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Insulated Garage Door Export from China: Garage Door Panels, 16×7 Insulated and Roll Up Specs & Pricing

Insulated garage door with aluminum sandwich panels and frosted insulated glass top section installed on a suburban house in China - sectional overhead door, 16x7 double car size
Insulated aluminum sectional garage door, 16×7 double-car opening, 40 mm PU-foamed garage door panels with a frosted insulated glass top section.
Buying insulated garage doors out of China is a thermal calculation, not a catalogue exercise. This page documents the four variables that actually move the number on site: core material and thickness, glazing ratio, perimeter sealing, and spring/opener sizing. Every table below is taken from production door builds in the 8×7 to 20×9 range, with measured U-values, cycle ratings, FOB Foshan price bands and container loading maths a procurement team can re-use.
U-value
0.28 – 0.50
W/m2K, 40-75 mm PU
Whole-door R
R-8.1 – R-13.2
US units, joints included
Panel build
0.6 + 40/50/75 + 0.6
mm alu skin / PU core
FOB Foshan
USD 108 – 215
per m2, insulated
MOQ
10 doors / 100 m2
mixed sizes allowed
Lead time
25 – 35 days
after drawing approval
Contents
Garage Door Panels: Core, Skin and Thermal Data
Insulated Glass Garage Door Configurations
Garage Door 16×7 Insulated: Imperial Sizes
Insulated Roll Up Garage Door vs Sectional
U-Value and R-Value Test Data
Springs, Tracks and Opener Sizing
Certification and Code Compliance
MOQ, Lead Time and FOB Pricing
Installation and Commissioning
Project Data: 44 Townhouses in Ontario
Insulated vs Non-Insulated vs Steel

Garage Door Panels: Core Material, Skin Gauge and Thermal Data

The panel is where the insulation lives. A garage door panel is a bonded sandwich: two coil-coated aluminium skins, a foamed core, and a perimeter stile-and-rail frame that carries the hinge load. Change any one of the three and the U-value moves.

Panel build-up and skin specification

Production panels use 0.5 mm or 0.6 mm aluminium alloy 3003-H16 or 3105-H26 coil, pre-finished with a 20-25 um PVDF topcoat or a 60-80 um polyester powder coat. The skins are roll-formed with a tongue-and-groove interlock along the horizontal joint so that adjacent sections close on a double contact line. Core adhesion is verified by a peel test at 0.35 N/mm minimum; below that the panel delaminates under wind suction cycling.

Core material comparison

Core Density kg/m3 Lambda W/mK R at 40 mm m2K/W Fire class Cost index
Polyurethane (pentane-blown) 40 – 45 0.022 1.82 B-s1, d0 1.35
PIR polyisocyanurate 40 – 45 0.021 1.90 B-s1, d0 1.55
XPS extruded polystyrene 32 – 38 0.030 1.33 E 1.10
EPS expanded polystyrene 15 – 20 0.038 1.05 E 1.00
Rock wool lamella 100 – 120 0.040 1.00 A1 1.70

PU gives 73% more resistance per millimetre than EPS at a 35% material premium. Rock wool is specified only where the authority having jurisdiction demands Class A1 non-combustible construction; it is 27% heavier than PU at equal thickness and needs a 0.8 mm skin to control panel deflection.

Panel thickness against U-value and weight

Panel build R core m2K/W U panel W/m2K Centre R (US) Weight kg/m2 Typical use
40 mm PU, 0.6/0.6 mm skin 1.82 0.50 R-11.3 9.2 Attached residential garage
50 mm PU, 0.6/0.6 mm skin 2.27 0.41 R-13.9 9.6 Heated garage, workshop
75 mm PU, 0.8/0.6 mm skin 3.41 0.28 R-20.3 10.7 Industrial, cold store
40 mm EPS, 0.5/0.5 mm skin 1.05 0.82 R-7.0 8.1 Budget residential
50 mm XPS, 0.6/0.6 mm skin 1.67 0.54 R-10.4 9.1 Humid coastal climate
Read the whole-door number, not the core number. Centre-of-panel R is measured away from any joint. Once you add the section interlocks, the end stiles and the perimeter seal, whole-door R drops 28-35%. A 40 mm PU panel rated R-11.3 at the centre delivers roughly R-8.1 as an installed door.

