Walk into a hot spring resort, a five-star hotel lobby, a KTV corridor, or a modern subway station, and the walls look like marble. The veins flow in soft grey and white, the surface reflects light with a calm, polished sheen, and the overall impression is one of premium stone. But very few of these walls are actually marble. Most are decorative PVC sheets — engineered panels that replicate the visual language of natural stone at a fraction of its cost, weight, and installation complexity.
The economics are the story. Natural marble, quarried, cut, and shipped across the world, typically costs 150,000-400,000 — before labor, before transport, before the structural engineering required to support the weight.
Decorative PVC marble sheets change every variable in that equation. A 3-5mm PVC UV marble panel costs roughly $3-10 per square meter — one-third or less of natural stone's material price. It weighs 20-25 kg per full 1220×2440mm panel — about 7-8 kg per square meter, one-tenth or less of stone's weight — so standard drywall substrates and standard construction crews handle it without special engineering. The panels cut with ordinary woodworking tools, install with adhesive or mechanical fixings in a fraction of the time, and clean with a damp cloth. The installed cost lands at 25-40% of a natural stone installation, and the visual result — especially with a high-quality marble-pattern transfer film and UV coating — is convincing at arm's length and beyond.
The market has responded. Across Asia, the Middle East, and increasingly Europe and the Americas, PVC marble sheets have become a standard specification for hotels, office buildings, shopping malls, clinics, and every other interior application where the look of stone is desired but its cost is not. This is not a niche product — it is a volume building material, produced on industrial extrusion lines at hundreds of thousands of square meters per year.
This is exactly what the Chenxing PVC UV Marble Sheet Making Line is built to do: take PVC dry blend, extruder it into a dimensionally stable 1220×2440mm sheet, laminate a marble-pattern film online, apply UV surface treatment, and deliver finished decorative panels at 1,200-1,350 m² per 24 hours. One line, one operator crew, a full artificial marble sheet factory.
The Chenxing 1220mm marble sheet line is a continuous, 11-station process that converts raw PVC powder into finished decorated panels. Every station contributes to one of three goals: correct composition (mixing), correct geometry (extrusion and calibration), or correct appearance (laminating and UV treatment).
PVC Resin, Calcium Carbonate, Stabilizer, Lubricants, Pigments │ ▼ [1. 500/1000 High-Speed Mixer] ──── dry blend compounding: │ PVC powder + CaCO₃ filler + additives │ hot-mixed to homogeneous dry blend ▼ [2. Auto Loader] ──── automatic transfer of dry blend to extruder hopper, │ no manual handling, continuous feed ▼ [3. SJSZ80/156 Conical Twin Screw Extruder] ──── melts and plasticizes the │ dry blend; conical twin screws provide high compression │ and uniform plastication for powder feed ▼ [4. Mould (Sheet Die)] ──── melt spread to 1220mm wide ribbon; │ die lips set the sheet thickness (3-5mm) ▼ [5. Three-Calender with Online Laminating] ──── molten sheet polished to │ precise thickness and mirror surface; marble-pattern │ PVC film laminated onto the surface online ▼ [6. Cooling Group Rollers] ──── progressive cooling of the laminated sheet │ below deformation temperature, dimensionally locked ▼ [7. Haul-off Machine] ──── synchronized traction pulls the sheet at constant │ speed, maintaining uniform thickness and straightness ▼ [8. Transversal Cutter] ──── sheet cut to 2440mm panels across its width ▼ [9. Edge Cutter] ──── trimming edges to exact 1220mm width, clean square edges ▼ [10. Conveyor] ──── panels transferred to the UV treatment stage ▼ [11. UV Treatment] ──── UV coating applied and cured: scratch resistance, │ anti-yellowing, easy-clean surface ▼ [Finished: 1220×2440mm PVC UV Marble Decoration Panels]
1. The 500/1000 High-Speed Mixer — Where the Sheet's Quality Is Decided. Before extrusion begins, the formulation must be homogeneous. A marble sheet is not pure PVC — it is a filled compound: PVC resin, 30-60% calcium carbonate filler (for rigidity, dimensional stability, and cost), heat stabilizers, lubricants, processing aids, impact modifiers, and pigments. The high-speed mixer's rotating blades generate frictional heat that raises the compound to 110-120°C, allowing the additives to coat every resin particle uniformly. The result — a dry blend powder with every ingredient distributed at the microscopic level — is the foundation of every downstream quality attribute: consistent plastication, stable sheet density, uniform color, and predictable shrinkage. For compounding flexibility, Chenxing also supplies the high-speed mixer as an integrated part of the line package.
