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Roller Chain Standards:
ANSI vs ISO — What’s the Difference?

A technical guide for UK engineers, procurement teams, and plant managers who need the right chain — specified correctly, sourced reliably.

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Reply within 24 hrs · UK market specialists

Ever Power標準ローラーチェーン

Walk onto the engineering floor of a plant in Birmingham, Sheffield, or the East Midlands manufacturing belt and you will almost certainly encounter a roller chain somewhere in the drivetrain. These precision-engineered components transfer mechanical power between sprockets with extraordinary efficiency — and have been doing so for well over a century. Yet a specification that seems perfectly straightforward on a drawing can become a costly headache the moment someone orders to the wrong standard. ANSI and ISO are not interchangeable systems. They share the same mechanical logic but diverge in critical dimensional details that determine whether a chain runs smoothly or fails prematurely in service.

This guide explains exactly where those differences lie — pitch tolerances, roller diameters, plate thickness, inner and outer link dimensions, tensile strength ratings — and why getting the standard right matters as much as selecting the correct pitch and strand count. For UK procurement teams sourcing chain for food processing equipment, agricultural conveyors, steel plant machinery, or automotive production lines, the distinction between ANSI and ISO can determine compatibility with existing sprockets, compliance with engineering drawings, and total cost of ownership over years of operation. Read on for the technical clarity you need before placing an order.

Where the Two Standards Come From

ANSI規格

The American National Standards Institute roller chain standard — formally designated ASME B29.1 — grew out of the early twentieth-century American bicycle and automobile industries. Its dimensions are expressed primarily in inches, with pitch measured in eighths of an inch. A #40 ANSI chain has a 1/2-inch pitch, a #60 chain has a 3/4-inch pitch, and so on following a well-known coding pattern. This system became dominant across North American plant engineering and is still the default specification in US-built machinery that is exported worldwide, including construction equipment, agricultural hardware from manufacturers like John Deere and Case IH, and a wide range of general industrial conveying systems. When UK engineers work with American OEM equipment or source replacement parts for US-manufactured machinery, ANSI is the standard they will encounter on the drawing — and the one they must match precisely.

ISO Standard

The International Organisation for Standardisation roller chain specification — ISO 606, harmonised in the UK as BS ISO 606 — uses entirely metric dimensions and employs a different designation system built around pitch in millimetres. The familiar “B-series” chains (06B, 08B, 10B, 12B, 16B, 20B, 24B, and so on) reflect British Standard origins and are the format most plant engineers across the UK, Europe, and much of Asia encounter in domestic machinery. The pitch of a 08B chain is 12.7 mm — the same 1/2-inch as an ANSI #40 — but the roller diameter, inner plate height, and pin diameter differ enough to make the chains non-interchangeable on matching sprockets without adjustment. European machinery manufacturers — from German press lines to Italian food processing equipment to Scandinavian forestry machines — default to ISO B-series chain, which means ISO is the standard underpinning most of the UK’s domestically sourced and European-imported plant.

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工業用ローラーチェーン生産

How a Roller Chain Actually Works

エバーパワーローラーチェーン製造

A roller chain is a mechanical power transmission device that operates on an elegantly simple principle: hardened steel rollers engage the teeth of a sprocket, transmitting torque from a driving shaft to a driven shaft with minimal energy loss. The chain is an assembly of alternating inner and outer link plates. Inner links hold a pair of bushings pressed into the plates; each bushing carries a freely rotating roller on its outer surface. Outer links — also called pin links — consist of a pair of plates connected by hardened pins that pass through the bushings of adjacent inner links. The roller rotates freely on its bushing, which means contact with the sprocket tooth is predominantly rolling rather than sliding. This dramatically reduces friction and wear compared with flat chain or gear-driven alternatives of equivalent power density.

The pitch — the distance between pin centres — is the single most important dimension because it defines which sprocket the chain will seat correctly on. In both ANSI and ISO systems, the pitch is fixed per designation. The difference is that ANSI pitch figures are inch-based fractions (the chain number divided by eight gives pitch in inches), while ISO B-series pitches are expressed directly in millimetres and follow a different scaling convention. Lubrication between the pin and bushing interface is where most chain wear originates; modern precision-manufactured roller chain incorporates pre-lubricated oil-retaining sintered bushings or sealed bearing pins in higher-load variants, reducing maintenance intervals substantially while maintaining the core principle of smooth roller-to-sprocket engagement under dynamic loading conditions.

