What Is a Metal Cord Lock?
A metal cord lock or drawstring stopper is an adjustable component used to control the movement of a cord, lace, string or compatible round elastic. Pressing the operating button aligns or releases the internal passages so the cord can move. Releasing the button allows the mechanism to apply pressure and help retain the selected adjustment.
The verified main body material used in the E-Buttons metal cord-lock category is zinc alloy, also known as zamak. Zinc alloy allows the production of compact operating mechanisms and multiple decorative body shapes.
A metal cord lock does not finish the cut end of a drawstring. Use cord ends and drawstring tips for the terminal sections. Both component types may be used together within the same cord system.
Which Metal Cord Lock Should Be Selected?
| Application Requirement |
Model to Consider |
Specification to Check |
| Adjust one cord through one passage |
Single-hole metal cord lock |
Actual and lightly compressed cord diameter |
| Keep two cord ends in separate passages |
Double-hole metal cord lock |
Internal size and direction of each passage |
| Release two ends with one movement |
Single-button double-hole model |
Compatibility of both passages with the selected cord |
| Use a flat or oval drawstring |
Rectangular-passage metal cord lock |
Drawstring width and thickness |
| Use a compact component |
Mini, small or flat model |
Outside size and button accessibility |
| Create visible decorative hardware |
Ball, cube, pear, mine or model-specific form |
Body dimensions, finish and finished-product weight |
| Route the cord from a different direction |
Side-bridge or directional model |
Cord route and access to the operating button |
| Coordinate with other metal hardware |
Zinc-alloy model with a selected finish |
Finish appearance and availability |
Single-Hole and Double-Hole Metal Cord Locks
A single-hole metal cord lock provides one shared passage and is normally used with one cord. Two fine ends should only be used together where their combined compressed dimensions remain compatible with the passage.
A double-hole metal cord lock keeps two cord ends in separate passages. This structure may help maintain parallel and organised routing on hood, waistband and bag applications.
A double-hole model is not automatically stronger than a single-hole model. Holding performance depends on cord dimensions, surface friction, spring pressure and internal passage geometry.
| Cord-Lock Structure |
Cord Arrangement |
Selection Note |
| Single hole |
One shared passage |
For one cord or compatible fine ends using one route |
| Double hole |
Two separate passages |
For keeping two cord ends separate and parallel |
| Single-button double hole |
Both passages are released by one button |
For adjusting both ends simultaneously |
| Side-bridge model |
Cord and operating direction vary by body design |
Installed orientation must be tested on the finished product |
Top-Push and Side-Bridge Models
On a top-push metal cord lock, the operating button is positioned on the upper section of the body. Pressing it aligns the cord passages so that the drawstring can be repositioned.
On a side-bridge model, the additional bridge changes the cord route and installed orientation. Check how the cord enters the body, the purpose of the bridge and whether the operating button remains accessible.
Button operation must be evaluated with the actual cord installed. An excessively stiff mechanism may be difficult to operate, while a mechanism that is too light may not provide sufficient retention.
How Does a Metal Cord Lock Hold the Cord?
On a spring-loaded metal cord lock, the cord passes through openings in the body and moving button. Releasing the button moves the openings away from full alignment and presses the cord between internal surfaces.
Holding performance depends on:
- Actual cord thickness relative to the passage
- Normal and lightly compressed cord diameter
- Cord-surface friction
- Soft, filled, rigid or elastic cord construction
- Spring pressure and button travel
- Round or rectangular passage geometry
- Direction and level of the applied pulling force
How to Measure Cord Compatibility
The metric or inch value stated in a product title normally refers to the nominal internal passage. Cords carrying the same nominal diameter may behave differently because of braid density, filling, rigidity and surface construction.
