{"id":81,"date":"2022-05-06T19:37:51","date_gmt":"2022-05-06T19:37:51","guid":{"rendered":"https:\/\/roller-chain-manufacturers.com\/?p=81"},"modified":"2022-05-06T19:37:51","modified_gmt":"2022-05-06T19:37:51","slug":"china-high-quality-24ass-2-industrial-transmission-gear-reducer-conveyor-engineering-and-construction-machinery-duplex-stainless-steel-short-pitch-roller-chains-and-bush-chain-with-free-design-cus","status":"publish","type":"post","link":"https:\/\/roller-chain-manufacturers.com\/de\/blog\/china-high-quality-24ass-2-industrial-transmission-gear-reducer-conveyor-engineering-and-construction-machinery-duplex-stainless-steel-short-pitch-roller-chains-and-bush-chain-with-free-design-cus\/","title":{"rendered":"China high quality 24ass-2 Industrial Transmission Gear Reducer Conveyor Engineering and Construction Machinery Duplex Stainless Steel Short Pitch Roller Chains and Bush Chain with Free Design Custom"},"content":{"rendered":"
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| Lmax mm<\/td>\n | Lcmax mm<\/td>\n<\/tr>\n | ||||||||||
| *04CSS-two<\/td>\n | six.350<\/td>\n | three.30<\/td>\n | three.18<\/td>\n | two.31<\/td>\n | 14.fifty<\/td>\n | 15.00<\/td>\n | six.00<\/td>\n | .80<\/td>\n | six.forty<\/td>\n | five.\/1124<\/td>\n | .28<\/td>\n<\/tr>\n |
| *06CSS-two<\/td>\n | nine.525<\/td>\n | 5.08<\/td>\n | 4.77<\/td>\n | 3.58<\/td>\n | 22.50<\/td>\n | 23.thirty<\/td>\n | nine.00<\/td>\n | 1.thirty<\/td>\n | 10.13<\/td>\n | eleven.\/2473<\/td>\n | .70<\/td>\n<\/tr>\n |
| 08ASS-2<\/td>\n | twelve.seven-hundred<\/td>\n | seven.ninety five<\/td>\n | 7.85<\/td>\n | three.ninety six<\/td>\n | 31.00<\/td>\n | 32.twenty<\/td>\n | twelve.00<\/td>\n | one.50<\/td>\n | fourteen.38<\/td>\n | 19.2\/4316<\/td>\n | 1.30<\/td>\n<\/tr>\n |
| 41SS-two<\/td>\n | twelve.seven-hundred<\/td>\n | seven.seventy seven<\/td>\n | 6.25<\/td>\n | three.53<\/td>\n | 25.70<\/td>\n | 26.ninety<\/td>\n | nine.ninety one<\/td>\n | one.30<\/td>\n | eleven.95<\/td>\n | 12.\/2698<\/td>\n | .ninety one<\/td>\n<\/tr>\n |
| 10ASS-two<\/td>\n | 15.875<\/td>\n | 10.sixteen<\/td>\n | nine.forty<\/td>\n | 5.08<\/td>\n | 38.90<\/td>\n | forty.40<\/td>\n | fifteen.09<\/td>\n | two.03<\/td>\n | 18.eleven<\/td>\n | thirty.4\/6834<\/td>\n | two.18<\/td>\n<\/tr>\n |
| 12ASS-2<\/td>\n | 19.050<\/td>\n | 11.ninety one<\/td>\n | 12.fifty seven<\/td>\n | 5.ninety four<\/td>\n | 48.eighty<\/td>\n | fifty.fifty<\/td>\n | eighteen.00<\/td>\n | two.forty two<\/td>\n | 22.78<\/td>\n | forty three.4\/9757<\/td>\n | 2.ninety two<\/td>\n<\/tr>\n |
| 16ASS-2<\/td>\n | 25.four hundred<\/td>\n | fifteen.88<\/td>\n | fifteen.seventy five<\/td>\n | 7.92<\/td>\n | 62.70<\/td>\n | 64.30<\/td>\n | 24.00<\/td>\n | 3.25<\/td>\n | 29.29<\/td>\n | seventy seven.8\/17490<\/td>\n | 5.fifteen<\/td>\n<\/tr>\n |
| 20ASS-two<\/td>\n | 31.750<\/td>\n | 19.05<\/td>\n | eighteen.ninety<\/td>\n | nine.fifty three<\/td>\n | 76.40<\/td>\n | 80.50<\/td>\n | thirty.00<\/td>\n | 4.00<\/td>\n | 35.76<\/td>\n | 120.\/26977<\/td>\n | seven.eighty<\/td>\n<\/tr>\n |
| 24ASS-2<\/td>\n | 38.100<\/td>\n | 22.23<\/td>\n | 25.22<\/td>\n | 11.ten<\/td>\n | 95.80<\/td>\n | ninety nine.70<\/td>\n | 35.70<\/td>\n | four.80<\/td>\n | forty five.forty four<\/td>\n | one hundred fifty.\/33720<\/td>\n | eleven.70<\/td>\n<\/tr>\n |
