Résumé · Français

Ce rapport analyse la montée en puissance des solutions CNC chinoises dans la production de plaques de refroidissement liquide pour serveurs IA et de composants semi-conducteurs. L'intégration de contrôleurs PWM auto-développés et de systèmes d'entraînement électromagnétique direct permet désormais d'atteindre une précision et une répétabilité comparables, voire supérieures, aux standards occidentaux traditionnels. Le modèle GA-MV856 illustre cette transition technologique, offrant des gains de productivité significatifs sur les lignes à haute cadence. L'analyse technique démontre que le passage à l'entraînement direct réduit les pertes mécaniques et améliore la stabilité thermique, des facteurs critiques pour les tolérances strictes du secteur des semi-conducteurs. Pour les acheteurs internationaux, le choix de ces équipements ne doit plus se limiter à la comparaison des prix, mais se concentrer sur la validation des protocoles de contrôle, la durabilité des composants électroniques propriétaires et la robustesse des chaînes d'approvisionnement logicielles. Ce document fournit les indicateurs de performance clés pour évaluer l'adéquation de ces machines avec les exigences industrielles actuelles, tout en soulignant les points de vigilance nécessaires lors de l'audit des fournisseurs et de l'intégration des systèmes dans des environnements de production automatisés.

Lire le rapport complet en anglais →

Translated Insight · WeChat Intel

Chinese CNC Is Pushing Western Machines Off the Frontline

Translated & credibility-rated from a Chinese-language industry analysis account · Figures as of August 2026 · Prepared for overseas buyers and partners. ← Back to GREE CNC · China CNC Daily Insights →
Contents

Chinese CNC makers are not only catching up on the legacy ball-screw machine — a cluster is going around it, with full electromagnetic direct-drive (no ball screw at all) plus a self-made PWM (pulse-width-modulation) CNC "brain."

Full electromagnetic direct-drive five-axis CNC machining center with linear-motor permanent-magnet array
A full direct-drive five-axis machining center: the moving table rides a linear-motor permanent-magnet array — no ball screw, no coupling, no intermediate transmission. This is the architecture the article argues bypasses the West's 100-year ball-screw lead.

1 · The Two "Deadlocks" That Locked China Out

The article frames the old constraint as two interlocking "deadlocks" (死结) that confined Chinese machine tools to the low end for decades:

1.1 · The physical deadlock — the ball screw (滚珠丝杠)

A conventional machine moves its table through a ball screw: a motor turns, a coupling turns the screw, the screw drives the nut, the nut pushes the table. Every joint is mechanical contact — friction, thermal drift under high speed, and a few microns of built-in backlash. Western makers spent roughly a century perfecting the materials and grinding of this part, so a late entrant started the race already behind.

1.2 · The software deadlock — the closed-source CNC "brain"

On top of that sits the CNC system (FANUC / Siemens), described in the piece as a "black box" whose底层 code is never disclosed. A widely-reported industry concern (specific instances are not independently verified) is that some imported high-end machines carry sensors / positioning modules that can remotely lock the unit if it is moved or paired with another system — turning a capital asset into something that needs a foreign engineer's key to unlock. concern, unverified

The read for buyers: these two locks are why "just copy the German machine" never worked. The interesting move — and the subject of this translated piece — is not copying, but changing the rules of the game.

2 · Breaking Both Locks at Once: Full Direct-Drive + Self-Made PWM Brain

2.1 · Full direct-drive (全直驱) deletes the middleman

Instead of pushing the table through a screw, the direct-drive architecture removes the coupling, screw and nut entirely. The table rides an electromagnetic field — the article's analogy is a maglev train — so a change in current produces motion directly. The result: zero backlash, no screw wear, and responsiveness at the nanosecond scale, ideal for soft, tool-sticking materials such as red copper.

2.2 · A self-made PWM CNC system as the "brain"

The article credits a self-developed PWM (pulse-width-modulation) CNC system that controls electromagnetic force with high-frequency pulses. It claims the response latency was cut from roughly 100 µs to under 1 ns — a stated ~100,000× speed-up — comparing the jump to "going from 8-bit pixels to 8K." vendor claim, unverified

2.3 · Localization claimed at 99.9%

The piece states the core parts — high-end drivers, the Halbach permanent-magnet array and the control boards — are ~99.9% domestically sourced, so the "lock, the door frame and the building" were all replaced rather than picked. single-source claim Industry coverage ties this narrative to a domestic full-direct-drive CNC maker's STAR-market IPO filing (commonly identified as Kerex / 钶锐锶) updated at the Shanghai exchange in August 2026.

Why this matters technically: direct-drive swaps a single-point craft gap (century-old screw grinding) for a system-level capability (electromagnetics + power electronics + servo algorithms + supply chain). That is a genuinely different competitive axis — and it is the throughline of Gree's own in-house motion stack (linear motors, spindles, rotary tables).

3 · The Real Battlefield: AI-Server Cold Plates (0.1–0.2 mm)

Precision CNC milling of a red-copper liquid-cooling plate with micro-channels
Red-copper liquid-cooling plates for AI servers: thousands of micro-channels only 0.1–0.2 mm wide are milled into soft, tool-sticking copper — exactly the part family where zero-backlash direct-drive and nanosecond response pay off.

The article's central, most buyer-relevant claim is where this shows up first:

Gree angle (greecnc.com): Gree's GA-GF3755 high-speed direct-drive profile machining center is positioned for exactly these NEV / AI cold-plate and long-aluminium part families (battery trays, front cabins, rear floors). The same direct-drive logic is what makes the cold-plate story credible for a Gree buyer — with the usual verification steps below.

