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Plastic Thermoforming Solutions for Your Industry

At Productive Plastics, we specialize in custom plastic thermoforming and vacuum forming solutions that deliver lightweight, durable, and cost-effective enclosures and component solutions with major advantages for a wide range of industries. Our heavy-gauge plastic manufacturing process, secondary assembly, and surface finishing operation ensure high-performance parts designed to meet the specific needs of your industry and application.

Precision Thermoforming for Specific Applications

Below is a list of a few industries in which thermoplastic material and custom plastic thermoforming can offer unique advantages over other processes and also provide superior product solutions that are tailored to your industry. Find your industry below and follow the links to explore industry specific interactive examples, applications, and additional information to help you discover how custom plastic thermoforming can add to the success of your next project.

*The industries below are not a comprehensive list of all the applications that can benefit from custom plastic thermoformed components. View our website or reach out to one of our thermoforming experts to explore/evaluate how we can assist with your project.


Rail Car Transportation Interiors

Advantages:  Lightweight and fire retardant material (FST, Doc 90 and FMVSS 302 compliant), easy to clean, UV and graffiti resistant, large part capable, engineered for durability

Examples: Wall paneling, seating components, window shrouds, display enclosures, luggage racks, and more.


Medical Device Enclosures

Advantages: FDA-compliant, UL 94 V-0,  high gloss (class A) finishes, easy to clean, aesthetic design geometry and large part capable, impact-resistant

Examples: CT & MRI enclosures, diagnostic device enclosures and parts, patient bed components, ultrasound equipment, and more


Mass Transit/Bus Interiors

Advantages:  Lightweight and fire retardant material (FST, Doc 90 and FMVSS 302 compliant), easy to clean, UV and graffiti resistant, large part capable, engineered for durability

Examples: Wall paneling, seating components, window shrouds, display enclosures, luggage racks, and more.


 Aerospace Interiors 

Advantages:  Lightweight and fire retardant material (FST, FAR 25.853 (a), (i), (ii), & (d)), easy to clean, UV and graffiti resistant, large part capable, engineered for durability

Examples: Custom seating components, window shrouds, display enclosures, tray table assemblies, luggage racks, and more.


Robotic and Autonomous Systems and Vehicles

Advantages:  Lightweight and impact resistant material, aesthetic and complex design geometry capable, high gloss finishes and surface branding options, UV resistant material

Examples: UAV, UGV, UUV, and ROV enclosures and components, robotic and POS retail automation, humanoid and quadruped robotic components, and more.


Exploring the Benefits of Plastic Thermoforming for Medical Device Manufacturing

What is Plastic Thermoforming and How Does it Benefit Medical Device Manufacturing?

Plastic thermoforming is a manufacturing process that uses heat and pressure to form thermoplastic material into desired shapes. It is a popular method used in the production of medical devices, as it offers numerous advantages over other traditional manufacturing techniques such as injection molding, fiberglass, and sheet metal. The process can be used to create complex, intricate parts with tight tolerances and superior surface finishes, while also allowing for cost-effective production runs. In addition, plastic thermoforming can be used to produce parts with unique features such as integrated hinges and snap-fit components, and bonded attachment hardware. By utilizing these techniques, medical device manufacturers can create high-quality products that meet the stringent requirements of their industry.

The Advantages of Using Plastic Thermoforming for Medical Device Manufacturing

Plastic thermoforming offers many advantages in medical device manufacturing, including cost effective large parts, tight tolerances, industry compliant material, and improved product consistency. Thermoforming can produce high quality, complex, and aesthetically designed medical device parts for everything from device enclosures and paneling to laboratory equipment components and patient bed parts.

Siemens medical device enclosure – pressure formed, surface finished, branding applied, and attachment hardware bonded all at Productive Plastics

Use your mouse or touch screen to interact with and rotate the pressure formed part image. Don’t forget to click on the red hot spots to learn more about the unique thermoforming features of this part.

What are the Different Types of Plastic Thermoforming Processes?

Plastic thermoforming is comprised of two different subtype processes, vacuum forming and pressure forming that can be used in medical device manufacturing. Each type of process has its own advantages and disadvantages depending on the application. Vacuum forming is often used for creating large parts with complex geometries while pressure forming is often used for producing small parts with intricate details.

Choosing the Right Type of Plastic Thermoforming Process, Material, and Custom Thermoforming Manufacturer

When it comes to producing medical devices, the type of plastic thermoforming process, thermoplastic material, and custom thermoforming manufacturer you choose are critical decisions. With so many options available, it’s important to understand the advantages and disadvantages of each process and how they can meet your specific production needs. Finding a plastic thermoforming manufacturer with experience in the medical device manufacturing field that can assist with matching your project to the ideal process, material, secondary assembly, and surface finishing options can play a pivotal role in the ultimate success of your project.

Unlock the Benefits of Plastic Thermoforming for Medical Device

Productive Plastics has extensive experience producing custom multi-part component assemblies for numerous industry leading medical device manufacturers. We strive to be a trusted advisor throughout the entire product development process from prototype design through the final delivery of your thermoformed components or assembly. Our highly skilled engineers, manufacturing technicians, and support staff will work with your team to develop the right design, material, and process for your medical device project. Maximizing the advantages of plastic thermoforming and minimizing the cost and production time for your product.

Please visit our Custom Thermoforming for Medical Device page or contact our team to explore plastic thermoforming for your next medical device project.

