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    에너지 저장 및 전기차 충전 인클로저용 CNC 펀칭 및 벤딩

    BESS cabinets, battery enclosures and charger housings in 1.5–2.0 mm — flat enough to seal, fast enough to keep up with a product range that changes every quarter.

    2.0 mmCold-rolled at full bend length
    ±0.1 mmPunching accuracy
    MinutesChangeover between variants
    48 hGlobal on-site response

    What equipment does an energy storage or EV charger enclosure factory need?

    Energy storage and EV charging enclosures sit at the heavy end of the thin-sheet window. Cabinet bodies, doors and internal partitions are typically 1.5 to 2.0 mm cold-rolled or galvanised steel, because the enclosure carries weight, resists impact and has to seal to an IP rating. That thickness makes the frame choice non-negotiable: a cast-iron frame panel bender is rated to 2.0 mm cold-rolled at full bend length, a welded frame only to 1.5 mm.

    The other defining feature is change. Product generations in this sector turn over faster than in any traditional cabinet industry, and enclosure designs are revised while the first batch is still shipping. That rules out anything tool-dependent. A CNC 터렛 펀치 프레스 produces cable entries, ventilation patterns, fan cut-outs, busbar clearances and mounting arrays without dedicated dies; a 패널 벤더 forms the four-sided panels from a program; both switch to a revised drawing in minutes rather than through a tooling order.

    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. 인증 및 특허 보기 →

    The parts we build for

    Cabinet, door and internal structure — the heavy thin sheet

    Battery and charger enclosures concentrate their sheet metal in a small number of large, thick-gauge panels that must stay flat enough for a gasket to seal against.

    BESS cabinet bodies1.5–2.0 mm, cast frame required
    Cabinet door leavesGasket channel flatness critical
    Internal partitionsFire and thermal separation
    Battery module traysFolded trays, not drawn shells
    Busbar covers and shroudsSmall parts, insulating clearances
    EV charger housingsCosmetic face plus service access
    Base and plinth framesLoad bearing, castor or foot mounts
    Ventilation and fan panelsLouvres plus fan cut-outs
    Where enclosure production goes wrong

    Three problems specific to battery and charger enclosures

    01

    An IP rating is decided by flatness, not by the gasket

    A door that bows by two millimetres will not seal, whatever gasket you specify, and the ingress test fails at the corners first. Closed-loop servo bending with rapid compensation adjustment holds angle across the full length, and straightness of roughly 0.2 mm/m keeps the sealing face straight enough for compression to be even along the whole channel.

    02

    The design changes faster than tooling can be ordered

    Cell formats, converter footprints and connector positions move between product generations. Any process that requires a dedicated die per hole pattern becomes a schedule risk. Turret punching and program-driven bending absorb a revised drawing in an afternoon; the constraint becomes engineering time, not tooling lead time.

    03

    2.0 mm is a real ceiling, not a soft one

    A cast-iron frame panel bender reaches 2.0 mm cold-rolled at full bend length; a welded frame stops at 1.5 mm. Enclosure specifications regularly drift to 2.5 or 3 mm for structural bases and outdoor cabinets. Those parts belong on a press brake, and we confirm which of your parts fall on each side before quoting.

    Recommended configuration

    Three ways to build the cell, by volume and product stability

    This sector rewards flexibility over raw throughput. Most customers are better served by a cell that absorbs design changes than by a line optimised for a product that may be superseded.

