Property Class 8.8 Steel Bicycle Stem and Headset Bolts
Mechanical properties, corrosion behaviour and the full dimensional range for this grade.
Property Class 8.8 Steel Bicycle Stem and Headset Bolts are supplied to ISO 898-1 property class 8.8. Corrosion behaviour is requires plating (zinc) for corrosion protection, the material is magnetic, and the usable service range is commonly limited to approx. +300 °C; confirm against the coating and the load. In practice this grade is the workhorse medium-carbon alloy class for structural joints.
Grade
ISO 898-1 property class 8.8
Corrosion resistance
Requires plating (zinc) for corrosion protection
Magnetic response
Magnetic
Service temperature
commonly limited to approx. +300 °C; confirm against the coating and the load
Property values are typical for the grade. Certified mechanical test data is available on request for production orders.
Hidden Deck Fasteners Sourcing: Manufacturing, Types & Material Compatibility
Material specification page for bicycle stem and headset bolts in Property Class 8.8 Steel. Covers the grade designation (ISO 898-1 property class 8.8), corrosion and magnetic behavior, comparable grades and their trade-offs, and the sizes available to Trade series (bicycle stem bolts).
Why Choose Property Class 8.8 Steel for Bicycle Stem and Headset Bolts
The workhorse medium-carbon alloy class for structural joints. For bicycle stem and headset bolts, this matters when requires plating (zinc) for corrosion protection is the primary requirement.
Mechanical & Physical Properties
Grade designation
ISO 898-1 property class 8.8
Magnetic response
Magnetic
Service temperature
commonly limited to approx. +300 °C; confirm against the coating and the load
Corrosion characteristic
Requires plating (zinc) for corrosion protection
Corrosion Behavior in Service
Carbon and alloy steel bicycle stem and headset bolts require a coating for corrosion protection. Zinc plating (with or without passivation) is the most common; hot-dip galvanizing is used for outdoor structural service; black-oxide is mainly a tarnish-prevention finish for tool-room use.
Comparable Grades
For Bicycle Stem and Headset Bolts, class 10.9 or 12.9 is the comparable strength step. Move up when the joint preload approaches the proof load of the current class; move down when the joint is over-specified. For corrosion-critical service, switch to stainless A2 or A4.
Sizes of Bicycle Stem and Headset Bolts Available in Property Class 8.8 Steel
Thread size
Length options (mm)
Typical location
Head / drive
Selection rule
M5u00d70.8
15 / 16 / 18
stem faceplate and steerer clamp
socket-cap or tapered socket-cap
stem manufacturer torque and engagement
M6u00d71.0
30 / 35 or application-selected
larger stem and mountain-bike hardware / top cap
varies by assembly
headset or stem manufacturer specification
Technical Drawing
Customize the parameters below — every spec field is editable, and the drawing redraws to match the values you choose. Changing the size will snap the other fields to that size's standard values; you can then override any individual value.
Sends the selected values to the quote form below.
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Dimensions & Specifications (Trade series (bicycle stem bolts))
Thread size
Length options (mm)
Typical location
Head / drive
Selection rule
M5u00d70.8
15 / 16 / 18
stem faceplate and steerer clamp
socket-cap or tapered socket-cap
stem manufacturer torque and engagement
M6u00d71.0
30 / 35 or application-selected
larger stem and mountain-bike hardware / top cap
varies by assembly
headset or stem manufacturer specification
Materials & Grades
Select a material class to see the grades we supply it in. Each designation is listed with its ISO/EN, AISI/SAE, JIS and GB equivalents.
