6007 Bearing 35x62x14mm | RHD Bearings

Industrial strength with a gentle touch - like a bodyguard who also knows how to arrange flowers.

Meet the 6007: With 1651kg (16.2kN) of engineering excellence and 35mm precision, this bearing delivers the perfect blend of personality and performance for your critical applications. The most widely used bearing in electronics, small motors, and precision instruments.

35mm
Bore Diameter
62mm
Outer Diameter
14mm
Width
16.2 kN
Load Rating
1651 Kg
Load Capacity
0.148 Kg
Weight
6007 Bearing 35×62×14mm - RHD Bearings

6007 BEARING SPECIFICATIONS

Precision-engineered for reliability and performance

🔍 Common Search Terms

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📏Dimensions

d - ID (Bore Diameter)
35mm
D - OD (Outer Diameter)
62mm
B - Width
14mm
d₁ - Shoulder Diameter
≈43.75mm
D₂ - Recess Diameter
≈55.61mm
r₁,₂ - Chamfer Radius
min. 1.0mm
6007 Bearing: 35 × 62 × 14mm

Cross-Sectional View

6007 deep groove ball bearing technical drawing showing cross-sectional view, dimensions and specifications

Load Ratings

Dynamic Load (Cr) 16.2kN
Static Load (Cor) 10.5kN
Load Capacity (kN) 16.2kN
Load Capacity (kg) 1651kg

💡What This Means

Dynamic Load (16.2kN): Maximum force while rotating. Exceeding this causes rapid wear and failure within hours.
Static Load (10.5kN): Maximum force when stationary. Use 80% for safety.
Calculate Your Load: Measure shaft forces, belt tensions, or gear loads. Include shock/vibration factors.
Failure Warning: Overloading causes bearing raceways to crack and balls to flatten permanently.

🔄Speed Limits

Grease Lubrication 9500 RPM
Oil Lubrication 12000 RPM
RHD Z2V2 Bearings 1400 RPM
RHD Z3V3 Bearings 2880 RPM
RHD Z4V4 Bearings 6000+ RPM

💡What This Means

Grease Limit (9500 RPM): Heat generation increases exponentially above this. Grease breaks down, causing seizure.
Oil Advantage (12000 RPM): Better heat dissipation allows higher speed. Required for high-speed spindles.
Safe Operating Speed: Use 90% of limit (8550 RPM) for maximum L10 life of 10,000+ hours.
Failure Mode: Exceeding speed causes cage failure, ball skidding, and catastrophic overheating within minutes.

🔧Material & Quality

Steel Grade SAE52100
Ball Grade G10
Carbon Content 0.95-1.05%
Chromium Content 1.40-1.65%
ISO Standard 15:2011 Compliant

💡What This Means

SAE52100 Chrome Steel: Premium bearing steel - harder than tool steel
G10 Balls: Ultra-precision balls with ±0.25µm tolerance
High Carbon: Superior hardness and wear resistance
Chromium: Adds corrosion resistance and toughness
ISO Standard: Fits any 6007 application worldwide

📊Vibration Classes

V2 Grade
Low: 150 μm/s
Med: 120 μm/s
High: 100 μm/s
V3 Grade
Low: 90 μm/s
Med: 75 μm/s
High: 60 μm/s
V4 Grade
Low: 70 μm/s
Med: 42 μm/s
High: 45 μm/s

💡What This Means

V2 Grade: Standard grade - good for general applications
V3 Grade: Low vibration - like a smooth car engine
V4 Grade: Ultra-smooth - for precision instruments
Frequency Bands: Measured across different rotation speeds

🔇Noise Levels

Z2 Grade < 45 dB
Z3 Grade < 41 dB
Z4 Grade (Quiet) < 38 dB
Application Precision Equipment

💡What This Means

Z2 Grade: Quiet as a library - good for most applications
Z3 Grade: Very quiet - like a whisper (40 dB = normal whisper)
Z4 Grade: Ultra-quiet - perfect for bedroom fans, medical equipment
Application: Ideal for sensitive environments

⚙️Internal Clearance

C2 (Tight) 1-11 μm
C0 (Normal) 6-20 μm
C3 (Loose) 15-33 μm
C4 (High Temp) 28-46 μm
C5 (Extra High Temp) 40-64 μm