2. The Auto Loader — Continuous Feed, No Starvation. The dry blend is transferred automatically from the mixer to the extruder hopper. Manual powder loading introduces inconsistency — a starved extruder produces thin, wavy sheet; an over-fed one floods and surfs. The auto loader maintains a constant hopper level, letting the extruder run at stable output around the clock.
3. The SJSZ80/156 Conical Twin Screw Extruder — The Powerhouse. The heart of the line is a SJSZ80/156 conical twin screw extruder — screw diameter 80mm at the feed end, 156mm effective length ratio geometry typical of conical twin screw machines designed for rigid PVC powder processing. Conical twin screws are the industry standard for PVC sheet extrusion for three reasons:
High compression ratio: The screw root diameter increases from feed to discharge, compressing the low-density powder into a dense melt — essential for processing fluffy dry blend that a single screw would struggle to feed.
Uniform plastication: The intermeshing counter-rotating screws knead the melt in a figure-eight flow pattern, providing the shear and mixing that distributes high filler loadings uniformly. For marble sheets with 40-60% calcium carbonate, this uniform dispersion prevents the agglomerates and specks that would ruin the panel's surface.
Powder feed capability: Conical twin screws accept dry blend directly — no pelletizing step needed. The line skips the compounding/pelletizing stage that a single-screw line would require, saving equipment cost, energy, and process time.
The extruder's temperature control is critical: PVC melt in the sheet die must be uniform within ±2-3°C across the 1220mm width, or the sheet thickness and surface finish will vary from edge to edge. The line specifies Omron temperature meters and SIEMENS contactors/relays for this purpose.
4. The Sheet Die (Mould) — Spreading the Melt. The melt exits the extruder head and enters a flat sheet die that spreads the polymer from the round extruder flow to a 1220mm-wide ribbon. Die lip adjustment sets the base thickness — the final gauge is achieved in the calender, but the die must deliver a uniform melt stream across the full width to avoid streaks, thick edges, or die lines.
5. The Three-Calender with Online Laminating — Geometry and Appearance in One Step. The molten ribbon passes through a three-roll polishing calender — three precision-ground, temperature-controlled steel rolls that compress the sheet to exact thickness while imparting a mirror-like surface finish. The calender serves two simultaneous functions:
Thickness calibration: The gap between the rolls — and the relative roll speeds — determines the final sheet gauge. Precision roll grinding and uniform roll temperature give the sheet its dimensional accuracy: flat, uniform-thickness panels that stack and install perfectly.
Surface polish: The polished steel roll surface transfers to the molten polymer, producing the smooth, glossy face that decorative panels need.
The calender is also where online laminating happens: a marble-pattern PVC film — printed by transfer printing technology to imitate natural stone — is fed onto the sheet surface at the calender nip, where melt heat and roll pressure bond it permanently to the substrate. Because the film is laminated while the sheet is still hot and compliant, the bond is complete — no air bubbles, no edge lifting, no delamination over the panel's service life. Online laminating eliminates the separate film-lamination machine, labor, and handling that a two-step process would require.
6. Cooling Group Rollers — Locking the Geometry. The laminated sheet, still warm and slightly compliant, passes over a group of cooling rollers. Water-cooled rolls extract heat progressively from the sheet's surfaces, cooling it below its deformation temperature before the haul-off grips it. Progressive cooling matters: rapid quenching on one side would warp the panel; controlled multi-roll cooling keeps the sheet flat and stress-balanced. For plants where mains water temperature is high or unstable, the cooling circuit can be served by an SML air-cooled chiller to guarantee consistent cooling performance through summer peaks.
7. The Haul-off Machine — Synchronized Traction. The haul-off grips the cooled sheet and pulls it at constant speed, synchronized with the extruder output via the line's drive system. Haul-off speed relative to calender speed controls the sheet's draw-down — too fast stretches the sheet thin, too slow allows it to thicken. Inverter control (SIEMENS/ABB/DELTA drives) makes the synchronization exact, so the sheet leaves the line at uniform thickness and straightness, meter after meter.
8 & 9. The Transversal Cutter and Edge Cutter — Clean Panels at Exact Size. The continuous sheet is cut across its width (transversal cutting) at 2440mm intervals, producing full 1220×2440mm panels. The edge cutter then trims the sheet's longitudinal edges to exact 1220mm width, producing clean, square edges that butt together neatly during installation. Precise cutting matters for a decorative product: a panel 5mm short of spec is a rejected panel.