98%+

Mechanical efficiency

<0.5%

Elongation before replacement

4–6x

Speed range vs belt alternatives

60+

Years of ISO/ANSI convergence

Core Dimensional Differences: Where ANSI and ISO Diverge

The fundamental mechanical principles are shared, but the geometry is not. Understanding precisely where the two systems diverge prevents costly specification errors and ensures sprocket compatibility from day one of installation.

Dimension / Parameter ANSI (ASME B29.1) ISO (BS ISO 606 B-series) Practical Impact
Unit system Inch-based Metric (mm) Drawing conversion risk
1/2″ pitch chain designation #40 (12.70 mm pitch) 08B (12.70 mm pitch) Same pitch — different geometry
Roller diameter (1/2″ pitch) 7.77 mm (#40) 8.51 mm (08B) Sprocket tooth form incompatible
Inner plate width (1/2″ pitch) 7.92 mm (#40) 7.75 mm (08B) Affects strand engagement
Pin diameter (1/2″ pitch) 3.97 mm (#40) 4.45 mm (08B) Load capacity and wear rate
Minimum tensile strength (#40 / 08B) 14.1 kN 17.8 kN ISO B-series carries more load
Plate thickness (outer link, 08B / #40) 1.50 mm 1.60 mm Fatigue resistance difference
3/4″ pitch chain — ANSI #60 (19.05 mm pitch) 12B (19.05 mm pitch) Same pitch — geometry diverges more
Designation system logic Chain No. / 8 = pitch (in.) Prefix No. x 1.5875 = pitch (mm) Different coding logic entirely
Primary market North America, US OEM global UK, EU, Asia, most of world Determines interchangeability zone

Materials That Define Performance Under Both Standards

Both ANSI and ISO roller chains are manufactured from similar material families, but the heat treatment specifications and tolerances applied to individual components can differ between manufacturers, which is why supplier qualification matters. Pins are typically cold-drawn carbon steel, usually 1045 or equivalent, case-hardened to achieve surface hardness in the range of 58–62 HRC while maintaining a tough core. This surface-versus-core hardness differential is what allows the pin to resist abrasive wear at its engagement surfaces while still absorbing shock loads without brittle fracture — a critical property in agricultural conveyors and press-room transfer systems where impulsive loads are routine.

Link plates are stamped and punched from strip steel — commonly carbon grades equivalent to S45C or 40Cr depending on the chain grade — then shot-blasted or tumbled to relieve surface stress before hardening. The sintered bushing, where used, is pressed from powdered metal that retains oil in its porous matrix, functioning as a self-contained lubrication reservoir that dramatically extends maintenance intervals. For stainless steel variants — popular in food processing plants across the UK Midlands and in pharmaceutical manufacturing in the Cambridge and Oxford bio-clusters — 304 and 316 grades are both used, with 316 preferred where sodium hypochlorite washdown is standard practice. Nickel-plated chains offer a cost-effective corrosion-resistance compromise for lighter-duty applications in humid or mildly corrosive environments.

炭素鋼

Standard grade. Case-hardened pins, heat-treated plates. Excellent strength-to-cost ratio. Correct choice for general industrial power transmission.

Alloy Steel (40Cr)

Heavy-duty grade for high shock loads. Superior fatigue resistance. Used in steel plant, mining, and heavy agricultural equipment in Yorkshire and South Wales.

Stainless Steel 316L

Mandated in food-grade and pharma applications. Withstands NaOCl washdown. ISO standard applicable across EU/UK food plant regulations.

ニッケルメッキ

Enhanced corrosion resistance at lower cost than full stainless. Ideal for automotive painting lines, outdoor conveyors, and coastal installations in UK port logistics.

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Technical Performance Parameters: ANSI vs ISO B-Series

The following table covers both standards across the most commonly specified pitch sizes in UK industrial procurement. These figures represent nominal dimensions and minimum tensile strengths per published standards; individual manufacturer specifications may exceed these minimums, particularly for premium and heavy-duty series chains used in high-cycle applications in Sheffield steel plants, Leeds packaging lines, and Midlands automotive press shops.