| 28ASS-two<\/td>\n | 44.450<\/td>\n | 25.40<\/td>\n | 25.22<\/td>\n | 12.70<\/td>\n | 103.thirty<\/td>\n | 107.ninety<\/td>\n | forty one.00<\/td>\n | 5.60<\/td>\n | forty eight.87<\/td>\n | 204.\/45859<\/td>\n | 15.fourteen<\/td>\n<\/tr>\n |
| 32ASS-2<\/td>\n | fifty.800<\/td>\n | 28.58<\/td>\n | 31.55<\/td>\n | 14.27<\/td>\n | 123.thirty<\/td>\n | 128.ten<\/td>\n | forty seven.80<\/td>\n | six.forty<\/td>\n | fifty eight.fifty five<\/td>\n | 267.6\/60156<\/td>\n | twenty.fourteen<\/td>\n<\/tr>\n |
| 04BSS-2<\/td>\n | six.000<\/td>\n | four.00<\/td>\n | 2.eighty<\/td>\n | one.85<\/td>\n | 12.30<\/td>\n | thirteen.30<\/td>\n | five.00<\/td>\n | .sixty<\/td>\n | 5.50<\/td>\n | four.\/899<\/td>\n | .22<\/td>\n<\/tr>\n |
| 05BSS-2<\/td>\n | 8.000<\/td>\n | 5.00<\/td>\n | 3.00<\/td>\n | 2.31<\/td>\n | thirteen.90<\/td>\n | fourteen.fifty<\/td>\n | seven.10<\/td>\n | .80<\/td>\n | 5.64<\/td>\n | six.2\/1394<\/td>\n | .37<\/td>\n<\/tr>\n |
| #06BSS-2<\/td>\n | nine.525<\/td>\n | 6.35<\/td>\n | five.72<\/td>\n | 3.28<\/td>\n | 23.40<\/td>\n | 24.40<\/td>\n | eight.twenty<\/td>\n | one.thirty<\/td>\n | ten.24<\/td>\n | eleven.8\/2653<\/td>\n | .87<\/td>\n<\/tr>\n |
| 08BSS-two<\/td>\n | twelve.700<\/td>\n | eight.fifty one<\/td>\n | 7.seventy five<\/td>\n | four.forty five<\/td>\n | 31.00<\/td>\n | 32.20<\/td>\n | 11.eighty<\/td>\n | one.60<\/td>\n | thirteen.92<\/td>\n | 21.\/4721<\/td>\n | one.forty<\/td>\n<\/tr>\n |
| 10BSS-2<\/td>\n | 15.875<\/td>\n | 10.16<\/td>\n | 9.sixty five<\/td>\n | five.08<\/td>\n | 36.ten<\/td>\n | 37.50<\/td>\n | fourteen.70<\/td>\n | 1.70<\/td>\n | 16.fifty nine<\/td>\n | 29.1\/6542<\/td>\n | 1.ninety six<\/td>\n<\/tr>\n |
| 12BSS-two<\/td>\n | 19.050<\/td>\n | twelve.07<\/td>\n | 11.sixty eight<\/td>\n | 5.72<\/td>\n | 42.00<\/td>\n | forty three.60<\/td>\n | sixteen.00<\/td>\n | 1.eighty five<\/td>\n | 19.46<\/td>\n | 37.\/8318<\/td>\n | two.46<\/td>\n<\/tr>\n |
| 16BSS-2<\/td>\n | twenty five.four hundred<\/td>\n | 15.88<\/td>\n | seventeen.02<\/td>\n | eight.28<\/td>\n | 68.00<\/td>\n | seventy one.00<\/td>\n | 21.00<\/td>\n | 4.15\/3.ten<\/td>\n | 31.88<\/td>\n | 70.7\/15894<\/td>\n | 5.forty two<\/td>\n<\/tr>\n |
| 20BSS-two<\/td>\n | 31.750<\/td>\n | 19.05<\/td>\n | 19.fifty six<\/td>\n | ten.19<\/td>\n | seventy seven.eighty<\/td>\n | 81.50<\/td>\n | 26.40<\/td>\n | 4.fifty\/3.fifty<\/td>\n | 36.45<\/td>\n | one zero five.6\/23740<\/td>\n | seven.87<\/td>\n<\/tr>\n |
| 24BSS-2<\/td>\n | 38.a hundred<\/td>\n | 25.40<\/td>\n | twenty five.forty<\/td>\n | 14.sixty three<\/td>\n | a hundred and one.70<\/td>\n | 106.20<\/td>\n | 33.twenty<\/td>\n | 6.00\/4.eighty<\/td>\n | 48.36<\/td>\n | 182.\/4571<\/td>\n | 12.43<\/td>\n<\/tr>\n |
| 28BSS-two<\/td>\n | 44.450<\/td>\n | 27.ninety four<\/td>\n | thirty.ninety nine<\/td>\n | fifteen.90<\/td>\n | 124.sixty<\/td>\n | 129.10<\/td>\n | 36.70<\/td>\n | 7.50\/6.00<\/td>\n | fifty nine.fifty six<\/td>\n | 216.\/48557<\/td>\n | 16.60<\/td>\n<\/tr>\n |
