Tuesday, 11 October 2016

10 free 3D printing software downloads

3D print models are typically distributed in a file format called STL. 3D printer slicer software is needed to convert an STL file into G-code, language which can be understood by a 3D printer. It’s called a slicer because that’s literally what it does; it chops up the 3D model into thousands of flat 2D layers that the 3D printer can fabricate as a physical object.
Cura is the standard slicer software for all Ultimaker 3D printers, but it can also be used with most other 3D printers, including RepRap, Makerbot, Printrbot, Lulzbot, and Witbox. It’s fully open source and can be extended via a plugin system.

This 3D printing software is very easy to use and allows you to manage the most important 3D print settings in a clear interface. Start in “Basic” mode for rapid onboarding, where you can choose reconfigured printer quality settings. When you need more precise control over the print quality settings, switch to over “Expert” mode.
You can also use Cura as 3D printer host software for direct control over your machine, but the 3D printer needs to be connected to the PC for the duration.

10 free 3D printing software downloads # 1  Cura
10 free 3D printing software downloads # 2 Craftware
10 free 3D printing software downloads # 3 1233D
10 free 3D printing software downloads # 4 3dslash
10 free 3D printing software downloads # 5 Tinkercad
10 free 3D printing software downloads # 5 3Dtin
10 free 3D printing software downloads # 6 sculptris
10 free 3D printing software downloads # 7 viewstl
10 free 3D printing software downloads # 8 repetier
10 free 3D printing software downloads # 9 FreeCad
10 free 3D printing software downloads # 10 sketchup

For information on 3D printing see 3Designs details below 

Contact Details
Technical Director
email: design@3dinnovation.co.nz

Managing Director
email: robert@3dinnovation.co.nz

Showroom hours: Monday to Friday, 8.30am-5.00pm 

Open weekends by appointment only. 

Road front showroom:
74c Maleme Street
Greerton 
Tauranga 3112
New Zealand

Ph: 07 929 7278 
info@3dinnovation.co.nz


Monday, 3 October 2016

How to make ABS juice for your 3D printer bed


  1. Use a small glass jar with an air tight lid. You can find these at most hobby shops. Empty nail polish bottles also work by they are small.
  2. Fill about half way with straight acetone (or however much you’d like if you’re using a larger jar).
  3. Add ABS. ABS takes time to completely dissolve in acetone, so the smaller amount you use the quicker the results. We like to simply print a one-layer thick square sheet (or just start any print and stop it after the first layer), and then cut it into pieces. Snipping small pieces off the end of your filament works too, but it’ll just take more time to dissolve.
  4. Wait and stir. Repeat until all the ABS is dissolved.
  5. There’s no perfect ratio of ABS to acetone. Just use less ABS to make a thinner solution (great for surface finishing), or more ABS for a thicker solution (great for bonding or mending parts).
  6. Bonding small parts together to create larger or more intricate ones (it’s just a bit easier to apply than straight acetone).
  7. Improving the surface finish of your part (simply paint it on or dip your part into it).
  8. Mending cracks in your parts (if you don’t feel like reprinting/redesigning them).
  9. Use it as an adhesive on your heated bed plate to prevent lifting/shrinkage of your ABS part.





View our you tube video tutorial here

for more tips and tricks on 3d printing view our website tips and tricks here 



Technical Director
email: design@3dinnovation.co.nz

Managing Director
email: robert@3dinnovation.co.nz

Showroom hours: Monday to Friday, 8.30am-5.00pm 

Open weekends by appointment only. 

Road front showroom:
74c Maleme Street
Greerton 
Tauranga 3112
New Zealand

Ph: 07 929 7278 
info@3dinnovation.co.nz






Tuesday, 27 September 2016

Cheap 3D printers good or bad for the industry?


Another cheap 3d printer is set to be released on the market in October retailing for a low price of $249 USD The new Da Vinci Mini is another 3d printer targeting the rapidly growing 3d printer market. XYZ are well known in the 3D printing industry for their low cost 3d printers. Personally my experience with these printers has not been very pleasant but there affordable price tag makes their 3d printers appealing to consumers. I often ask myself is this doing more damage to the industry then good? Are consumers expectations in line with the current technology available at this price?







Last year our company tested 6 or more 3d printers that were in the price range of $300 to $800, they all claimed to be plug & play consumer ready products, however after weeks of testing we thought differently. Two of the six (M3D, ICEMAN 3D) printers produced a number of Quality prints then soon started failing and eventually ended up  in the bone yard with the others.As a 3d printer retailer I'm always hunting for new products to offer my customers if a printer doesn't work for me then it's going to work for them! The larger retail chains are offering cheap printers but are they really worth buying?



