New energy crucible mold pressing device
By combining an elastic steel ring with a locking adjustment component in the new energy crucible mold clamping device, the problem of inadequate sealing of crucible molds of different sizes was solved, and the flexibility and stability were improved.
Patent Information
- Application Number
- CN202423107579.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-17
AI Technical Summary
Existing clamping devices for new energy crucible molds mainly consist of elastic rings with fixed structures, which cannot adapt to crucible molds of different sizes, resulting in poor sealing, low flexibility and reliability.
The elastic steel ring is fitted with locking and adjusting components at both ends, including a connecting sleeve, screw, screw sleeve, lever and rotating head. The elastic steel ring is synchronously contracted and tightened through threaded transmission. Combined with anti-slip pads to increase friction, it ensures reliable sealing of crucible molds of different sizes.
It achieves reliable clamping and sealing of crucible molds of different sizes, improves the flexibility and stability of the device, and ensures a tight connection between the mold end cap and the mold body.
Smart Images

Figure CN223573919U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to new energy crucible mould technical field, concretely relates to a new energy crucible mould pressing device. BACKGROUND
[0002] In the new energy crucible manufacturing process, in order to ensure the reliable sealing of the forming die when the new energy crucible is formed on the isostatic pressing equipment, a pressing device needs to be used to reliably press the die body on the new energy crucible forming die and the die end cover.
[0003] The existing new energy crucible mould pressing device is mainly composed of an elastic sleeve ring with a fixed structure. When the die body on the new energy crucible mould and the die end cover are sealed, the elastic sleeve ring is sleeved on the outside of the die body opposite to the die end cover after the die body and the die end cover are assembled, so as to realize the pressing and sealing of the die body and the die end cover. Although the pressing and sealing of the new energy crucible mould can be realized under the action of the above-mentioned structure of the pressing device, the elastic sleeve ring of the above-mentioned structure cannot ensure reliable pressing and sealing of each size of the new energy crucible mould, and there is a risk of not being tightly sealed, which leads to poor flexibility and reliability of the pressing device. UTILITY MODEL CONTENTS
[0004] (I) Technical problem to be solved
[0005] The technical problem to be solved by the utility model is to provide a new energy crucible mould pressing device that can be applied to different sizes of crucible moulds, has good flexibility and reliability in use, and realizes pressing and sealing.
[0006] (II) Technical scheme
[0007] The utility model discloses a new energy crucible mould pressing device, which comprises an elastic steel ring, a locking adjusting assembly is arranged at the two ends of the elastic steel ring, the locking adjusting assembly comprises a connecting sleeve, a screw rod, a screw sleeve, a lever and a rotating head, the connecting sleeve is arranged at one end of the elastic steel ring, the screw sleeve is arranged at the other end of the elastic steel ring, one end of the screw rod is connected with the rotating head, the lever has four, the four levers are annularly arranged on the outside of the rotating head, the other end of the screw rod is connected with the connecting sleeve, and the screw rod penetrates through the screw sleeve.
[0008] Further, the outer wall of the connecting sleeve is welded to one end of the elastic steel ring, and the outer wall of the screw sleeve is welded to the other end of the elastic steel ring.
[0009] By adopting the technical scheme, when the connecting sleeve and the screw sleeve are close to each other, the two ends of the elastic ring can be synchronously close, so that the elastic ring can be contracted and compressed.
[0010] Further, the screw rod is threadedly connected with the screw sleeve, and the screw rod is rotationally connected with the connecting sleeve.
[0011] By adopting the technical scheme, the rotation adjustment of the screw rod relative to the connecting sleeve is more convenient.
[0012] Further, the rotating head is welded with the screw rod, and the rotating head is a disc-shaped structure.
[0013] By adopting the technical scheme, the screw rod can rotate synchronously with the rotating head by welding the rotating head with the screw rod.
[0014] Further, the push rod is welded with the rotating head, and the end of the push rod, which is opposite to the rotating head, is a hemispherical surface structure.
[0015] By adopting the technical scheme, the push rod provides a force applying part outside the rotating head, so that the rotating head can be conveniently rotated.
[0016] Further, the inner wall of the elastic ring is further provided with an anti-skid pad, and the anti-skid pad comprises a pad body, a cavity and a groove.
