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Metal detector for finding archery arrows

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  • green
    replied
    Originally posted by Mothough View Post
    Shaft is 4.2 or 4.4mm in diameter and depending on manufacturer 35 or 45mm long
    Head is 5.5 or 6.0mm in diameter and typcially 15mm long
    Target TC and corner frequency

    Question. If I made a target with aluminum foil same area and TC as head would they both detect at similar distances?
    Attached Files
    Last edited by green; 10-05-2020, 04:01 PM. Reason: added sentence

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  • ivconic
    replied
    Originally posted by Mothough View Post
    ...Using a neodymium magnet a M6 50mm long A2 bolt will stick to the magnet whereas the arrowheads show only the slightest interaction with the magnet...
    This is the bottom line of whole story.
    Obviously pretty tough target for detector.
    ...
    ...whether combing the soil surface with a rake would help...

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  • Mothough
    replied
    Originally posted by green View Post
    SS points, what is the diameters of the head and shaft?
    Shaft is 4.2 or 4.4mm in diameter and depending on manufacturer 35 or 45mm long
    Head is 5.5 or 6.0mm in diameter and typcially 15mm long

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  • green
    replied
    SS points, what is the diameters of the head and shaft?

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  • Ferric Toes
    replied
    Originally posted by kt315 View Post
    Skippy gets 10% of price for the manifest of ML --- LOL!

    try seek oldie C-Scope 4PI or 6PI. i think they are good issue for your task.
    A CS6PI will detect a M8 x 25mm A2 stainless steel bolt weighing 12gm at 2 -3 inches. A Vallon VMH3CS mine detector will give a good signal on same bolt at 6 -7 inches. Also has ground balance if the soil is mineralised while the CS6PI doesn't. Ex military Vallon detectors are readily available on ebay and are made in Eningen unter Achalm, Germany. Super rugged and totally weatherproof. There is a long thread on them if you scroll down on page 2 of this Tech Forum.

    Eric.

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  • kt315
    replied
    Skippy gets 10% of price for the manifest of ML --- LOL!

    try seek oldie C-Scope 4PI or 6PI. i think they are good issue for your task.

    Leave a comment:


  • Skippy
    replied
    Buying a commercial detector is a reasonable choice if you are confident you can find a decent quantity of arrows over a few years; you are interested in also using it for hobby/pleasure purposes - this could include anything from finding spendable coins in a park to uncovering ancient items from Roman times or earlier. Many serious detecting hobbyists find their machine 'pays for itself' in a few years ... spendable coins, lost jewellery, older silver coins, ancient coins and artefacts, plus the fun/challenge/sense of exploration that comes with it.
    One very capable new machine that I think is good value is the Minelab Vanquish 440, which sell for about 330 Euro in your country. This will certainly find your arrows, as it has pinpoint mode, plus the multiple operating frequencies it uses include 18.2 and 39kHz, so it's good on difficult targets. And it works everywhere from the wet saltwater beach to ploughed (US: plowed) fields and manicured parks.
    An example listing on EBAY Germany:


    Obviously other machines could be equally suitable.

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  • green
    replied
    Can't find the formula but think TC for point=.3us(point diameter/2.05mm)^2. Corner frequency=.1592/TC

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  • Mothough
    replied
    Got it.

    An A2 bolt in similar size should be a close approximation though. A2 bolts are typically 304 stainless which is very similar in composition to 303 stainless.

    303 stainless:
    303 is a free-machining grade of 304 stainless steel that contains added sulfur or selenium. The addition of sulfur or selenium increases the machinability. Its composition contains at minimum 17% Chromium, 8% nickel, and 0.15% Sulfur/Selenium.
    304 stainless:
    304 stainless steel contains a minimum of 18% chromium and 8% nickel which gives its alternate name 18/8 stainless steel. 304 stainless steel contains chromium-nickel content and low carbon.

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  • green
    replied
    That's over my head. 2.8 microsecs equates to a corner-frequency of 57 kHz. Skippy's reply#5 (corner frequency=1/2pi/TC)

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  • green
    replied
    Originally posted by green View Post
    Charted PI decay for a SS bolt. Not same size, maybe close enough?

    Not magnetic
    Been trying to figure if bolt is close to heads. Maybe heads TC is 1/2 the bolt or 1.4us?

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  • Mothough
    replied
    Thanks for all the great input so far.

    Originally posted by waltr View Post
    It will help us if you state what country you live (Europe but which country) in since this will affect what detects are available.
    Germany

    Originally posted by Skippy View Post
    Avoid those cheap 100 Euro machines, they are usually poor or very poor performers.
    That's what I expected.

    Originally posted by Skippy View Post
    Do you have any idea about the specific alloy the arrow tips are made from?
    Looking up a few manufactures it seems to be 303 stainless.

    Originally posted by Skippy View Post
    Some high-strength stainless steels, eg. kitchen knives, are actually low chromium, and are quite magnetic. This may make them easier to detect
    Using a neodymium magnet a M6 50mm long A2 bolt will stick to the magnet whereas the arrowheads show only the slightest interaction with the magnet.

    Originally posted by green View Post
    Charted PI decay for a SS bolt. Not same size, maybe close enough?
    That's over my head.

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  • Skippy
    replied
    From experiments Mr, Green, myself and other have done, the length of long thin items , like wire, and these arrow tips, has virtually no effect on their corner frequency. Only the signal strength increases with the length of the item, corner-freq is almost entirely determined by diameter of the target.

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  • surfdetector
    replied
    This is a very interesting video that illustrates the need for quite high frequencies (>700Khz) in order to detect SS. In this case a test bead of 316 SS.

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  • Skippy
    replied
    Interesting, Mr. Green. 2.8 microsecs equates to a corner-frequency of 57 kHz. Backing up my suggestion that a higher freq VLF machine would be a better choice.
    For the benefit of Mr.Mo , it helps detection if the detector operating frequency vaguely matches the corner-frequency of the target. So the popular entry-level Garrett ACE250 at 6.6 kHz isn't an ideal choice, but the ( more upmarket ) Fisher GoldBugPro at 19 kHz [ or it's cousins the F19, and Teknetics G2 ] would be a better choice.

    Leave a comment:

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