Thermoplastics in Transit Interiors – Weighing the Advantages

Mass Transportation’s (mass transit buses, railcars and aerospace) design and manufacturing processes have been trending towards requirements for greater fuel efficiency, providing a luxury riding experience, and the need for enhanced safety.  Using buses as an example, design teams and OEMs have replaced steel and aluminum components with thermoplastics and thermoplastic composite materials.  Upgrading to thermoplastic components on average offers 55% weight savings and meets the static loading requirements of the American Public Transportation Association.  Thermoplastics are growing in popularity, offering industry focused material options that are rigid, and durable, and a manufacturing process that enhances design capability, lead time, and look and feel.

Why Reduce Weight?

As more mass equals more fuel consumption, utilizing materials that reduce the overall weight of the passenger buses, railcars, and aircrafts leads to decreased energy consumption, less brake and tire wear, and lowered emissions. Cutting vehicle weight by 110 pounds reduces 5 g of carbon dioxide emissions per kilometer and increases fuel economy by two percent. (Source: “Vehicle Weight Reduction for Optimal Performance” – DuPont

Modern transportation vehicles are becoming lightweight and fuel-efficient because of the use of thermoplastics for many interior components. Door, wall, and ceiling panels, dashboard surrounds, window masks or shrouds, seatback shells, armrest shells, bulkhead components, luggage racks, and display housings are just a few of the interior components that can be manufactured with the heavy gauge thermoforming process. While the materials industry as a whole has focused on lightweight solutions, thermoplastics offer a complete answer through a combination of strength, rigidity, and low density. For example, thermoforming produces components that weigh 30% less than comparable components made from fiberglass and 250% less than aluminum components. Interior components made from thermoplastics may make up nearly half of the volume of an automobile. However, those same, now lightweight components, contribute less than 10 percent to the weight of the vehicle. (Source: “A Lighter Future with Thermoplastic Solutions”, Lightweighting World.)

Industry-Compliant Thermoplastics with Emphasis on the Environment

The benefits of thermoplastics go beyond light weighting.  Interiors for aircraft, coach and city buses, trucks, and passenger rail cars require the use of FST (Flame Smoke and Toxicity) compliant materials.  All coach and city buses in the United States must meet the U.S. Department of Transportation Docket 90 safety specification for flame spread and smoke emissions. Motor Vehicle Safety Standard 302 Fire Test requirements apply to interior trim parts used for trucks.  One example of a material now commonly used for interior aircraft components and interior rail applications is amorphous polyetherimide (PEI-Ultem) which complies with FST standards while providing strength and aesthetic appeal. Along with meeting compliance standards, PEI thermoplastics also resist damage caused by exposure to halogenated hydrocarbons, alcohols, and aqueous solutions.  In addition, PEI thermoplastics resist warpage when exposed to heat for long durations because of a heat distortion temperature (HDT) rating of 350o F (176o C).

The manufacturing process for fiberglass emits high levels of volatile organic compounds (VOCs).  In contrast, the use of very long fiber-reinforced polypropylene (PP VLF) thermoplastic compounds reduces levels of VOCs to compliance with the open air and enclosed application specifications set by international legislation and automotive OEMs. In addition, the PP VLF thermoplastics meet or surpass standards for odor and fogging.

Parts manufactured from fiberglass cannot be recycled.  However, parts made from PP VLF thermoplastics can be recycled, have a lower life-cycle energy footprint and a lower life-cycle greenhouse gas emission. Manufacturers of mass transportation components use PP VLF thermoplastics for instrument panels, overhead and center consoles, seating, and storage bins.

Aesthetic Appeal: On-Time and Within Budget

Thermoplastics can improve the aesthetic design features of interior components used for mass transportation vehicles at a fraction of the cost required to obtain the same level of complex designs with other manufacturing processes. Low or high gloss surface finishes, custom surface texturing, complex geometric part design, and coloration are all capable, cost feasible, and can be manufactured quickly with the thermoforming process.

In-mold design and decorating enables the manufacturing of these high-level design features, resulting in part construction with consistency, precision, and a negligible impact on part cycle time. While in-mold texturing and pre-textured plastic may require a slightly higher initial investment than a simple design, the process ensures consistent part-to-part aesthetic detailing and minimizes cost by eliminating additional labor or processing.  As a result, in-mold design can produce complex designs and custom surface finishes with a minimal impact on cost and lead time.

The use of thermoplastics in component production also provides the option of producing plastics with coloration that resist stains, graffiti, and chemicals and that do not chip or vary in tone or color.  Moreover, using integral colored plastic eliminates the added cost and lead time of post-production painting. Coloration allows manufacturers to achieve a desired color finish and precise color matching along with durability.  You can also have thermoplastic components that have specialty finishes, such as wood grain or metallic patterns and overlays, capturing design intent.

Aesthetic appeal also is achieved through geometry and a seamless appearance.  Manufacturers can take advantage of the thermoforming process to build complex geometric designs with precise part mating and give the appearance of nearly seamless multi-part assemblies.  With complex designs being accounted for within the part’s tooling, the high level of quality has a minimal impact on cost or lead time.

Productive Plastics is a heavy gauge thermoforming custom components manufacturer, with vast experience with thermoplastic manufacturing for transportation applications. Contact us for more information.

Please contact Productive Plastics for more information on the thermoforming process
Please download our complimentary thermoforming design guide for more information on the thermoforming process

Looking for more technical information?

Download the Thermoforming Design Guide, Process Comparisons, Conversion Guides, and other useful thermoforming information from our technical resource library.

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