    Entry cell

    Pilot production and early product generations
    • Panel bender B+ (1600) or C (2000), cast-iron frame
    • Cold-rolled ≤2.0 mm at full bend length
    • Fiber laser blanking, no tooling required
    • Existing press brake retained for structural bases
    • Custom knives for gasket channel profiles
    Most enclosure manufacturers

    Volume cell

    Stable ranges in continuous production
    • SF series servo CNC turret punch press
    • Cable entries, ventilation, fan cut-outs and ribs in one clamping
    • Panel bender C (2000) or D (2500), cast-iron frame
    • Truss or robotic loading and stacking
    • Automatic tool change for switching between models
    • Press brake alongside for 2.5–3 mm structural parts

    Integrated line

    Standardised cabinet ranges at scale
    • Coil or sheet blanking with intelligent nesting
    • Punch-laser combined machine for mixed hole and contour work
    • Automatic bending with stacking and interleaving
    • Optional robot welding station for base frames
    • Unified control, process interlock, data traceability
    • Layout drawn against your existing building
    Before you go further

    What these machines can and cannot form

    The thickness row is where most enquiries in this sector fall over. Outdoor and structural enclosure parts drift above the panel bender window more often than customers expect.

    매개변수Panel bender — cast framePanel bender — welded frameNotes
    Cold-rolled / galvanised≤2.0 mm≤1.5 mmAbove 2.0 mm goes to a press brake
    Stainless steel≤1.2 mm≤1.0 mmFor outdoor and coastal enclosures
    Aluminium≤2.5 mm≤2.5 mmAlloy dependent
    Max forming size1000 × 1000 up to 2800 × 1500 mmBy model
    Bending height5 mm minimum / 170, 300 or 400 mm maximumBy configuration
    Min four-sided inner sizeapprox. 140 × 190 mmBusbar shrouds may fall below this
    Angle accuracyapprox. ±0.5°/mDecides gasket compression evenness
    Straightnessapprox. 0.2 mm/mDecides whether the door seals
    Punching accuracy±0.1 mm on turret punch pressRepeatability approx. ±0.01–0.02 mm
    UtilitiesThree-phase 380 V, 0.6 MPa airConfigured to destination voltage

    Right fit

    Four-sided cabinet bodies, doors and partitions in 1.5–2.0 mm, with dense cut-out patterns that change between product generations. The combination of thick-gauge forming and tooling-free punching is exactly what this sector needs.

    Wrong fit

    Deep-drawn battery module shells, extruded heat sink profiles, roll-formed frame sections, and any structural part above 2.0 mm cold-rolled at full bend length. Different processes and in most cases different suppliers.

    Keep a press brake

    Structural bases in 2.5–3 mm, lifting lugs, heavy mounting brackets and thick reinforcement plates. Every enclosure factory we work with keeps a press brake for precisely these.

    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 enclosure, IEC 60529 defines the IP code your cabinet is tested against and IEC 61439-1 applies to low-voltage assemblies. Neither is a machine standard — but the flatness and angle consistency needed to pass an ingress test are established at the bending stage, not at final assembly.

    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

    Panel bender, press brake or roll forming?

    Enclosure ranges usually need the first two. The third supplies parts you will keep buying in.

     CNC 패널 벤더CNC press brakeRoll forming
    Part geometryFlat panels folded on all four sidesAny bend line, any thickness in capacityConstant cross-section profiles
    Typical enclosure partsCabinet bodies, doors, partitions, traysStructural bases, lugs, heavy bracketsFrame members, mounting rails
    Thickness for this sector≤2.0 mm cold-rolled2.0 mm and aboveSet by the roll set
    Sealing-face straightnessapprox. 0.2 mm/mCrowning and operator dependentExcellent, but fixed section
    Response to a design revisionProgram change, minutesTool change and gauge resetNew roll set, weeks
    Operators1, or 0 with automatic loading1–21 per line
    Does STON supply it?YesYesNo — different process

    Battery module trays are worth checking early. A folded tray suits a panel bender; a drawn shell does not, and no amount of tooling will change that. We separate the two at drawing review.

    Process flow

    From sheet to a sealed, assembly-ready enclosure panel

    1. BlankingFiber laser or turret punch, no dedicated tooling
    2. PunchingCable entries, ventilation, fan cut-outs, ribs
    3. LoadingTruss or robot with vacuum pick-up
    4. BendingFour sides from one clamping, sealing face straight
    5. StackingAutomatic, no contact with coated faces
    6. WeldingOptional robot station for base frames
    What changes

    Manual bending versus a punch and bend 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.