10. The Conveyor — Smooth Transfer. Finished panels transfer on a roller conveyor from the cutting station to the UV treatment stage. Rollers (rather than belts) support the full panel area without surface marking.
11. UV Treatment — The Finish That Sells. The final station applies a UV-curable coating to the laminated surface and cures it under UV lamps. The cured UV layer transforms the panel's service properties: it is scratch-resistant (keys, trolleys, and cleaning equipment do not mark it), abrasion-resistant, and anti-yellowing (the marble film's colors stay true for years under interior lighting). It also makes the surface non-porous and easy to clean — a damp cloth wipes away fingerprints, grease, and marker ink. For high-traffic environments — hotel corridors, KTV rooms, subway concourses — this easy-clean, durable finish is the property that keeps the panels looking new through years of use.
| Parameter | Value |
|---|---|
| Thickness | 3-5 mm |
| Panel size | 2.44 × 1.22 m (1220×2440mm) |
| Panel weight | 20-25 kg per panel |
| Output | 1,200-1,350 m² / 24 h (approximately 400-450 panels per day) |
| No. | Equipment | Qty |
|---|---|---|
| 1 | SJZ80/156 Conical Twin Screw Extruder | 1 |
| 2 | Mould | 1 |
| 3 | Three-Calender | 1 |
| 4 | Cooling Calendar | 1 |
| 5 | Haul-off | 1 |
| 6 | Cutting Unit | 1 |
| 7 | Dropper for Final Products | 1 |
| 8 | Control Cabinet | 1 |
| Component | Brand |
|---|---|
| Temperature meter | Omron |
| Contactor | SIEMENS |
| Relay | SIEMENS |
| Transducer | ABB / DELTA |
| Power light & button | SIEMENS |
| Inverter | SIEMENS ABB DELTA |
| Main motor | SIEMENS |
| PLC control | SIEMENS |
The electrical specification is built around global-standard automation brands. A SIEMENS PLC coordinates the entire line — extruder screw speed, calender roll speeds, haul-off speed, cutter timing, and UV station conveyor speed are all linked through the control program, so the line runs as a single coordinated machine rather than eight independent stations. Omron temperature meters give precise, reliable zone control on the extruder barrels and die. ABB/DELTA inverters provide the variable-speed drives throughout.
Feature: The line is built around a conical twin screw extruder — 80mm feed-end diameter, 156mm effective geometry — specifically engineered for rigid PVC dry blend processing.
Advantage: Marble sheet formulations carry 30-60% calcium carbonate filler, which demands the high compression ratio and intense kneading that only conical twin screws provide. The intermeshing counter-rotating screws compress the low-density powder, distribute the filler uniformly, and deliver a homogeneous melt with no undispersed agglomerates. A single-screw line would require pre-pelletized compound — an extra process step and an extra machine.
Benefit: The dry blend goes straight into the extruder, eliminating the compounding/pelletizing stage. High-filler formulations process reliably, panel surfaces are uniform with no specks or agglomerates, and the finished sheet has consistent density and mechanical properties — which is what keeps rejection rates low and the 24-hour output high.
Feature: The line includes a three-roll polishing calender that compresses the molten sheet to precise thickness while imparting a mirror surface, with marble-pattern film laminated onto the surface at the calender nip — all online, all in one pass.
Advantage: Separate lamination would require a second machine, a second heating cycle, adhesive application, and careful alignment — plus the delamination risk that any adhesive joint carries. Online lamination at the calender uses the sheet's own melt heat to bond the film molecularly to the substrate, with zero adhesive and zero delamination risk.
Benefit: The finished panel has a flat, dimensionally accurate substrate and a marble pattern that is permanently part of the surface — the pattern cannot lift, bubble, or peel over years of service. Panel flatness at decoration-grade level means the panels butt together seamlessly on the wall, and the true-to-life marble film means the installation reads as stone, not as plastic.
Feature: The final station applies and cures a UV coating over the marble film, producing a hard, clear protective layer on the panel surface.
Advantage: Uncoated PVC film scratches easily — a cart wheel or a cleaning brush leaves permanent marks. The UV layer's hardness and abrasion resistance protect the decorative surface through years of high-traffic service, while its anti-yellowing chemistry keeps the white and light-grey marble tones from discoloring under interior lighting.