| 32BSS-two<\/td>\n | 50.800<\/td>\n | 29.21<\/td>\n | thirty.ninety nine<\/td>\n | seventeen.81<\/td>\n | 124.sixty<\/td>\n | 129.sixty<\/td>\n | 42.00<\/td>\n | 7.00\/6.00<\/td>\n | 58.55<\/td>\n | 270.\/60698<\/td>\n | twenty.34<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n *Bushchain:d1inthetableindicatestheexternaldiameterofthebush Rollerchain<\/strong>Twodifferentsizesofrollerchain,showingconstruction. Therearetwotypesoflinksalternatinginthebushrollerchain.Thefirsttypeisinnerlinks,havingtwoinnerplatesheldtogetherbytwosleevesorbushingsuponwhichrotatetworollers.Innerlinksalternatewiththesecondtype,theouterlinks,consistingoftwoouterplatesheldtogetherbypinspassingthroughthebushingsoftheinnerlinks.The”bushingless”rollerchainissimilarinoperationthoughnotinconstructioninsteadofseparatebushingsorsleevesholdingtheinnerplatestogether,theplatehasa\u00a0tubestampedintoitprotrudingfromtheholewhichservesthesamepurpose.Thishastheadvantageofremovingonestepinassemblyofthechain.<\/p>\n Therollerchaindesignreducesfrictioncomparedtosimplerdesigns,resultinginhigherefficiencyandlesswear.Theoriginalpowertransmissionchainvarietieslackedrollersandbushings,withboththeinnerandouterplatesheldbypinswhichdirectlycontactedthesprocketteethhoweverthisconfigurationexhibitedextremelyrapidwearofboththesprocketteeth,andtheplateswheretheypivotedonthepins.Thisproblemwaspartiallysolvedbythedevelopmentofbushedchains,withthepinsholdingtheouterplatespassingthroughbushingsorsleevesconnectingtheinnerplates.Thisdistributedthewearovera\u00a0greaterareahowevertheteethofthesprocketsstillworemorerapidlythanisdesirable,fromtheslidingfrictionagainstthebushings.TheadditionofrollerssurroundingthebushingsleevesofthecZheJiang dprovidedrollingcontactwiththeteethofthesprocketsresultinginexcellentresistancetowearofbothsprocketsandchainaswell.Thereisevenverylowfriction,aslongasthechainissufficientlylubricated.Steady,clear,lubricationofrollerchainsisofprimaryimportanceforefficientoperationaswellascorrecttensioning.<\/sup><\/p>\n Lubrication<\/sup><\/strong> Therearealsomanychainsthathavetooperateindirtyconditions,andforsizeoroperationalreasonscannotbesealed.Examplesincludechainsonfarmequipment,bicycles,andchainsaws.Thesechainswillnecessarilyhaverelativelyhighratesofwear,particularlywhentheoperatorsarepreparedtoacceptmorefriction,lessefficiency,morenoiseandmorefrequentreplacementastheyneglectlubricationandadjustment.<\/p>\n Manyoil-basedlubricantsattractdirtandotherparticles,eventuallyforminganabrasivepastethatwillcompoundwearonchains.Thisproblemcanbecircumventedbyuseofa\u00a0“dry”PTFEspray,whichformsa\u00a0solidfilmafterapplicationandrepelsbothparticlesandmoisture.<\/sup><\/p>\n Motorcyclechainlubrication<\/sup><\/strong> Motorcyclechainsarepartofthedrivetraintotransmitthemotorpowertothebackwheel.Properlylubricatedchainscanreachanefficiencyof98%orgreaterinthetransmission.UnlubricatedchainswillsignificantlydecreaseperformanceandincreasecZheJiang dsprocketwear.<\/p>\n Twotypesofaftermarketlubricantsareavailableformotorcyclechains:sprayonlubricantsandoildripfeedsystems.