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    Poinçonnage et pliage CNC pour fabricants de baies de serveurs et d’armoires de télécommunications

    Perforated doors, vented side panels and fan-cut top plates — thousands of holes per panel, at rack-grade pitch accuracy, without a scratch on the powder-coat.

    40 rpmTurret speed, servo models
    ±0.1 mmPunching accuracy
    5000 mmX-axis with secondary positioning
    48 hGlobal on-site response

    What equipment does a server rack or telecom cabinet factory need?

    A 19-inch rack is not a bending problem. It is a punching problem with bending attached. A single perforated front door can carry several thousand holes at high open area; side panels, top plates and cable managers add thousands more. That volume of holes, in 1.0 to 2.0 mm cold-rolled or galvanised sheet, is what decides the equipment — and it is why the primary machine here is a Poinçonneuse à tourelle CNC, not a panel bender.

    A servo turret punch completes perforation, louvring, fan cut-outs, cable entries, embossed ribs and thread preparations in one clamping, using nibbling and multi-tool stations rather than tracing every hole. A Cintreuse de panneaux CNC then folds the door and panel returns. A presse plieuse covers brackets and shelves. What no sheet-metal machine produces is the 19-inch mounting upright — that is a roll-formed profile, a different process, and one STON CNC does not supply.

    STON CNC (Qingdao Ston Mechanical Technology Co., Ltd.) is a Chinese original manufacturer of CNC panel benders and turret punch presses, founded in 2006 in Qingdao, China. All equipment described here is built inside STON CNC's own 20,000㎡ factory, from casting and heat treatment through machining, assembly and inspection. Machines carry ISO 9001 quality certification and CE marking under Machinery Directive 2006/42/EC, and are exported to more than 80 countries. View certifications and patents →

    The parts we build for

    The parts that carry the holes

    Rack production concentrates almost all of its machining time in a handful of heavily perforated panels. Get those off a laser and onto a turret punch and the whole shop rebalances.

    Perforated front doorsThousands of holes, high open area
    Perforated rear doorsOften split, twin-leaf
    Vented side panelsLouvres plus fixing patterns
    Top platesFan cut-outs, brush gland openings
    Base platesCable entry, castor mounting
    Cable managersRepetitive slotting, high volume
    Shelves and traysRibbed, perforated, folded
    Plinths and roof framesCoated steel, four-sided flange
    Where rack production bottlenecks

    Three problems every rack and telecom cabinet shop hits

    01

    A laser is the wrong tool for 3,000 identical holes

    Fiber laser is unbeatable on contours and one-off shapes. On a repeated hole array it pierces every hole individually, and the cycle time scales linearly with hole count. A turret punch nibbles and multi-hits with a single tool, so a heavily perforated door stops being the constraint on the whole line.

    02

    Perforation warps the panel

    Removing 40 to 60 percent of the material out of a 1.5 mm door releases stress, and a warped door will not close on a rack. Punch sequencing, an over-tonnage protected striking system and a brush-and-ball composite table that supports the panel while it moves are what keep the blank flat enough to bend.

    03

    Hole pitch has to match the industry, not your drawing

    19-inch mounting geometry is defined by IEC 60297-3-100 and EIA-310 — a fixed 44.45 mm U pitch with a repeating hole group. Cumulative pitch error across 42U is what makes third-party equipment fail to fit. Positioning repeatability of roughly ±0.01 to 0.02 mm on a double rack-and-pinion drive is what holds it over a long panel.

    Recommended configuration

    Three ways to build the cell, by perforated panel volume

    For rack work, size the turret punch first and the bender second. The punch is where the hours go; the bender is rarely the constraint.

