Friday, July 20, 2012

Metric strength grades correspond to the inch strength grades in fasteners

Some details on conversion guidance between metric and inch based strength grades is given in section 3.4 of the standard SAE J1199 (Mechanical and Material Requirements for Metric Externally Threaded Steel Fasteners).
Metric fastener strength is denoted by a property class which is equivalent to a strength grade. Briefly:
  • Class 4.6 is approximately equivalent to SAE J429 Grade 1 and ASTM A307 Grade A
  • Class 5.8 is approximately equivalent to SAE J429 Grade 2
  • Class 8.8 is approximately equivalent to SAE J429 Grade 5 and ASTM A449
  • Class 9.8 is approximately 9% stronger than equivalent to SAE J429 Grade 5 and ASTM A449
  • Class 10.9 is approximately equivalent to SAE J429 Grade 8 and ASTM A354 Grade BD
For information there is no direct inch equivalent to the metric 12.9 property class.

Wednesday, July 18, 2012

Carbon Steel Bolts and Fasteners, Truths and myths

An Engineer Rambles
Is it possible to write an essay about bolts? If you are a Engineer, and your livelihood depends on machine design, then its possible to write a book about bolts.
There are three grades of bolt in common use in most locations. Most bolts which you will come across will only deviate slightly from these three grades. The lowest grade is 4.6, commonly known as commercial grade. Next comes grade 8.8, known as structural grade, and finally, the highest grade is 12.9, known as high tensile bolts. The first number represents the ultimate tensile strength of the bolt, 400 MPa, 800 MPa or 1200 MPa respectively. The second number represents the point at which the bolt will permanently stretch. (Officially, the 0.2% proof load stress).  A 4.6 bolt permanently stretches at 60% of its ultimate, an 8.8 at 80% and a 12.9 at 90 %.
Grade 12.9 bolts
Grade 12.9 bolts are most often supplied as socket head bolts or socket head cap screws with hexagon socket (Allen Key) drives.  Grade 12.9 bolts can also be obtained with hexagon heads. Popular brands of grade 12.9 bolts are Bufab Bulten and Umbrako. It is possible to obtain zinc or chrome plated versions, but not galvanised. Galvanising destroys the heat treatment of the steel. Beware! it is not possible to source 12.9 grade stainless steel bolts but it is possiable to get BUMAX Stainless in some cases for 8.8 and 10.9 replacements. 316 and 304 stainless steel will only be equivalent to grade 4.6, but BUMAX is  They may look cute in an engine bay, but they do not meet the grade. Grade 12.9 nuts are not made.
Grade 8.8 bolts are usually supplied as hexagon head bolts, often galvanised, sometimes zinc plated, but usually black. They are distinguished by the three radial lines on the head, or these day, by the numerals 8.8 stamped on the head. Grade 8.8 nuts are taller than grade 4.6, but do not have any distinguishing marks
Grade 4.6 bolts come in a vast array of configurations. Hexagon head, countersunk slot drive, galvanised, zinc plated, oxy-sealed (ie gold zinc plating), chrome plated. On a motor vehicle, grade 4.6 bolts are used to hold on trim parts and light objects. Grade If you need to replace a bolt, and the grade is doubtful, use grade 8.8 and be safe. The head of a grade 4.6 bolts is easily scratched with a file, not so a 8.8 bolt.
BUMAX 88 M2 and M36 Bolt same tensile strength as class 8.8

Correct design of a bolted joint is quite involved. Serious joints are designed on the basis of maximum stretch in the bolt, with minimum cyclical fluctuation of stresses in the bolt under working conditions. In order to achieve this aim, high tensile bolts are pre-tensioned, bolts are made as long as possible, and the minimum size bolt is used. Often the shank of a bolt (ie a cylinder head stud) is reduced in area to assist. Bolted joint design too complex to delve into here. The average Corvette enthusiast will be replacing bolts in an existing designed joint and need not worry to much about the design of joints.

