

Finish designations, capacity and weight tolerances, and whether the glass bottle you shortlist runs on the filling line and capping head you already own.
A jar that takes a cap by hand can still lose vacuum on your line. That is the most expensive way to learn a finish designation. Your closure supplier reads a 43-400 thread, a 58 mm twist-off or a 26 mm crown from the drawing every SGSBOTTLE quotation carries.
Capacity, brimful volume, weight and height come off 14 lines at two SGSBOTTLE sites in Shandong and Xuzhou, China. The tolerances sit on that same drawing. You set up your filler, your labeller and your case packer from paper, before the first sample lands, and SGSBOTTLE has worked that way with buyers in 40+ countries since 2013.
Send your closure, your fill and your format in ml and oz, and the drawing comes back with the tolerances your line is set from. A 250 ml (8.5 oz) jar and a 1 L (34 oz) bottle are documented the same way, from the same 14 lines in Shandong and Xuzhou.
Every neck finish a glass buyer meets, from GPI 24-410 to BVS 30×60 and the 26 H 180 crown, with the published T, E, I, H and S figures and the closure each one takes.
The 43-485 finish is the US spice-jar standard for sifter, shaker and flip-top caps. What it is, how it differs from 43-400, and the jars that carry it.
The vacuum lug finishes of ISO 9100, from 38 mm to 110 mm: which size suits your jar, what regular and deep change, and how you order a twist-off cap.
The tall 26 mm crown finish of ISO 12821: its bore, its crimping edge, how it differs from the shallow 26 H 126, and what your crown capper needs from the glass.
The BVS 30x60 screw finish for wine and spirits, dimension by dimension: thread, seal and locking-ring diameters, heights, bore and the ovality your capper needs.
FEA names the collar your fragrance pump crimps onto. What 13, 15, 17, 18 and 20 mean, crimp against screw, and the figures your pump supplier asks for first.
Regular mouth is 70-450G and wide mouth is 86-450G. What the 450 series does, why the G matters on glass, and which two-piece lids fit your jars.
38-400 is the most widely stocked wide-neck finish in food and beverage. What it carries, how it differs from 38 mm lug and DBJ necks, and which caps fit yours.
28-400 and 28-410 are two different bottles. The published T, E, I, H and S figures for each, what the extra half turn buys, and why the caps never interchange.
24-410 carries most lotion pumps, foamers and sprayers. Its published dimensions, what one and a half thread turns buy, and how to match a pump you already stock.
Nominal against brimful capacity, fill point, weight, verticality and finish flatness: seven figures on a glass bottle drawing, and the ISO standards behind them.
Three 18 mm necks take three different dropper caps. What separates the 400, 415 and DIN 18 finishes, and which one your pipette and tamper band were made for.
Bar-top stoppers, cork mouths and the bores behind them: the Cetie and EN standards, what pull force depends on, and how a spirits neck is specified.
A swing top has no thread and no series number. What the neck ring does, what the gasket does, and how a reusable bottle or jar is actually specified.
Nine checks that keep a cap from leaking on your line: finish designation and drawing, sealing surface and liner, torque, tamper band, fill and sample run.
A lug cap holds a vacuum in a quarter turn; a continuous thread seals on a liner. What each asks of your fill, your line and your consumer.
Cork, ROPP and crown are three different bottles. What each seals against, which capping head it needs, and where reseal, pressure and presentation decide.
Two ways to close a pressurised bottle. What a bail and gasket give you that a crimped crown cannot, and what they cost in speed and consistency.
The cap holds the liner; the liner holds the seal. What pulp, foam, plastisol, foil and EPE each do, which fills they suit, and how to put one on your specification.
Torque is where a good cap and a good bottle still fail. What application and removal torque mean, why the number decays after capping, and how to set your window.
Tamper evidence has to show interference, not prevent it. How bands, shrink sleeves, induction seals and lug buttons work, and which one your market expects.
A vacuum jar seals as it cools, not as it closes. What creates the pressure difference, why the button pops, and the handling mistakes that lose your seal.
An induction head welds a foil membrane to your bottle in under a second. How the field heats the foil, what the sealing surface must give it, and why seals fail.
A child-resistant cap has to defeat a toddler and still open for an adult. How push-and-turn, squeeze-and-turn and snap-lock work, and what the test protocols measure.
A dispensing closure is a small machine on your bottle. How lotion pumps, fine-mist sprayers, droppers and trigger heads work, and what each needs from the glass.
A gasket is chosen by chemistry and temperature, not by looks. What silicone, EPDM, natural rubber and cured plastisol each survive, and where they fail on glass.
Convert a bottle volume between millilitres and both fluid ounces, and see the nearest trade format. The full conversion table renders whether the converter runs or not.
Filter the common finish designations by the closure you hold or the diameter stamped on it. The full table renders whether the filter runs or not.
Add the prototype, sample mould and production tooling for a cavity count you choose. The published stage prices render whether the estimator runs or not.
The first number is the finish diameter in millimetres across the thread and the second is the thread style: 400 is one full turn, 410 one and a half turns, 415 two turns on a taller finish. A cap and a finish carrying the same designation from two suppliers are made to match, and your cap supplier checks the finish drawing on your quotation against it.
Yes. A sample of your cap, or its drawing, goes to our engineers and comes back matched to the stock finishes that fit it, with the finish drawing attached, so your capping head stays exactly as it is.
Tell us the fill and the market and a sales engineer replies within one business day, with the finish drawing and the loading plan.
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