    Entry cell

    Wall-mount and small telecom cabinets
    • JT series mechanical CNC turret punch press
    • Panel bender B (1400) or B+ (1600)
    • Existing press brake retained for brackets and shelves
    • Brush and steel-ball composite table for coated sheet
    • Manual loading, one operator per machine
    Most rack manufacturers

    Rack production cell

    Floor-standing racks and volume perforated doors
    • SF series servo CNC turret punch press, 40 rpm turret
    • X-axis 2500 mm with secondary positioning to 5000 mm
    • Panel bender C (2000) or D (2500), cast-iron frame
    • Automatic loading, sheet separation, positioning and stacking
    • Multi-tool stations for repeating perforation patterns
    • Independent dual rotary stations for angled louvres

    Punch-laser line

    Mixed perforation and contour work, high mix
    • SFL punch laser combined machine, one clamping for both
    • Roughly 40% less floor space than separate punch and laser
    • Panel bending with automatic loading and stacking
    • Optional robot welding station for frame assemblies
    • Unified control, process interlock, data traceability
    • Line layout drawn against your existing floor plan
    Before you go further

    What these machines can and cannot form

    Rack sheet metal sits comfortably inside the forming window. The limit that matters on this page is not thickness — it is that mounting uprights are a roll-formed product and no punch or bender will make them.

    ParamètresPoinçonneuse à tourellePlieuse de tôlesNotes
    Typical rack gauge1.0–2.0 mm1.0–2.0 mmWell inside capacity
    Cold-rolled steel maxSet by tonnage and tool≤2.0 mm cast / ≤1.5 mm weldedAt full bending length
    Stainless steel maxSet by tonnage and tool≤1.2 mm cast / ≤1.0 mm weldedFor outdoor telecom enclosures
    Max sheet in one positionX-axis 2500 mmSecondary positioning to 5000 mm
    Sheet widthY-axis 1250 / 1500 mmup to 1500 mm
    Max sheet load150 kg
    Punching accuracy±0.1 mmRepeatability approx. ±0.01–0.02 mm
    Turret speed40 rpm servo / 30 rpm mechanical
    Max forming sizeup to 2800 × 1500 mmBy model
    Utilities380 V ±5%, 0.55 MPa airThree-phase 380 V, 0.6 MPa airConfigured to destination voltage

    Right fit

    Heavily perforated doors and vented panels in 1.0–2.0 mm, plus four-sided folded doors, side panels and plinths. Rack production is one of the strongest cases for pairing a turret punch with a panel bender.

    Wrong fit

    19-inch mounting uprights, frame profiles and C-sections. These are roll-formed products from a different process and a different supplier — a turret punch can pierce a flat strip, but it cannot form the profile.

    Keep a press brake

    Shelves, cable arms, mounting brackets, castor plates and low-volume specials. One press brake alongside a punch-and-bend cell covers everything that should not tie up the main machines.

    Standards this equipment is built and guarded to

    Risk assessment follows EN ISO 12100; safety-related control functions such as light-curtain interruption and emergency stop are specified to EN ISO 13849-1. Hydraulic press brakes supplied into the EU are built against EN 12622. Machines placed on the EU market carry CE marking under Machinery Directive 2006/42/EC with the accompanying technical file. Quality management is certified to ISO 9001, and machined structural tolerances follow ISO 2768. For the finished product, 19-inch rack geometry is defined by IEC 60297-3-100 et EIA-310, which fix the 44.45 mm U pitch and hole group spacing. Cumulative pitch accuracy over a 42U panel is set on the punch, and it is what determines whether third-party equipment mounts without reaming.

    On the machines this means fully enclosed rear fencing, protective covers on all protruding moving parts, laser guarding that halts motion when the protected zone is broken, over-tonnage protection on turret punch presses, and grating-ruler offset-load detection on panel benders.

    Choosing the process

    Turret punch or fiber laser for perforated rack panels?

    This is the single most valuable decision in rack production, and the answer is not the same for every panel. Most shops that own both end up sending perforation to the punch and contours to the laser.