For projects where the garage is conditioned space, the panel choice interacts with the rest of the envelope. Our page on windows and doors wholesale packages uses the same 6063-T5 extrusion platform, so frame and panel finishes match across the elevation.

Insulated Glass Garage Door: Glazing Make-up and Condensation Control

An insulated glass garage door trades thermal performance for daylight. The trade is quantifiable: every 10% of door area converted from a 40 mm PU panel to a double-glazed unit adds roughly 0.21 W/m2K to the whole-door U-value.

Glazing make-up options

Glass make-up Ug W/m2K SHGC Light trans. % Weight kg/m2 Condensation risk at -10 °C
5 + 9A + 5 tempered, air 2.67 0.62 78 25 Frost above 45% RH
5 + 12A + 5 tempered, air 2.56 0.61 78 25 Frost above 48% RH
5 + 12Ar + 5 Low-E, argon 1.38 0.48 70 25 None below 65% RH
5 + 12Ar + 5 + 12Ar + 5 Low-E 0.94 0.40 63 37 None below 75% RH
5 + 12A + 5 frosted / acid-etched 2.56 0.55 68 25 Frost above 48% RH

Low-E with argon is the default for heated garages in Climate Zone 5 and above. It costs USD 18-26/m2 more than an air-filled unit and moves the interior glass surface temperature at -10 °C outdoor from 4.1 °C to 11.8 °C, which is the difference between condensation running down the panel and a dry reveal.

Glazing ratio against whole-door U-value

Top-section glazing Glazed area m2 (16×7) Whole-door U W/m2K Whole-door R (US) Comment
0% – full 40 mm PU panel 0.0 0.50 R-11.3 Baseline, no daylight
15% – one glazed row 1.56 0.82 R-6.9 Standard residential spec
25% – two glazed rows 2.60 1.03 R-5.5 Daylight without full vision
40% – half vision 4.16 1.34 R-4.2 Showroom, workshop
100% – frameless, 5+12Ar+5 LE 10.4 1.48 R-3.8 Full-vision commercial
If the brief asks for a full-vision door and a U-value under 1.0, the only route is a triple-glazed unit with warm-edge spacers. Specify a thermally broken aluminium glazing frame with a 24 mm PA66GF25 strip; a non-broken frame adds 0.4-0.6 W/m2K on its own and condensates on the frame face first.

Frameless full-vision doors are a different product line from the residential sectional range. Where the opening needs both sightlines and thermal performance, the garage door range page sets out which configurations are stocked against which are made to order.

Garage Door 16×7 Insulated: Imperial Openings and Section Count

North American openings are ordered in feet and inches and built in millimetres. The conversion errors happen at the jamb, not the door: a 16×7 nominal opening is 4,877 mm wide, and the door slab is manufactured 10 mm narrower to clear the track and seal.

Imperial size chart

Nominal opening Actual W x H mm Sections at 500 mm Door area m2 Weight kg Application
8 x 7 2,438 x 2,134 4 5.2 58 Single car
9 x 7 2,743 x 2,134 4 5.9 65 Single car, wide
16 x 7 4,877 x 2,134 4 10.4 112 Double car, standard
16 x 8 4,877 x 2,438 5 11.9 128 Double car, van and roof box
18 x 8 5,486 x 2,438 5 13.4 143 Double plus storage bay
20 x 9 6,096 x 2,743 6 16.7 178 RV and workshop

Section count, headroom and track geometry

A 16×7 insulated door at 112 kg needs a torsion shaft of 25.4 mm diameter with a 1.9 mm wall. Doors above 140 kg move to a 31.75 mm shaft. Undersizing the shaft is the most common cause of the door drifting out of level after 18 months.

Insulated Roll Up Garage Door: Coiling Curtain Against Sectional

An insulated roll up garage door coils into a barrel above the opening instead of running back along a horizontal track. It wins on headroom and loses on thermal performance and cycle life.