[0017] By adopting the technical scheme, when the elastic ring contacts with the outer wall of the new energy crucible mold, the anti-skid pad can effectively increase the friction between the elastic ring and the new energy crucible mold, so that the elastic ring can not be dislocated when being compressed.
[0018] Further, the pad body is an elastic rubber block, the cavity is formed in the pad body, and the groove is a V-shaped structure.
[0019] By adopting the technical scheme, the cavity and the groove can be compressed when the elastic ring is compressed, so that the contact area between the anti-skid pad and the outer wall of the new energy crucible mold can be increased.
[0020] (Three) beneficial effects
[0021] Compared with the prior art, the utility model has the following beneficial effects:
[0022] To address the issue that existing clamping devices for new energy crucible molds primarily consist of a fixed elastic ring, which, when sealing the mold body and end cap, involves placing the elastic ring on the outside of the mold body directly opposite the end cap after assembly, achieves a tight seal. While this method can seal the new energy crucible mold, it fails to reliably seal every size, leading to incomplete seals and poor flexibility and reliability. This invention addresses this problem by disassembling the elastic ring at one end and installing a connecting sleeve, screw, threaded sleeve, lever, and other components between the two ends of the elastic ring. The locking and adjusting assembly, consisting of a rotating head, allows for sealing of the new energy crucible forming mold. First, an elastic steel ring is placed on the outside of the mold body, directly opposite the mold end cap. Then, the operator holds the connecting sleeve with one hand and rotates the lever and rotating head with the other. This rotation causes the screw to rotate, and the screw's rotation, through threaded transmission, brings the two ends of the elastic steel ring closer together, thus achieving a tight seal on the outside of the new energy crucible forming mold. This ensures a reliable seal between the mold body and the mold end cap. Because the clamping force of the elastic steel ring can be flexibly adjusted by the locking and adjusting assembly, reliable sealing of the elastic steel ring on new energy crucible molds of different sizes is ensured, thereby improving the flexibility and stability of the new energy crucible mold clamping device. Attached Figure Description
[0023] Fig. 1 This is a schematic diagram of the structure of a new energy crucible mold clamping device according to the present invention;
[0024] Fig. 2 This is a front sectional view of the locking adjustment component in the new energy crucible mold pressing device of this utility model;
[0025] Fig. 3 This is a top sectional view of the anti-slip pad block in the new energy crucible mold clamping device described in this utility model.
[0026] The annotations in the attached figures are explained as follows:
[0027] 1. Anti-slip pad; 101. Groove; 102. Cavity; 103. Pad body; 2. Elastic steel ring; 3. Locking adjustment assembly; 301. Connecting sleeve; 302. Screw; 303. Screw sleeve; 304. Lever; 305. Rotary head. Detailed Implementation
[0028] In order to make the utility model purposes, technical schemes and advantages more clearly, the following will be further described in detail with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model, and are not used to limit the utility model.
[0029] As shown in Figs. 1-3 The utility model discloses a new energy crucible mould pressing device, including elastic steel ring 2, the elastic steel ring 2 both ends are jointly installed with a locking adjusting assembly 3, and the locking adjusting assembly 3 includes connecting sleeve 301, screw 302, screw sleeve 303, lever 304 and swivel head 305, wherein connecting sleeve 301 is installed at the one end of elastic steel ring 2, screw sleeve 303 is installed at the other end of elastic steel ring 2, and one end of screw 302 is connected with swivel head 305, and the other end of screw 302 is connected with connecting sleeve 301, and screw 302 penetrates screw sleeve 303, and lever 304 makes the outside of swivel head 305 have force applying part, and the convenient rotation of swivel head 305 is facilitated.
[0030] As shown in Figs. 1-3 In the embodiment, the outer wall of connecting sleeve 301 is welded with one end of elastic steel ring 2, the outer wall of screw sleeve 303 is welded with the other end of elastic steel ring 2, screw 302 is threadedly connected with screw sleeve 303, and screw 302 is rotationally connected with connecting sleeve 301, the installation mode of rotationally connecting makes the rotation adjustment of screw 302 relative to connecting sleeve 301 more convenient, swivel head 305 is welded with screw 302, and swivel head 305 is disc-shaped structure, and welding swivel head 305 with screw 302 can ensure the synchronous rotation of screw 302 with swivel head 305, and lever 304 is welded with swivel head 305, and the end of lever 304 opposite to swivel head 305 is hemispherical surface structure.
