Equipment Housing
↵
Your Professional Equipment Housing Supplier
Our factory is located in Suzhou Industrial Park, adjacent to Shanghai, with a 3,000-square-meter production workshop. We have our own R&D, design, and sales teams, including experienced mold engineers, designers, production staff, quality inspectors, and export logistics personnel. We offer rapid prototyping services and provide free samples.We have extensive experience working with materials such as ABS, PP, PC, PE, PVC, PET, PETG, HIPS, PMMA, and more, enabling us to produce high-quality products.
Production Equipment
8 vacuum forming machines
3 five-axis CNC cutting machines
2 three-axis CNC cutting machines
2 die-cutting machines
1 bending machine
Production Market
We serve clients domestically and internationally, including the USA, Canada, France, Ireland, Belgium, Switzerland, Sweden, Finland, Australia, New Zealand, Japan, Korea, and more.
CNC Cutting
We are equipped with both 3-axis and 5-axis CNC cutting machines.
3-axis cutting is used for flat products, such as trimming tray edges, where high precision is not required.
5-axis cutting is used for complex products with strict precision tolerance requirements.
We adjust our cutting process according to customers' tolerance needs and strive to maintain precise control within the required range.
Tooling Manufacturing
We operate multiple CNC mold processing centers, capable of producing aluminum molds, resin molds, wood molds, and more. With in-house capabilities in raw material sourcing, mold making, product design, manufacturing, and export logistics, we offer customers comprehensive and integrated plastic parts molding services. We also support mold modification in collaboration with customers.
-
Black Large-Size HDPE Thermoformed TrayA large-size pallet integrally manufactured from high-density polyethylene (HDPE) via heavy-gauge thermoforming. Black UV-stabilized formulation suitable for automotive parts handling, casting...read more
-
Black ABS High-Gloss Textured BackrestAn ABS high-gloss backrest manufactured via vacuum thermoforming, featuring a mirror-like surface with gloss level exceeding 85 degrees. Combining premium appearance with ergonomic curved design,...read more
-
Black ABS Leather-Grain Equipment HousingA black ABS equipment housing manufactured via vacuum thermoforming, featuring a uniform fine leather-grain texture precision-engraved on the mold surface. Matte finish, scratch-resistant, and...read more
-
Black ABS Equipment HousingA black matte equipment housing manufactured from high-impact ABS engineering plastic via vacuum thermoforming. The fine, uniform matte surface is non-reflective and scratch-resistant. Suitable...read more
-
Glossy ABS Equipment HousingA glossy equipment housing manufactured from high‑flow ABS via vacuum thermoforming. The surface features a high‑gloss mirror finish with excellent luster and premium texture. Suitable for...read more
-
Medical Grade PETG Precision Storage BoxThis storage box is designed for applications where quality and safety are paramount. Made from medical‑grade PETG, it offers glass‑like clarity and a premium colour finish. The tooling uses 7075...read more
-
AGV Equipment HousingAn AGV housing manufactured via vacuum thermoforming, suitable for warehouse mobile robots, inspection robots, and service robots. Seamless one‑piece molding, 30%–50% lighter than sheet metal....read more
-
Vacuum Formed ABS With ASA Texture Radome CoverAn ABS radome cover manufactured via vacuum forming with a co‑extruded ASA (Acrylonitrile Styrene Acrylate) high‑weathering texture layer. Offers excellent UV resistance, anti‑aging performance,...read more
-
Vacuum Thermoformed Drawer CabinetA drawer cabinet main body manufactured from ABS/PC via vacuum thermoforming. Seamless one‑piece construction with customizable surface textures and colors. Ideal for laboratory storage, medical...read more
-
Vacuum Formed PC Equipment HousingA highly transparent equipment housing manufactured from polycarbonate (PC) sheet via vacuum forming. With light transmittance ≥88%, it can integrate viewing windows and ventilation features,...read more
-
High-Load Capacity Thermoformed SeatAn engineering plastic seat integrally formed via heavy-gauge thermoforming, with a seamless structure and exceptional load-bearing performance. Lightweight design combined with high impact...read more
-
ABS High-Gloss Exterior Trim | Mirror-Like Finish, Long-L...High-gloss exterior trims manufactured from high-quality ABS engineering plastic via thermoforming or injection molding. Featuring a mirror-like surface finish with excellent weather resistance...read more
Material Suggestion
|
Characteristic Material |
Strength |
Clear |
Price |
Application |
|
ABS |
Good-High impact |
Not Avaliable |
Medium |
Caravan parts,vehicular parts, Electrical / Equipment Enclosures |
|
Acrylic/Pmma |
Medium to high strength |
Yes |
Medium |
Signs, light cover,domes, light diffusers |
|
PS |
Medium to good strength |
Yes(clarity not to quality of PETG/PC/PMMA) |
Medium |
Packaging, microgreens tray |
|
PC |
Very good impact strength |
Yes |
Expensive |
Machine guard, Cover, enclosure, light cover |
|
PP |
Soft |
Translucent |
Inexpensive |
Packing tray,containers,tank,enclosure, medical application |
|
HDPE |
Soft |
Translucent |
Inexpensive |
Enclosure, Vehicular parts |
|
PVC |
Good |
Yes |
Inexpensive |
Packaging, machine guard, car trim |
|
PETG |
Good-High Impact |
Yes |
Expensive |
Medical application |
Key Features
Customizable Design
Adapt the housing to fit any shape or size of components.
