ISO 13918 Welding Studs Price - DIN603 ANSI B18.5 Round Head Square Neck Carriage Bolts – Dingshen Metalworks

ISO 13918 Welding Studs  Price - DIN603 ANSI B18.5 Round Head Square Neck Carriage Bolts – Dingshen Metalworks

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Carriage Bolts Guardrail bolts Round Head Square Neck Standard: DIN603, ASME/ANSI B18.5, Various configurations are available Metric Szie: M6-M36 with various lengths Inch Size: 1/4”-1.1/2” with various lengths Material Grade: ISO 898-1 4.8, 8.8, 10.9; ASTM A307 A; SAE J429 2, 5, 8 Finish: Plain, Black Oxide, Zinc Plated, Hot Dipped Galvanized and so on Packing: Bulk about 25 kgs each carton, 36 cartons each pallet Advantage: High Quality and Strict Quality Control, Competitive Price,Timely D...


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ISO 13918 Welding Studs Price - DIN603 ANSI B18.5 Round Head Square Neck Carriage Bolts – Dingshen Metalworks Detail:

Carriage Bolts Guardrail bolts Round Head Square Neck

Standard: DIN603, ASME/ANSI B18.5, Various configurations are available

Metric Szie: M6-M36 with various lengths

Inch Size: 1/4”-1.1/2” with various lengths

Material Grade: ISO 898-1 4.8, 8.8, 10.9; ASTM A307 A; SAE J429 2, 5, 8

Finish: Plain, Black Oxide, Zinc Plated, Hot Dipped Galvanized and so on

Packing: Bulk about 25 kgs each carton, 36 cartons each pallet

Advantage: High Quality and Strict Quality Control, Competitive Price,Timely Delivery; Technical Support, Supply Test Reports

Please feel free to contact us for more details.


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ISO 13918 Welding Studs  Price - DIN603 ANSI B18.5 Round Head Square Neck Carriage Bolts – Dingshen Metalworks detail pictures

ISO 13918 Welding Studs  Price - DIN603 ANSI B18.5 Round Head Square Neck Carriage Bolts – Dingshen Metalworks detail pictures


It adheres to the tenet Honest, industrious, enterprising, innovative to develop new products constantly. It regards customers, success as its own success. Let us develop prosperous future hand in hand for ISO 13918 Welding Studs Price - DIN603 ANSI B18.5 Round Head Square Neck Carriage Bolts – Dingshen Metalworks, The product will supply to all over the world, such as: Uganda, Kuwait, Madrid, Our aim is to help customers realize their goals. We have been making great efforts to achieve this win-win situation and sincerely welcome you to join us. In a word, when you choose us, you choose a perfect life. Welcome to visit our factory and welcome your order! For further inquiries, you should do not hesitate to contact us.



  • What to do when you need to cut up rather big solid blocks of steel, brass or aluminium? You can mutilate them with angle grinders or try to cut it up in a milling machine, but the most convenient way is an electric / automatic hacksaw or band saw. Unfortunately most of those are large space eating cast iron monsters. There are no (at least non that I know of) good industrial smaller types, so there is only one way to go: the DIY-way…

    Inspired by the very nice electric hack-saw made by myforboy (watch it here: https://www.youtube.com/watch?v=P5Tu_zoO828 ) I start building one myself. It’s a very straight forward machine, but there are a few very unforgiving and important parts that will need al your efforts to get it right (at least: I had to…)

    For al the DIY-mechanics and machinists out there who are also thinking about building one there self, here’s what I used, had to buy and could use out of the old scrap & junk-box, and some problems I encountered.

    the biggest problem I encountered was to get the whole thing rigid. Without rigidity you will get a ‘walking’ saw that will find it’s own way through your workshop, house, street etc….
    The most important part that will make or break it is (obvious) the saw and it’s sliding mechanism. I had to make a few different kind of ‘wagons’, but finally came up with the one you can see in the movie: a solid steel ‘wagon’ (I call it a wagon, can’t remember a better English word) that has a snug fit around a solid steel square bar. The top part of this wagon doesn’t have any hard work to do, so I made that part out of POM-plastic. Two grease nipples are for very easy oiling the wagon and sliding bar. Only thing I had to buy was the square steel bar, not very expensive.

    The saw itself is a ordinary steel hacksaw for the common standard blades. The only thing I did is weld a piece of flat steel at the top, for rigidity and for easy connecting it to the wagon. At the top, just before the wagon I welded a metal ring with a spring loaded ball in it. This pushes the saw away from the square steel bar and works like a guide and shock absorber, I found out this little thing makes the whole machine a whole lot smoother then without it, so it’s something to consider also using when building our own.

    Next important part (well, let’s face it: almost every part in such a straight forward and simple machine is important) is the power transmission: the motor and pulleys are from an old and broken down drill press (180 Watt), that’s connected to an axle which is placed in a gear reduction box, that on it’s part powers a eccentric placed drive-bar connected to the saw.
    One thing I found out is: let the eccentric move counter clockwise, this will push the wagon a bit upwards on a saw stroke, you’ll get a steadier and smoother saw stroke then when the eccentric moves clockwise.
    Had to buy the reduction gearbox, had to pay € 15 / $ 10 for it second-hand, so that’s not much I guess. You see in the movie the speed is moderate, I found out that faster strokes does not always equals faster cutting. Faster strokes can make the saw getting hot, make aluminium ‘pasty’, or just clogging up the whole thing with saw dust.

    The rest is rather obvious I think: the vice is made out of an old spindle + it’s lead screw, saved from an discarded paper cutting machine. The The table is made out of a flat plate of steel that I found somewhere. The whole construction is build upon some very thick and strong synthetic building material, looks a bit like POM, but is more compact. Anyway: easy to handle and very strong.

    Last thing to mention are the weights: I first had a 1,5 Kg block of steel placed upon the end of the square bar. But it was to heavy when cutting plastics, tubing or other softer materials it pushed the saw to fast through these materials. For steel it was just fine.

    I cut three pieces of round stock (each around 0,5Kg and yes: I did it on this hacksaw ;-) Machined them on the lathe, made a parallel bar above the square sliding bar and voila: adjustable weights for rather precise vertical control. The pulleys give me the possibility to control the horizontal speed of the saw. Very convenient ’cause when cutting — let’s say — some kinds of aluminium I found out that a lower speed and a little heavier vertical load sometimes gives better and faster results.

    Hope you enjoy the movie, comments are welcome!

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