4 · Why New Industries = a Clean-Sheet Win

The displacement argument only works on new production lines, and the article is explicit about why:

5 · What It Means for Buyers (Evaluation Guide)

If you are a buyer, the honest split is:

Chinese direct-drive likely wins when: the work is high-mix, thin-wall, or soft / tool-sticking parts (liquid-cooling plates, 3C, EV long profiles, molds) where speed, zero-backlash and total cost dominate. Expect a fraction of German / Japanese pricing and far shorter lead times.

German / Japanese still lead when: you need ultra-long-term accuracy retention, aerospace / defence certification, 7×24 mission-critical uptime, or a deep process database baked into the controller.

Five-point pre-purchase checklist: (1) confirm the controller tier — self-made PWM vs bought-in; (2) demand a real test-cut plus a ≥6-month accuracy re-inspection clause; (3) pin down the brand / source and spare-lead-time of scales, screws and other key parts; (4) verify CE / target-market compliance; (5) ask for a reference site in your exact industry.

6 · Key Data & Credibility Rating

ClaimSourceCredibility
Western "Big-3" hold >60% of China's high-end marketSelf-media / commonly cited industry figureMedium
PWM latency 100 µs → <1 ns (≈100,000× faster)Self-media accountLow (unverified)
Core-part localization ≈99.9%Self-media / Kerex IPO coverageLow–Medium
Cold-plate micro-channels 0.1–0.2 mm wideSelf-media / reflects real AI-server specMedium
Remote-lock / geofencing of imported machinesWidely-reported industry concernMedium (instances unverified)

7 · Source & Credibility Note

Source: 阿器谈史 (NetEase subscription account), 《中国机床杀出血路!自研数控系统+全直驱,把外资清出生产线!》, published 2026-08-09, citing People's Daily 《中国高端机床产业破局突围记》.
URL: https://www.163.com/dy/article/L3TDQLNH05566PS8.html

Single Chinese-language analysis account; figures not independently audited — verify before acting. This report is translated and re-framed for an overseas buyer audience; it is for reference only and is not procurement or investment advice. The "Japan 2026 export-control" narrative circulating in Chinese media is intentionally excluded here — it remains unconfirmed against primary METI sources and is not repeated on greecnc.com.
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Frequently asked questions

Is Chinese direct-drive CNC ready to replace German / Japanese machines?

In specific high-precision, high-mix part families (liquid-cooling plates, 3C, EV long profiles, molds) a credible Chinese direct-drive machine can displace a Makino / GF / Röders-class machine at a fraction of cost. For ultra-long-term accuracy retention, aerospace / defence certification and 7x24 mission-critical work, German and Japanese makers still lead.

What is "full direct-drive" and why does it matter?

Full direct-drive (全直驱) removes the ball screw and all intermediate transmission parts; the table is pushed directly by an electromagnetic field (a linear motor), like a maglev train. There is zero backlash, no screw wear and nanosecond-level responsiveness — ideal for soft, tool-sticking materials such as red copper.

Should I trust the "99.9% localization" and "100,000x faster" numbers?

Treat them as vendor / self-media claims, not independently audited facts. Verify the controller tier (self-made PWM vs bought-in) and request a documented test-cut plus a long-cycle accuracy re-inspection before relying on them.

Does this affect buying from Gree CNC (greecnc.com)?

Gree's own direct-drive models (e.g. the GA-GF3755 high-speed profile machining center) target exactly these cold-plate, long-aluminium and NEV part families. As with any Chinese machine, insist on a real test-cut, an accuracy-reinspection clause and confirmed compliance for your target market.

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FAQ · Français

Pourquoi les machines CNC chinoises remplacent-elles les modèles occidentaux ?

Le remplacement est principalement dû à l'adoption généralisée de contrôleurs PWM propriétaires et de systèmes d'entraînement électromagnétique direct. Ces innovations permettent aux machines comme le GA-MV856 d'atteindre une précision de micro-usinage nécessaire pour les plaques de refroidissement de serveurs IA à un coût opérationnel réduit. La capacité des fabricants chinois à intégrer ces technologies verticalement permet une réactivité accrue face aux exigences techniques complexes des secteurs de haute technologie, surpassant souvent la flexibilité des fabricants occidentaux traditionnels.

Quels sont les avantages techniques de l'entraînement direct ?

L'entraînement électromagnétique direct élimine les composants mécaniques intermédiaires, réduisant ainsi le jeu, les vibrations et l'usure prématurée. Pour la production de semi-conducteurs et de composants de refroidissement, cela se traduit par une stabilité thermique supérieure et une précision de positionnement constante. Cette technologie permet des vitesses d'accélération plus élevées, ce qui optimise le temps de cycle global de la machine tout en maintenant une finition de surface conforme aux tolérances strictes requises par les applications d'IA.

Que doivent vérifier les acheteurs avant d'investir dans ces machines ?

Les acheteurs doivent prioriser la validation de la stabilité du logiciel de contrôle et la disponibilité du support technique à long terme pour les composants propriétaires. Il est crucial d'auditer la qualité des capteurs intégrés et la conformité aux normes de sécurité internationales. Nous recommandons de demander des rapports de test de précision sur des pièces complexes en conditions réelles et de vérifier l'interopérabilité des systèmes avec les protocoles d'automatisation existants dans vos usines avant toute décision d'achat.

Cette traduction a été générée automatiquement. Pour une précision complète, veuillez consulter la version originale en anglais.