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Custom Injection Molding Services - plastic injection service

Author:gly    Date: 2024-10-15    

However, to be able to do this, you should understand what exactly these areas are and how vital they are for your project. At Xometry, we offer the Xometry Quoting Engine to quickly get started on quoting your next injection molding project. Insert your requirements and designs into the Xometry's Quote Engine to get started and our experts will be in touch with you to start working out the details!

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Injection molding cycle time takes up about 60% of final part cost. The part rate comes down partially to cycle time and partially to cavitation, which is covered in the next section. Generally, manufacturers will have set hourly rates they charge for their machines.

Plastic weight cost includes both the plastic formed into parts and the hardened plastic left over in the mold. You'll also have to cover the cost of the plastic weight, not only in the parts but in the runner, sprue, and gate as well (the runner and sprue are channels molten plastic flows through to get into the mold, while the gate prevents plastic from flowing out once it's inside). For example, if you end up with 4lbs of parts, and 1lb of leftover plastic that hardens in the sprue and runner, you'll pay for 5 lbs.

Tooling costs depend on how complex or large your parts will be. In other words, if your part is complex (for example, if it has intricate geometry or dense walls), the manufacturer may need to use a special (i.e. more expensive) machine to complete your order.

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In both two-shot injection molding and overmolding, thermoplastics are commonly used due to their versatility and ease of molding. For two-shot injection molding, materials like ABS (Acrylonitrile Butadiene Styrene), polycarbonate, TPE (Thermoplastic Elastomers), and TPU (Thermoplastic Polyurethane) are popular. These materials are chosen for their ability to bond well during the molding process and withstand the rigors of repeated use.

Two-shot injection molding, also known as dual injection, multi-shot, or 2K molding, is a highly specialized process that combines two different materials or colors into a single injection molded part. This advanced molding technique involves injecting two types of polymers into the same mold through separate injections but within the same molding cycle. The result is a complex part that can have varying colors, textures, or material properties, seamlessly integrated without the need for post-molding assembly.

Mold setup costs include optimizing the process as well as physically setting up the materials and machinery to create your parts. These are part of the final price per part. The process will be optimized, and there may be some setup time that goes into preparations, which most companies will charge as its own flat fee. This may encompass processes like drying the resin, hanging the molds, arranging water lines, external troubles, and any type of sensors in the mold. It may also include any type of special cooling required or specific gating scheme that acts as a hot manifold system (which keeps runners hot enough to keep the plastic in them liquid).

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If your provider is expected to deliver a ready or almost ready-to-use product, the packaging used may be the one your customers get to see directly. Some providers also offer personalized packaging services for this purpose.

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Injection molding tooling cost increases exponentially if we are talking about a large custom-designed part. From the operator's perspective, it is preferable to use small (desktop) injection molding machines (and even 3D printers) in order to fulfill low-volume orders.

Part packaging costs range depending on whether you require consumer-facing or just shipping packaging. Larger manufacturers can also make use of automatic packaging, which reduces the risk of error and damage.

Part inspection requirements costs for quality can include standard inspection or specialized certification, though specialized certification will cost more. The injection molding process itself can introduce defects of various degrees to parts (from cosmetic to critical). Some of them may be acceptable, depending on industry standards.

In this equation α is the thermal diffusivity coefficient and h max is the maximum wall thickness in millimeters. While the first is a material-specific constant, the latter is a design choice or requirement. As such, depending on the part's complexity, the cycle time can take up to two minutes.

Two-shot injection molding is particularly valuable in industries where part durability, aesthetic qualities, and production efficiency are paramount. Common applications include:

As we compare overmolding to two-shot injection molding, understanding their specific applications and the subtleties of each process will be crucial in determining the best approach for any given manufacturing requirement.

Large, industrial plastic injection molding machines can cost over $200,000 and have additional costs that are related to skilled labor training, maintenance, monitoring, and even industry regulations. These types of machines are reserved for high-volume orders.

Cost and Volume Efficiency: Two-shot molding is generally more cost-effective at high volumes due to its efficiency and speed, while overmolding can be more suitable for lower volumes or prototypes due to its simpler setup and lower initial costs.

Two-shot injection molding typically has shorter cycle times because it completes the part in one continuous, automated cycle. Overmolding requires multiple cycles (one for each material layer), potentially increasing total production time, especially if manual labor is involved in transferring substrates between molds.

Another aspect to keep in mind is that for custom injection molds, the geometry has to be compatible with the machine used by the manufacturer. This constraint may affect your project (and possibly design), so it is best to make sure the company you are interested in can fulfill the order.

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Injection molding costs can vary depending on materials, equipment, mold cavitation, packaging, necessary certifications, and additional services employed. While your project may have strict requirements for the functionality of the desired part, there are multiple ways one can cut costs without sacrificing quality.

