Archive for September, 2018

4 Tips for a Smooth Start to Manufacturing Your Product

manufacturing, baby toon, baby spoon, feeding, soft tip, bitingTaking the leap into manufacturing is a big milestone for a startup. Once you start to search for a manufacturing partner, suddenly it all seems real. Manufacturing is not cheap, and one misstep here can severely hurt or completely crush your business. Finding the right manufacturer is not easy, but with proper planning and research, it can be done. Below are four tips to keep in mind as you research potential partners.

Market Segment Experience

Start your search for a manufacturer that has experience in the industry your product is entering. For instance, if you are manufacturing a baby spoon find a manufacturer that has a great deal of experience in the baby product consumer market segment. Having a manufacturing partner that is knowledgeable about the industry you are entering means that they will be up-to-date with best practices, safety standards, and will have the ability to offer helpful insight.

Unit Scalability

Not all manufacturers will be able to scale with your business. As your startup grows, the number of units you need will increase as well. Your initial manufacturing partner might be great at prototypes and low volumes, but higher volumes may pose a problem. Minimize production delays, by meeting with other potential manufacturing partners that are able to adequately meet higher volume needs. You don’t have to stick with just one manufacturer.

Multiple Open Partnerships

Depending on your product, one manufacturing strategy is to have multiple open partnerships with manufacturers. Your once very attentive and grateful manufacturer might put you on the back burner when a bigger customer comes along. A vendor list with manufacturers you can utilize or bounce between is a good idea. This keeps pricing between them competitive and the diversification minimizes your business risk.

Make a Visit & Check References

Your manufacturer is critical to your business, so open communication is mandatory. It is imperative that you know them, and trust them, before working with them. This is true whether you are manufacturing close to home or in another country. Phone calls and emails are great, but a visit to their location is highly recommended. Visiting the facility lets you meet the factory workers and see the facility. You want to feel comfortable that your product is in the right hands, and an on-site visit will do just this.

Don’t forget to check their references. Make those phone calls and get your questions answered by people who have experience with this potential manufacturer.

Now here is what your future manufacturer wants you to know.

Have additional questions about manufacturing your product? We can help. Send us an email with your questions to info@3d-innovations.com

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3D Innovations is a Product Development Company – from the 3D Design to a fully functional 3D Prototype & Product.

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Developments in the Metal 3D Printing Segment

IP Licensing, metal 3d printingAs Terry Wohler’s put it best, this is the year of metal 3D printing. At trade shows globally, metal 3D printing has been a main focus for both speakers and attendees. 3D printing with plastics has advanced to the point where individuals can purchase a small, affordable and pretty compact desktop printer for their home and get to printing out their designs almost immediately. 3D printing with metals is not to this point yet, the current methods are not that simple or affordable. However, metal 3D printing is making strides this year and below we have gathered a few of the notable developments in this small, yet quickly growing, market segment.

Metal 3D Printing industry expected to be worth as much as $10 billion by 2030 to 2035.

Today, 3D printing is a very small part of the metals industry, but it is growing rapidly and this market is expected to be worth as much as $10 billion by 2030 to 2035. Already, a number of healthcare and aerospace companies have adopted the technology. Some are running pilots to see how 3D metal printing can contribute to their operations while others are using 3D printers to produce metal prototypes in-house. (McKinsey & Company)

High volume parts product arrives.

Tech giant HP Inc on Monday, October 10th, launched the worlds most advanced 3D printing technology for the mass manufacturing of production-grade metal parts.

Called HP Metal Jet, the technology is up to 50 times more productive — delivering low-cost, high-quality mechanically functional parts for the auto, industrial and medical industries to begin with. (Machinery)

Researchers appear to have found a simpler method for 3D printing metal.

Jan Schroers, Professor of Mechanical Engineering and Materials Science at Yale University and Desktop Metal, Inc., in Burlington, Massachusetts, USA and colleagues think they’re onto a simpler way of additively manufacturing metal using bulk metallic glasses (BMGs). These can be continuously softened when heated and have a “super-cooled liquid region in their thermodynamic profile”.