<\/p>\n SpraylubricantsmaycontainwaxorPTFE.Whiletheselubricantsusetackadditivestostayonthechaintheycanalsoattractdirtandsandfromtheroadandovertimeproducea\u00a0grindingpastethatacceleratescomponentwear. Variantsindesign<\/sup><\/strong><\/p>\n Layoutofa\u00a0rollerchain:1.Outerplate,2.Innerplate,3.Pin,4.Bushing,5.Roller Rollerchainismadeinseveralsizes,themostcommonAmericanNationalStandardsInstitute(ANSI)standardsbeing40,fifty,sixty,and80.Thefirstdigit(s)indicatethepitchofthechainineighthsofaninch,withthelastdigitbeing0\u00a0forstandardchain,1\u00a0forlightweightchain,and5\u00a0forbushedchainwithnorollers.Thus,a\u00a0chainwithhalf-inchpitchwouldbea\u00a0#40whilea\u00a0#160sprocketwouldhaveteethspaced2\u00a0inchesapart,and so on.Metricpitchesareexpressedinsixteenthsofaninchthusa\u00a0metric#8chain(08B-1)wouldbeequivalenttoanANSI#40.Mostrollerchainismadefromplaincarbonoralloysteel,butstainlesssteelisusedinfoodprocessingmachineryorotherplaceswherelubricationisa\u00a0problem,andnylonorbrassareoccasionallyseenforthesamereason.<\/p>\n Rollerchainisordinarilyhookedupusinga\u00a0masterlink(alsoknownasa\u00a0connectinglink),whichtypicallyhasonepinheldbya\u00a0horseshoeclipratherthanfrictionfit,allowingittobeinsertedorremovedwithsimpletools.Chainwitha\u00a0removablelinkorpinisalsoknownascotteredchain,whichallowsthelengthofthechaintobeadjusted.Halflinks(alsoknownasoffsets)areavailableandareusedtoincreasethelengthofthechainbya\u00a0singleroller.Rivetedrollerchainhasthemasterlink(alsoknownasa\u00a0connectinglink)”riveted”ormashedontheends.Thesepinsaremadetobedurableandarenotremovable.<\/sup><\/p>\n Use<\/strong><\/p>\n Anexampleoftwo’ghost’sprocketstensioninga\u00a0triplexrollerchainsystem SeaHarrierFA.2ZA195front(cold)vectorthrustnozzle-\u00a0thenozzleisrotatedbya\u00a0chaindrivefromanairmotor Theeffectofwearona\u00a0rollerchainistoincreasethepitch(spacingofthelinks),causingthechaintogrowlonger.Notethatthisisduetowearatthepivotingpinsandbushes,notfromactualstretchingofthemetal(asdoeshappentosomeflexiblesteelcomponentssuchasthehand-brakecableofa\u00a0motorvehicle).<\/p>\n Withmodernchainsitisunusualfora\u00a0chain(otherthanthatofa\u00a0bicycle)towearuntilitbreaks,sincea\u00a0wornchainleadstotherapidonsetofwearontheteethofthesprockets,withultimatefailurebeingthelossofalltheteethonthesprocket.Thesprockets(inparticularthesmallerofthetwo)suffera\u00a0grindingmotionthatputsa\u00a0characteristichookshapeintothedrivenfaceoftheteeth.(Thiseffectismadeworsebya\u00a0chainimproperlytensioned,butisunavoidablenomatterwhatcareistaken).Thewornteeth(andchain)nolongerprovidessmoothtransmissionofpowerandthismaybecomeevidentfromthenoise,thevibrationor(incarenginesusinga\u00a0timingchain)thevariationinignitiontimingseenwitha\u00a0timinglight.Bothsprocketsandchainshouldbereplacedinthesecases,sincea\u00a0newchainonwornsprocketswillnotlastlong.Even so,inlessseverecasesitmaybepossibletosavethelargerofthetwosprockets,sinceitisalwaysthesmalleronethatsuffersthemostwear.Onlyinverylight-weightapplicationssuchasa\u00a0bicycle,orinextremecasesofimpropertension,willthechainnormallyjumpoffthesprockets.<\/p>\n Thelengtheningduetowearofa\u00a0chainiscalculatedbythe<\/p>\n<\/p>\n M=\u00a0thelengthofa\u00a0numberoflinksmeasured<\/p>\n S=\u00a0thenumberoflinksmeasured<\/p>\n P=\u00a0Pitch<\/p>\n Inindustry,itisusualtomonitorthemovementofthechaintensioner(whethermanualorautomatic)ortheexactlengthofa\u00a0drivechain(oneruleofthumbistoreplacea\u00a0rollerchainwhichhaselongated3%onanadjustabledriveor1.5%ona\u00a0fixed-centerdrive).A\u00a0simplermethod,particularlysuitableforthecycleormotorcycleuser,istoattempttopullthechainawayfromthelargerofthetwosprockets,whilstensuringthechainistaut.Anysignificantmovement(e.g.makingitpossibletoseethrougha\u00a0gap)probablyindicatesa\u00a0chainwornuptoandbeyondthelimit.Sprocketdamagewillresultiftheproblemisignored.Sprocketwearcancelsthiseffect,andmaymaskchainwear.