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» | Trade Name: Intru-Lok |
» | Series: Intru-Lok |
» | Tube Fitting/Adapter Type: Bite Type, Intru-Lok Flareless |
» | Configuration Type: 90° Elbow |
» | Configuration Sub-Type: Female Elbow Intru-Lok / NPTF |
» | Inch/Metric: Inch |
» | End 1 Type: Inch |
» | End 2 Type: NPTF |
» | Material: Brass |
» | Parker Division: Tube Fitting |
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Female Elbow Intru-Lok / NPTF
In-Stock Symbol Meaning:
Orders placed by Noon EST ship same day *
Normally Ships in 1 - 2 weeks
Order by Noon, Partial ship same day*, balance ships in 1 - 2 weeks
Orders placed by Noon EST ship same day *
Normally Ships in 1 - 2 weeks
Order by Noon, Partial ship same day*, balance ships in 1 - 2 weeks
* Applies to in-stock items and excludes weekends and holidays
Bold items are most common and readily available.
Product Specifications |
3 DBI2-B $39.73 Add to Cart More Info |
4 DBI2-B $25.53 Add to Cart More Info |
4-4 DBI2-B $40.65 Add to Cart More Info |
6 DBI2-B $35.96 Add to Cart More Info |
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Availability | Call for Availability | 5 In Stock | Call for Availability | 2 In Stock |
Normally Ships In | ||||
End 1 | 3/16 Inch | 1/4 Inch | 1/4 Inch | 3/8 Inch |
End 2 | 1/8-27 NPTF | 1/8-27 NPTF | 1/4-18 NPTF | 1/4-18 NPTF |
Material | Brass | Brass | Brass | Brass |
UOM | EA | EA | EA | EA |
3 DBI2-B | Call for Availability |
$39.73 |
Add to Cart | |
End 1: 3/16 Inch End 2: 1/8-27 NPTF Material: Brass UOM: EA |
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4 DBI2-B | 5 In Stock |
$25.53 |
Add to Cart | |
End 1: 1/4 Inch End 2: 1/8-27 NPTF Material: Brass UOM: EA |
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4-4 DBI2-B | Call for Availability |
$40.65 |
Add to Cart | |
End 1: 1/4 Inch End 2: 1/4-18 NPTF Material: Brass UOM: EA |
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6 DBI2-B | 2 In Stock |
$35.96 |
Add to Cart | |
End 1: 3/8 Inch End 2: 1/4-18 NPTF Material: Brass UOM: EA |
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8-8 DBI2-B | Call for Availability |
$108.94 |
Add to Cart | |
End 1: 1/2 Inch End 2: 1/2-14 NPTF Material: Brass UOM: EA |
Intru-Lok® Flareless Bite Type Fittings address those applications that require a bite by the ferrule in brass, copper, aluminum and plastic tubing systems. On assembly, the ferrule “bites” into the outer surface of the tube with sufficient strength to ho