Curtain slat specification

Slat profile Pitch mm Max width mm Max area m2 U W/m2K Cycle rating Barrel dia. mm
RD77 insulated 77 6,000 30 1.10 25,000 219
RD95 insulated 95 7,000 42 0.95 25,000 273
RD100 insulated 100 8,000 55 0.85 20,000 323
RD77 single skin 77 6,500 35 3.40 50,000 219

The foam-filled slat cannot reach sectional-panel U-values because the hinged joint between slats is a repeating linear thermal bridge at 77-100 mm pitch. Measured psi-value at the slat joint is 0.11 W/mK against 0.06 W/mK at a sectional interlock with a thermal break strip.

Selection matrix

Criterion Insulated roll up Insulated sectional Winner
Headroom required 350 – 500 mm 100 – 350 mm Sectional
Max opening width 8,000 mm 9,000 mm with struts Sectional
U-value achievable 0.85 – 1.10 0.28 – 0.50 Sectional
EN 12424 wind class up to Class 4 (1.0 kPa) up to Class 5 (1.5 kPa) Sectional
Cycle life 20,000 – 25,000 25,000 – 50,000 Sectional
On-site section repair Full curtain drop required Single section swap in 40 min Sectional
Ceiling space released Yes, barrel only No, tracks run back 3.6 m Roll up
FOB price index 1.00 1.15 – 1.30 Roll up
Specify the roll up when the ceiling is carrying storage, a lift beam or a mechanical run and you cannot give up 3.6 m of horizontal track. Specify the sectional everywhere the garage is heated, and in any coastal or high-wind location where the wind class matters.

U-Value and R-Value: Calculated Against Measured

Two numbers circulate in this market and they are not the same number. Centre-of-panel R is a material property. Whole-door U is a tested assembly value under EN 12426 / EN ISO 12567-1 hot-box conditions.

Test data, 16×7 door, 40 mm PU

Metric Calculation Hot-box measurement Deviation
Panel centre U, W/m2K 0.50 0.53 +6%
Whole-door U, W/m2K 0.68 0.71 +4%
Air permeability, m3/h·m2 at 50 Pa 5.4 5.9 +9%
Water tightness, Pa n/a Class 3 (70 Pa) Pass
Interior surface temp at -10 °C, °C 16.2 15.4 -0.8 K

The 4-9% gap between calculation and test is the joint and seal package. Budget for it. A door sold on a calculated 0.50 W/m2K will be tested at 0.71 W/m2K as an assembly, which is still inside most North American and European energy code paths but is not the number on the datasheet.

Where the heat actually leaves

Spring, Track and Opener Sizing

Insulated doors are heavier than single-skin doors and the hardware has to be sized for the insulated weight. A 16×7 insulated door at 112 kg needs roughly double the spring wire diameter of a 58 kg single-skin 8×7.

Torsion spring cycle ratings

Spring type Cycle rating Wire dia. mm Door weight kg USD per set Life at 10 cycles/day
Torsion, standard 10,000 5.26 – 6.35 60 – 120 38 – 55 2.7 years
Torsion, high-cycle 25,000 6.35 – 7.26 100 – 160 62 – 88 6.8 years
Torsion, extra-cycle 50,000 7.26 – 8.13 140 – 220 105 – 140 13.7 years
Extension spring 10,000 4.78 – 5.56 50 – 100 30 – 46 2.7 years

Cycle rating is calculated to a 10,000-cycle baseline at 85% of the spring’s elastic limit. Specifying 25,000 cycles costs USD 24-33 more per door and moves the replacement interval from under three years to over six on a typical household duty of ten cycles per day. On a 44-unit development that is 44 callouts avoided.

Opener selection

Door size Door weight kg Min force N Motor Duty cycle USD
8 x 7 58 600 DC 24 V, 1/2 hp 40% 165 – 220
16 x 7 112 800 DC 24 V, 3/4 hp 50% 240 – 310
16 x 8 128 1,000 DC 24 V, 1 hp 60% 310 – 395
20 x 9 178 1,200 AC 230 V, 1.25 hp 70% 420 – 560
Size the opener at 1.25x the calculated door weight, not 1.0x. Insulated doors gain 4-7 kg over their service life from track wear, seal compression and paint or dust loading on the panel. An opener sized at exactly the door weight starts throwing obstruction faults in year three.

