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Bicycle Geometry Explained
Have you ever watched a bike review where some dude bro is talking about the slack headtube angle and the long wheelbase, andyou just have no idea what theyre even talking about?!The good news is that its not that complicated, it just sounds intimidating.In this article (and video), Im going to walk you through exactly what all the different bike geometry terms mean, in plain English, so that you walk away feeling informed and also so that you can put that knowledge to use next time youre shopping for a new bike.You may also want to read my article on the parts of a bicycle if there are any other terms in this article that youre not familiar with. Two Buckets: Fit vs HandlingIf youve ever pulled up a bike product page, you may have noticed a geometry chart. Every number on there falls into one of two buckets.Bucket one has to do with fit: how big or small the bike is and how upright or stretched out you would be on it. Bucket two is a bit more confusing and has do withhandling: how the bike behaves once youre moving. Is it quick and flickable, or stable and relaxed?Reach And Stack (Fit)Starting with the fit bucket, we have reach and stack.Reach is the horizontal distance from the bottom bracket up to the top of the head tube. Stack is the vertical distance for that same measurement. These two numbers will tell you a lot more about how a bike will fit you than a generic S, M, or L sticker ever will.Two medium bikes from two different brands can have wildly different reach and stack numbers. The bigger the reach and stack numbers are, the bigger the frame is.If youre not sure what the appropriate reach and stack is for your body, the best way to get those numbers is getting a professional bike fit BEFORE you buy a new bike. Another option is to use an online bike fit calculator although theyre not quite as accurate. If you have an existing bike that fits you well you can also compare its numbers to the new bike or bikes youre considering.Seat Tube Angle (Fit)The seat tube angle is the angle of the tube your seatpost slides into relative to the ground. A steeper seat tube angle (aka a bigger number) puts you in a more powerful, over-the-pedals position while a slacker (smaller) angle puts you further behind the pedals, in a more relaxed position. While this is primarily a fit number, seat tube angle can also affect how a bike climbs. A steeper seat tube angle can help keep weight centered or forward on steep inclines.Standover Height (Fit)The final fit geo number you really want to pay attention to is standover height. This is simply how high the top tube is off the ground when youre standing over the bike. You want to be able to comfortably stand over the bike with both feet flat with some breathing room, so compare this number to your inseam length.Head Tube Angle(Handling)Moving on to the handling bucket, lets look at the head tube angle. This the angle of the tube the fork sits in. The bigger the number, the steeper it is. Roughly 7374 degrees counts as steep, and youll see that on race road bikes. It makes the steering quick and responsive, but its a little twitchier. Around 6972 degrees is more moderate, common on gravel and cross-country mountain bikes. And down around 6366 degrees is slack. Thats trail and enduro mountain bike territory, where the steering gets slower and way more stable, especially at speed or on rough terrain.Keep in mind that steep and slack are relative to the category of bike. A 68-degree head angle would be slack for a road bike, but itd actually be steep for a downhill bike. This number is most useful when comparing two bikes to one another.Wheelbase (Handling)Wheelbase is the distance between the front and rear axles. A longer wheelbase gives you more stability, especially at speed. Thats why you see long wheelbases on descent-focused mountain bikes. A shorter wheelbase makes a bike feel more nimble and easier to maneuver in tight corners.Chainstay Length (Handling)Chainstay length is the distance from the bottom bracket back to the rear axle. Shorter chainstays make a bike feel snappier, quicker to accelerate, and easier to pop over obstacles. It will make a bike feel more playful. Longer chainstays add stability and can improve traction on climbs. This one matters a lot on mountain and gravel bikes especially.Bottom Bracket Drop/Height (Handling)Bottom bracket height tells you how far your bottom bracket is above the ground, while bottom bracket drop tells you how far the bottom bracket sits below the axles. A lower bottom bracket brings your center of gravity down, which makes cornering feel more confident and stable. A higher bottom bracket gives you more ground clearance, so you dont clip pedals on rocks, roots, or curbs. Other Geo NumbersThose are the most important terms and numbers to know, but here are a couple others you might hear as well. Again, Ive split them between fit and handling.FitTop Tube Length (effective) The horizontal length of the top tube. This is an older-school sizing number that reach and stack have largely replaced, but youll still commonly listed see it listed on geometry charts.Seat Tube Length The length of the seat tube. Alongside standover height, it tells you how tall a rider can comfortably fit on the bike.Stack-to-Reach Ratio Stack divided by reach. You can use this number to quickly compare how aggressive or relaxed a bikes fit is, independent of frame size.HandlingFork Offset (Rake) How far forward the front axle sits from an imaginary straight line drawn through the head tube down to the ground (the steering axis).Trail The distance between where the front tire contacts the ground and where the steering axis would hit the ground. This determines how planted or flickable the steering feels.Front-Center The distance from the bottom bracket to the front axle. It affects how your weight is distributed between the wheels, especially on smaller frames.Effective Seat Tube Angle On bikes with a bent or curved seat tube (common on modern mountain bikes), this is the angle measured at a riders typical saddle height rather than the actual tube angle, since the two can differ significantly.How Geometry Changes by Bike TypeNow lets talk about all those numbers and how they shift depending on what kind of bike youre looking at.Race road bikes have steep angles, low stack, and a short wheelbase. They are built to be fast and aggressive, but less forgiving over a long day.Endurance road bikes relax those same angles and raise the stack, trading a little speed for a lot more all-day comfort.Mountain bikes slacken the head tube angle, stretch out the wheelbase, and drop the bottom bracket, all in the name of stability when things get rough. Cross-country bikes keep things a bit quicker and tighter, while trail and enduro bikes go slacker and longer for confidence on steep descents.Gravel bikes sit right in between road and mountain. They have a longer wheelbase than a road bike, so you stay stable over washboard and loose gravel, but still efficient enough to hold a good pace.And commuter or hybrid bikes lean all the way into upright fit geometry and a longer wheelbase, prioritizing comfort and predictability over outright speed.How to Use This Info When Buying a BikeSo how do you actually use all of this the next time youre shopping for a bike?First, Id recommend finding the geometry chart. Every manufacturer publishes one right on the bikes product page, usually below the component specs.Second, dont just trust the size label. Line up reach, stack, and standover across a couple of sizes, and even across a couple of brands, so that youre comparing actual numbers instead of guessing based on S, M, or L tag. The best way to really nail in what numbers youre looking for is with a professional bike fit.Third, decide what matters for how you ride. Are you looking for a bike that prioritizes comfort, stability, or responsiveness? Then pick a bike with the geo specs that best line up with your priorities.More Articles You Might LikeParts Of A Bicycle 101: Diagram & GuideTypes of Bikes & How to ChooseYour Guide To Bike MaintenanceAbout The AuthorKristen Bonkoski is a USA cycling and NICA coach, bike educator, and founder of Femme Cyclist.Shes also the host of the Femme Cyclist podcast and runsRascal Rides, a website about biking with kids.Shes been riding bikes for more than two decades and is passionate about empowering women on the bike.IG:@femme_cyclistJoin Kristens Weekly Newsletter!The post Bicycle Geometry Explained appeared first on Femme Cyclist.
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