ANSI番号 ISO Equiv. ピッチ(mm) ANSI Roller Dia. (mm) ISO Roller Dia. (mm) ANSI Min. Tensile (kN) ISO Min. Tensile (kN) 代表的な用途
#25 04B 6.35 3.30 4.00 3.6 4.4 Light machinery, instruments
#35 06B 9.525 5.08 6.35 7.9 9.0 Small conveyors, garage equipment
#40 08B 12.70 7.77 8.51 14.1 17.8 General industrial — most common UK size
#50 10B 15.875 10.16 10.16 21.8 22.2 Medium conveyors, packaging lines
#60 12B 19.05 11.91 12.07 31.8 29.0 Agricultural, materials handling
#80 16B 25.40 15.88 15.88 56.7 60.0 Heavy plant, steel processing
#100 20B 31.75 19.05 19.05 88.5 95.0 Mining, quarrying, heavy conveyors
#120 24B 38.10 22.23 25.40 127.0 160.0 Port equipment, large conveyors

Featured ISO B-Series Roller Chain Products

Two popular ISO B-series variants that combine the dimensional precision of the international standard with the flexibility of Ever Power’s rubber-top and specialty attachments — widely specified for food processing, logistics sorting, and automotive line applications across the UK.

ISO 20B · B-Series

20B-G1 ゴム製トップローラーチェーン

Pitch 31.75 mm · ISO B-series · Rubber-cushioned outer plates for gripping delicate products on inclined conveyors. Widely used in UK food processing and distribution centres.

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ISO 24B · B-Series

24B-G1 ラバートップローラーチェーン

Pitch 38.10 mm · ISO B-series · Heavy-duty rubber attachment for high-torque conveying. Suited for steeper inclines, bulk materials handling, and automated sorting systems.

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英国全土における産業応用事例

Steel & Heavy Metal Processing — Sheffield

Sheffield’s steel processing heritage means roller chain runs in some of the most demanding environments in British manufacturing — slab handling conveyors, rolling mill entry and exit tables, bar cooling beds. ISO 16B and 20B chains in alloy steel grades are standard in these plants, often in multi-strand configurations to distribute extraordinary tensile and shock loads. The ANSI vs ISO distinction is critical here because US-standard chain ordered in error will not fit European-built mill equipment sprockets; a specification error can cause a shutdown measured in hours of lost production.

Automotive Manufacturing — West Midlands / Coventry

The automotive manufacturing cluster around Coventry, Birmingham, and the wider West Midlands relies on precision roller chain in press-room transfer systems, overhead conveyors, body assembly lines, and paint shop transportation systems. Because European automotive OEMs — BMW at Oxford, Jaguar Land Rover at Castle Bromwich and Solihull — source equipment from European suppliers who specify ISO chain, ISO B-series is the dominant standard in these plants. ANSI chain does appear in North American machinery brought in as part of capacity expansions, requiring careful segregation in the maintenance stores to avoid cross-contamination of specifications.

Food Processing & Packaging — Yorkshire / East Anglia

Food processing is one of the UK’s largest manufacturing sectors, with major concentration in Yorkshire, East Anglia, and Lincolnshire. Roller chain in these environments must meet stringent hygiene requirements — stainless steel 316L for wet zones, food-grade lubricated or lube-free chains for direct product contact areas. ISO B-series chain predominates because European food equipment OEMs (German, Dutch, Italian) supply the majority of the processing and packaging machinery used in UK plants. Washdown resistance, low lubrication requirements, and corrosion performance under repeated sodium hypochlorite exposure are the defining selection criteria beyond basic pitch and strand specification.

Agricultural Machinery — East Midlands / Lincolnshire

UK arable farming — concentrated in Lincolnshire, Cambridgeshire, and East Yorkshire — depends on roller chain in combine harvesters, bale handlers, potato harvesters, and grain conveyors. American manufacturers (John Deere, Case IH, AGCO) build to ANSI standards; European manufacturers (Claas, Fendt, New Holland Europe) build to ISO. A fleet operator running mixed brands must maintain both standards in stock — a reality that makes a dual-standard supplier relationship extremely valuable. Agricultural chain demands high fatigue resistance under pulsating field loads and tolerance of exposure to soil abrasives, crop debris, and variable lubrication conditions across long seasonal operating shifts.