How do you tighten a bolt?Grade 12.9 bolts are tightened with a torque wrench, right up to their 90% proof load. There is no other effective way to tighten a grade 12.9 bolt. Automotive manuals will give the tightening torque required. Grade 12.9 bolts do not work effectively with spring washers or shakeproof washers. These don't bite into the hardened surface of the bolt. There are only two ways of adding extra security to grade 12.9 bolts. Use Loctite on the threads or drill the heads and wire the bolts. It is possible to buy pre-drilled cap screws. Mating surfaces of a 12.9 bolted joint are not painted. For serious work, never re-use a fully tensioned 12.9 bolt.
Grade 8.8 bolts are tightened by the part turn method, torque wrench, or by using load indicating washers. In the part turn method, the bolt is done up to snug tight, and then advanced one, two or three flats of the hexagon, depending on the size, length etc. The torque wrench method is used commonly, often in the form of an air operated rattle gun. Special load indicating washers, such as Coronet washers can be used. These have dimples which indent the mating surface. A feeler gauge is used to determine the pre-load. Grade 8.8 Bolts are used in High Strength Friction Grip applications. If this is the case, the mating surfaces must not be painted or galvanised. For added security of the joint , use any one of the plethora of systems such as spring washers, shakeproof washers, Loctite, wired heads, split pins and castle nuts, locking tabs, lock nut or patented nut systems (Nyloc is common). For serious work, use castle nuts, either with split pins or wired together in groups. Also for serious work, do not re-use fully tensioned grade 8.8 bolts, Nylocs, split pins etc.
Grade 4.6 bolts are not pre-tensioned in the joint. They are tightened to snug tight only. For all intents, this means a reasonable hand effort on a spanner. Use good springy chrome-moly spanners, and never put an extension bar on the spanner. All of the security systems available for 8.8 bolts are available on 4.6 bolts. If you need much more than a spring washer, question whether the joint really requires an 8.8 bolt. Mating surfaces of a grade 4.6 bolted joint are usually painted prior to assembly.

Tuesday, July 17, 2012

Advantage of Stainless Steel Fasteners in Construction and the 316L construction fastener of the future

Why am I writing this article
After speaking to many people in the construction industry, I come to realize stainless steel was a dream of many but because of strength issues, many designers tend to shy away from the use of 316L or other similiar materials.  As many engineers are learning about Bufab Bulten Stainless BUMAX line is equivalent to SAE J429 Grade 5&8 fasterners.  This allows designers to utalize stainless steel fasteners in many application especially Curtain Walls. 

Why us stainless steel in contstruction 
Stainless steel has been used with success by the construction industry throughout the UK and Europe for over seventy years. Its use has increased rapidly in recent times as the benefits of stainless steel over traditional materials have become more widely recognized. Stainless steel offers many advantages to the specified:
•      Excellent corrosion resistance
•      High ductility and strength
•      Non-magnetic (Austenitic only)
•      Excellent high and low temperature properties
•      Resistance to unsightly staining
•      Life-cycle costing benefits
•      Aesthetic surface finish
•      60% recycled content
•      100% recyclable
 
Life-Cycle Costing
Life-cycle costing is increasingly recognized as the true way to establish the cost of building components. The use of stainless steel means no costly remedial or refurbishment measures are required during the life of the structure. As the trend to higher specification and longer service life continues, stainless steel will provide cost-effective long term solutions to customers problems.
The BIG word RECYCLING
Stainless steel is 100% recyclable. When a product finally reaches the end of its long service life, it remains a valuable source of its main alloying elements - chromium, nickel and molybdenum. These can be easily recovered and separated from the other materials and returned to the production process.
Stainless steel recycling is an economically viable, self-sustaining process. There are considerable savings in energy, and reduced CO2 emissions, in production methods which use recycled materials. The amount of recycled material in any stainless steel product is typically 60%, and as scrap availability is the limiting factor, this percentage will increase as the use of stainless steel continues to grow. The raw material produced today will not be recycled for many years. In addition to a product’s end-of-life recycling, any scrap material generated during its manufacture is recycled in the same way.
PROPERTIES AND WORKING STRESSES
The behavior of constructional stainless steels differs from mild steels in that these stainless steels do not exhibit a well defined yield point when representative test pieces are submitted to tensile load. A true yield point is obtained in mild steel when plastic deformation starts to occur without any increase in loading. The stress in the test piece at the yield point is known as the yield strength of the material. Constructional grades of stainless steel show early plastic deformation in test, but continue to sustain increasing load with increasing strain. In order to characterize the useful design strength of such  materials, proof strengths are used and are determined as the stress (Rp) at which plastic extension equals a specified strain. For stainless steels this is commonly at 0.2% strain and the proof strength for a particular grade of steel is based on the (Rp) 0.2% proof stress.