💡What This Means

C2 (Tight): Precision applications - less play, more accurate
C0 (Normal): Standard choice - works for most applications
C3 (Loose): Better for hot environments - allows thermal expansion
C4 (Exta Loose): Hot or tight-fit setups — extra room for thermal expansion.
C5 (Max Loose): Extreme heat/tight fits or near-limit speeds — maximum expansion allowance

SEAL OPTIONS

Choose the right protection for your application

6007

High Speed

Open bearing, no seals

Speed Factor: 1.0 (9500 RPM)
Protection: None
Lubrication: External required

6007-Z

Balanced

Single metal shield

Speed Factor: 0.95 (9025 RPM)
Protection: Light dust protection
Lubrication: Pre-greased

6007-RS

Protected

Single rubber seal

Speed Factor: 0.8 (7600 RPM)
Protection: Moisture and dust
Lubrication: Pre-greased, sealed

APPLICATIONS

Precision performance across industries

Industrial Fans

  • Exhaust fan shafts
  • Ventilation blower drives
  • Heat exchanger fans
  • HVAC system blowers
  • Refrigeration fan motors
  • Dust exhaust fans
  • Tunnel ventilation fans
  • Greenhouse ventilation

Key Requirements: 35mm shaft with 14.00kN (≈1,430kg) dynamic load capacity, 8,500 RPM grease lubrication, 72×18mm profile for air moving equipment

Heavy Machinery

  • Conveyor drive shafts
  • Bulk material handling
  • Mining equipment joints
  • Heavy duty mixers
  • Large pump shaft supports
  • Construction machinery
  • Forestry equipment drives
  • Agricultural machinery

Key Requirements: Precision 35mm bore with 9.0kN (≈920kg) static load rating for heavy machinery

Machine Components

  • Printing press spindles
  • Packaging machinery rollers
  • Industrial agitators
  • Food processing joints
  • Material feeder shafts
  • Automated assembly line parts
  • Textile machine spindles
  • Machining center guides

Key Requirements: 35mm bore, 18mm width, heavy-duty component shafts

Compatible Models & Shaft Requirements

Find bearings with the same bore size and ensure proper shaft preparation

🔧Shaft Requirements

Nominal Diameter 35.000mm
Tolerance Grade h6 (34.987-35.013mm)
Surface Finish Ra 0.8μm max
Runout Tolerance 0.013mm max

🎯Application-Specific Options

High Temperature: C3 clearance recommended
High Speed: RHD V3 & V4 bearings recommended
Corrosive Environment: SS (Stainless Steel) bearings recommended

Professional Expertise & Standards

Technical insights from 20+ years of bearing engineering and manufacturing excellence

🔋ISO Compliance

ISO 15:2011 compliant dimensions ensure interchangeability with global bearing standards and seamless replacement in existing equipment.

🔬Material Science

Gcr15 chrome steel composition optimized for industrial strength performance, providing superior hardness, wear resistance, and fatigue life.

⚙️Precision Engineering

C0 clearance standard for most applications, C3 available for high-temperature use. h6 shaft tolerance recommended for optimal performance.

🔧Professional Installation

Professional installation required for maximum service life. Proper tools and techniques prevent 80% of premature failures.

📊Performance Comparison

Handles 1652kg load capacity with robust 14mm width. Superior Gcr15 steel vs. standard steel in competing products.

💰Value Engineering

Excellent value for industrial strength applications. Quality bearings last 3-10x longer than cheap alternatives, reducing total cost of ownership.

FREQUENTLY ASKED QUESTIONS

Expert guidance for 6007 bearing applications

Bearing Selection & Replacement

Can a 6007 bearing handle 1700kg loads in construction equipment?

Close but not recommended - 6007 handles 1652kg (1652.4kg (16.2kN)), just under your 1700kg requirement.
Why This Matters
Operating at or above rated capacity significantly reduces bearing life and increases failure risk. The 48kg difference represents about 3% overload, which can reduce bearing life by 15-25% in continuous heavy-duty operation. Construction equipment requires reliable performance with adequate safety margins for shock loads.
How To Handle It
Consider 6008 or 6207 series for loads approaching 1700kg. If space constraints require 6007, ensure perfect alignment, premium lubrication, eliminate shock loads, and implement rigorous condition monitoring for early problem detection.
Construction equipment demands 20-25% safety margin due to shock loads - for 1700kg loads, specify bearings rated at least 2100kg capacity.

