Light ✓
Aero ✓
Road ✓
Futuresque ✓
Looks like it checks all the boxes for simp appeal.
How do you think that bottom bracket material is going to hold up with all that torque and torsion without the seat tube to brace it?
It is a weaker design. It will break sooner. I would never buy one.
That site has not even tested the product so all they are going on are the specs.
Essentially, it isn't reviewing the actual bike (not tested), just the company and its process. A list of specs and components are not a review.
Some data provided was not specific: i.e. frame weight of 1.3 Kg/2.9 lbs. Does that include the fork? What is the fork made of; all "plastic", or a combination of materials (drop-out, steerer, etc.)?
The bike is called "Classic" and yet there is nothing classic about it.
It is not a lightweight bike for a road bike (hybrid or gravel) by any means. The site's bike's overall weight is 11.64 Kg/25.6 lbs without any pedals (add another half pound or more) installed (odd that no pedals were provided for a test bike given to a site that reviews bikes; surprised there was a saddle).
This bike would be considered entry level (more of a "sport bike") at best if used for racing given its weight alone (who knows how it actually performs). For it to be missing the seat tube and still be that heavy seems odd. I can give some concession to weight based on the disc brakes, but even with calipers it would still be considered a heavy road bike by standards from 30 or more years ago, nevermind compared to modern road bikes.
Their price seems steep for a bike that is supposed to be cheaper and easier to manufacture since it is essentially a software produced bike frame which will be pumped out of 3D printers.
No idea as to its stiffness is mentioned that I saw.
Nothing that I would pursue purchasing, especially as a new design and manufacturing method. Let me see how that frame holds up over a few years before I consider it a viable design and process.
Personally, I would like to see a cross-sectional view of the frame. I would like to see how much material was used in the high load, high torsion areas of the frame.
Plastics (Lexan, et al.) have been used before in the early 70's early 80's. The Original Plastic bike even had plastic components; complete flop, but thought to be a bit of a hoax (no proof of an actual bike produced for sale). Another plastic framed (Itera) bike with convention components which was also a flop for many reasons (they are being sold way overpriced as collectibles; certainly not worth riding).
Ride Fast, Be Safe!
Howard
Certainly, the company that produced it had their engineers weigh-in on the design, but also theory and practice can be two entirely different worlds. Their insights could be hopeful at best.
Another important spec that was not mentioned was the frame's weight capacity. Can it be loaded up with commuter or touring accessories, rider's gear, and a rider up into the +200 lb area? It also would be helpful to know the stay length to determine its feasibilty for certain uses.
I was impressed with the "claim" that it can go about 60 miles on a charge with the e-bike variant; of course no spec was provided as to the e-bike version's weight, or the weight of the rider used for that range claim. Also, what terrain it was tested on regarding hills or flats.
Ride Fast, Be Safe!
Howard
There are a number of companies figuring out how to 3D print frames. Once it is figured out and the printing technology comes up to speed, it will be very cost effective to manufacture frames this way. Nothing new with the missing seat tube, it has been done a few times before with Kestrel being one that comes to mind immediately.
(10-28-2022, 06:43 PM)jeffg Wrote: There are a number of companies figuring out how to 3D print frames. Once it is figured out and the printing technology comes up to speed, it will be very cost effective to manufacture frames this way. Nothing new with the missing seat tube, it has been done a few times before with Kestrel being one that comes to mind immediately.
You would think that the same theory would apply to carbon fiber frames; but not from what I have seen. Scott, Trek, and other brands all made in Taiwan (Giant factory?) have continued to remain the same or increased in price (frames alone). The fact that mass production of "cookie cutter" molded CF frames has not dropped significantly (given international economies, trade agreements, etc.) does not show that the consumer cost will be lower.
Ride Fast, Be Safe!
Howard
Cost to manufacture is the goal and 3D printing holds a lot of promise in lowering the cost. It will also allow easy changes in production as tool changeups in the usual sense is not necessary. The companies that master it will not pass savings on to the end user, but keep as profit.