    ItemPress brakes onlyTurret punch plus panel bender cell
    Operators on a 2 mm cabinet panel2, lifting and turning1, or unattended with loading
    Door sealing-face straightnessCrowning and operator dependentapprox. 0.2 mm/m
    IP test failures at cornersCommon when angle drifts between panelsReduced by closed-loop angle control
    Response to a design revisionRe-tooling and re-provingProgram change, same day
    Cut-outs per panelLaser plus manual secondary operationsOne clamping on the turret punch
    Changeover between modelsTool swap and gauge resetProgram recall plus compensation adjustment
    Parts above 2.0 mmHandledStay on the press brake

    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.

    이 솔루션을 구성하는 장비

    STON machines used in energy storage and charger enclosure production

    STON CNC panel bender forming a 2 mm energy storage cabinet panel
    성형

    CNC 패널 벤더, 주철 프레임

    Cast-iron frame models rated to 2.0 mm cold-rolled at full bend length. Full-electric servo closed-loop control, rapid compensation adjustment, grating-ruler offset-load detection, custom knives for gasket channel profiles.

    View press arm type →
    STON SF series servo CNC turret punch press producing enclosure cut-outs
    펀칭

    Servo CNC Turret Punch Press

    Cable entries, ventilation patterns, fan cut-outs, busbar clearances and mounting arrays in one clamping, without dedicated dies. ±0.1 mm accuracy, turret speed to 40 rpm, over-tonnage protection.

    View SF series →
    STON SFL punch laser combined machine for enclosure panels
    Punch + laser

    SFL 펀치 레이저 복합 기계

    Repeating hole patterns and one-off contours on the same panel in a single clamping. Roughly 40% less floor space than separate machines, and no secondary alignment between the array and the cut-out.

    View SFL series →
    STON PBS series electro-hydraulic servo press brake for thick enclosure parts
    Above 2 mm

    Electro-Hydraulic Servo Press Brake

    For structural bases, lifting lugs and reinforcement plates above the panel bender window. 63 t to 320 t, DELEM or ESA control, mechanical compensation, laser protection device.

    View PBS series →
    STON double platform fiber laser cutting machine for enclosure blanking
    Blanking

    더블 플랫폼 레이저 커팅

    Exchange-table fiber laser for prototypes, first articles and revised drawings that arrive faster than tooling can be ordered. Burr-free edges on coated and galvanised sheet.

    View laser unit →
    STON truss and robotic loading system for enclosure panel handling
    Automation

    Truss and Robotic Loading

    Native interface on every panel bender, compatible with most robotic arm and gantry brands. On 2 mm panels the weight alone justifies removing the manual lift.

    View truss system →
    왜 STON인가

    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 battery enclosure line does not become a six-month subcontracting problem.

    칭다오에 위치한 STON CNC의 20,000제곱미터 규모 제조 시설
    20,000㎡ facility, 300+ processing machines
    STON CNC에서 ±0.05mm 정밀도를 자랑하는 정밀 조립
    ±0.05 mm assembly accuracy
    CNC machining of high precision components at STON CNC
    In-house machining of every critical part
    STON CNC의 3축 좌표 측정 검사 스테이션
    배송 전 3차원 검사
    Tour the factory Open the 360° virtual tour
    After the machine lands

    Support that stays with the line

    Energy storage projects run to grid connection dates and charger rollouts run to site handover. A stopped cell delays an installation schedule, not just a production plan.