EFFECT OF COLD WORKING
The working of austenitic stainless steel significantly increases the proof strength. Localized cold working arises during the forming of angle and channel sections. The benefits of this cold working are not taken into account in Ancon’s designs, but provide additional reserves of strength.
 
BUMAX ADVANTAGE
  • Exceeds off the shelf stainless fasteners. Equivalent to SAE J429 Grade 5&8
  • Off the shelf availability full range of fasteners from Bolts, Nuts, Studs to Washers
  • Lower magnetic permeability
  • Corrosion resistance up to 3x greater than 316L
  • Can replace other costly alloys
  • DFARS compliance
  • Full traceability
  • PED Certified

To learn more about what fasteners to trust

Tuesday, July 10, 2012

Can a stainless steel fastener rust?

Stainless steel can develop rust. It is much less likely to rust but it can still rust. Leave a wet cast iron skillet in a stainless steel sink and you'll see a rusted ring in your sink. The stainless steel didn't rust but the pan stained the surface and it will not be easy to remove.

It is also possible for stainless steel to corrode (rust). There are over 150 grades of stainless steel and some are more prone to corrosion than others. Generally, the higher the chromium content, the less likely the steel will rust. However, over time, rust can and will develop on stainless steel. 

Good News
You do have options.  Depending on your application and how much you want to spend, you have choices of exotic materials based on Stainless such as a Duplex.  Issues is typcial price and avaliability for fastener industry.  Other materials such as BUMAX (www.bumax.us) are also avaliable.  This material is manufactured from a new variant of acid-proof and corrosion resistant steel.  BUMAX will typically outlast standard stainless steel by up to 3x its life in salt water and 10x in acid.

Variations of Stainless steel

EN-standard
Steel no. k.h.s DIN
EN-standard
Steel name
SAE gradeUNS
440AS44002
1.4112X90CrMoV18440BS44003
1.4125X105CrMo17440CS44004
440FS44020
1.4016X6Cr17430S43000
1.4408G-X 6 CrNiMo 18-10316
1.4512X6CrTi12409S40900
410S41000
1.4310X10CrNi18-8301S30100
1.4318X2CrNiN18-7301LN
1.4307X2CrNi18-9304LS30403
1.4306X2CrNi19-11304LS30403
1.4311X2CrNiN18-10304LNS30453
1.4301X5CrNi18-10304S30400
1.4948X6CrNi18-11304HS30409
1.4303X5CrNi18-12305S30500
X5CrNi30-9312
1.4541X6CrNiTi18-10321S32100
1.4878X12CrNiTi18-9321HS32109
1.4404X2CrNiMo17-12-2316LS31603
1.4401X5CrNiMo17-12-2316S31600
1.4406X2CrNiMoN17-12-2316LNS31653
1.4432X2CrNiMo17-12-3316LS31603
1.4435X2CrNiMo18-14-3316LS31603
1.4436X3CrNiMo17-13-3316S31600
1.4571X6CrNiMoTi17-12-2316TiS31635
1.4429X2CrNiMoN17-13-3316LNS31653
1.4438X2CrNiMo18-15-4317LS31703
1.4362X2CrNi23-42304S32304
1.4462X2CrNiMoN22-5-32205S31803/S32205
1.4539X1NiCrMoCu25-20-5904LN08904
1.4529X1NiCrMoCuN25-20-7N08926
1.4547X1CrNiMoCuN20-18-7254SMOS31254

Friday, July 6, 2012

Concrete Fasteners Classification & Nomenclature

I wanted to discuss an area I myself was not educated on until I had a home project the other day.  Concrete Fasteners, while I may understand the Stainless steel fastener market, this is new to me.  I wanted to give an overiew of the choices you will find on the market.  Even though BUMAX doesn't offer such a product, I figured this may help somone find the right company and fastener for your need.