What's the difference between 6007 and smaller 6006 bearings?

6007 has 35mm bore vs 6006's 30mm bore, providing higher load capacity with increased dimensions.
Why This Matters
The 5mm bore increase provides higher load capacity (1652kg vs 1346kg) with 1mm additional width (14mm vs 13mm). This makes 6007 ideal for applications requiring higher loads on 35mm shafts with minimal size increase. The capacity improvement is substantial for the modest dimensional increase.
How To Handle It
Evaluate shaft size requirements - 35mm shafts are common in heavy construction and industrial equipment. Compare load requirements against the capacity difference. Consider the width increase impact on available space and mounting requirements.
6007 provides 23% higher load capacity than 6006 with only 8% width increase - excellent industrial strength scaling.

Is 6007 suitable for 35mm heavy construction equipment shafts?

Excellent choice for heavy construction equipment requiring reliable performance on 35mm shafts.
Why This Matters
Heavy construction equipment subjects bearings to extreme loads, shock, vibration, contamination, and harsh environmental conditions. The 6007's 1652kg capacity and rugged construction handle demanding construction requirements while premium Gcr15 steel provides durability against continuous heavy-duty operation.
How To Handle It
Use sealed versions (6007-ZZ) for contaminated construction environments. Ensure robust lubrication systems and condition monitoring. Consider automatic greasing systems for continuous operation and reduced maintenance requirements.
Sealed bearings (6007-ZZ) with automatic lubrication provide 3-5 years of reliable service in construction equipment.
Installation & Maintenance

What tools are needed to install a 148g 6007 bearing properly?

Heavy-duty bearing installation tools, induction heater, and precision alignment equipment for proper 35mm bore installation.
Why This Matters
Proper installation prevents 80% of premature bearing failures. The 148g weight and 35mm bore require appropriate installation techniques to prevent internal damage. Large bearings benefit from thermal installation and precision alignment for maximum service life in industrial strength applications.
How To Handle It
Heat bearing to 80-90°C using induction heater for even heating. Use heavy-duty hydraulic installation tools with proper adapters. Verify shaft tolerances (h6: 34.987-35.013mm) and housing concentricity using precision instruments. Never use impact methods.
Induction heating provides uniform thermal expansion - critical for large bearings to prevent installation damage and ensure proper fit.

How often should I inspect a 6007 bearing running at 8500 RPM?

Bi-weekly inspections for bearings operating at 8500 RPM, at 89% of the 9500 RPM rating in heavy-duty applications.
Why This Matters
Operating at 89% of rated speed with heavy loads in industrial strength applications requires frequent monitoring to detect wear, contamination, or lubrication degradation. Large bearings under high loads require systematic monitoring to optimize maintenance timing and prevent costly equipment failures.
How To Handle It
Monitor temperature, noise, and vibration bi-weekly. Check lubrication condition in open bearings or verify sealed bearing performance. Document measurements for comprehensive trend analysis and predictive maintenance scheduling.
Industrial strength applications benefit from continuous monitoring systems - wireless sensors provide real-time bearing health data.

What lubrication schedule works for 6007 in heavy construction equipment?

Relubricate every 1000-2000 operating hours for heavy construction equipment depending on conditions and contamination levels.
Why This Matters
Heavy construction environments subject bearings to extreme contamination, temperature variations, shock loads, and continuous operation requiring aggressive lubrication management. The 6007's larger size allows good grease capacity while harsh conditions accelerate lubricant degradation rapidly.
How To Handle It
Use extreme-pressure lithium complex grease designed for construction equipment. Implement automatic lubrication systems where possible. Monitor grease condition frequently and purge contaminated lubricant immediately upon detection.
Automatic centralized lubrication systems reduce maintenance frequency to 3000+ hours while improving reliability in construction applications.
Troubleshooting

Why does my 6007 bearing overheat under 1500kg loads?

