M5-0.8 Long Brass Threaded Inserts – Initeq
Par un écrivain mystérieux
Last updated 12 juillet 2024
![M5-0.8 Long Brass Threaded Inserts – Initeq](https://initeq.io/cdn/shop/products/Screen_Shot_2019-09-26_at_10.49.57_PM_1692x.png?v=1569552616)
These create much more convenient and professional parts than using "captive nuts" (where you have to design a slot for a nut, and then place the nut in the slot and hold it there while affixing a screw). They also can be used in some situations where captive nuts just don't work.These are inserted into a hole in the p
These create much more convenient and professional parts than using captive nuts (where you have to design a slot for a nut, and then place the nut in the slot and hold it there while affixing a screw). They also can be used in some situations where captive nuts just don't work.
These are inserted into a hole in the print that is slightly smaller than the insert, and set in place using a soldering iron to melt the plastic around the insert. The inserts have a slight taper and small fins that the plastic flows around, resulting in an extremely strong bond.
Rather than adjust designs around the limitations of 3D printing (supports, print bed size, etc), divide your parts into separate components that fasten using these inserts and machine screws. Not only does this give you greater flexibility when designing a part, but also allows you to re-print only failed components rather than full assemblies - saving time and money.
These are threaded M5-0.8 - see drawing in product images for dimensions
These create much more convenient and professional parts than using captive nuts (where you have to design a slot for a nut, and then place the nut in the slot and hold it there while affixing a screw). They also can be used in some situations where captive nuts just don't work.These are inserted into a hole in the print that is slightly smaller than the insert, and set in place using a soldering iron to melt the plastic around the insert. The inserts have a slight taper and small fins that the plastic flows around, resulting in an extremely strong bond.Rather than adjust designs around the limitations of 3D printing (supports, print bed size, etc), divide your parts into separate components that fasten using these inserts and machine screws. Not only does this give you greater flexibility when designing a part, but also allows you to re-print only failed components rather than full assemblies - saving time and money.These are threaded M5-0.8 - see drawing in product images for dimensions
These create much more convenient and professional parts than using captive nuts (where you have to design a slot for a nut, and then place the nut in the slot and hold it there while affixing a screw). They also can be used in some situations where captive nuts just don't work.
These are inserted into a hole in the print that is slightly smaller than the insert, and set in place using a soldering iron to melt the plastic around the insert. The inserts have a slight taper and small fins that the plastic flows around, resulting in an extremely strong bond.
Rather than adjust designs around the limitations of 3D printing (supports, print bed size, etc), divide your parts into separate components that fasten using these inserts and machine screws. Not only does this give you greater flexibility when designing a part, but also allows you to re-print only failed components rather than full assemblies - saving time and money.
These are threaded M5-0.8 - see drawing in product images for dimensions
These create much more convenient and professional parts than using captive nuts (where you have to design a slot for a nut, and then place the nut in the slot and hold it there while affixing a screw). They also can be used in some situations where captive nuts just don't work.These are inserted into a hole in the print that is slightly smaller than the insert, and set in place using a soldering iron to melt the plastic around the insert. The inserts have a slight taper and small fins that the plastic flows around, resulting in an extremely strong bond.Rather than adjust designs around the limitations of 3D printing (supports, print bed size, etc), divide your parts into separate components that fasten using these inserts and machine screws. Not only does this give you greater flexibility when designing a part, but also allows you to re-print only failed components rather than full assemblies - saving time and money.These are threaded M5-0.8 - see drawing in product images for dimensions
![M5-0.8 Long Brass Threaded Inserts – Initeq](https://m.media-amazon.com/images/I/81zgK1kCn6L.jpg)
[initeq] #6-32 Threaded Heat Set Inserts for 3D Printing (50, Short) : Industrial & Scientific
Rather than adjust designs around the limitations of 3D printing (supports, print bed size, etc), divide your parts into separate components that
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Qty 100 M5 5mm M5-0.8 Long Metal Threaded Heat Set Screw Inserts for 3D Printing
![M5-0.8 Long Brass Threaded Inserts – Initeq](https://i.ebayimg.com/images/g/ot8AAOSwU8JZp07n/s-l400.jpg)
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![M5-0.8 Long Brass Threaded Inserts – Initeq](https://s.yimg.com/lo/api/res/1.2/H2FkPeNDqlwtxpvDMiqgSw--/YXBwaWQ9ZWNfaG9yaXpvbnRhbDtoPTQwMDtzcz0xO3c9NDAw/https://d9.cnnx.io/image/obj/5997184393;sq=400;p=0;t=ooPwmIQDTS6VDhRaQUozdK6AHk6SkblwmULKocTuuQx4oRgnAAtDxDT4wVX4NfFRG0F2-kGAir_xPm7hFhQ4Rcz4.cf.jpg)
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Securely and permanently add metal threads to 3D printed parts Bypass limitations of 3D printing by desigining multi-piece assemblies Better
![M5-0.8 Long Brass Threaded Inserts – Initeq](https://m.media-amazon.com/images/I/61lRyi1L7lL.jpg)
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Tapered threaded brass inserts for 3D Printing Easy to set in an appropriately-sized hole in the part using a soldering iron. Numerous vanes and ridges around the insert allow plastic to flow between them, creating a tough bond with the printed part. This is a much more versatile, durable, professional, and attractive solution than captive nuts and other solutions commonly employed when the need for metal threads in printed parts arises.
![M5-0.8 Long Brass Threaded Inserts – Initeq](https://m.media-amazon.com/images/I/81JdR1TU6oL.jpg)
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![M5-0.8 Long Brass Threaded Inserts – Initeq](https://initeq.io/cdn/shop/products/initeq_m6_long_1024x1024@2x.jpg?v=1569552880)
M6-1.0 Long Brass Threaded Inserts – Initeq
![M5-0.8 Long Brass Threaded Inserts – Initeq](https://images-na.ssl-images-amazon.com/images/I/613tmp+3LTL._AC_UL600_SR600,600_.jpg)
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Securely and permanently add metal threads to 3D printed parts Tapered threaded brass inserts for 3D Printing br br Easy to set in an appropriately-sized hole in the part using a soldering iron. Numerous vanes and ridges around the insert allow plastic to flow between them, creating a tough bond with the printed part.
![M5-0.8 Long Brass Threaded Inserts – Initeq](https://m.media-amazon.com/images/I/818TX3nWL-L.jpg)
[initeq] #8-32 Threaded Heat Set Inserts for 3D Printing (20, Long)
Securely and permanently add metal threads to 3D printed parts Tapered threaded brass inserts for 3D Printing br br Easy to set in an appropriately-sized hole in the part using a soldering iron. Numerous vanes and ridges around the insert allow plastic to flow between them, creating a tough bond with the printed part.
![M5-0.8 Long Brass Threaded Inserts – Initeq](https://m.media-amazon.com/images/I/91hmmPLJBxL.jpg)
[initeq] M6-1.0 M6 Threaded Heat Set Inserts for 3D Printing (50, Short)
Securely and permanently add metal threads to 3D printed parts Tapered threaded brass inserts for 3D Printing br br Easy to set in an appropriately-sized hole in the part using a soldering iron. Numerous vanes and ridges around the insert allow plastic to flow between them, creating a tough bond with the printed part.
![M5-0.8 Long Brass Threaded Inserts – Initeq](https://m.media-amazon.com/images/I/818TX3nWL-L._AC_UF894,1000_QL80_.jpg)
[initeq] #8-32 Threaded Heat Set Inserts for 3D Printing (50, Long)
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