AISI 420SUS420J1 · SUS420J2 · EN 1.4021 · EN 1.4028 · 20Cr13 · 30Cr13
AISI 431SUS431 · EN 1.4057 · X17CrNi16-2
C1
C3
C4
AISI 440A
AISI 440B
AISI 440CSUS440C · EN 1.4125
Ferritic Stainless Steel
AISI 430SUS430 · EN 1.4016 · X6Cr17 · 10Cr17
F1
AISI 434
AISI 444
Precipitation-Hardening Stainless Steel
17-4 PHAISI 630 · UNS S17400 · SUS630 · EN 1.4542 · X5CrNiCuNb16-4
15-5 PHUNS S15500
17-7 PHUNS S17700
Duplex and Super Duplex Stainless Steel
Duplex 2205UNS S31803 · UNS S32205 · EN 1.4462
Super Duplex 2507UNS S32750 · EN 1.4410
D2
D4
D6
D8
Lean Duplex 2101UNS S32101
Super Duplex S32760UNS S32760 · EN 1.4501
Carbon Steel
Low-Carbon Steel
SAE 1006
SAE 1008
SAE 1010
SAE 1018
SAE 1020
Q195
Q235
SAE 1012
SAE 1015
Q215
ML08
ML08Al
ML10
ML15
ML20
SWRCH6A
SWRCH8A
SWRCH10A
SWRCH12A
SWRCH15A
SWRCH18A
Medium-Carbon Steel
SAE 1035
SAE 1045
S45C
C45
SAE 1030
SAE 1040
SAE 1050
30
35
40
45
50
S35C
S40C
S50C
C35
C40
High-Carbon Steel
SAE 1060
SAE 1070
65Mn
SAE 1065
SAE 1075
SAE 1080
SAE 1085
SAE 1090
SAE 1095
60
65
70
75
80
85
Cold-Heading Steel
SWRCH22A
10B21
SWRCH22K
SWRCH25K
SWRCH30K
SWRCH35K
SWRCH40K
ML20Mn
ML25
ML30
ML35
ML40
15B25
Alloy Steel
Chromium Steel
40Cr
45Cr
AISI 5140
SAE 5140
AISI 5120
SAE 5120
SCr420
SCr440
Chromium-Molybdenum Steel
35CrMo
42CrMo
AISI 4140
SCM435
SCM440
42CrMo4
30CrMo
AISI 4130
SAE 4130
SAE 4140
AISI 4142
AISI 4145
SCM415
SCM420
SCM445
EN 1.7220
EN 1.7225
25CrMo4
34CrMo4
Nickel-Chromium-Molybdenum Steel
AISI 4340
SAE 4340
40CrNiMo
SNCM439
EN 1.6511
36CrNiMo4
Boron Alloy Steel
10B22
10B21
15B21
15B25
20MnTiB
20Mn2B
35VB
40MnB
Bearing Steel
Bearing Steel
GCr15
AISI 52100SAE 52100 · UNS G52986
SUJ2
100Cr6EN 1.3505
GCr15SiMn
Spring Steel
Carbon Spring Steel
SAE 1065
SAE 1070
SAE 1075
SAE 1080
SAE 1095
65
70
75
80
65Mn
Silicon-Manganese Spring Steel
60Si2Mn
60Si2MnA
SUP6
SUP7
Chromium-Vanadium Spring Steel
50CrVA
SAE 6150
AISI 6150
SUP10
Stainless Spring Steel
AISI 301
SUS301
EN 1.4310
AISI 302
AISI 304
AISI 316
17-7 PH
Aluminum and Aluminum Alloys
Commercially Pure Aluminum
1050
1060
1070
1100
2xxx Series Aluminum
2024
2011
2014
2017
5xxx Series Aluminum
5052
5083
5754
6xxx Series Aluminum
6061
6061-T6
6063
6082
6082-T6
7xxx Series Aluminum
7075
7075-T6
7005
7050
7075-T73
Brass
Free-Cutting Brass
C36000
H62
HPb59-1
C3601
C3602
C3604
CuZn36Pb3
CuZn39Pb3
EN CW614N
EN CW617N
H65
Lead-Free Brass
C69300
C27450
CW510L
CW511L
Naval Brass
C46400
CuZn39Sn1
Bronze
Silicon Bronze
C65500
C65100
C65600
Phosphor Bronze
C51000
C52100
CuSn6
CuSn8
Aluminum Bronze
C95400
C95500
C63000
CuAl10Ni5Fe4
Copper
Copper
C11000
T2
C10100
C10200
C12200
T1
TU1
TU2
Titanium and Titanium Alloys
Commercially Pure Titanium
Grade 2
Grade 1
Grade 3
Grade 4
TA1
TA2
TA3
Alpha-Beta Titanium Alloys
Grade 5
Ti-6Al-4V
TC4
UNS R56400
Low-Interstitial Grade
Grade 23
Ti-6Al-4V ELI
UNS R56407
Other Titanium Fastener Alloys
Ti-6Al-6V-2Sn
Ti-6Al-2Sn-4Zr-2Mo
Beta-C titanium
Ti-10V-2Fe-3Al
Nickel and Nickel Alloys
Commercially Pure Nickel
Nickel 200
UNS N02200
Nickel 201
UNS N02201
Inconel Alloys
Inconel 625UNS N06625
Inconel 718UNS N07718
Inconel 600UNS N06600
Inconel 601UNS N06601
Inconel 686UNS N06686
Inconel X-750UNS N07750
Monel Alloys
Monel 400UNS N04400
Monel K-500UNS N05500
Hastelloy Alloys
Hastelloy C-276UNS N10276
Hastelloy C-22UNS N06022
Hastelloy B-2UNS N10665
Hastelloy B-3UNS N10675
Hastelloy XUNS N06002
Other Nickel Alloys
Alloy 20UNS N08020
Alloy 625
Alloy 718
Alloy 825UNS N08825
Alloy 925UNS N09925
Iron-Nickel and High-Temperature Alloys
A286
A-286
UNS S66286
EN 1.4980
Invar
Invar 36
Alloy 36
UNS K93600
FeNi36
Alloy 42
Alloy 42
UNS K94100
FeNi42
Tool Steel and Specialty Hardened Steel
Tool Steel and Specialty Hardened Steel
AISI D2
AISI H13
SKD11
Cr12MoV
AISI O1
AISI A2
AISI S7
SKD61
9CrSi
Structural and Construction Steel
Structural and Construction Steel
ASTM A36
Q235B
Q355B
S355JR
Q235C
Q355C
S235JR
S275JR
S355J2
Applications & Industries
Bicycle Stem and Headset Bolts are bought for a small number of well-defined jobs. These are the ones we ship them for. Stocked from M5u00d70.8 to M6u00d71.0.