“We have shown theoretically in this work that we can use a range of other bulk metallic glasses and are working on making the process more practical- and commercially-usable to make 3D printing of metals as easy and practical as the 3D printing of thermoplastics,” said Schroers. (All 3DP)

Flood of new entrants to the market segment.

Many new metal technologies have already been announced this year, and there are even more on the way. If you’re thinking about investing in a very high cost metal 3D printer today, it might be wise to wait a couple years. The market is moving so fast that any equipment purchased today might be obsolete in only a few years. (Fabbaloo)

The metal 3D printing industry is on the rise. Manufacturers, businesses and researchers are working hard to push the technology forward. While it won’t eliminate the needed for traditional manufacturing methods, it will be one very powerful tool in your toolkit when it comes to manufacturing.

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3D Innovations is a Product Development Company – from the 3D Design to a fully functional 3D Prototype & Product.

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A Human-Centered Design Approach

When it comes to designing consumer products, the best approach is to consider your end-user throughout the entire design processwhich is commonly referred to as “Human-Centered Design”. This means that you are focusing on the problem that your audience is facing and designing a streamlined solution.  While additional features might be great marketing tools, most often than not less is more, the more streamlined your product and the more it addresses their current need, the better.

Famed design firm, IDEO, first coined the term, “Human-Centered Design” and have been using this approach to design many recognizable products, such as: the first computer mouse for Apple in 1980 and the Palm Pilot in 1998. IDEO’s main tenet is empathy for the end-user of their products. They believe that the key to figuring out what humans really want lies in doing two things:

  • Observing user behavior — Try to understand people through observing them. For example, if you’re designing a vacuum cleaner, watch people vacuum.
  • Putting yourself in the situation of the end-user — IDEO does this to understand what the user experience is really like; to feel what their users feel.

IDEO defines human-centered design as a creative approach to problem solving that starts with people and ends with innovative solutions that are tailor made to suit their needs. In their Field Guide to Human-Centered Design IDEO states, “When you understand the people you’re trying to reach—and then design from their perspective—not only will you arrive at unexpected answers, but you’ll come up with ideas that they’ll embrace.” Below is the central philosophy of human-centered design.

human-centered product design, product development, Human-Centered Design

Image from: User Testing Blog

The Six Phases of a Human-Centered Design Approach

Phase 1: Observation

The first phase is about observing the target audience or end-user going about the activity you are aiming to design a solution for. You are identifying patterns of behavior, pain points, and places where users have a difficult time accomplishing a task—this is where your opportunity lies.

Phase 2: Ideation

This is the brainstorming phase. Come up with solutions to the problem you have identified. Think of solutions that directly address the needs and desires of the people you are designing for. Maybe you already have a solution in mind, but are there any other options out there as well?

Phase 3: Rapid Prototyping

This phase is to make sure that the solution you have in mind is right on target. Your prototype at this phase doesn’t need to be a finished product. You need a prototype that makes your idea tangible and allows you to gain valuable target audience feedback.

Phase 4: User Feedback

This is the most critical phase of the human-centered design process. You want to get your prototype into the hands of your target audience. Without input from your end-user, you aren’t going to really know if your product solution is on target or not.

Phase 5: Iteration

The insight collected during the user-feedback stage is now implemented and it either impacts your design, where you need to make changes, or it validates your original design.

Keep iterating, testing, and integrating user feedback until you’ve fine-tuned your solution. This may take a few rounds, but don’t get discouraged. With each iteration you’ll learn something new.

Phase 6: Implementation

At this point you have thoughtfully and carefully design a product that solves a real need for your target audience, now it is time to launch it into the marketplace.

When it comes to developing and designing your product, don’t forget the “human” aspect. To build a truly innovative product you don’t need to start with fancy technology, you can start by simply understanding people.

Have product design questions? We are happy to help! Please send us an email at info@3d-innovations.com

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3D Innovations is a Product Development Company – from the 3D Design to a fully functional 3D Prototype & Product.

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