The same hardware logic applies across our door families. The folding door page and the driveway gate page use the cycle-count and 1.25x-load rules documented here.

Certification and Code Compliance

Garage doors placed on the EU market carry CE marking under EN 13241-1 as a construction product. North American projects reference DASMA and, in Florida and the Gulf coast, the High Velocity Hurricane Zone provisions of the Florida Building Code.

European and international test record

Standard Scope Result on file
EN 13241-1 CE marking, industrial and garage doors Pass, Declaration of Performance issued
EN 12424 Wind load resistance Class 4 (1.0 kPa); Class 5 (1.5 kPa) with struts
EN 12426 Air permeability Class 3, 5.9 m3/h·m2 at 50 Pa
EN 12425 Water tightness Class 3, 70 Pa
EN 12604 / EN 12605 Mechanical resistance, safe opening Pass
ANSI/DASMA 102 Sectional garage doors, US Compliant
AS/NZS 4505 Garage doors, Australia and NZ Compliant, wind class N3

High Velocity Hurricane Zone

HVHZ compliance adds USD 68-95/m2 and 10-14 days to the schedule because the laminated glass and the heavier strut package are made to order. Projects outside the wind-borne debris region do not need it and should not pay for it. See the metal door comparison page for the same wind-load reasoning on pedestrian doors.

MOQ, Lead Time, Payment and FOB Pricing

FOB Foshan price bands

Configuration Panel build U W/m2K FOB USD/m2 16×7 door FOB USD
Single skin, non-insulated 0.6 mm, no core 5.80 42 – 58 437 – 603
40 mm EPS 0.5 / 40 / 0.5 mm 0.82 78 – 102 811 – 1,061
40 mm PU 0.6 / 40 / 0.6 mm 0.50 108 – 142 1,123 – 1,477
50 mm PU + Low-E glass row 0.6 / 50 / 0.6 mm, 15% glass 0.82 145 – 186 1,508 – 1,934
75 mm PU, industrial 0.8 / 75 / 0.6 mm 0.28 168 – 215 1,747 – 2,236
Frameless insulated glass 5 + 12Ar + 5 Low-E 1.48 245 – 320 2,548 – 3,328

Volume discount ladder

Order volume Discount 40 mm PU effective USD/m2 Container plan
Under 100 m2 0% 108 – 142 LCL, 1-2 crates
100 – 300 m2 -6% 102 – 133 LCL or 20GP
300 – 800 m2 -11% 96 – 126 1 x 40HQ
800 – 2,000 m2 -16% 91 – 119 2-3 x 40HQ
Over 2,000 m2 -21% 85 – 112 Rolling monthly schedule

Order terms and packing

Item Term
MOQ 10 doors or 100 m2, mixed sizes and colours allowed
Lead time 25 – 35 days after approved shop drawing; 40 – 50 days with HVHZ glazing
Payment 30% T/T deposit, 70% against B/L copy; L/C at sight accepted above USD 30,000
Sample 600 x 600 mm panel cut with the specified core and finish, USD 85 credited against the order
Packing EPE foam plus 5-ply export carton then plywood crate, corner-protected
Crate size, 16×7 4,880 x 620 x 220 mm, 0.666 m3, 118 kg gross
40HQ loading 108 – 114 doors (volume-limited), 1,123 – 1,186 m2
Warranty 10 years on panel delamination and finish, 3 years on hardware and opener
Landed cost maths: add ocean freight at USD 18-26/m2 to the US West Coast, 0-6.5% duty depending on HS code and origin programme, and USD 55-95/m2 for installation labour. A USD 125/m2 FOB door lands at roughly USD 205-235/m2 installed, against USD 330-400/m2 for an equivalent domestic supply-and-fit package.

