the hollow ring 101, making the adjustment or replacement of the mesh plate 200 more convenient and efficient.

[0040] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An adjustable ceramic mesh plate, characterized in that, include: Mounting base (100), the top of which is provided with an integrally formed hollow ring (101); Mesh plate (200), the mesh plate (200) is embedded in the inner side of the hollow ring (101), the end face of the mesh plate (200) is covered with ceramic eye mounting holes (202), and the middle part of the mesh plate (200) is provided with an arc-shaped groove (201). A locking mechanism (300) is disposed between the mounting base (100) and the mesh plate (200), and the locking mechanism (300) is used to lock the mesh plate (200) within the hollow ring (101) of the mounting base (100).

2. The adjustable ceramic mesh plate according to claim 1, characterized in that, The locking mechanism (300) includes: Screw holes (301) are spaced apart along the outer periphery of the hollow ring (101); Positioning groove (302), the positioning groove (302) corresponds one-to-one with screw hole (301) and is opened at intervals along the outer periphery of the mesh plate (200); A positioning screw (303) is threaded into the screw hole (301), and the end of the positioning screw (303) extends into the positioning groove (302).

3. An adjustable ceramic mesh plate according to claim 2, characterized in that, The locking mechanism (300) further includes: External thread slot (311) is provided at the outer periphery of the hollow ring (101), and the inner cavity of the hollow ring (101) has a T-shaped cross section. The internal thread end cap (312) is threaded onto the external thread slot (311) of the hollow ring (101). The diameter of the port of the internal thread end cap (312) away from the mounting base (100) is smaller than the inner diameter of the internal thread end cap (312).

4. An adjustable ceramic mesh plate according to claim 3, characterized in that, At least one positioning protrusion (313) is fixedly connected to the inner wall of the hollow ring (101), and a plurality of positioning grooves (314) matching the positioning protrusion (313) are spaced apart on the outer peripheral wall of the mesh plate (200).

5. An adjustable ceramic mesh plate according to claim 4, characterized in that, The locking mechanism (300) further includes: Insert rod (324), the insert rod (324) is slidably inserted into the outer peripheral wall of the hollow ring (101); Slots (325) are spaced apart on the outer peripheral wall of the mesh plate (200); A reset spring (323) is provided at the end of the insertion rod (324) away from the slot (325). The reset spring (323) is used to drive the insertion rod (324) to automatically insert into the slot (325) at the corresponding position.

6. An adjustable ceramic mesh plate according to claim 5, characterized in that, A hollow cover (321) is fixedly connected to the outer peripheral wall of the hollow ring (101) at the corresponding position of the insertion rod (324). A T-shaped pull rod (322) is slidably connected inside the hollow cover (321). The end of the T-shaped pull rod (322) away from the insertion rod (324) is ring-shaped and extends to the outside of the hollow cover (321). The reset spring (323) is disposed between the hollow cover (321) and the T-shaped pull rod (322), and one end of the insertion rod (324) is fixedly connected to the end face of the T-shaped pull rod (322).