     Poinçonneuse à tourelle CNCFiber laser cuttingRoll forming
    Repeated hole arraysFastest — multi-tool and nibblingSlow — pierces every holeNot applicable
    Complex contours and one-offsLimited to available toolingFastest — no tooling neededNot applicable
    Forming operationsLouvres, ribs, embossing, thread prepCutting onlyProfile forming only
    Tooling costPunch and die sets requiredNoneRoll set per profile, high
    Edge conditionSlight burr, deburr may be neededSmooth, burr-freeCut to length
    Rack parts it suitsPerforated doors, vented panels, cable managersCustom cut-outs, prototypes, short runsMounting uprights, frame sections
    Best combinationPunch-laser combined machine does both in one clamping, in roughly 40% less floor space than two separate machinesSeparate supplier
    Does STON supply it?YesYesNo — different process

    If your rack range is built on roll-formed uprights with bolted-on panels, the cell above covers the panels — which is where the hole count, the labour and the flatness problems actually are. The upright line stays with your existing supplier and we will say so at drawing review.

    Process flow

    From sheet to a flat, perforated, folded and stacked panel

    1. LoadingAutomatic sheet separation and positioning
    2. PunchingPerforation, louvres, fan cut-outs, ribs, one clamping
    3. UnloadingAutomatic part sorting and stacking
    4. BendingFour sides folded from one clamping
    5. Assembly prepThread forming, stiffener attachment
    6. WeldingOptional robot station with seam tracking
    What changes

    Laser-only blanking versus a turret punch and bender cell

    Figures below describe the direction and mechanism of the change. Actual results depend on your part mix, batch size and shift pattern — we model them against your own drawings before quoting.

    ItemFiber laser plus press brakesTurret punch plus panel bender cell
    Cycle on a perforated doorScales with hole count, every hole piercedMulti-tool and nibbling, largely independent of hole count
    Louvres, ribs and embossingNeeds a second machine or manual operationCompleted in the same clamping as the holes
    Panel flatness after perforationHeat input plus stress releaseSupported table, sequenced punching, over-tonnage protection
    Coated panel surfaceHandling marks between machinesBrush and steel-ball composite table, automatic transfer
    Four-sided door forming2 operators, 4 rotations1 operator, single clamping
    U-pitch accuracy over a 42U panelDepends on nesting and re-clamping±0.1 mm machining accuracy, repeatability approx. ±0.01–0.02 mm
    ConsumablesLaser gas, optics, nozzlesPunch and die wear, longer service intervals

    Payback logic we use with customers: (annual labour released + reduction in rework and scrap + additional saleable output) ÷ installed equipment cost. We build this with your real numbers rather than publishing a headline figure that would not match your plant.

    Les équipements de cette solution

    STON machines used in server rack and telecom cabinet production

    STON SF series servo CNC turret punch press producing a perforated server rack door
    Primary machine

    SF Series Servo CNC Turret Punch Press

    Turret speed to 40 rpm, ±0.1 mm accuracy, X-axis 2500 mm with secondary positioning to 5000 mm. Patented dual-triangle beam mount, double dovetail feeding, independent dual rotary stations, brush and steel-ball composite table.

    View SF series →
    STON SFL punch laser combined machine for perforated and contoured rack panels
    Punch + laser

    Machine combinée laser et poinçonneuse SFL

    Perforation, forming and laser contour cutting in one clamping. Roughly 40% less floor space than separate punch and laser machines, and no secondary alignment between the hole array and the cut-out.

    View SFL series →
    STON JT series mechanical CNC turret punching machine
    Volume punching

    JT Series Mechanical Turret Punch

    Flywheel-driven striking system for continuous high-frequency punching, 30 rpm turret, over-tonnage protection, stainless-steel edged table. Suited to long runs of a stable perforation pattern.

    View JT series →
    STON CNC panel bender forming a server rack door panel
    Formage

    Cintreuse de panneaux CNC

    Folds doors, side panels and plinths from one clamping, up to 2800 mm. Full-electric servo closed-loop control, rapid compensation adjustment for switching between rack heights, grating-ruler offset-load detection.

