INA HK1816 Drawn Cup Needle Roller Bearing P6 Precision Wholesale
<p><strong>INA HK1816 Drawn Cup Needle Roller Bearing 18×24×16 mm P6</strong> — Open-end drawn cup design supports direct grease lubrication into the needle roller complement, while chrome steel construction delivers the hardness required for sustained radial loads in gearbox applications.</p> <ul> <li>P6 precision class meets ISO tolerance requirements for general industrial machinery and transmission systems.</li> <li>Sourced through authorized channels with batch traceability and Certificate of Conformity documentation for import compliance.</li> </ul>
- 100% genuine -- COC & factory certificates available
- In-stock · bulk & small-batch orders accepted
- ISO · DIN · ABMA · JIS compliant
- Full customs clearance documentation provided
Product Details
Full Specifications & Description
Authorized channel procurement — INA HK1816 needle roller bearings traced to manufacturer batch records with origin documentation supplied at shipment.
Technical Specifications
| Parameter | Value |
|---|---|
| Designation | INA HK1816 |
| Bearing Type | Drawn Cup Needle Roller Bearing |
| Bore Diameter (d) | 18 mm |
| Outside Diameter (D) | 24 mm |
| Width (B) | 16 mm |
| Material | Chrome Steel |
| Precision Class | P6 |
| Standard | ISO 3245 |
| Seal or Shield Type | Open End |
| Cage Material | Steel (drawn cup integrated) |
| Number of Rows | Single Row |
| Bore Type | Cylindrical |
| Transport Package | Plastic Tube + Carton |
Suffix HK confirms drawn cup needle roller bearing with open ends per ISO 3245. Cross-reference availability to other manufacturer series is confirmed upon request.
Application Suitability
| Industry | Typical Applications |
|---|---|
| Industrial Machinery | Gearbox intermediate shafts, speed reducer pilot bearings |
| Material Handling | Conveyor roller end supports, lift mechanism pivot points |
| Automotive | Manual transmission layshaft supports, clutch release guides |
| Agricultural Machinery | PTO driveline universal joint supports, auger drive gearboxes |
Why Thin-Wall Cups Fail First on Gearbox Layshafts
The drawn cup itself is the load path, not just a housing.
A significant share of field returns I examine under magnification show cup deformation at the open end — the wall thickness was simply insufficient for the radial load spectrum. When procurement teams match only the base designation HK1816 without verifying chrome steel hardness and dimensional tolerance, the cup distorts under repeated gear mesh loads, needles skew, and the cage pockets tear out within weeks. On a conveyor drive I inspected in the Midwest, three gearboxes went down in the same month because the replacement bearings had cups that measured under spec on wall thickness. The line was stopped for days while maintenance crews sourced correct replacements. Counterfeit or substandard drawn cup bearings bypass casual visual inspection because the laser marking and outer diameter look right — only a micrometer check on the cup wall reveals the problem. [NEED_CITE: rolling bearing failure mode classification per ISO 15243]
Matching HK1816 to Gearbox Envelope Constraints
Gearbox designers choose drawn cup needle bearings like the INA HK1816 drawn cup needle roller bearing specifically because the cross-section is minimal — 24 mm outside diameter on an 18 mm bore gives maximum radial capacity in a tight mounting envelope. The open-end configuration means grease is fed directly into the needle complement from the gearbox oil bath or external grease port, eliminating seal friction losses that would matter at higher speeds. When I cross-check an OEM equipment number against our interchange database, I verify not just the base HK1816 number but the cup wall tolerance and needle profile — these are what actually determine whether the bearing survives the gear mesh load cycle.
Load Spectrum and Lubrication Reality in Enclosed Gearboxes
The radial load on a gearbox layshaft is rarely steady — gear mesh creates cyclic impact loads that demand high hardness at the cup-to-needle contact zone. Chrome steel construction in the HK1816 provides the contact fatigue resistance needed for these repeated stress peaks. Temperature inside a sealed gearbox typically runs elevated from gear friction, which affects grease base oil viscosity and re-lubrication intervals. The open-end design means contamination from gear wear debris can enter the needle complement, so filtration quality in the gearbox housing directly impacts bearing service life. [NEED_CITE: drawn cup needle bearing lubrication requirements under contaminated conditions]
Chrome Steel, P6 Tolerance, and the Drawn Cup Advantage
Chrome steel in the HK1816 reaches the hardness required for drawn cup needle bearings to resist brinelling under static load and spalling under dynamic gear mesh loading. The P6 precision class means bore diameter, outside diameter, and width tolerances meet ISO requirements for general industrial gearboxes where running accuracy matters but extreme precision is not the application driver. The drawn cup design itself is cold-formed from strip steel — this work-hardening process gives the cup additional strength compared to a machined outer ring, which is why drawn cup bearings handle higher radial loads in the same cross-section. Open-end construction allows direct lubricant access, which is critical in gearboxes where oil splash or circulating systems must reach the needle-roller contact zone without seal restrictions.