    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 enclosure manufacturers

    Frequently asked questions

    패널 벤더가 2mm 캐비닛 패널을 성형할 수 있나요?
    네, 주철 프레임이 장착되어 있습니다. STON 주철 프레임 패널 벤더는 최대 굽힘 길이에서 2.0 mm 두께의 냉간 압연 강판을 처리할 수 있는 사양입니다. 반면 용접 프레임 모델은 1.5 mm까지 처리 가능합니다. 구조용 받침대나 실외용 캐비닛의 두께가 2.5mm 또는 3mm로 지정된 경우, 해당 부품은 프레스 브레이크로 가공해야 하며, 당사는 납품 후가 아닌 견적 제출 전에 도면을 통해 이를 확인하겠습니다.
    패널이 IP 침투 테스트를 통과할 만큼 충분히 평평할까요?
    밀봉 여부는 개스킷이 아니라 평탄도와 각도 일관성에 달려 있습니다. 직선도는 1미터당 약 0.2mm, 각도 정확도는 1미터당 약 ±0.5°이며, 이는 신속한 보정 조정이 가능한 폐쇄 루프 서보 제어에 의해 유지됩니다. 그레이팅 눈금자 기반 오프셋 하중 감지 장치는 굽힘 공정 중 정렬 상태를 모니터링합니다. IEC 60529 시험은 완제품 인클로저에 적용되며, 이 기계가 기여하는 부분은 개스킷이 균일하게 압축될 수 있도록 충분히 직선적인 밀봉면을 제공하는 것입니다.
    당사의 인클로저 디자인은 제품 세대가 바뀔 때마다 변경됩니다. 이것이 문제가 될까요?
    이것이 바로 이 공정을 선택해야 하는 이유입니다. 터렛 펀칭은 표준 공구를 사용하여 프로그램에 따라 케이블 진입부, 환기구 및 장착 패턴을 제작하며, 패널 벤딩은 프로그램 호출을 통해 수정된 도면으로 전환됩니다. 두 공정 모두 패턴별로 전용 다이가 필요하지 않으므로, 설계 수정이 이루어질 때 공구 제작 리드타임이 아닌 엔지니어링 시간만 소요됩니다.
    배터리 모듈 트레이를 제작해 주실 수 있나요?
    접힌 트레이, 맞습니다 — 두께 범위 내에 있는 4면 성형 부품입니다. 심압 성형 모듈 쉘은 아닙니다. 심압 성형은 패널 벤더나 터렛 펀치로는 수행할 수 없는 프레스 공구 가공 공정입니다. 귀사의 트레이 도면에 접고 용접하는 방식이 아닌, 단일 공정으로 성형된 둥근 모서리가 표시되어 있다면, 해당 부품은 다른 공급업체를 통해 조달해야 하며, 도면 검토 시 이에 대해 분명히 말씀드리겠습니다.
    인클로저 생산 셀의 비용은 얼마인가요?
    There is no list price, because the cell is configured to the part. Five factors move the figure most: frame type (cast iron is required for 2.0 mm at full bend length), forming length from 1600 mm to 2800 mm, punch specification (servo turret at 40 rpm versus mechanical, and the tooling package), automation level (manual load, truss loading, or a full cell with stacking), and scope — whether a laser and a press brake for thicker parts are included. A single bender and a full integrated line differ by roughly an order of magnitude. Send a cabinet drawing with your thickest part and we return a configured quotation within 24 hours.
    벤더뿐만 아니라 터렛 펀치도 필요한가요?