01
High-Quality Material
Made from industrial-grade plastic to ensure maximum durability.
02
Multi-Application
Ideal for electronic devices, automotive parts, or even home appliances.
03
Precision Engineering
Vacuum-formed to create intricate shapes with impeccable detail.
04
Easy Assembly
Designed for straightforward installation, saving time and reducing costs.
05
Manufacturing Methods for Custom Plastic Enclosures
Once the design of your custom plastic enclosure is finalized, it’s time to bring it to life. There are several manufacturing methods available, each with its own benefits and drawbacks. Let’s take a closer look at the most common techniques.
Injection Molding
Injection molding is one of the most popular manufacturing methods for custom plastic enclosures. The process involves injecting molten plastic into a mold, where it cools and solidifies into the desired shape. Injection molding is great for high-volume production because once the mold is created, it can produce large quantities of enclosures quickly and consistently.
Thermoforming
Thermoforming involves heating a plastic sheet until it’s pliable, then forming it over a mold to create the enclosure’s shape. This method is typically used for larger enclosures and offers a lower tooling cost compared to injection molding. It’s ideal for medium-sized production runs where flexibility in design changes is needed.
CNC Machining
CNC (Computer Numerical Control) machining involves using computer-controlled tools to cut and shape a plastic block into the desired form. CNC machining offers incredibly high precision, making it ideal for intricate designs and prototypes. Unlike injection molding or thermoforming, CNC machining doesn’t require expensive molds, so it’s a cost-effective option for low-volume production runs or custom, one-off enclosures.
3D Printing (Additive Manufacturing)
In recent years, 3D printing has revolutionized the way we think about custom plastic enclosures, especially for prototyping and small-batch production. This method builds the enclosure layer by layer using a digital model. The key advantage of 3D printing is its flexibility—designers can quickly test multiple iterations without the need for expensive molds or extensive setup.
The Process of Creating a Custom Plastic Enclosure
Creating a custom plastic enclosure from concept to finished product involves several steps. This process ensures that the enclosure is both functional and aesthetically pleasing while meeting all the technical requirements. Here’s a step-by-step breakdown of how custom enclosures are typically developed:




Step 1: Initial Concept and Design
The first step is to define the enclosure’s purpose. What will it house, and what specific features does it need? This might include considerations like the size and shape of the internal components, necessary openings for buttons or connectors, and whether the enclosure needs to be waterproof, impact-resistant, or ergonomic.
Designers use CAD software to create a digital model of the enclosure. This model is a 3D representation of the final product, allowing designers to see how everything fits together. This is also the stage where aesthetic choices are made, such as color, texture, and finish.
Step 2: Prototyping and Feedback
Once the design is complete, it’s time to move on to prototyping. This step is crucial for testing the design and making sure it meets all the functional and aesthetic requirements. Prototyping can be done using 3D printing or CNC machining, which allows for rapid iteration and adjustments.
At this stage, it’s essential to gather feedback from stakeholders, including engineers, designers, and potential users. This feedback ensures that any issues with the design are caught early before full-scale production begins.
Step 3: Refining the Design
Based on the feedback from the prototyping phase, the design is refined and adjusted. This might involve tweaking dimensions, adding new features, or improving ergonomics. The goal is to create a final design that balances functionality, aesthetics, and manufacturability.
Step 4: Production Preparation
Once the design is finalized, the next step is to prepare for production. If you’re using injection molding, this involves creating the molds that will be used to produce the enclosures. For other methods like CNC machining or thermoforming, production setups are created to ensure consistency and efficiency in manufacturing.
Step 5: Full-Scale Production
With everything in place, full-scale production can begin. Depending on the chosen manufacturing method, hundreds or thousands of enclosures can be produced in a relatively short time. Quality control checks are performed throughout the process to ensure that each enclosure meets the required specifications.
Step 6: Final Assembly and Testing
Once the enclosures are produced, they are assembled with the internal components (if applicable). Final testing is conducted to ensure the enclosures perform as expected, protecting the components inside while maintaining the product’s aesthetic and functional qualities.
Needed Information
1. Materials,Dimensions,Thickness,Quantity,Color,Special Requests, etc.
2. Also you can provide CAD Files/3D drawing/Solid Models.
Certificate



FAQ
We're well-known as one of the leading equipment housing manufacturers and suppliers in China. If you're going to wholesale customized equipment housing, welcome to get more information from our factory.
Heavy Gauge Thermoforming, PVC Vacuum Forming, Medical Equipment Cover forming