1500kg is well within capacity - check lubrication adequacy, alignment precision, and environmental conditions systematically.
Why This Matters
Operating at 91% of rated capacity should not cause overheating with proper conditions. Overheating at moderate loads indicates lubrication problems, misalignment, contamination, or environmental factors requiring systematic investigation to prevent rapid failure progression in heavy-duty applications.
How To Handle It
Verify lubrication quantity, quality, and heat dissipation capability. Check shaft and housing alignment within 0.013mm tolerance. Inspect for contamination sources and environmental heat sources. Ensure adequate cooling and ventilation around bearing area.
Industrial strength bearings generate more heat - verify cooling systems and heat dissipation paths are adequate for the application.

What causes squealing noise in 6007 bearings at 8000 RPM?

Squealing noise at 8000 RPM indicates lubrication breakdown, contamination, or seal interference requiring immediate attention.
Why This Matters
Operating at 84% of rated speed should produce smooth operation. Squealing noise indicates lubrication problems or contamination that will cause rapid wear if not addressed. Large bearings are particularly sensitive to lubrication quality and contamination issues.
How To Handle It
Stop operation and inspect lubrication condition, contamination levels, and seal integrity. Check for water contamination, grease breakdown, or foreign material. Replace lubricant and address contamination sources before resuming operation.
Squealing in large bearings often indicates water contamination - implement better sealing and drainage in harsh environments.

How do I diagnose problems with 35mm 6007 bearings in construction equipment?

Use comprehensive monitoring including temperature, vibration, noise analysis, and contamination assessment for construction applications.
Why This Matters
Construction equipment bearings require comprehensive diagnostic approaches due to extreme operating conditions and high failure costs. The 35mm size provides excellent mass for vibration analysis while requiring systematic monitoring for reliable problem assessment in critical applications.
How To Handle It
Establish comprehensive baseline measurements including temperature, vibration, noise, and lubricant condition when bearings are new. Use thermal imaging, vibration analysis, acoustic monitoring, and contamination tracking. Implement trending analysis for predictive maintenance.
Construction applications require environmental factor monitoring - track temperature, humidity, and contamination levels alongside bearing parameters.
Cost & Performance

Is it worth upgrading from 1500kg to 6007's 1652kg capacity?

Yes, the extra 152kg capacity provides 10% safety margin and extended service life in industrial strength applications.
Why This Matters
Higher load capacity reduces internal stress levels, extending bearing life significantly in heavy-duty industrial applications. The moderate cost difference is minimal compared to replacement costs, equipment downtime, and potential production losses from unexpected failures in critical equipment.
How To Handle It
Calculate total ownership cost including replacement labor, equipment downtime, and maintenance intervals. Consider application safety requirements, shock load factors, and environmental conditions. Evaluate current bearing performance and failure patterns.
10% capacity safety margin provides measurable life extension in industrial strength applications - excellent return on investment for critical equipment.

When should I pay more for bearings rated above 9500 RPM?

Only when operating speeds regularly exceed 8500 RPM or require speed capability for equipment optimization.
Why This Matters
Higher speed ratings require tighter tolerances and premium materials, increasing cost significantly. The 9500 RPM rating handles most heavy-duty industrial applications effectively. Overpaying for unnecessary speed capability reduces value in industrial strength applications where loads are typically more important than speed.
How To Handle It
Analyze actual operating speeds including all conditions and future requirements. Consider equipment upgrade plans and optimization needs. Compare premium cost against specific performance benefits in industrial strength applications.
Industrial strength applications typically prioritize load capacity over speed - focus budget on capacity and reliability rather than unnecessary speed ratings.

What's the cost difference between 6007 and larger 6008 bearings?

6008 costs 20-30% more than 6007 but provides higher load capacity for 40mm vs 35mm shafts.
Why This Matters
Size progression involves moderate cost increases but provides capacity improvements. The 5mm shaft size difference may require design modifications but offers load capacity increase. Understanding cost scaling helps optimize selection within design and budget constraints for industrial strength applications.
How To Handle It
Compare application load requirements against shaft size modification requirements. Evaluate if design changes for larger shaft are justified by improved bearing capacity and reliability. Consider standardization benefits within equipment product lines.
The 5mm size increase provides capacity improvement - good value when design modifications for larger shaft are feasible in industrial applications.
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