Benefit: In hotels, KTV rooms, and subway stations, walls take abuse. The UV-coated panel shrugs it off — fingerprints wipe off, marker ink wipes off, scuffs polish out. Facility managers spend less on maintenance and repainting, and the panels look new for years. That durability is what makes PVC marble panels a specification-grade product rather than a budget compromise.
Feature: The line is controlled by a SIEMENS PLC with Omron temperature meters and SIEMENS/ABB/DELTA inverters throughout, coordinating every station's speed and temperature from a single control cabinet.
Advantage: Sheet extrusion is a coupled process — extruder output, calender speed, haul-off speed, and cutter timing must all stay in ratio or the sheet thickness and length drift. Manual adjustment of each station independently is error-prone and slow to respond. The PLC links all stations, so a speed change at the extruder propagates automatically through the calender, haul-off, and cutter.
Benefit: One operator manages the line from the control cabinet, monitoring temperatures, speeds, and alarms. Two to three workers run the full line per shift — extruder operator, calender/film observer, and cutting/packing. Twenty-four-hour continuous production is stable because the automation does not get tired or distracted. Labor cost per square meter drops, and overnight production needs no extra engineering oversight.
Feature: The line produces 1,200-1,350 m² of finished sheet per 24 hours — 400-450 full 1220×2440mm panels per day at 3mm thickness.
Advantage: This output level is matched to the demand curve of the decoration panel market: a single line supplies multiple hotel projects, a network of distributors, or a building materials retail chain. At 3mm thickness and 20-25 kg per panel, the daily output weighs 8-11 tons — a manageable logistics volume for palletized dispatch.
Benefit: The volume economics work: at 3,600 to $13,500 per 24 hours, against operating costs dominated by raw material and energy. The capital payback period for a marble sheet line in a healthy market is typically measured in months to a couple of years — the 24-hour output is what makes that arithmetic work.
Feature: The PVC marble sheet is inherently moisture-proof and mold-resistant — PVC does not absorb water, warp, or support fungal growth.
Advantage: Natural stone, gypsum board, and many wood-based panels degrade in humid environments — stone develops efflorescence and staining, gypsum swells and molds, wood-based panels delaminate. PVC panels are dimensionally stable in steam, spray, and condensation environments.
Benefit: Hot spring resorts, bath clubs, swimming pool changing areas, bathrooms, and coastal buildings can use the full marble look without the moisture risks of stone or the mold risks of organic materials. The panels install in these demanding environments and stay flat, clean, and beautiful — which is exactly why the product's primary application list reads like a registry of high-humidity venues.
Feature: The marble appearance is produced by transfer-printed PVC film laminated at the calender — so the pattern and color are determined by the film roll on the machine, not by the machine itself.
Advantage: A fabricator can run grey Calacatta marble this week, brown Emperador next week, and black Marquina after that — each pattern is simply a different film roll loaded at the calender. No tooling change, no recipe change, no line reconfiguration.
Benefit: One line covers the full marble product family — white, grey, beige, black, green, and gold veins in any combination the transfer printing supplier offers. The producer serves multiple customers and projects with different stone preferences from a single machine, never holding dead inventory of slow-moving patterns. The transfer printing technology reproduces the stone's color and reflectance faithfully — the panel's high imitation degree is what lets it pass the close inspection of architects and interior designers.
Feature: A 1220×2440mm panel at 3-5mm thickness weighs only 20-25 kg — roughly 7-8 kg per square meter.
Advantage: Natural marble at typical 20mm thickness weighs 50-60 kg per square meter — eight times heavier. The weight difference cascades through the entire construction chain: transport cost (more panels per truck, lower freight per square meter), handling (one worker carries a panel vs. a crew and equipment for stone slabs), wall substrate (standard drywall or block walls need no reinforcement), and installation time (adhesive and mechanical fixings vs. mortar beds and anchors).
Benefit: For high-rise buildings where dead load is a structural constraint, for renovation projects where the existing walls cannot carry stone, and for contractors who price installation by the day, the lightweight panel is the decisive advantage. The installed cost lands at a fraction of stone's, the schedule compresses, and the visual result satisfies the design intent.
Hot Spring Resorts & Bath Clubs. Steam, spray, and constant humidity are the natural enemies of most wall materials — and the natural habitat of PVC marble sheets. The moisture-proof, mold-resistant panels line the changing rooms, rest areas, and corridor walls of spa facilities worldwide, delivering the stone aesthetic that resort guests expect without the maintenance nightmare stone would create in a steam environment.