Ports, Logistics & Warehousing — Felixstowe / Bristol / Southampton

The UK’s major container and bulk ports at Felixstowe, Southampton, and Bristol run automated container handling cranes, straddle carriers, and conveyor systems that all incorporate large-pitch roller chain in their lifting and luffing mechanisms. The rapid growth of e-commerce fulfilment centres across the Midlands motorway network — Amazon, DHL, XPO, and UPS have all built major distribution hubs near the M1/M6 interchange — has created substantial demand for high-speed sortation conveyor chain, typically ISO 10B and 12B in stainless or nickel-plated variants running at speeds requiring precise pitch consistency to prevent noise, vibration, and accelerated sprocket wear.

Mining & Quarrying — South Wales / Northern England

Quarrying operations in South Wales, the Peak District, and the Lake District demand the highest tensile-strength roller chain categories — typically ISO 20B and 24B in double or triple strand configurations on extraction conveyor systems. Shock loading from irregular stone feed, abrasive grit ingestion at the chain-sprocket interface, and poor lubrication conditions in dusty quarry environments place extreme demands on material quality and manufacturing precision. At these pitch sizes, the dimensional differences between ANSI and ISO chains become proportionally larger, making standard identification from the engineering drawing an absolute requirement before procurement.

Why Precision-Manufactured Roller Chain Outperforms Generic Supply

Not all chains that nominally meet an ANSI or ISO designation perform equivalently in service. The gap between a precision-manufactured chain and a commodity import becomes apparent not at incoming inspection but six months into operation, when elongation rates diverge and maintenance intervals begin to compress. Here is what separates consistently high-performing roller chain from the budget alternatives that appear attractive at initial procurement.

Pitch Consistency

Cumulative pitch error across a chain length determines how well rollers seat on sprocket teeth at speed. High-precision manufacturing holds total length variation within ±0.05% of nominal — compared with ±0.15% or worse from low-grade supply — reducing noise, vibration, and accelerated sprocket wear substantially.

Hardness Uniformity

Case hardness variation between pins in a batch from a poorly controlled supplier causes non-uniform wear across the chain length and introduces stress concentration points. Premium manufacturing uses controlled atmosphere furnaces and statistically monitored batch testing to maintain hardness within ±2 HRC across production runs.

Shot Peening of Plates

Compressive residual stress imparted by shot peening of link plates increases fatigue life by 20–40% under alternating bending loads. This process step is often omitted by lower-cost producers. For chains on reversing drives or those subject to frequent speed changes — common in automated conveyor systems — the impact on service life is substantial.

Pre-Load Assembly

Quality chain is pre-loaded to approximately 1/3 of minimum tensile strength during manufacture to seat bearing surfaces and eliminate initial stretch that would otherwise appear in the first hours of service. This means the chain installed on a production line reaches its operational pitch geometry immediately, requiring no early re-tensioning and simplifying commissioning for plant engineers.

製造パートナー

Ever Power: Precision Roller Chain Manufacturing with Full ANSI & ISO Capability

Ever Power operates a purpose-built chain manufacturing facility with the production scope and metrology infrastructure to supply both ANSI and ISO standard roller chain to exacting tolerances — and to manufacture non-standard configurations that neither catalogue covers. The factory operates continuous in-process dimensional inspection using CMM (coordinate measuring machine) verification at pin, bushing, roller, and plate stages, not merely final assembly inspection. This stage-by-stage process control is what gives UK engineering teams the confidence that the chain arriving from Ever Power will meet the specification on the drawing — not just comply with the standard’s minimum thresholds.

Customisation capability at Ever Power extends well beyond simply selecting a pitch and strand count from a catalogue. The engineering team works directly with UK procurement and plant engineering contacts to design and manufacture chain with non-standard attachments — G1, G2, G4, K1, K2 extended pin variants, bent lug attachments, hollow pin chains for agricultural transverse bar assembly — in both ANSI and ISO geometries. Heat treatment specifications can be adjusted for specific environment requirements, and surface treatments including electrophoretic deposition, dacromet coating, and zinc-nickel electroplating are available for enhanced corrosion resistance in coastal, chemical plant, and outdoor installations. Lead times for standard catalogue lines are typically 7–14 days ex-works to UK ports, with expedited airfreight available for critical maintenance situations. Volume orders benefit from dedicated production scheduling that ensures consistent batch quality across multiple deliveries — important for multi-site plant operators who need interchangeable chain across facilities in different UK regions.

