Titanium hex nuts Factory wholesale GR5 titanium hex nuts

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High-Intensity
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Corrosion-Resistant
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Fatigue Resistance
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Diamagnetism
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Project |
Specification |
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Product Name |
GR5 titanium hex nuts |
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Material |
Titanium (GR5) |
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Brand |
BJCJTi |
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Available Standards |
DIN,GB,ANSI,ASME,ASTM,IFI,JIS etc. |
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Core Advantages |
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Working Environment |
Strong corrosion resistance |
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Performance |
Extremely high strength-to-weight ratio |
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Application |
Good biocompatibility |
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Operating Condition |
Good resistance to high and low temperatures |
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Special Properties |
Excellent non-magnetic properties |
description1

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Thread Size d |
M6 | ||
| P | Pitch | Coarse thread | 1 |
| Fine thread-1 | / | ||
| Fine thread-2 | / | ||
| m | max=nominal size | 5 | |
| min | 4.7 | ||
| mw | min | 3.76 | |
| s | max=nominal size | 10 | |
| min | 9.78 | ||
| e ① | min | 11.05 | |
| * | - | ||
| per 1000 units ≈ kg | 2.5 | ||
| Thread Size d | M1 | M1.2 | M1.4 | M1.6 | (M1.7) | M2 | (M2.3) | M2.5 | (M2.6) | M3 | (M3.5) | M4 | M5 | M6 | (M7) | M8 | ||
| P | Pitch | Coarse thread | 0.25 | 0.25 | 0.3 | 0.35 | 0.35 | 0.4 | 0.45 | 0.45 | 0.45 | 0.5 | 0.6 | 0.7 | 0.8 | 1 | 1 | 1.25 |
| Fine thread-1 | / | / | / | / | / | / | / | / | / | / | / | / | / | / | / | / | ||
| Fine thread-2 | / | / | / | / | / | / | / | / | / | / | / | / | / | / | / | / | ||
| m | max=nominal size | 0.8 | 1 | 1.2 | 1.3 | 1.4 | 1.6 | 1.8 | 2 | 2 | 2.4 | 2.8 | 3.2 | 4 | 5 | 5.5 | 6.5 | |
| min | 0.55 | 0.75 | 0.95 | 1.05 | 1.15 | 1.35 | 1.55 | 1.75 | 1.75 | 2.15 | 2.55 | 2.9 | 3.7 | 4.7 | 5.2 | 6.14 | ||
| mw | min | 0.44 | 0.6 | 0.76 | 0.84 | 0.92 | 1.08 | 1.24 | 1.4 | 1.4 | 1.72 | 2.04 | 2.32 | 2.96 | 3.76 | 4.16 | 4.91 | |
| s | max=nominal size | 2.5 | 3 | 3 | 3.2 | 3.5 | 4 | 4.5 | 5 | 5 | 5.5 | 6 | 7 | 8 | 10 | 11 | 13 | |
| min | 2.4 | 2.9 | 2.9 | 3.02 | 3.38 | 3.82 | 4.32 | 4.82 | 4.82 | 5.32 | 5.82 | 6.78 | 7.78 | 9.78 | 10.73 | 12.73 | ||
| e① | min | 2.71 | 3.28 | 3.28 | 3.41 | 3.82 | 4.32 | 4.88 | 5.45 | 5.45 | 6.01 | 6.58 | 7.66 | 8.79 | 11.05 | 12.12 | 14.38 | |
| * | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | ||
| per 1000 units ≈ kg | 0.03 | 0.054 | 0.063 | 0.076 | 0.1 | 0.142 | 0.2 | 0.28 | 0.72 | 0.384 | 0.514 | 0.81 | 1.23 | 2.5 | 3.12 | 5.2 | ||
| Thread Size d | M10 | M12 | (M14) | M16 | (M18) | M20 | (M22) | M24 | (M27) | M30 | (M33) | M36 | (M39) | M42 | (M45) | M48 | ||
| P | Pitch | Coarse thread | 1.5 | 1.75 | 2 | 2 | 2.5 | 2.5 | 2.5 | 3 | 3 | 3.5 | 3.5 | 4 | 4 | 4.5 | 4.5 | 5 |
| Fine thread-1 | 1 | 1.5 | 1.5 | 1.5 | 1.5 | 2 | 1.5 | 2 | 2 | 2 | 2 | 3 | 3 | 3 | 3 | 3 | ||