| Measurement |
Why It Matters |
How to Check It |
| Outside round-cord diameter |
Determines whether the cord can pass through the channel. |
Measure several points without flattening the cord. |
| Lightly compressed diameter |
Shows how much a soft cord narrows under spring pressure. |
Record it together with the normal measurement. |
| Flat-drawstring width |
Must correspond with the horizontal passage size. |
Measure the widest section. |
| Flat-drawstring thickness |
Affects passage height and complete button closure. |
Include any folded or joined section. |
| Cord surface |
A smooth surface may slip after locking. |
Complete a pull test in the actual operating direction. |
| Cord rigidity |
A rigid cord may prevent complete mechanism closure. |
Confirm free button movement with the cord installed. |
Common Cord-Passage Groups
The following metric and imperial dimensions are general category-selection references. Final approval must be based on the verified individual product page.
| Cord Passage |
General Application |
Compatibility Check |
| 3–3.5 mm / 0.12–0.14 in |
Fine cords and compact accessories |
Confirm sufficient friction after locking. |
| 4–4.5 mm / 0.16–0.18 in |
Hoods, garments, footwear and lightweight bags |
Check braid density, surface and compressed diameter. |
| 5–5.5 mm / 0.20–0.22 in |
Medium-weight cords and laces |
Confirm that the cord does not slip after locking. |
| Approximately 6 mm / 0.24 in |
Thicker cords and compatible round elastic |
Check cord rigidity and button operation. |
| 6 × 3 mm / 0.24 × 0.12 in and 6 × 3.5 mm / 0.24 × 0.14 in |
Fine flat or oval drawstrings |
Measure width and thickness separately. |
| 7 × 3 mm / 0.28 × 0.12 in |
Flat drawstrings and directional body models |
Confirm that the drawstring does not rotate inside the passage. |
| 8 × 4 mm / 0.31 × 0.16 in and 8 × 4.5 mm / 0.31 × 0.18 in |
Wider flat drawstrings |
Check free movement and secure locking. |
| 10 × 3.5 mm / 0.39 × 0.14 in |
Wide but relatively thin flat drawstrings |
Consider both width and thickness. |
These measurements do not guarantee compatibility. Manufacturing tolerance, braid construction, filling, surface friction and compressibility may change performance.
Metal Cord-Lock Body Shapes
| Body Shape |
General Feature |
Selection Note |
| Mini or small model |
Compact body for limited spaces |
Confirm that the button remains easy to operate. |
| Flat model |
May create less projection from the product surface. |
Check body orientation and fabric-contact area. |
| Ball or round model |
Rounded decorative body |
Do not confuse outside diameter with cord-passage diameter. |
| Mine or pear-shaped model |
Rounded and elongated decorative structure |
Check whether the model uses one or two passages. |
| Semicircular or crescent model |
Directional and relatively flat body |
Verify whether the passage is round or rectangular. |
| Cube model |
Angular and modern appearance |
Test edges against delicate textiles. |
| Bridge model |
Additional routing or attachment section |
Verify the bridge function and cord route. |
Finish and Surface Options
Depending on the model, metal cord locks may be offered in nickel, black nickel, gold, antique brass, gunmetal or black oxide, copper, tin oxide, glossy paint, matte paint and soft-touch finishes.
Not every finish is available for every model or quantity. The cord-lock finish may be coordinated with cord ends, eyelets, zipper hardware, buckles and other metal trims.
The finish name does not identify the base metal or prove corrosion resistance. Nickel, gold, antique brass and gunmetal normally describe the surface appearance.
A zinc-alloy cord lock must not be assumed to be stainless steel, saltwater resistant or suitable for continuous wet exposure.
Metal and Plastic Cord Locks Compared
| Feature |
Metal Cord Lock |
Plastic Cord Lock |
| Main body |
Zinc alloy |
Plastic, acetal or another stated polymer |
| Weight |
May create a heavier and more visible hardware detail. |
Adds less weight to lightweight textiles. |
| Appearance |
Plated, painted and decorative metal surfaces may be available. |
Coloured, transparent and model-specific surfaces may be available. |
| Primary selection reason |
Metal appearance and coordination with other hardware |
Low weight, colour matching and everyday operation |
| Delicate-textile check |
Weight, edges and surface contact should be tested. |
Mould lines, edges and body contact should be checked. |
For lower-weight alternatives, review the plastic cord locks category.