ProductConcrete Fasteners, Inc.HiltiSimpsonPowersRed Head
Wedge AnchorWedge AnchorKwik BoltWedge AllPower-StudTrubolt
Sleeve AnchorSleeve AnchorHLCSleeve-AllLok-BoltDynabolt
Drop-in AnchorDrop-in AnchorHDIDrop-inSteel Drop-inMulti-Set II
Concrete ScrewTapcon®Kwik-Con LL +Titen®Tapper®Tapcon®
Strike AnchorStrike AnchorN/AEasy-SetN/AN/A
Hammer Drive AnchorHammer Drive AnchorMetal Hit AnchorNailonZamac Hammer ScrewHammer Set
Split Drive AnchorSplit Drive AnchorN/AMSD/CSD/DSDDrive®N/A
Machine Screw AnchorMachine Screw AnchorN/AExpansion Screw AnchorCalk-inN/A
Lag Shield AnchorLag Shield AnchorN/ALSESLag ShieldN/A
Nylon Nail-itNylon Nail-itN/AN/ANylon NailinN/A
Single Expansion AnchorSingle Expansion AnchorN/ASMSASingleN/A
Double Expansion AnchorDouble Expansion AnchorN/ADMSADoubleN/A

Wedge Anchor: The Wedge-All® wedge anchors are a non-bottom bearing, wedge-style expansion anchor for use in solid concrete or grout-filled masonry. A one-piece clip ensures uniform holding capacity that increases as tension is applied. The threaded stud version is available in eight diameters and multiple lengths. A single size tie-wire version is available for wire-supported fixtures. Tightening the nut sets threaded studs. Tie-wire anchors are set with the claw end of a hammer.
Sleeve Anchor: Sleeve-All® sleeve anchors are pre-assembled expanding sleeve anchors for use in all types of solid base materials. These anchors are available in acorn, hex, rod coupler, flat or round head styles for a wide range of applications.
Drop-in Anchor: Drop-in anchors are internally threaded deformation-controlled expansion anchors with a preassembled expander plug, suitable for flush mount applications in solid base materials. 
Concrete Screws: Titen® screws are 3/16" and 1/4" diameter masonry screws for attaching all types of components to concrete and masonry. Available in hex and phillips head designs in three colors. Use with appropriately sized Titen drill bits included with each box.
Strike Anchor: The Easy-Set is a pin drive expansion anchor for medium and heavy duty fastening applications into concrete and grout-filled block. Integrated nut and washer helps keep track of parts.
Hammer Drive: Anchors are low cost anchors for light-duty applications under static loads.
Split Drive: The Split Drive anchor is a one piece anchor, with a split-type expansion mechanism on the working end. As the anchor is driven into the hole, the expansion mechanism compresses and exerts force against the walls of the hole. Can be installed in concrete, grout-filled block and stone. Available in mushroom, countersunk and duplex-head styles. The duplex head Split Drive is designed for temporary fastening applications and can be removed using a claw hammer.
Machine Screw Anchor: The ESA was the original internally-threaded mechanical anchor design. The malleable lead shield allows for secure mounting.
Lag Shield Anchor: The Lag Screw Expansion Shield is a die cast zinc alloy expansion shield for anchoring lag screws in a variety of base materials, including concrete, concrete block, brick and mortar joints. Radial ribs provide additional holding power in softer material.
Single Expansion Anchor: The SMSA is a corrosion resistant, die cast machine bolt anchor with a single internal expanding cone for use in concrete, concrete block and brick.
Double Expansion Anchor: The DMSA utilizes the same basic anchor design as the SMSA but with double expansion cones to provide higher loads and better performance in base materials of questionable strength.