The trouble is that people who don’t understand all of the common problems most cheap printers have, think that price point for a decent machine is too high, but for small production runs, there really isn’t any comparison.I hope that as the consumer market matures, customers will look to higher quality machines that may be a little more expensive, but will save them huge amounts of time and stress.


In Conclusion…

Before buying a cheap 3d printer always ask yourself these questions! 

1: What type of support are you getting? 
2: Does it come with a warranty? 
3: Ask to view Sample Prints, Print Quality, and Capabilities
4: look at Specs, Construction,
5: build size ( most cheap printers have a small print volume does this suit what you will be using it for?

For more information on Cheap 3D printers see details below 



Road front showroom:
74c Maleme Street
Greerton
Tauranga 3112
New Zealand
Ph: 07 929 7278 

Monday, 15 August 2016

Premium 3dprinting filament New Zealand

Premium Quality 3D Printer filament


New zealand based 3d printing company 3design sell some of New zealand's best premium quality 3d filaments. This innovative company is leading the way by supplying consumers with the best products possible and are getting a reputation for doing so.

PLA is made from renewable natural resources, making it the most environmentally friendly 3D printing material available. It also has one of the most appealing printing profiles allowing for printing at low temperatures and high speeds while maintaining a high level of detail and exceptional print quality.Our PLA complements its favorable material profile with more than 10% higher tensile strength than other leading brands. Additionally, our material maintains our quality-first approach with consistent best-in-class cpk’s, meaning less troubleshooting and more printing.
Available in 1.75mm or 3mm 1kg (2.2lb) spools


ABS is a multipurpose material that is great for printing functional parts that require durability and moderate heat resistance. It is less brittle than PLA and is very tolerable to post-processing for smooth and glossy finishes. Our ABS possesses industry leading impact strength that is ideal for use when a rigid material with impact strength is mandated. Suggested Applications: parts requiring structural integrity and detail, parts requiring rigidity and impact resistance.
Available in 1.75mm or 3mm 1kg (2.2lb) spools
Please state what size and type of filament you are after upon purchase.


For more information on the filaments visit:
Www.3dinnovation.co.nz






Wednesday, 11 May 2016

What is rapid prototyping

What is rapid prototyping? 




Rapid Prototyping (RP) can be defined as a group of techniques used to quickly fabricate a scale model of a part or assembly using three-dimensional computer aided design (CAD) data. What is commonly considered to be the first RP technique, Stereolithography, was developed by 3D Systems of Valencia, CA, USA. The company was founded in 1986, and since then, a number of different RP techniques have become available

Rapid prototyping

Rapid Prototyping has also been referred to as solid free-form manufacturing, computer automated manufacturing, and layered manufacturing. RP has obvious use as a vehicle for visualization. In addition, RP models can be used for testing, such as when an airfoil shape is put into a wind tunnel. RP models can be used to create male models for tooling, such as silicone rubber molds and investment casts. In some cases, the RP part can be the final part, but typically the RP material is not strong or accurate enough. When the RP material is suitable, highly convoluted shapes (including parts nested within parts) can be produced because of the nature of RP.




FDM (Fused deposit modelling)


Rapid Prototyping

FDM is an additives' manufacturing process where plastic filament is heated and extruded through a nozzle. This extruded plastic is precisely placed layer upon layer to create a 3 dimensional model. With a large amount of materials available such as ABS, PLA, polycarbonate, polyamides, polystyrene, lignin, among many others, there are different trade-offs between strength and temperature properties.

Prototyping with materials like PLA can be used for lost-wax (investment) castings. Reducing mould manufacturing time by creating accurate models with the tree assembly in one process, removing the need to create individual art moulds getting your product to the market quicker with reduced cost. PLA is rigid and aesthetically smooth making it great for small end parts and prototype components that must not flex.

ABS plastic has great strength and flexibility for creating working prototypes. It has good impact strength and is dimensionally very accurate.


SLA (Stereolithography)


Rapid Prototyping

SLA is a rapid prototyping process that uses a vat of liquid UV-curable photopolymer resin and a UV laser to build parts one layer at a time. SLA rapid prototyping is a great process for concept models, master patterns and tradeshow models.

Maximum dimensions available: 635mm x 635mm x 533mm


SLS (Selective laser sintering)


Rapid Prototyping

A rapid prototyping process that uses a high power laser to fuse small particles of powder to build parts one layer at a time. SLS rapid prototyping is a great process for functional testing and for low volume manufacturing.

SLS is ideal for durable, functional parts with a variety of applications. SLS is capable of producing snap fits and living hinges.

Maximum dimension available: 711mm x 482mm x 482mm.


CNC milling

Rapid Prototyping

Subtractive modelling uses CNC machines to remove material to achieve a 3 dimensional part. This process can be used for both prototyping and end part manufacture. Items can be produced in almost any material making the parts suitable for real life applications including product validations and testing. This process is more suited to the final design stages as manufacture can be expensive.





