Eliminate the spool part of the runner to avoid material loss and poor resin flow!
MSK's "Hot Spool Bush" eliminates the spool section of the runner by replacing the mold's spool bush. The spool section of the runner not only leads to material loss but also obstructs resin flow, requiring excessive injection pressure and causing issues such as stress that degrade molding quality. By installing the "Hot Spool Bush," the spool of the runner is eliminated, avoiding these problems. Additionally, the bulk of the runner is reduced by half, allowing for a decrease in transportation effort, storage space, and production costs. 【Features】 ■ Reduction in raw material costs ■ Reduction in resin required for the spool ■ Complete prevention of stringing ■ Reduction in cooling time ■ Several times more durable compared to standard heaters For more details, please contact us or download the catalog.
Inquire About This Product
basic information
- The gate closure at the end of injection uses a valve-less sealing system. → No worries about resin leakage or stringing issues (PAT.PEND.) - The cylindrical heating wire is a special specification. → Durability: several times that of a standard heater. - The outer diameter of the hot spool bush. → Including the heater, φ24 or φ32 (standard). → Does not weaken the rigidity of the mold. - Usable with all types of resins. ● For more details, please contact us or download the catalog.
Price range
Delivery Time
Applications/Examples of results
For more details, please contact us.
catalog(1)
Download All CatalogsCompany information
【Manufacturing and Sales of Mini Runners】 MSK has over 8 years of experience as the Asia Technology Center of Myojo Metal Industry, and we will properly inherit the mini runners from Myojo Metal Industry. We also offer maintenance services for Myojo Metal Industry's mini runners. 【Proposals with Unwavering Technology】 If you provide us with mold drawings, MSK will design the mold assembly diagrams for mini runners and necessary parts, guaranteeing material reduction effects, and propose a more efficient design. Please feel free to contact us.