Installation Sequence and Commissioning

Eight-step sequence

  1. Verify the opening: diagonal measurement within 5 mm, head and floor level within 3 mm over the full width.
  2. Set the jamb brackets and vertical track plumb; shim behind the bracket, never behind the seal.
  3. Assemble sections bottom-up, engaging the tongue-and-groove interlock fully before fixing the hinges.
  4. Fit rollers, then the horizontal track; check the track is level to 2 mm over 3,000 mm and parallel to the door.
  5. Install the torsion shaft, drums and spring; wind to the manufacturer’s turn count for the measured door weight.
  6. Hang the opener rail 25 mm above the highest point of door travel and connect the emergency release.
  7. Set the perimeter seal compression: 3-5 mm on the jamb bulb, 8-10 mm on the bottom seal at closed position.
  8. Commission: three full cycles unloaded, force test to EN 12605, obstruction reversal at 50 mm and 25 mm.

Three failure points

Installation tolerance governs the tested air permeability. A door that meets Class 3 in the hot box drops to Class 1-2 on site if the bottom seal compression is set at 0 mm against an uneven slab; the fix is a 12 mm tapered threshold strip, not a longer seal.

Project Data: 44 Townhouses in Ontario

A 44-unit townhouse development near Ottawa, winter design temperature -22 °C, attached heated garages. Specification: 16×7 doors, 50 mm PU core, 0.6/0.6 mm skin, one Low-E argon glazed row in the top section, 25,000-cycle torsion springs.

Cost line Local supply and fit, USD Imported, landed and installed, USD
Door, 16×7, 50 mm PU + glazed row 2,560 1,540
Torsion spring, 25,000 cycle 185 78
Opener, DC 24 V 3/4 hp 410 275
Freight, insurance, duty 0 210
Inland delivery to site 0 95
Installation labour 434 620
Total per unit 3,589 2,818
44 units 157,916 123,992

Landed cost per door was USD 2,818 against USD 3,589 locally, a 21.5% saving on the supply-and-fit package, or USD 33,924 across the development. Door and hardware are cheaper out of China; installation labour is higher because the doors arrive crated and require on-site section assembly, and the local crew priced a knock-down-rebuild at a premium.

Energy side of the equation

Metric Non-insulated, U 5.80 40 mm PU, U 0.50 50 mm PU, U 0.41
Annual heat loss, kWh (4,500 K·d) 6,519 562 461
Natural gas equivalent, GJ 23.5 2.0 1.7
Annual energy cost at USD 12/GJ 282 24 20
Incremental door cost, USD 0 686 1,071
Simple payback, years n/a 2.7 4.1

At 44 units the 50 mm PU specification saves 1,140 GJ a year against a non-insulated door, about USD 13,680 in gas. It also holds the garage above 5 °C without a separate heat source, which is what let the developer drop the planned garage radiator circuit from the mechanical schedule.

The window package on the same project ran through the casement window factory line and the rear elevations used the sliding window series, so all three product families were shipped in two 40HQ containers.

Insulated Against Non-Insulated, Aluminium Against Steel

Criterion Single-skin aluminium 40 mm PU aluminium 24-ga steel, insulated Solid timber
Panel U, W/m2K 5.80 0.50 0.48 1.60
Panel weight, kg/m2 6.4 9.2 14.8 22.0
Corrosion, 1,000 h salt spray No base metal rust No base metal rust Red rust at cut edges Rot risk at grade
Summer surface temp, 35 °C day 58.4 °C 39.6 °C 61.2 °C 42.1 °C
Opener load Low Medium High High
Dent repair Section swap Section swap Filler and paint Sand and refinish
FOB Foshan, USD/m2 42 – 58 108 – 142 95 – 128 165 – 240

Aluminium matches steel on thermal performance at 78% of the weight, which is the whole argument: lighter door, smaller spring, smaller opener, less header deflection, longer cycle life. Aluminium costs more than steel per square metre in coastal and high-humidity markets only until you count the first repaint. The material trade-off is set out in more detail on the garage door material page.

Specification checklist

For security-related hardware on the same opening, including the lock package and the pedestrian door interface, the garage door security page covers the locking and access-control options that fit these panels.

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