Metal Cord Locks and Cord Ends Are Different
| Feature |
Metal Cord Lock |
Cord End / Drawstring Tip |
| Main function |
Adjusts cord length or gathering. |
Finishes the cut end of a cord. |
| Position |
Moves along the cord. |
Remains at the terminal section. |
| Adjustment |
Can be released and repositioned. |
Normally remains fixed after fitting. |
| Combined use |
The cord lock provides adjustment while cord ends finish the terminal sections. |
Real-World Applications
- Hoodie, coat and jacket adjustment cords
- Tracksuit, shorts and sportswear waist drawstrings
- Bag, backpack, pouch and drawstring-sack closures
- Shoe, boot and trainer laces
- Adjustment cords on hats and neck warmers
- Compatible camping-bag and outdoor-textile cords
- Curtain, cover and home-textile gathering systems
- Compatible round-elastic adjustment systems
How Is a Metal Cord Lock Installed?
- Measure the normal and lightly compressed cord dimensions.
- Check whether the model has one or two passages.
- Press the operating button to align the passages.
- Thread the cord through the correct passage and direction.
- On a double-hole model, position the two ends separately.
- Release the button so the mechanism engages the cord.
- Pull in the operating direction to test slipping.
- Fit terminal cord ends after completing the cord route.
Standard push-button metal cord locks are normally installed by hand. A press or setting die is not required for threading the lock onto the cord. A separate tool may be required for a terminal cord end.
Incorrect Selection and Use Warnings
- A cord that is too narrow may slip after locking.
- A cord that is too thick may not pass through or may prevent complete button closure.
- Measure both width and thickness for flat drawstrings.
- Check the compressed diameter of soft and filled cords.
- A smooth cord may slip despite a suitable nominal size.
- The number of holes does not determine holding strength by itself.
- A heavy metal body may pull or distort lightweight fabric.
- Test angular body shapes against delicate textiles.
- A fitted cord end may not pass through the lock passage.
- Finish appearance does not prove stainless or outdoor suitability.
- Small-part and detachment risks must be assessed separately for children’s products.
- Complete a sample test before wholesale ordering or mass production.
Related E-Buttons Categories
Frequently Asked Questions About Metal Cord Locks
What is a metal cord lock and what does it do?
A metal cord lock is a push-button adjuster used to control cord length or gathering and help retain the cord at the selected position.
What material are the metal cord locks made from?
The verified main body material in the E-Buttons metal cord-lock category is zinc alloy, also known as zamak. The surface finish is a separate specification.
How do I select the correct metal cord-lock size?
Measure the outside and lightly compressed diameter of round cord. For flat drawstrings, measure width and thickness separately and compare them with the verified passage.
What is the difference between single-hole and double-hole metal cord locks?
A single-hole model has one shared passage. A double-hole model keeps two cord ends in separate passages. The number of holes does not determine holding strength by itself.
Why does the metal cord lock fail to hold the cord?
The cord may be too narrow, too smooth or too rigid for the mechanism. Spring pressure and internal passage geometry also affect compatibility.
Does a metal cord lock require a press?
Standard push-button metal cord locks are normally installed by hand. Press the button, align the passage and thread the cord through it. A separate tool may be required for a terminal cord end.
Can a metal cord lock be used with round elastic?
It may be used when the passage and mechanism are compatible. Because elastic changes diameter under compression and tension, test it with the actual material.
Should the metal cord lock or cord end be installed first?
If the completed cord end is larger than the lock passage, thread the metal cord lock first and fit the cord end after completing the cord route.
Are metal cord locks stainless?
Not all metal cord locks are stainless. The products in this category use zinc-alloy bodies. Verify the finish and intended conditions of use on the individual product page.
Is sample testing required before wholesale production?
Yes. A sample confirms cord passage, holding performance, button movement, component weight, finish and appearance on the finished product.
Last updated: 21 July 2026
Business and brand: E-Buttons – Istanbul, Türkiye
Technical verification note: Refer to the individual product page for exact metric and imperial passage dimensions, outside body size, hole arrangement, finish, pack quantity and mechanism structure.