Colour InkJet printing


Rapid Prototyping

Colour InkJet Printing (CJP) is an additive manufacturing technology which involves two major components – core and binder. The Core™ material is spread in thin layers over the build platform with a roller. After each layer is spread, colour binder is selectively jetted from inkjet print heads over the core layer, which causes the core to solidify. The build platform lowers with every subsequent layer which is spread and printed, resulting in a full-colour three-dimensional model.

Whether printed with colour or in standard white, parts can be additionally clear coated to add a hard smooth coating or wax coated to smooth out the surface finish.

Maximum dimensions available: 381mm x 304mm x 254mm


for information on 3dprinting see our website 

Tuesday, 10 May 2016

10 Things You Need To Know Before Buying A 3D Printer

10 Things You Need To Know Before Buying A 3D Printer


So you have decided to buy yourself a 3D printer after hearing about the amazing things it can build. You want to get started on printing models of your own a custom phone case, cosplay materials, figurines, musical instruments – the possibilities are endless. Hold your horses, there are a few things you need to know before diving into the world of 3D printing
There are a lot of 3D printers on the market today that have varying specifications, which in turn cater to different demands. On top of that, there are technicalities about 3D printing that you really should look into. To help you decide on which printer to make your first, we have complied a list of 10 things you need to know before you buy a 3D printer.



1. Types of 3D printers

3D printing is a broad term that covers the technologies required for producing physical materials. The one you probably heard of in the media and the most popular among hobbyists is the one that uses Fused Deposition Modeling (FDM).


Fused Deposition Modeling (FDM)


FDM is an additive process, where a model is created by heating and extruding plastic, pieced together layer by layer. Most of the 3D printers referred in this post works on FDM, as they are more widely available and easy to find. There are 2 other types of 3D printing available: Stereolithography and Selective Laser Sintering (SLS). They are much more expensive compared to FDM.

Stereolithography

Stereolithography also uses the additive process but instead of extruding plastics, the process utilizes an ultraviolet light beam to harden a model from a pool of photosensitive liquid. This allows for a higher quality printout.


Selective Laser Sintering (SLS)


SLS is similar to stereolithography, except that the process involves lasers and powders instead of UV light beams and liquid. A laser is used to melt the powder, creating a layer of the printed material. This allows some models to print metal objects, which is not possible in the other two processes.



2. Build Your Own Or Buy One


The 3D printing community is one made of creators and makers, so it makes sense that many people would like to try their hand in building a 3D printer on their own. There are building instructions and 3D printer kits available online if you decide to go with this route.

Building your own printer can be cheaper than buying one but if you don’t have the time, you could always buy a pre-assembled printer. Your final decision will depend on whether you are interested in tinkering with the technology, or just want to start printing right away.


3. Price


One of the main factors that can help turn 3D printers mainstream is their market price. Prices depend mainly on the quality of the output. In general, the higher-quality ones tend to go above $1000; professional printers can even go above $2000, e.g. the MakerBot series. But if you are just dipping your toes in 3D printing, you can start with simple models that go for as low as $100.


4. Materials used to print


The two materials required for 3D printing are Poly Lactic Acid (PLA) and Acrylonitrile Butadiene Styrene (ABS). Both are thermoplastics that will becomesoft and malleable when heated, frozen when cooled. They are sold as 1kg (2.2lbs) spools of filament, priced in the $30 range.

Poly Lactic Acid (PLA)

PLA is a type of plastic that is derived from corn starch, excellent for beginners to start dabbling with. Also great for creating small, simple household items. Other characteristics include:
  • Biodegradable and environmentally sound
  • Cools quickly, which prevents problems with model warping
  • Available in both solid and translucent colors, gives printed objects a glossy look
  • Disadvantage: Its low melting point may cause models to deform under high heat
  • Disadvantage: It is difficult to work with if you require joints and interlocking parts

Acrylonitrile Butadiene Styrene (ABS)


ABS is a petroleum-based plastic that is a popular choice because of its strength and flexibility – think Lego bricks (which can be made using 3D printers, if you didn’t know).
  • Its flexibility makes creating interlocking pieces easier to create and work with.
  • It also has a higher melting point, so your creations will be less likely to deform under high heat.
  • Disadvantage: It takes longer to cool compared to PLA; models aresusceptible to warping.
  • Disadvantage: It emits fumes during printing (more on this below).

How To Choose


You need to know which material is suitable for your final product. From there you can choose which type of printer you should buy. It is important to know that not all printers can accept both materials – some will work with only either one type.

When it comes to filament size – 1.75mm or 3mm in diameter – it doesn’t factor much into the end quality. More popular printer brands go with 1.75mm so it is recommended that you start with that.

5. Safety


When it comes to 3D printing, there are a few safety issues to take note.