| Fine thread-2 | 1.25 | 1.25 | / | / | 2 | 1.5 | 2 | / | / | / | / | / | / | / | / | / | ||
| m | max=nominal size | 8 | 10 | 11 | 13 | 15 | 16 | 18 | 19 | 22 | 24 | 26 | 29 | 31 | 34 | 36 | 38 | |
| min | 7.64 | 9.64 | 10.3 | 12.3 | 14.3 | 14.9 | 16.9 | 17.7 | 20.7 | 22.7 | 24.7 | 27.4 | 29.4 | 32.4 | 34.4 | 36.4 | ||
| mw | min | 6.11 | 7.71 | 8.24 | 9.84 | 11.44 | 11.92 | 13.52 | 14.16 | 16.56 | 18.16 | 19.76 | 21.92 | 23.52 | 25.9 | 27.5 | 29.1 | |
| s | max=nominal size | 17 | 19 | 22 | 24 | 27 | 30 | 32 | 36 | 41 | 46 | 50 | 55 | 60 | 65 | 70 | 75 | |
| min | 16.73 | 18.67 | 21.67 | 23.67 | 26.16 | 29.16 | 31 | 35 | 40 | 45 | 49 | 53.8 | 58.8 | 63.1 | 68.1 | 73.1 | ||
| e① | min | 18.9 | 21.1 | 24.49 | 26.75 | 29.56 | 32.95 | 35.03 | 39.55 | 45.2 | 50.85 | 55.37 | 60.79 | 66.44 | 71.3 | 76.95 | 82.6 | |
| * | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | ||
| per 1000 units ≈ kg | 11.6 | 17.3 | 25 | 33.3 | 49.4 | 64.4 | 79 | 110 | 165 | 223 | 288 | 393 | 502 | 652 | 800 | 977 | ||
| Thread Size d | (M52) | (M56) | (M60) | M64 | (M68) | M72 | (M76) | M80 | (M85) | M90 | M100 | M110 | M125 | M140 | M160 | ||
| P | Pitch | Coarse thread | 5 | 5.5 | 5.5 | 6 | 6 | / | / | / | / | / | / | / | / | / | / |
| Fine thread-1 | 3 | 4 | 4 | 4 | / | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | ||
| Fine thread-2 | / | / | / | / | 4 | 4 | 4 | 4 | 4 | 4 | 4 | 4 | 4 | / | / | ||
| m | max=nominal size | 42 | 45 | 48 | 51 | 54 | 58 | 61 | 64 | 68 | 72 | 80 | 88 | 100 | 112 | 128 | |
| min | 40.4 | 43.4 | 46.4 | 49.1 | 52.1 | 56.1 | 59.1 | 62.1 | 66.1 | 70.1 | 78.1 | 85.8 | 97.8 | 109.8 | 125.5 | ||
| mw | min | 32.3 | 34.7 | 37.1 | 39.3 | 41.7 | 44.9 | 47.3 | 49.7 | 52.9 | 56.1 | 62.5 | 68.6 | 78.2 | 87.8 | 100 | |
| s | max=nominal size | 80 | 85 | 90 | 95 | 100 | 105 | 110 | 115 | 120 | 130 | 145 | 155 | 180 | 200 | 230 | |
| min | 78.1 | 82.8 | 87.8 | 92.8 | 97.8 | 102.8 | 107.8 | 112.8 | 117.8 | 127.5 | 142.5 | 152.5 | 177.5 | 195.4 | 225.4 | ||
| e① | min | 88.25 | 93.56 | 99.21 | 104.86 | 110.51 | 116.16 | 121.81 | 127.46 | 133.11 | 144.08 | 161.02 | 172.32 | 200.57 | 220.8 | 254.7 | |
| * | - | - | - | - | - | - | - | - | - | - | 170 | 196 | 216 | 248 | - | ||
| per 1000 units ≈ kg | 1220 | 1420 | 1690 | 1980 | 2300 | 2670 | 3040 | 3440 | 3930 | 4930 | 6820 | 8200 | 13000 | 17500 | 26500 | ||

1. Unique advantages of titanium hex nut material characteristics
2. Main features and advantages
In terms of material properties
*Extremely high specific strength. The density of titanium (about 4.51 g/cm ³) is only 60% of that of steel, but its strength is comparable to many high-strength steels. This greatly reduces the weight of titanium nuts when providing the same or higher strength.
*Excellent corrosion resistance. It has excellent corrosion resistance to the atmosphere, seawater, chlorine gas, most chlorides, and oxidizing media (such as nitric acid), and has an extremely long service life.
In terms of mechanical performance
*High strength can be achieved through heat treatment. Through "solid solution+aging" heat treatment, its strength, hardness, and fatigue resistance can be significantly improved, meeting the high load requirements of key parts.
*Good anti fatigue performance. In environments subjected to alternating loads and vibrations, fatigue cracks are less likely to occur and the service life is longer.