[0031] As shown in Fig. 1 And Fig. 3 In the embodiment, the inner wall of elastic steel ring 2 is further provided with anti-skid pad 1, and the anti-skid pad 1 includes pad body 103, cavity 102 and groove 101, the anti-skid pad 1 can effectively increase the friction between elastic steel ring 2 and new energy crucible mould when the two are in contact, so as to avoid the sliding dislocation of elastic steel ring 2 during pressing, the pad body 103 is an elastic rubber block, the cavity 102 is formed in the pad body 103, the groove 101 is V-shaped structure, and the design of cavity 102 and groove 101 can make the anti-skid pad 1 be compressed when the elastic steel ring 2 is pressed, so as to increase the contact area between the anti-skid pad 1 and the outer wall of new energy crucible mould.
[0032] The specific implementation process of the embodiment is as follows: when in use, first, the elastic steel ring 2 is sleeved on the mold body outside the new energy crucible forming mold, and is opposite to the mold end cover, then one hand of the worker holds the connecting sleeve 301, and the other hand rotates the push rod 304 and the rotating head 305, so that the screw rod 302 rotates in the rotating process of the rotating head 305, and after the screw rod 302 rotates, the two end heads of the elastic steel ring 2 are close to each other under the action of the threaded transmission, so as to realize the compression and fixation of the elastic steel ring 2 outside the new energy crucible forming mold, and ensure the reliable sealing between the mold body and the mold end cover of the new energy crucible mold, since in this compression and sealing mode, the compression degree of the elastic steel ring 2 can be flexibly adjusted under the action of the locking and adjusting assembly 3, and the reliable compression and sealing of the elastic steel ring 2 on the new energy crucible mold of different sizes is ensured, so that the flexibility and stability of the new energy crucible mold compression device are improved.
[0033] The above description of the disclosed embodiments enables a person skilled in the art to implement or use the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the application. Therefore, the present application will not be limited to these embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A new energy crucible mold pressing device, characterized in that: The utility model provides an elastic ring (2) and a locking and adjusting assembly (3) are installed at both ends of the elastic ring (2), the locking and adjusting assembly (3) includes a connecting sleeve (301), a screw rod (302), a screw sleeve (303), a lever (304) and a rotating head (305), wherein the connecting sleeve (301) is installed at one end of the elastic ring (2), the screw sleeve (303) is installed at the other end of the elastic ring (2), the screw rod (302) is connected with the rotating head (305) at one end, the lever (304) has four, four levers (304) are annularly distributed outside the rotating head (305), the other end of the screw rod (302) is connected with the connecting sleeve (301), and the screw rod (302) penetrates the screw sleeve (303).
2. The new energy crucible mold pressing device according to claim 1, characterized in that: The outer wall of the connecting sleeve (301) is welded with one end of the elastic ring (2), and the outer wall of the screw sleeve (303) is welded with the other end of the elastic ring (2).
3. The new energy crucible mold pressing device according to claim 2, characterized in that: The screw rod (302) is threadedly connected with the screw sleeve (303), and the screw rod (302) is rotationally connected with the connecting sleeve (301).
4. The new energy crucible mold pressing device according to claim 1, characterized in that: The rotating head (305) is welded with the screw rod (302), and the rotating head (305) is in a disc structure.
5. The new energy crucible mold pressing device according to claim 1, characterized in that: The lever (304) is welded with the rotating head (305), and one end of the lever (304) away from the rotating head (305) is in a hemispherical structure.
6. The new energy crucible mold pressing device according to claim 1, characterized in that: The inner wall of the elastic ring (2) is further provided with an antiskid pad (1), and the antiskid pad (1) comprises a pad body (103), a cavity (102) and a groove (101).
7. The new energy crucible mold pressing device according to claim 6, characterized in that: The pad body (103) is an elastic rubber block, the cavity (102) is formed in the pad body (103), and the groove (101) is in a V-shaped structure.