    View press arm type →
    STON double platform fiber laser cutting machine for rack panel contours
    Contour cutting

    Découpe laser à double plateforme

    Exchange-table fiber laser for custom cut-outs, prototypes and short runs that do not justify tooling. Runs alongside the turret punch rather than replacing it.

    View laser unit →
    STON truss and robotic automatic loading and unloading system
    Automation

    Chargement par portique et robotisé

    Automatic sheet separation, positioning, unloading and stacking. On perforated panels this matters twice over — it removes handling marks and it keeps the punch fed at its actual cycle rate.

    View truss system →
    Pourquoi STON

    An original manufacturer, from casting to commissioning

    Founded in 2006 and headquartered in Qingdao, one hour from major export ports and the airport. Casting, heat treatment, machining, welding, assembly and inspection all happen inside our own 20,000㎡ factory. That is why a configuration change for a perforated door line does not become a six-month subcontracting problem.

    STON CNC 20,000 square metre manufacturing facility in Qingdao
    20,000㎡ facility, 300+ processing machines
    Shot blasting machine used in machine frame preparation
    Shot blasting and stress relief in-house
    Automated welding and machining processes at the STON factory
    Full automation in welding and machining
    Three coordinate measuring inspection station at STON CNC
    Three-coordinate inspection before shipment
    Tour the factory Open the 360° virtual tour
    After the machine lands

    Support that stays with the line

    Data centre and telecom projects run to fixed installation windows. A stopped turret punch stops every downstream operation in a rack shop, so response time is part of the specification, not an afterthought.

    1-hour response, 48-hour on siteGlobal service coverage across 80+ export countries.
    Free sample parts before you orderPre-sales engineers review drawings and validate feasibility, tooling and bend programs.
    Lifetime machine trackingUnique machine ID, free software upgrades, quarterly inspection and maintenance advice.
    7×24 expert technical supportRemote diagnostics plus on-site engineers when required.
    Operator and programmer trainingVideo tutorials, manuals and on-site sessions during commissioning.
    Dedicated spare parts inventoryConsumables and wear parts held for fast dispatch.
    VX
    Vicky Xu Head of Overseas Sales, STON CNC

    Ten years working with sheet-metal manufacturers across Europe, Southeast Asia, the Middle East and South America. Rather than quoting a machine from a catalogue, Vicky starts from your part drawings, material and thickness range and target output, then works with STON's engineering team to define the configuration — a single panel bender, a turret punch press, or a fully integrated cutting, punching and bending line with automated loading.