Both two-shot injection molding and overmolding are employed to create multi-material components, enhancing functionality, aesthetic appeal, and product performance. However, they diverge significantly in their methods, applications, and ideal production scenarios.

Two-shot injection molding often results in a higher consistency and stronger bond between materials, as the process is fully automated and materials are chosen for their chemical compatibility. This can lead to improved structural integrity and performance. Overmolding, while providing good quality and functional enhancements, may face challenges with material bonding if not properly designed, potentially affecting durability.

Trained personnel are required to validate the quality of the parts included in your order. Generally, however, if the part does not meet requirements (or expectations), the quality verification team of your provider is tasked with identifying the area and possible cause of the issue. This is, however, an internal process that is taken into account when you first make your order (no additional costs should be applied in this scenario).

In the world of injection molding services, manufacturers and designers have several techniques at their disposal to create high-quality, functional, and aesthetically pleasing plastic parts. Among the most advanced and versatile techniques are two-shot injection molding and overmolding. Both techniques offer unique advantages and are suited for different applications, yet they are often confused or misunderstood. By understanding the intricacies of each method, professionals can optimize their manufacturing processes and leverage the strengths of each technique for their specific project needs.

Overmolding frequently uses similar base materials, such as ABS and polycarbonate, but often pairs them with softer, more flexible materials like silicone or soft PVC. These combinations provide enhanced grip, aesthetic qualities, or additional functionality, such as shock absorption or water resistance.

Kasirajan puts it simply, “Choose overmolding if the quantity is not too high—only a few thousand or ten thousand—to save some money on molds. If your program requires quantities of 500,000 or more, the more cost-effective process is two-shot injection molding.”

The entire process is highly automated and controlled, requiring less labor and minimizing the risk of human error, which is crucial for the high-volume production of complex parts.

Choosing the right injection molding materials is crucial for the success of both processes. For two-shot injection molding, materials must be carefully selected to ensure they can bond well and withstand the molding temperatures and pressures without degrading. Typically, materials with similar melting temperatures and chemical properties are chosen.

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The table below can be used to approximate the cost of plastic injection molding related to the most commonly used materials. These prices can vary, depending on the supplies and volume order.

Extra steps such as finishing or post-processing services, inspection, and packaging represent an additional cost to the price per part and setup fees.

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By thoroughly assessing the requirements of your specific application and considering the pros and cons of each method, the injection molding experts at Fictiv can help you select the most appropriate injection molding process to achieve your manufacturing goals.

Plastic resins, which can range between $.90-$2+ per pound, are the primary material used in plastic injection molding, while additives can range from more expensive additives like heat stabilizers to cheaper plasticizers. When choosing a resin, take into account the following considerations:

Mold cavitation cost, another factor in price per part rate, increases with the number of cavities. Cavitation is the amount of identical cavities that produce parts per mold. The injection mold itself can cost thousands of dollars.

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Deciding between two-shot injection molding and overmolding depends on several factors, including the project’s scale, budget, material requirements, and final product application.

Two-shot injection molding is a preferred choice for many high-end applications in these sectors because it can mold parts that meet strict technical specifications while also addressing the need for visually appealing designs.

Some parts may not need secondary services, while others do. The cheapest parts fall out of the machine and into a box, but others will form attached to the gate. Those require post-process machining to remove the gate, but they are used because gating makes the overall process more efficient and less wasteful.

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Our trained employees ensure your parts will be delivered on time and to spec.

Overmolding offers more design flexibility due to its ability to combine a wide range of materials that do not necessarily have to be closely compatible. It allows for the addition of different textures, colors, and properties with fewer constraints on the molding environment. Two-shot injection molding is precise and efficient for producing complex, multi-material parts. However, material compatibility and design precision are required for the positioning and bonding of materials.

Saving money on injection molding can be helpful, but it’s important to be strategic around which areas you save money in. In order to maintain a cost-effective strategy for low cost injection molding, it is just as important to identify areas where trying to save money could cause bigger issues down the line as it is to find areas to lower the cost. The following tips will help you with both:

Throughout production, the accuracy of the molds is checked using a coordinate measurement machine (CMM, a three-dimensional measurement device) to prevent injection molding flaws that can occur from misalignment, such as flash.

In contrast, overmolding offers more flexibility with material selection since the secondary material only needs to adhere mechanically to the substrate or use adhesives or primers for chemical bonding. This allows the use of materials with different properties, such as a rigid plastic base with a soft silicone or rubber overlay.It’s not uncommon to need support when reviewing and selecting the right material for your project needs. When requesting an injection molding quote, Fictiv’s global team of manufacturing engineers can provide valuable guidance to ensure your manufacturing success. We also created Materials.AI, a first-of-its-kind AI assistant, to help you navigate the complex landscape of materials choices.