240+

Chain configurations in catalogue

100%

Batch CMM dimensional verification

7–14

Days standard delivery to UK ports

ISO 9001

認証された品質管理

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Customer Success Story: Leeds Food Processing Plant

Case Study · Leeds, West Yorkshire · Wet Food Processing

A ready-meals manufacturing facility in the Morley industrial area of Leeds had been running a pair of blending and portioning conveyor lines installed with German-built processing equipment — all specified to ISO B-series chain. When procurement decided to trial a cheaper ANSI #50 chain sourced through a general engineering supplies merchant rather than an ISO 10B chain supplier, the mistake did not become apparent at installation; the pitch was the same 15.875 mm. Within eight weeks, however, the maintenance team was seeing accelerated sprocket tooth wear on both conveyor drive sprockets, increased chain noise during operation, and a measurable reduction in conveyor tracking consistency. The ISO sprockets cut for a 10.16 mm roller had been receiving the ANSI roller of the same nominal diameter — but the tooth form geometry was mismatched enough to produce abnormal contact stress at the entry engagement point. The sprocket set required replacement at a parts and labour cost of approximately £4,200, and a full production shutdown during re-chaining added a further £6,800 in lost output. The facility’s engineering manager contacted Ever Power after a recommendation from an industry contact. Ever Power supplied certified ISO 10B chain in stainless steel 316L — the correct specification for the washdown zone of the conveyor — with documentation confirming compliance with BS ISO 606 and full dimensional test reports. The chains have now been running continuously for fourteen months without measurable elongation beyond 0.3% of original pitch, and the sprocket sets installed at changeover show no abnormal wear profile at the latest scheduled inspection.

What UK Plant Engineers Say About Ever Power

「これまで、異なる業者から3回にわたってチェーン配送が失敗に終わっていました。いずれも名目上はISO 12B規格に準拠していましたが、ロットごとに寸法にばらつきがありました。Ever Power社は最初の出荷時に完全なCMMレポートを送ってくれましたが、すべての寸法が規格通りでした。14か月経ちましたが、どちらのドライブも張力調整を一度も行っていません。」

保守エンジニアリングマネージャー

ピークディストリクトの骨材処理工場

「傾斜コンベアに必要な特注のG1アタッチメントチェーンは、カタログに掲載されていない製品でした。Ever Power社のエンジニアリングチームは48時間以内に確定図面を提出し、見積もり通りの納期でANSI #60-G1チェーンをシェフィールドの当社施設に納品してくれました。品質はまさに私たちが求めていたもので、価格も寸法上の問題で既に却下していた既製品と比べて競争力がありました。」

調達部長

自動車部品メーカー、シェフィールド

「当社では、コンバインハーベスター全機(ジョンディア製とクラース製)でANSI規格とISO規格の両方のチェーンを使用しています。エバーパワー社を両規格の部品供給元として活用することで、部品管理が大幅に簡素化されました。同社が提供する資料のおかげで、整備士は一目で正しい仕様を特定できるようになり、収穫期の繁忙期によく見られた仕様の混同ミスがほぼなくなりました。」

