-
Servicios del moldeo a presión
-
Servicio plástico del moldeo a presión
-
Moldeo a presión del tiro dual
-
moldeo a presión de la precisión
-
Moldeo a presión del solo tiro
-
Moldeo a presión de Overmolding
-
moldeo a presión del OEM
-
inserte el moldeo a presión
-
Moldeo a presión de la electrónica
-
Moldeo a presión del silicón
-
A presión el servicio de la fundición
-
RecebEl cliente quisiera que usted produjera su producto porque estaban alegres con los resultados con sus producciones anteriores. -
SeanBuen trabajo en equipo – buenos proveedores, acciones rápidas y buena gente en ambos lados que trabajan junta…. Gracias. -
ChrisLas gracias por cuidar bastante a reaccionar, piensan diferentemente e innovan con nosotros – aquí otra vez en esta ocasión para encontrar esta alternativa – apreciada mucho de nosotros en RnD, -
RaffySí, usted está haciendo trabajo excelente, gracias Welson, undesratnd de I que es tan difícil
Beryllium Copper Cooling Insert Injection Mold with 105 W/mK Thermal Conductivity for Deep Core Pin Rapid Heat Removal
| Lugar de origen | Xiamen, Fujian, China |
|---|---|
| Nombre de la marca | Creator |
| Certificación | ISO 9001:2015 |
| Número de modelo | KD-BECU-001 |
| Cantidad de orden mínima | 100 piezas |
| Precio | negotiable |
| Detalles de empaquetado | Cartón de exportación con bolsa de PE, paletizado para envío en contenedor |
| Tiempo de entrega | 25-35 días laborables para molde nuevo, 7-15 días para producción |
| Condiciones de pago | T/T, L/C, PayPal, Western Union |
| Capacidad de la fuente | 100000 piezas por mes |
| Tecnología | Insertos de refrigeración BeCu | Conductividad | 105 W/mK (5x Acero) |
|---|---|---|---|
| Mejor para | Núcleos profundos/características estrechas | ||
| Resaltar | 105 W/mK Thermal Conductivity Beryllium Copper Cooling Insert,Deep Core Pin Cooling Injection Mold,Rapid Heat Removal BeCu Cooling Inserts |
||
Optimized Beryllium Copper Cooling Insert Injection Mold for Deep Core Pin Rapid Heat Removal
Solve deep core cooling challenges with Xiamen Creator Technology Co., Ltd.'s beryllium copper (BeCu) cooling insert technology. Our molds integrate high-thermal-conductivity BeCu inserts in deep core pins, slides, and difficult-to-cool areas, achieving 5x faster heat removal than steel for reduced cycle times and eliminated hot spot defects.
Key Features & Advantages
- Beryllium copper inserts with 5x thermal conductivity vs. steel
- Targeted cooling for deep core pins and narrow features
- Eliminates hot spots causing warpage, sink marks, and long cycles
- Water or oil cooling circuits through BeCu inserts
- Compatible with standard mold base and component integration
- Most cost-effective for localized cooling in specific mold areas
Technical Specifications
| Technology | Beryllium Copper Cooling Inserts |
| Thermal Conductivity | 105 W/mK (5x vs. P20 steel) |
| Application | Deep Cores, Slides, Narrow Features |
| Cooling Medium | Water / Oil |
| Material | Beryllium Copper (C17200) |
| Insert Type | Core Pins, Cavity Inserts, Slide Faces |
| Benefit | Eliminated Hot Spots, Reduced Warpage |
| Lead Time | Standard mold + 3-5 days for BeCu integration |
Manufacturing Excellence
Our mold engineering team identifies hot spot areas through Moldflow cooling analysis and strategically places beryllium copper inserts where conventional cooling cannot reach. This targeted approach provides the cooling benefits of conformal technology at a lower cost, making it ideal for molds with specific deep-core or narrow-feature cooling challenges.
Frequently Asked Questions
Q: Where are BeCu inserts most effective?
A: BeCu inserts are ideal for deep core pins, narrow ribs, slide faces, and tight corner areas where conventional drilled cooling channels cannot reach.
Q: How much faster is BeCu cooling than steel?
A: Beryllium copper has approximately 5x the thermal conductivity of P20 mold steel, dramatically reducing cooling time in hot spot areas.
Q: Is BeCu safe to use in mold making?
A: Yes. BeCu in solid form is safe for machining and use. We follow all safety protocols during machining operations per industry standards.
Q: When should I choose BeCu inserts vs. conformal cooling?
A: BeCu inserts are most cost-effective for targeted cooling of specific problem areas. Conformal cooling is better when the entire part geometry benefits from uniform contoured cooling.