In terms of user experience
*Lightweight. It can significantly reduce the overall weight of the equipment and is the first choice for achieving lightweight design.
*Non magnetic. Titanium nuts will not be magnetized or cause magnetic interference in strong magnetic fields.
*Low thermal conductivity. As a fastener, it can reduce the thermal bridge effect and provide some insulation when connecting different components.
Special performance aspects
*Strong biocompatibility, non-toxic and non allergenic to human tissues, and good compatibility with the human body.
*Excellent low-temperature resistance, it will not become brittle like steel in ultra-low temperature environments, and can still maintain good plasticity and toughness.
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Advantages |
Titanium Hex Nuts |
Stainless Steel Nuts |
Aluminum Nuts |
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Strength-to-Weight Ratio |
Excellent - achieves high strength while being significantly lighter than steel nuts |
Moderate - strength is acceptable but density is high, with no advantage in weight |
High ratio, but absolute strength is low - cannot be used in high-stress components |
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Corrosion Resistance |
Excellent - corrosion resistance comes from the material itself, especially resistant to seawater and chlorides, with long service life and no maintenance required |
Relies on surface passivation film - pitting corrosion may occur in some harsh environments |
Average - resistant to atmospheric corrosion but not resistant to alkalis and some acidic media |
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Magnetism |
Completely non-magnetic - does not become magnetized under any conditions |
Some series have weak magnetism - may become magnetic especially after cold working |
Industrial aluminum nuts may have extremely weak magnetism due to trace iron impurities |
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High-Temperature Performance |
Good - can maintain its mechanical properties at relatively high temperatures |
Average - long-term use at high temperatures may lead to strength reduction and oxidation |
Poor - strength decreases sharply at high temperatures |




Suitability for Compact Spaces
The hex socket hole is relatively shallow, and the bolt head is thinner, making it ideal for installation in confined spaces such as electronic devices and precision instruments.
High Torque Transmission Efficiency
Hex socket wrenches have a larger contact area with the bolt hole, reducing the risk of slippage during force application. This allows for higher torque to be applied, ensuring firm fastening—particularly important in vibration-prone environments.
Anti-Loosening and Aesthetic Benefits
The flat head design allows for countersunk installation (flush with the surface of the workpiece), minimizing protrusion and wear risks while improving the overall clean appearance of the equipment.
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Q: What types of titanium fasteners do you offer?
+A: We offer a wide range of standard and custom titanium fasteners, including but not limited to:• Titanium Bolts: Hex head bolts, countersunk bolts, round head bolts, Torx bolts, 12-point bolts, flange bolts, etc.• Titanium Nuts: Hex nuts, square nuts, flange nuts, lock nuts, slotted nuts, T-nuts, cap nuts, etc.• Titanium Washers: Flat washers, spring washers, lock washers, etc.• Titanium Screws: Machine screws, self-tapping screws, slotted screws, Phillips head screws, hex socket screws, Torx screws, set screws, etc.• Custom/Special Parts: We manufacture various complex titanium alloy connectors according to customer drawings and specific requirements. -
Q: Do you offer OEM/ODM customization services?
+A: Yes, we provide comprehensive OEM/ODM customization services. With advanced production equipment, an experienced team of engineers, and a strict quality control system, we offer one-stop customized solutions—from material selection and prototyping to mass production and surface treatment—based on your design drawings, technical specifications, and application requirements. -
Q: How do you ensure the quality of your titanium fasteners?
+A: Quality is our foremost commitment. We have strict processes in place to control the quality of our products. We use high-quality raw materials, employ advanced manufacturing techniques, and conduct rigorous quality inspections to ensure the final product meets the highest standards. -
Q: How does the price of titanium fasteners compare to regular steel fasteners?
+A: Due to the higher cost of titanium alloy raw materials and more complex manufacturing processes, titanium fasteners are typically priced higher than standard steel fasteners. However, considering their exceptional performance in extreme environments, longer lifespan, lower maintenance costs, and unique advantages in areas such as lightweight design and biocompatibility, titanium fasteners offer significant overall cost-effectiveness in many high-value applications. -
Q: How do I choose the right titanium alloy grade for my application?
+A: The choice of the appropriate titanium alloy grade depends on your specific application requirements. If you're unsure which grade is best suited, our team of professional engineers can provide detailed consultations and recommendations based on your application scenario and technical specifications. -
Q: What is the delivery time for your products?
+A: The typical production lead time is approximately 20 days.

















































