Injection molding tooling for a mid-level order (around 1000-2000 small parts), can cost up to $10,000. For more complex geometries and large orders, the cost can go up to $100,000.

Kasirajan also points out the importance of precision throughout the process, “Because the mold shifts or rotates along the axis, the interchangeability of the core and cavity at both sides must be ensured.”

Overmolding is a versatile manufacturing technique where a single part is created through the sequential injection of two or more materials onto a base part or substrate. The primary material, usually a rigid plastic, forms the substrate, while the secondary material, often a softer plastic or rubber, is molded over the first. This process not only enhances the product’s functionality but also improves its aesthetic appeal and tactile experience.

As a manufacturer, it is preferable to maintain the cycle time to as low as a number as possible, since that translates into the production of more parts in a given time.

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Overmolding is used in a wide range of industries due to its ability to add enhanced properties to a part, such as improved grip, aesthetics, and durability. Typical applications include:

Injection molded parts cost varies based on mold upkeep, the time to form a part, and factors around the plastic. These include the part rate, the estimated amount of scrap (usually 3-5%), the plastic weight, and sometimes a mold maintenance fee, which covers the cost of injection mold warranties. The quoted price should also include any setup costs for the molds.

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You can either buy a ready-made injection mold or have one made for you. Ready-made mold use is a common practice and the less expensive option, especially in the electronics industry since standardization is quite prevalent. You can also have one produced for you, which is better for unique designs.

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Set scrap rates will also go into the final cost of injection molding. These are for purging the plastic injection molding machines of previous plastics from the barrel and screws as well as reloading them with your plastic.

The process of two-shot injection molding is executed in a specialized molding machine that is equipped with two or more injection units. The core of the process lies in the precise control of the injection units and the mold design, which needs to accommodate multiple injections. Here’s how it typically unfolds:

Some companies offer the possibility of additional certification to your parts, at a cost. This implies the involvement of specialized engineers that are also licensed and are legally capable of offering these certifications.

“However,” he advises, “depending on the part’s structure, some features can only be accomplished by double-shot injection molding, while others can only be completed by overmolding.”

Secondary services will range in cost, though often you can get a discount for ordering both injection molding and secondary services from the same provider (this also saves on shipping costs for another facility). These may come in the form of:

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The form impacts the cost of this material it is bought in, as not all polypropylenes are molding-ready. It is thus necessary to buy the plastic resin in pellet form. You may notice that engineering-grade plastics are generally more expensive (as with POM and PC). Overall though, the more materials you buy, the better your cost-effectiveness will become, as producers and distributors often have high-volume discounts which translate into better prices for your project.

If you want to impart special physical properties to the resin you're using, or simply defray the cost of using pure plastic resin, you can add additives. Commonly used materials like plasticizers and mineral fillers are among the cheapest that can be used, while products like lubricants and heat stabilizers can cost more than the polymer itself. There is a wide array of additives that impart a variety of properties, including glass fiber, ceramic fillers, pigments, UV stabilizers, plasticizers, and antioxidants. These materials can increase strength, impact resistance, durability, elasticity, and fatigue limit.

Mold cavitation is related to part size and design. If your part is relatively simple, single cavity molds are usually more affordable. However, if the part's geometry allows it, it is preferable to go for multiple-cavity molds to speed up the production process (making production less expensive over time). Larger parts may, however, not allow for this.

The versatility of overmolding makes it ideal for customizing parts that require tactile and aesthetic qualities in addition to functional performance. This method is especially beneficial where the production scale or budget constraints do not justify the higher initial costs associated with two-shot injection molding.

Besides physical properties, the color of the part can also be influenced, which is one of the most popular uses for additives. These providers will also sometimes establish partnerships with the thermoplastic producers to offer customers cheaper deals.

Injection molding costs from $10,000 or less to $100,000, depending on order size, part complexity, and other factors. Injection molding can be expensive to set up, but is cheaper over the long run, so it works best for large production volumes. There is a range of factors affecting the final price you would pay for injection molded parts, including the cost of the resin itself, tooling, cycle time, mold cavitation, and other details.

Two-shot injection molding generally becomes more cost-effective at higher volumes due to its ability to produce complex multi-material parts in a single cycle, reducing labor and operational costs. However, the initial investment in setup and tooling is significant. Overmolding, while potentially higher in per-part cost due to longer cycle times and additional labor, requires less upfront investment and can be more cost-effective for smaller production runs.

Ashwin Kasirajan is a Fictiv Manufacturing Engineer who works with customers on their injection molding programs. To understand the importance of tool design in two-shot injection molding, he explains, “The tool must allow both stages of the part to be molded in the same tool in order to achieve maximum production efficiency. The design must consider two separate injection stages that can be rotated 180 degrees or oriented to allow a robot to transfer the components. Each injection station is run by an independent injection unit, which allows injection speeds and pressures to be controlled for each material being utilized.”

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