Vertical vs horizontal injection molding operates according to the same general principles of injection molding (injecting liquid plastic into a mold to take the form of the mold cavity as the material hardens), each one offers unique benefits and application suitability.
The primary difference in vertical vs. horizontal injection molding is the configuration and movement of the mold. In the vertical injection molding process, the mold clamping action occurs vertically, in an up and down motion. The clamping mechanism and injecting mechanism are located along the same vertical plane. In the horizontal injection molding process, the mold clamping action occurs horizontally, with each half of the mold moving sideways to join. We will now take a closer look at each type of process, as well as pros and cons.
In vertical injection molding, the two halves of the mold move vertically, up and down, to open and close. The injection mechanism is typically located at the top of the mold. Gravity plays a large role in filling the mold cavities, along with the injection pressure. This can help with filling time and consistency.
Vertical injection molding equipment is designed with open clamps and rotary tables. This allows for work with multiple molds and simultaneous operations — pre-molding, injection molding and post-molding. As a result, there is less of a need for manual operation and intervention, as well as higher efficiency, increased productivity and reduced costs.
One key difference in a vertical mold, as compared to a horizontal mold, is that pieces do not automatically fall out of the mold after being ejected (as is the case with horizontal molds). In vertical molds, pieces must be extracted by hand or robotic arm.
Use Cases
Pros
Cons
Horizontal injection molding has historically been the more commonly used type of injection molding — though that does not mean it is inherently superior. As we will continue to examine, each method has distinct applications, pros and cons.
In horizontal injection molding, the mold opens and closes along a horizontal axis. Due to this configuration, consistent, correct injection pressure is required to fill the mold cavities and help ensure proper packing and cooling. Horizontal molds are typically built with more cavities than their vertical counterparts, and are thus able to produce more parts per cycle. In addition — thanks to the horizontal separation of the mold halves — parts from these molds naturally fall out of the cavity upon ejection, and do not need to be manually extracted.
Use Cases
Pros
Cons
As you can see, each process has unique strengths and scenarios for which it is ideal. For example, for insert molding, vertical injection molding will almost always be the right choice.
To learn more about injection molding product from these presses contact Crescent Industries or reference the Complete Guide for Plastic Injection Molding.
Resources:
https://twmachines.com/differences-between-vertical-injection-molding-machine-and-horizontal-injection-molding-machine
https://www.aberdeentech.com/post/advantages-of-vertical-molding-machines-vs-horizontal-molding-machines-for-insert-molding
https://medium.com/@eli_37889/vertical-versus-horizontal-molding-machinery-f87b75fb322c
https://www.quora.com/Whats-the-difference-between-horizontal-and-vertical-injection-molding-machines
https://www.lsr-molding.com/Difference-Between-Horizontal-and-Vertical-Liquid-Injection-Molding-id3447855.html
https://www.micronsolutions.com/blog/injection-molding
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