一种铸造模具分流锥
By setting a cooling mechanism inside the flow divider cone of the casting mold and using the circulating cooling medium to cool down, the problem of deformation caused by excessive temperature of the flow divider cone is solved, and a low-cost spiral flow cooling effect is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHAOYUAN HENGCHEN MASCH MFG CO LTD
- Filing Date
- 2025-08-08
- Publication Date
- 2026-07-17
AI Technical Summary
The existing high temperature of the molten aluminum causes deformation of the flow divider cone surface, and the existing cooling mechanism has high cost.
Design a casting mold flow divider cone with an internal cooling mechanism, including a cooling chamber and a spiral flow channel. The cooling medium is circulated to cool the mold. The cooling mechanism consists of a core, a partition baffle, and a blocking plate to form a continuous cooling channel, thereby achieving the cooling effect.
It achieves low-cost spiral flow cooling, avoids deformation caused by excessively high temperature of the flow divider cone, and reduces production costs.
Smart Images

Figure CN224508394U_ABST
Abstract
Claims
1. A casting mold flow divider cone, comprising a flow divider cone (1), characterized in that, One end plate of the diversion cone (1) is fixedly installed with a cover plate (2) by bolts. The cover plate (2) has an inlet hole (3) and an outlet hole (4) inside. The diversion cone (1) has a cooling chamber (5) for cooling the cone part. The cooling chamber (5) is equipped with a cooling mechanism for cooling the cone surface of the diversion cone (1).
2. A casting mold diverging cone according to claim 1, characterized in that The cooling mechanism includes a core (6) inserted into the inner wall of the cooling cavity (5). Multiple partition baffles (8) are welded at equal intervals on the outer wall of the core (6). There is a gap channel between adjacent partition baffles (8), and the outer wall of the partition baffle (8) matches the inner wall of the cooling cavity (5).
3. A casting mold diverging cone according to claim 2, characterized in that A water hole (11) is provided at one corner of the partition baffle (8). The water holes (11) of the two adjacent partition baffles (8) are distributed at different corners of the partition baffle (8). The gap channels between the upper and lower adjacent partition baffles form a continuous cooling channel through multiple staggered partition baffles (8).
4. A casting mold diverging cone according to claim 3, characterized in that The continuous cooling channel is welded with a first baffle plate (9) and a second baffle plate (10). The first baffle plate (9) and the second baffle plate (10) are used to make the cooling medium flow through the gap channel once and then fall from the water hole (11) into the lower gap channel.
5. A casting mold diverging cone according to claim 4, characterized in that The water inlet (3) is aligned with the uppermost gap channel and is symmetrically distributed with the uppermost first baffle (9) as the central axis and the uppermost partition baffle (8). Drainage pipes (7) are welded inside the multiple partition baffles (8). The bottom end of the drainage pipe (7) is connected to the lowermost gap channel. The water outlet (4) is aligned with and connected to the drainage pipe (7) in the vertical direction.