<\/p>\n Thelightweightchainofa\u00a0bicyclewithderailleurgearscansnap(orrather,comeapartattheside-plates,sinceitisnormalforthe”riveting”tofailfirst)becausethepinsinsidearenotcylindrical,theyarebarrel-formed.Contactbetweenthepinandthebushingisnottheregularline,buta\u00a0pointwhichallowsthechain’spinstoworkitswaythroughthebushing,andfinallytheroller,ultimatelycausingthechaintosnap.Thisformofconstructionisnecessarybecausethegear-changingactionofthisformoftransmissionrequiresthechaintobothbendsidewaysandtotwist,butthiscanoccurwiththeflexibilityofsucha\u00a0narrowcZheJiang drelativelylargefreelengthsona\u00a0bicycle.<\/p>\n Chainfailureismuchlessofa\u00a0problemonhub-gearedsystems(e.g.Bendix2-velocity,Sturmey-ArcherAW)sincetheparallelpinshavea\u00a0muchbiggerwearingsurfaceincontactwiththebush.Thehub-gearsystemalsoallowscompleteenclosure,a\u00a0greataidtolubricationandprotectionfromgrit.<\/p>\n Themostcommonmeasureofrollerchain’sstrengthistensilestrength.Tensilestrengthrepresentshowmuchloada\u00a0chaincanwithstandundera\u00a0one-timeloadbeforebreaking.Justasimportantastensilestrengthisa\u00a0chain’sfatiguestrength.Thecriticalfactorsina\u00a0chain’sfatiguestrengthisthequalityofsteelusedtomanufacturethechain,theheattreatmentofthechaincomponents,thequalityofthepitchholefabricationofthelinkplates,andthetypeofshotplustheintensityofshotpeencoverageonthelinkplates.Otherfactorscanincludethethicknessofthelinkplatesandthedesign(contour)ofthelinkplates.Theruleofthumbforrollerchainoperatingona\u00a0continuousdriveisforthechainloadtonotexceeda\u00a0mere1\/6or1\/9ofthechain’stensilestrength,dependingonthetypeofmasterlinksused(push-fitvs.slip-in shape)[citationneeded<\/em>]<\/sup>.Rollerchainsoperatingona\u00a0continuousdrivebeyondthesethresholdscanandtypicallydofailprematurelyvialinkplatefatiguefailure.<\/p>\n ThestandardminimumultimatestrengthoftheANSI29.1steelchainis12,500x\u00a0(pitch,ininches)two<\/sup>.X-ringandO-Ringchainsgreatlydecreasewearbymeansofinternallubricants,increasingchainlife.Theinternallubricationisinsertedbymeansofa\u00a0vacuumwhenrivetingthechaintogether.<\/p>\n Standardsorganizations(suchasANSIandISO)maintainstandardsfordesign,dimensions,andinterchangeabilityoftransmissionchains.Forexample,thefollowingTableshowsdatafromANSIstandardB29.1-2011(PrecisionPowerTransmissionRollerChains,Attachments,andSprockets)developedbytheAmericanSocietyofMechanicalEngineers(ASME).Seethereferences[8]<\/sup>[9]<\/sup>[ten]<\/sup>\u00a0foradditionalinformation.<\/p>\n ASME\/ANSIB29.1-2011RollerChainStandardSizesSizePitchMaximumRollerDiameterMinimumUltimateTensileStrengthMeasuringLoad25.<\/p>\n Formnemonicpurposes,belowisanotherpresentationofkeydimensionsfromthesamestandard,expressedinfractionsofaninch(whichwaspartofthethinkingbehindthechoiceofpreferrednumbersintheANSIstandard):<\/p>\n Notes: Typicallychainswithparallelshapedlinkshaveanevennumberoflinks,witheachnarrowlinkfollowedbya\u00a0broadone.Chainsbuiltupwitha\u00a0uniformtypeoflink,narrowatoneandbroadattheotherend,canbemadewithanoddnumberoflinks,whichcanbeanadvantagetoadapttoa\u00a0specialchainwheel-distanceontheothersidesucha\u00a0chaintendstobenotsostrong.