    이 분야의 경우, 대개 그렇습니다. 인클로저 패널에는 케이블 인입구, 환기 구멍 배열, 팬 컷아웃, 버스바 간격 및 장착 구멍 배열이 포함됩니다. 터렛 펀치기는 한 번의 클램핑으로 이 모든 공정을 완료할 뿐만 아니라 루버링 및 리브 성형까지 수행합니다. 펀칭과 벤딩 공정을 동시에 진행함으로써 벤더가 블랭크를 기다리는 시간이 전혀 발생하지 않는데, 이는 단일 기계 투자에서 가장 흔히 발생하는 실망스러운 부분입니다.
    이 셀은 무인 상태로 작동할 수 있나요?
    네, 자동 적재 및 적층 기능이 있습니다. STON 패널 벤더는 기본으로 자동 적재 및 하역 인터페이스를 갖추고 있으며, STON의 트러스 시스템 및 Bronte 로봇 팔은 물론 대부분의 로봇 팔 및 갠트리 브랜드와 호환됩니다. 무인 가동을 위해 EN ISO 13849-1 표준에 부합하는 완전 밀폐형 펜싱 및 레이저 가드가 주문 단계에서 사양으로 지정됩니다.
    What power and air supply is required?
    패널 벤더 및 접기 기계는 3상 380 V 전원과 0.6 MPa의 압축 공기가 필요합니다. 터렛 펀치 프레스는 380 V ±5%와 0.55 MPa의 공기가 필요하며, 서보 모델의 경우 총 전력 소비량은 약 3~5 kW입니다. 파이버 레이저 장비는 3상 380V 전원이 필요하며, 권장 공급 용량은 레이저 출력에 따라 달라집니다. 전압과 주파수는 출하 전에 수입국의 규격에 맞춰 설정됩니다.
    Can the machines be supplied to Turkey, Mexico, Russia or Southeast Asia?
    네, 이 지역들은 STON CNC의 주요 수출 시장 중 일부입니다. 출하 전 목적지에 맞춰 공급 전압과 주파수가 설정되며, CNC 및 HMI 언어는 현지화할 수 있고, 필요한 경우 기계에는 2006/42/EC 지침에 따른 CE 마크가 부착됩니다. 현지 서비스 네트워크에서 이미 지원되는 경우, FANUC, Siemens 및 Rexroth 제어 시스템을 지정할 수 있습니다. 수출 서류 처리, 포장 및 컨테이너 적재는 주요 수출 항구와 공항에서 1시간 거리에 위치한 칭다오에서 사내에서 직접 처리됩니다.
    How are spare parts and service handled outside China?
    STON CNC는 80여 개 수출 시장에서 1시간 이내 응답 및 48시간 이내 현장 문제 해결을 약속하며, 이를 위해 연중무휴 24시간 원격 기술 지원, 전용 예비 부품 창고, 그리고 기계 수명 기간 동안 제공되는 무료 소프트웨어 업그레이드를 뒷받침하고 있습니다. 기계 구매 시 권장 예비 부품 키트의 견적이 함께 제공되므로, 일반적인 마모 부품은 근무 도중에 항공편으로 긴급 배송받을 필요 없이 고객사의 창고에 비치해 둘 수 있습니다.
    유럽으로 수출할 때 CE 관련 서류를 제공해 주십니까?
    STON 기계는 CE 인증을 받았으며, 당사는 ISO 품질 인증을 보유하고 있습니다. EU로 제품을 출하할 때마다 기계 지침 2006/42/EC에 따른 기술 문서를 작성하며, 여기에는 EN ISO 12100에 따른 위험 평가와 EN ISO 13849-1에 따른 안전 관련 제어 기능이 포함됩니다. 보호 장치 구성(레이저 보호 장치, 완전 밀폐형 펜스, 움직이는 부품의 커버 등)은 사후에 추가되는 것이 아니라 주문 단계에서 미리 지정됩니다.
    커밋하기 전에 이를 어떻게 확인할 수 있을까요?
    가장 두꺼운 부품과 가장 작은 버스바 슈라우드가 포함된 전체 캐비닛 도면을 보내주십시오. 이 두 부품이 셀의 사양을 결정합니다. 당사의 사전 영업 엔지니어들이 도면을 검토한 후, 어떤 부품은 패널 벤더로 가공해야 하고 어떤 부품은 프레스 브레이크가 필요한지 안내해 드리며, 주문 전 실현 가능성을 확인하실 수 있도록 무료 샘플 부품을 제공해 드립니다.

    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.

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