    Questions we get from rack and telecom cabinet manufacturers

    Frequently asked questions

    Should perforated rack doors be punched or laser cut?
    Punched, in almost all cases. A fiber laser pierces every hole individually, so cycle time scales with hole count — and a perforated door can carry several thousand holes. A turret punch uses multi-tool stations and nibbling, so the same panel is largely independent of hole count, and it performs louvring, rib forming and embossing in the same clamping. Keep the laser for contours, prototypes and short runs that do not justify tooling. A punch-laser combined machine does both in one clamping if your mix genuinely needs both on the same part.
    Can you make 19-inch mounting uprights?
    No. Mounting uprights and frame profiles are roll-formed constant-section products, which is a different process from punching and bending. A turret punch can pierce a flat strip, but it cannot form the profile. Rack manufacturers buy uprights from a roll-forming supplier and produce the panels themselves — and the panels are where the hole count, the labour and the flatness problems sit.
    How accurate is the U-pitch across a full-height panel?
    Machining accuracy is ±0.1 mm with positioning repeatability of approximately ±0.01 to 0.02 mm, held by a double rack-and-pinion drive combined with a lead screw, on a patented dual-triangle beam mount that limits deflection over long strokes. For panels beyond 2500 mm the X-axis uses secondary positioning up to 5000 mm. Note that 19-inch geometry itself is defined by IEC 60297-3-100 and EIA-310, not by the machine — the machine's job is to hold your programmed pitch without cumulative drift.
    How do you stop perforated panels warping?
    Three things. Punch sequencing spreads stress release across the panel instead of concentrating it. The brush and steel-ball composite table supports the sheet as it moves so it is never unsupported under load. Over-tonnage protection cuts striking power if pressure exceeds the set value, protecting both the panel and the machine. For very high open-area doors we review the pattern at drawing stage and may recommend a stiffening rib formed in the same clamping.
    Will the table mark powder-coated or pre-painted panels?
    The standard table is a brush and omnidirectional steel-ball composite, and it can be configured as pure bristle brush if your panels are coated before punching. Stainless-steel edging on the table resists scratching and is easy to clean. On the bending side, vacuum pick-up means the visible face is not dragged across a back gauge.
    How much does a rack production cell cost?
    There is no list price, because the cell is configured to your panel mix. Five factors move the figure most: punch type (servo turret at 40 rpm versus mechanical at 30 rpm), turret and tooling package including multi-tool stations and rotary stations for angled louvres, panel bender size and frame from 1400 mm to 2800 mm, automation level (manual, sheet separation and stacking, or a full cell), and scope — whether a laser or a punch-laser combined machine is included. A single mechanical turret punch and a full punch-laser plus bending line differ by roughly an order of magnitude. Send a perforated door drawing with the hole pattern and we return a configured quotation and a realistic cycle time within 24 hours.
    Servo or mechanical turret punch — which suits rack work?
    Servo if your mix changes often and you want higher turret speed (40 rpm), finer control and lower noise. Mechanical if you run long stable batches of one perforation pattern, where the flywheel system delivers steady high-frequency striking at lower cost. Many rack shops with a broad product range choose servo; contract manufacturers running a fixed pattern often choose mechanical.
    Can the cell run unattended?
    Yes, with automatic sheet separation, positioning, unloading and stacking. STON panel benders keep a native automatic loading and unloading interface and can be matched with most robotic arm and gantry brands, alongside STON's truss system and Bronte robotic arm. Fully enclosed fencing and laser guarding are specified at order stage for unattended running.
    Quelle alimentation électrique et en air est nécessaire ?
    Turret punch presses require 380 V ±5% and 0.55 MPa air, with combined power consumption around 3–5 kW for servo models and under 2 kW for mechanical. Panel benders require three-phase 380 V and 0.6 MPa air. Voltage and frequency are configured for the destination country before shipment.
    Les machines peuvent-elles être livrées en Turquie, au Mexique, en Russie ou en Asie du Sud-Est ?
    Yes — these are among STON CNC's main export markets. Supply voltage and frequency are configured to the destination before shipment, CNC and HMI language can be localised, and machines carry CE marking under Directive 2006/42/EC where required. FANUC, Siemens and Rexroth control systems can be specified if your service network already supports one of them. Export documentation, packing and container loading are handled in-house in Qingdao.
    Comment les pièces de rechange et le service sont-ils gérés en dehors de la Chine ?
    STON CNC commits to a one-hour response and 48-hour on-site resolution across its 80+ export markets, backed by 7×24 remote technical support, a dedicated spare parts warehouse and free software upgrades for the life of the machine. Punch and die consumables are quoted as a recommended kit with the machine.
    How do we confirm cycle time before committing?
    Send a perforated door drawing with the actual hole pattern and open area, plus your sheet thickness and monthly volume. Our pre-sales engineers program the part, return a realistic cycle time and tooling list, and provide free sample parts to validate the result before the order is placed.

    Specifications on this page verified against STON engineering documentation on 4 August 2026. Forming limits are confirmed against your own drawings before quotation. Published on 4 August 2026 · Last updated 4 August 2026 · Reviewed by Vicky Xu, Head of Overseas Sales.

    Next step

    Send us one perforated door drawing

    With the real hole pattern we can program the part, return an actual cycle time rather than a brochure figure, and tell you whether a servo or mechanical turret suits your mix.

    • Feasibility review by pre-sales engineers, not a sales rep
    • Free sample parts before you place an order
    • Line layout drawn against your actual floor plan
    • Configuration options at three output levels

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    Courriel : [email protected]

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