<\/p>\n RollerchainsmadeusingISOstandardaresometimescalledasisochains.<\/p>\n Seealso<\/strong> WhyChooseUs<\/strong> \n \u00a0<\/p>\n \u00a0<\/p>\n \n \n \n There are numerous diverse kinds of travel chains. You should be able to differentiate amongst roller chains, solid rivetless chains, double chains, flat-best chains, and helical chains by the phrases used. This post will give information on the distinct types of chains. Then, you can decide on the correct 1 in accordance to your demands. If you haven’t acquired a chain but, go through this report to get started. It will also offer information on the pros and negatives of each and every variety. There are numerous differences amongst drive chains and roller chains, but in essence, the two are functionally comparable. The option of which kind to use depends largely on the sort of surroundings it will be uncovered to. While roller chains are suitable for cleanse indoor environments, they are not extremely forgiving when it arrives to rubbing towards the rails. Following are the major variations in between a generate chain and a roller chain. Making use of the appropriate generate chain is vital for a clean and successful managing equipment. Fall-solid rivetless travel chains are made of fall-forged steel parts. Their proportions are ideal for strength and light-weight. Forged rivetless chains are usually divided into three types. Every single of these varieties has its personal set of important specifications. Important subjects incorporate bare minimum final tensile energy, chain size tolerances, and hyperlink proportions. Study on to learn far more about every single type and its employs. Duplex drive chains have two sets of rollers instead of 1, making two times the electricity. Double chain roller chains have pins and roller bearings, whilst triple chain chains have an additional row of plates to accommodate the three sprockets. They are normally interchangeable with every other. They are obtainable for US, United kingdom, and ISO expectations. They are manufactured of carbon steel, stainless steel, and nickel or nickel-plated. Flat-prime generate chains are perfect for curved or straight tracks and come in numerous various varieties and thicknesses. These chains are extremely resistant to use and are usually made of steel, stainless metal, or plastic. CZPT manufactures special makes of flat-leading chains with large dress in resistance and outstanding sounds reduction. In addition to being flexible, flat-top chains can be used in a selection of industrial programs. ProductDescription Chain\u00a0No. Pitch Pmm Rollerdiameter d1maxmm Widthbetweeninner\u00a0platesb1minmm Pindiameter d2maxmm Pinlength Innerplatedepthh2maxmm Platethickness t\/Tmaxmm Transversepitch Ptmm Breakingload QkN\/lbf Weightpermeterqkg\/m Lmaxmm Lcmaxmm *04CSS-two six.350 three.30 three.18 two.31 14.fifty 15.00 six.00 .80 six.forty five.\/1124 .28 *06CSS-two nine.525 5.08 4.77 3.58 22.50 23.thirty nine.00 1.thirty 10.13 eleven.\/2473 .70 08ASS-2 twelve.seven-hundred seven.ninety five 7.85 three.ninety six 31.00 32.twenty twelve.00 one.50 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