Playing With Heat

The most important thing to remember is that you are working with heated plastics. Extruders, plastics and in some printers, the print bed itself can get very hot and can cause bad burns if you are not careful. Some printers have no enclosure around the print area; practice extra caution with these printers. Beware Of Fumes It is important to keep your 3D printer in an well-ventilated room. During the printing process, expect fumes to be emitted, particularly when you use ABS plastics. These fumes are reported to be rather overwhelming although there is little to no research that states the impact they have on general health. Still, it is best to take the necessary precautions, particularly if you will be using 3D printers a lot.

6. Quality


To produce high quality 3D printed products, you need to take note of two things: print resolution and print speed.

Print resolution refers to the level of detail the printer can get, measured in microns – the smaller it is, the higher level of detail in the objects you can create. Print speed measures how fast the printer can move its extruder – the higher the print speed, the faster it will print. Note that other features may affect the print speed, such as the acceleration and deceleration of the printer, which helps prevent the printer from shaking.




7. Obtaining A 3D Model


When it comes to getting a 3D model, there are two routes: you can create it yourself or download a pre-made model blueprint from the Internet. If you intend to create your own model, there are a variety of software, both free and commercial, that will help you bring your creation into the real world. If you like, you can even learn 3D modeling.




8. STL Files


The STL file (STereoLithography) is the standard file format that you will use to print your 3D model into a physical object. The file can be generated using most CAD programs so if you are building your own 3D models, chances are the software you are using can output one. Basically inside an STL file is the information needed to produce a 3D model. The model itself is broken down to a series of triangles and a list of their XYZ coordinates is used by the printer to create the physical object, layer by layer. 




9. Slicing Software


Once you have an STL file of the model you want to print, you will have to put them through a slicing software. What slicing does is that it “tells” your printer how to print your model. It provides instructions on the number of layers needed, the starting position of the printer and the parts of the model that should be solid or hollow. There are a number of software to help you with this although some software come with the printer. A good example would be MakerBot’s MakerWare. 




10. Community


The great thing about a new tech trend is that there is almost always an online community devoted to it. It is no different with 3D printers. Check online for a community of people who own a particular brand, to get more insight and answers to questions you may have about the ins and outs of that printer. If the community is small or worse, nonexistent, the lack of users should raise a red flag about that particular brand. All you need to make a sound investment is to read up more about that brand and its competitors so you know what you are getting into.

Blog from 3design New Zealand 

Contact Details

Technical Director email: design@3dinnovation.co.nz

Managing Director email: robert@3dinnovation.co.nz

Showroom hours: Monday to Friday 8.30am-5pm

Open weekends by appointment only.

Road front showroom:
74c Maleme Street
Greerton
Tauranga 3112
New Zealand

Tuesday, 3 May 2016

3D Otago


3D otago

3D printing has been gaining popularity over the past few years and 3designotago.co.nz in otago helps to make that device available to you.



3D Otago3D printing has been gaining popularity over the past few years and 3designotago.co.nz in Auckland helps to make that device available to you. They offer rapid prototyping, commercial 3D scanning, and product design. They also offer top of the line 3D printing courses that can help you to learn the secrets behind 3D printing. They really make it accessible to everyone who has ever had an interest in the technology and they help to make the process easy for you. 3designotago.co.nz is also a great place to buy the perfect 3D printer, no matter what your purpose for it is. There are many different printers with different sizes, speeds, and capacities.

3D OtagoThis printing service is great because it allows you to get the services you need right in Auckland. They offer a great consultancy will help you to find the pest solutions to your3D printing needs. They have a great commitment to their customers and they want to make sure that you are getting the best customer service every time, no matter what. They try to offer you the lowest cost of ownership for all of their products. Not only do they offer you classes to help you understand the technology, but they also offer a 3D printing bureau and support and maintenance for all of your needs. Whether you are looking for a little bit of guidance in how to make your 3D printing business better, or just want to learn how to use a printer just a little better 3designotago.co.nz is there to help you out.



3D Otago


Whether you are a business, or just a student you should get in touch with the company because they can really help you to get the know how and the technology that you need to create something really special. They will walk you through every step of each procedure and they also treat each need differently. This will give you confidence in knowing that you are being treated special by a company who really has your best interests at heart. So id you are looking to buy a 3D printer, you need to use one for any reason, or you just want to take a class to learn more about how to use a 3D printer or which one to buy, then 3designotago.co.nz is the perfect place based out of Auckland.



Contact Details

Technical Director email: design@3dinnovation.co.nz

Managing Director email: robert@3dinnovation.co.nz

Showroom hours: Monday to Friday 8.30am-5pm

Open weekends by appointment only.

Road front showroom:
74c Maleme Street
Greerton
Tauranga 3112
New Zealand