Industries that specify Bicycle Stem and Headset Bolts
Repair shopsTorque is taken from the stem or headset maker, not a generic bolt chart.
Bicycle assemblyM5 stem bolts clamp the faceplate and steerer hardware.
Bike fittingLength and head style are selected with the stem design.
Mountain-bike serviceM6 options cover larger clamp and preload hardware.
Energy & infrastructureTower, pipework, switchgear and plant fixings specified for long service life and inspectable joints.
Maintenance & MROStocked replacements matched to an existing property class, thread and finish.
Typical applications
tightening to the component manufacturer torque
clamping a stem faceplate or steerer with the supplied metric thread
choosing 15–18 mm M5 lengths or application-selected M6 lengths
matching socket-cap or tapered head form
joints where the property class is stated on the drawing
clamping two machined faces to a calculated preload
Service conditions to specify against
Marine and coastal
Available in A4 (316) stainless for chloride exposure — coastal structures, pool halls, water treatment and deck hardware, where A2 will eventually pit.
High load
Supplied in ISO 898-1 property classes, so the joint can be designed to a stated proof load and tightened to a calculated torque rather than by feel.
Torque and preload
The joint is designed around bolt tension, so lubrication, coating and the friction coefficient all change the torque figure — state them together.
Where to use something else
Do not replace a stem bolt by length alone; head seat, engagement and specified torque are safety-critical.
Do not use a machine thread into unthreaded sheet or timber; use a tapping screw, rivet nut or insert made for that parent material.
This part is cold-formed, threaded, heat-treated and finished in-house. The stages below are where its class and finish are actually decided.
01
Cold heading
Wire rod is drawn to size and cold-formed into blanks. Forming rather than cutting keeps the grain flow continuous around the head, which is where a bolt is most likely to fail.
Head dimensions and under-head radius checked at set-up and per shift.
02
Thread rolling
Threads are rolled between hardened dies rather than cut. Rolled threads are stronger in fatigue than cut threads and hold pitch and flank angle far more consistently across a batch.
Go / no-go ring gauges to ISO 965 tolerance class 6g.
03
Heat treatment
Quench-and-temper brings carbon and alloy steel to the property class ordered — 8.8, 10.9 or 12.9 — with the furnace charge tracked so a finished lot can be traced back to it.
Core hardness and tensile tested per lot to ISO 898-1.
04
Surface treatment
Zinc, zinc-nickel, hot-dip galvanizing, black oxide, phosphate and Dacromet, selected against the service environment rather than against the price list.
Coating thickness and neutral salt spray hours to ISO 9227.
Frequently Asked Questions
What corrosion resistance do Property Class 8.8 Steel Bicycle Stem and Headset Bolts offer?
Property Class 8.8 Steel Bicycle Stem and Headset Bolts provide requires plating (zinc) for corrosion protection with a service range of commonly limited to approx. +300 °C; confirm against the coating and the load.
When should I move from ISO 898-1 property class 8.8 to class 10.9 / 12.9 for Bicycle Stem and Headset Bolts?
Step up to class 10.9 / 12.9 when the joint preload approaches the proof load of the current class. The higher class adds preload at the same diameter, often saving size and weight.
Is Property Class 8.8 Steel prone to hydrogen embrittlement?
Class 10.9 and above can be susceptible to hydrogen embrittlement when electroplated. Specify post-plating baking, or use mechanical-zinc / zinc-flake finishes which avoid the cathodic plating step.
Which finish is best for outdoor Bicycle Stem and Headset Bolts?
For outdoor service in steel, hot-dip galvanizing gives the longest life; zinc-flake (Geomet/Delta-Tone family) gives a thinner film with excellent salt-spray performance; standard zinc plating is the lowest-cost option for general indoor / shielded outdoor use.
How do I request a quotation?
Use the technical drawing on this page to pick the exact configuration, then submit it with the quote form. We respond within one business day.
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