What Substandard Cups Cost Beyond the Bearing Price
A gearbox failure on a production line doesn't just cost the price of a replacement bearing — the unplanned downtime, emergency freight for parts, and labor for teardown and reassembly multiply the expense quickly. When a drawn cup needle bearing fails because the cup material was below hardness specification or the wall thickness was under tolerance, the needles scatter into the gear mesh, causing secondary damage to gear teeth and adjacent bearing seats. ISO 281 life calculations assume correct material properties and dimensional accuracy; a bearing that passes visual inspection but fails on metallurgy invalidates any fatigue life prediction. I have seen maintenance teams replace the same shaft position three times before tracing the root cause back to cup wall thickness variation in a batch of non-genuine bearings. [NEED_CITE: ISO 281 bearing life calculation assumptions and material quality factors]
How We Verify Before We Ship
Every INA HK1816 we supply is sourced through authorized distributor channels with batch and lot traceability back to the manufacturer's production facilities. We provide a Certificate of Conformity tied to the specific batch, not a generic document. Our cross-reference database matches not only the base HK1816 designation but also verifies cup tolerance class and needle profile against the OEM equipment number you provide. When a maintenance engineer sends us a gearbox nameplate number, we confirm whether HK1816 is the correct fit or whether a different cup series is required for the actual load spectrum. Country-of-origin documentation accompanies each shipment for import compliance, and QR code verification through the INA official app confirms authenticity at the point of installation.
Documentation & Authenticity
- Supplier Certificate of Conformity referencing the INA HK1816 batch and lot number for full traceability
- Third-party dimensional inspection report confirming bore diameter, outside diameter, and cup wall thickness against ISO 3245 tolerances
- Country-of-origin documentation prepared for customs clearance on international shipments
- QR code verification pathway through INA official app for on-site authenticity confirmation before installation
- Material certificate confirming chrome steel composition and hardness for the drawn cup and needle rollers
Storage, Handling & Mounting
- Keep the HK1816 in its original plastic tube packaging until the moment of mounting — the thin drawn cup wall is easily nicked if loose bearings contact each other in a parts bin
- Store sealed tubes in a dry environment below 60% relative humidity to prevent surface corrosion on the open-end chrome steel cup before installation
- Handle with clean lint-free gloves when pressing the drawn cup into the housing bore — fingerprints on the thin cup wall can initiate corrosion pitting under grease
- Press-fit the HK1816 using a sleeve tool that contacts only the outer cup surface, never driving force through the needle rollers or open end
- Ensure gearbox lubricant reaches the needle complement immediately after startup since the open-end design relies on external oil splash or grease feed
- For conveyor or gearbox applications, confirm housing bore roundness before pressing in the cup — an out-of-round bore will deform the thin drawn cup and cause early needle skew
Request a Quote with Your Application Details
Send us the gearbox OEM equipment number or the operating parameters — radial load, speed, operating temperature, and lubrication type — so we can confirm HK1816 is the correct match for your application. If you need cross-reference verification against another brand series currently in use, include the existing bearing designation and we will return a complete interchange comparison covering cup tolerance and needle profile alignment. Specify your required documentation package and destination country so we prepare origin certificates and HS code details with the quotation. Confirm your required quantity and timeline so we check batch availability and provide an accurate lead time.
Frequently Asked Questions
Q: How do I verify that an INA HK1816 is genuine before installation? A: Scan the QR code on the packaging using the INA official app — this links to batch traceability records at the manufacturer. We also supply a Certificate of Conformity with each shipment that references the specific batch number, and a dimensional inspection report is available upon request for independent verification.
Q: What does the HK prefix indicate in the INA needle bearing designation? A: HK identifies a drawn cup needle roller bearing with open ends per ISO 3245. The open end allows direct lubricant flow into the needle complement, which is important for gearbox and enclosed machinery applications where oil splash or circulating systems feed the bearing.
Q: Can HK1816 be cross-referenced to other manufacturer series? A: Cross-brand interchange is available upon request. We verify not only the base dimension match but also cup wall tolerance, needle profile, and precision class to ensure the replacement performs equivalently in the actual application.
Q: Is P6 precision suitable for my gearbox application, or do I need P5? A: P6 precision meets the ISO tolerance requirements for standard industrial gearboxes and general machinery applications. P5 is typically specified for high-speed spindle or precision positioning applications where running accuracy directly affects output quality — for most gearbox layshaft and support positions, P6 is the correct class.
Secure Your HK1816 Supply with Verified Documentation Send your OEM equipment number or application parameters to confirm fit and receive a quotation with lead time and full documentation package. Contact our engineering team through your regional sales channel for batch availability and origin documentation.
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INA HK1816 Drawn Cup Needle Roller Bearing P6 Precision Wholesale
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