車両整備マネージャー

農業請負会社、リンカンシャー

よくある質問

英国のプラントエンジニアや調達チームからの音声検索とロングテール質問

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英国の製造工場向けに注文する場合、ANSI規格のローラーチェーンとISO規格のローラーチェーンの実際の違いは何ですか?
主な違いは、ピッチではなく、ローラー径、ピン径、および内板幅にあります。よくある誤解として、ANSI #40とISO 08Bはどちらもピッチが12.70 mmですが、ローラー、ピン、プレートの形状が異なるため、互いのスプロケットに機械的に互換性がありません。ANSIはインチベースの設計ロジックを採用しており、アメリカ製の機械の標準規格です。一方、ISO Bシリーズはヨーロッパの機械で広く使用されている標準規格であり、イギリス国内の工場では標準規格となっています。イギリスの製造工場の場合、アメリカのOEM機器用の交換用チェーンを調達する場合を除き、ISO規格がほぼ間違いなく適切な規格です。
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ISO Bシリーズローラーチェーンをバーミンガムまたはシェフィールドの工場に2週間以内に配送してもらうための見積もりを迅速に入手するにはどうすればよいですか?
チェーンの仕様(ISO規格(例:12B、16B)、ストランド数、メートルまたはリンク数、材質(炭素鋼、ステンレス鋼316L、ニッケルメッキ)、および取り付けに関する詳細)をEver Power([email protected])までメールでお送りください。標準カタログサイズは、英国本土の住所へ7~14日で発送いたします。バーミンガム、シェフィールド、または英国のその他の地域への配送先をご指定いただくと、担当者が最初の返信で配送ルートと納期を確認するのに役立ちます。
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英国の食品加工工場で環境衛生検査に合格する必要がある場合、どのローラーチェーン規格を指定すべきでしょうか?
ISO Bシリーズステンレス鋼316Lは、EHおよび食品安全検査の対象となる英国の食品加工環境に最適な選択肢です。この規格はEUおよび英国の食品機器規制で広く認められており、316Lは次亜塩素酸ナトリウム(NaOCl)による洗浄サイクルを繰り返しても耐えられるよう、モリブデン強化の耐食性を備えています。製品と直接接触するゾーンでの潤滑剤汚染のリスクを排除するため、潤滑剤不要または食品グレードの潤滑剤を使用したチェーンを指定し、スプロケットの歯形がISO規格かANSI規格か、機器メーカーに確認してください。
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ANSI規格とISO規格のローラーチェーンの価格差はどれくらいですか?また、両方の規格の製品を取り扱っている信頼できる英国のサプライヤーはどこで見つけられますか?
標準的な炭素鋼グレードの同等のANSIチェーンとISOチェーンの価格差はわずかで、ピッチサイズとサプライヤーによって異なりますが、通常は5~10%の範囲内です。本当のコストリスクは仕様の誤りにあります。ISOスプロケットにANSIチェーンを注文すると、チェーンとスプロケットの両方の摩耗が加速し、当初のチェーン価格の節約をはるかに上回る予期せぬメンテナンスコストが発生する可能性があります。Ever Powerは、寸法証明書付きの両規格の製品を提供しています。機械の仕様書に不明瞭な点がある場合は、仕様書を添えて[email protected]のチームまでお問い合わせください。ANSIとISOの両方のオプションを網羅した競争力のある見積もりをご提供いたします。
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イーストミッドランズ地方のコンベヤプロジェクトで、標準的なANSIまたはISOカタログに記載されていないカスタムローラーチェーンアタッチメント構成が必要な場合、誰に連絡すればよいでしょうか?
Ever Powerのエンジニアリングチームは、カスタムアタッチメントチェーンの設計を標準サービスとして提供しています。ベースチェーンの規格(ANSIまたはISO)、必要なアタッチメントタイプ(ベントラグ、ストレートラグ、中空ピン、延長ピン、ラバートップ、またはカスタムプロファイル)、コンベアの負荷と速度、および必要な材質グレードを[email protected]までメールでお知らせください。チームは製造前に承認用の図面を作成し、カタログに掲載されている製品の範囲を超える非標準のアタッチメント形状にも対応可能です。英国本土の他の地域と同様に、イーストミッドランズでのプロジェクトも、標準的な7~14日間の納期で製造されます。
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より大きな単鎖チェーンではなく、多鎖ローラーチェーンを使用するのが適切なのはどのような場合ですか?また、ANSI規格やISO規格は選択の決定に影響しますか?
マルチストランドチェーン(デュプレックス、トリプレックス、およびそれ以上)は、スプロケットの直径が制限されている中で、必要な動力伝達能力が実用的な最大シングルストランドピッチで提供できる能力を超える場合に好まれます。これは、重機コンベヤ、製鉄所の機械、南ウェールズと北イングランドの採石場でよく見られます。ANSI および ISO 規格はどちらもマルチストランド構成を定義しており、規格間の寸法の違いはすべてのストランド数に等しく適用されます。特定の中心距離と速度の場合、同等のピッチサイズでのストランドあたりの引張定格が異なるため、ANSI と ISO で最適な選択が異なる場合があります。ISO 20B および 24B チェーンは、大きなピッチで同等の ANSI チェーンよりも大幅に高い負荷を運ぶことができ、場合によってはストランド数を減らすことができます。
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英国の規制産業用途向けに注文したISO 08BまたはANSI #40ローラーチェーンの試験文書および材料証明書はどこで入手できますか?
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