Ayanna Plastics & Engineering
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As a creative solutions-driven injection molding company, we offer a turnkey manufacturing platform. Whether it's the start of an idea or a fully developed project, we can help guide customers from design through finished products. We provide unparalleled, expert and technically advanced results for customers in the evolving and demanding world of plastic injection molding.

Using emerging technologies, industry leading equipment and diverse raw material suppliers, our highly skilled team can accept the challenge of even the most complicated products.
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Ayanna Plastics & Engineering, Inc. is an ISO 9001 and ISO 13485 certified and UL registered plastic injection molding company.
Since 2001, Ayanna has focused on it's core manufacturing strengths of mold design, mold building and part production.
Ayanna serves a diverse and growing listing of industries including medical, industrial, consumer, aerospace, marine and defense.
Our strategy allows us to offer globally competitive prices which reduces the risks of sourcing offshore for our customers.
The ISO 9001:2015 Standard provides guidance and tools for companies and organizations who want to ensure that their products and services consistently meet customer's requirements and that quality is consistently improved.
ISO 13485 enables an organization to consistently provide safe and effective medical devices and fulfill customer and regulatory requirements.
It is also flexible enough to meet the individual needs of different types of medical devices organizations.
Small business awards will be presented in three categories based on the number of employees, with a fourth category specifically for startup companies.
The support Ayanna Plastics & Engineering offers its customers starts with excellent engineering.
Our engineers have vast experience in part design, mold design and building injection molds.
This lets us guide customers on both complex and simple projects.
The diversity of our engineering team allows us to take creative and unique approaches to getting the job done.
We're often able to take on complex parts that other molders wouldn't be willing to produce, simply because of the depth and breadth of our knowledge.
The success of a project typically begins with the part design.
After a talented engineer creates drawings of parts, these designs often need to be fine-tuned for manufacturability.
This is where the art and science of engineering first come together.
Using CAD software, our team will design your part using precise measurements to meet all critical requirements.
At this phase, a part can be viewed from every angle, mating parts can be put together, and the part becomes a dynamic image that can be converted into something created through injection molding.
With a solid part design that meets the desired objectives and allows for optimal manufacturing, the mold design begins.
The mold specifics depend on things such as the type of resin used, the number of parts desired, the complexity of the part and length of time available to build the mold.
Beginning with the mold classification, a design engineer develops the requirements for a mold build.
This is a complex print that covers every detail of a mold.
These details include the action that is needed (for example, if the part needs a hole), the location of the gate, parting line and ejector pins.
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