KTV & Entertainment Venues. Dark, atmospheric interiors with heavy traffic and constant cleaning — KTV operators demand walls that look premium under dramatic lighting and survive nightly parties. The UV-coated surface wipes clean of spills, the marble film holds its color under colored spotlights, and the panels install fast, getting venues open sooner.
Hotel Lobbies, Corridors, and Guest Bathrooms. Hotels specify PVC marble sheets for the same reason they specify engineered stone in guest bathrooms: the look must be premium, the maintenance must be minimal, and the budget must survive procurement. A 300-room hotel uses thousands of square meters of wall paneling — the cost difference between PVC marble sheets and natural stone alone can fund a significant portion of the hotel's FF&E (furniture, fixtures, and equipment) budget.
Office Buildings & Corporate Interiors. Reception walls, lift lobbies, and meeting room feature walls read as stone — projecting solidity and quality — at an installed cost that fits the corporate fit-out budget. The panels' flatness and square edges make them ideal for the clean, modern joinery of contemporary office design.
Subway Stations & Public Transit. High traffic, vandalism risk, and round-the-clock operation demand a wall material that is cheap to install, cheap to maintain, and easy to clean. PVC marble sheets deliver — the UV surface survives graffiti removal, the panels withstand incidental impact, and the marble pattern gives public spaces a dignified appearance on a public budget.
Retail & Healthcare. Shopping malls, clinics, and hospitals increasingly specify PVC marble sheets for feature walls and corridor paneling — the easy-clean surface meets healthcare hygiene requirements, and the stone look elevates retail environments at a fraction of stone's cost.
| Criterion | PVC UV Marble Sheet | Natural Marble |
|---|---|---|
| Material cost per m² | $3-10 | $30-80+ |
| Weight per m² | ~7-8 kg | 50-60 kg (20mm slab) |
| Thickness | 3-5 mm | 15-30 mm typical |
| Substrate requirement | Standard walls, no reinforcement | Structural reinforcement often required |
| Installation | Adhesive/mechanical, ordinary tools | Mortar, anchors, trained stone masons |
| Cutting | Woodworking tools | Stone cutting equipment |
| Moisture resistance | Excellent — no water absorption | Susceptible to efflorescence, staining |
| Maintenance | Wipe clean, no sealing | Sealing, polishing, periodic maintenance |
| Pattern variety | Unlimited transfer-printed patterns | Limited by quarry availability |
| Consistency | Uniform per batch | Natural variation |
The comparison table is the sales pitch. For every project where "stone look" is the requirement — not "stone material" — the PVC marble sheet wins on cost, speed, weight, and maintenance, with a visual result that satisfies all but the closest inspection.
Material cost is roughly one-third or less: natural marble runs 3-10 per square meter. The installed-cost gap is even larger — natural stone requires structural reinforcement in many applications, trained masons, mortar beds, and sealing, pushing installed cost to 70,000-150,000 in total installed cost by specifying PVC marble sheets.
The line produces 1,200-1,350 m² per 24 hours — approximately 400-450 full 1220×2440mm panels per day at 3mm thickness. At 4-5mm thickness the daily panel count adjusts downward proportionally (the sheet is heavier and cools more slowly, so line speed is reduced), but the square-meter output remains in the same range at the specified gauges. On a single-shift (8-hour) basis, the line produces roughly 400-450 m² — approximately 135-150 panels — which is the practical planning figure for a new operation's first month.
Yes — and this is a core design advantage of the line. The marble appearance comes from transfer-printed PVC film laminated at the three-calender, so changing the pattern is simply changing the film roll. Grey Calacatta today, beige Emperador tomorrow, black Marquina next week — no tooling change, no recipe change, no line reconfiguration. The producer can also run a plain white sheet (film skipped) for customers who will paint or apply their own finish. This pattern flexibility lets one line serve multiple customers and projects with different stone preferences, and keeps the product portfolio current without capital expenditure.
Yes — this is one of its strongest applications. PVC does not absorb water, so the sheets do not swell, warp, or delaminate in humidity. The material does not support mold or mildew growth, unlike gypsum board and many wood-based panels. The UV surface is non-porous and wipes clean, so steam, soap scum, and condensation leave no lasting marks. This is exactly why the product's primary markets — hot spring resorts, bath clubs, swimming pool areas — are the most humid environments in commercial construction. For bathroom and wet-area applications, PVC marble sheets are a specification-grade material, not a compromise.
The primary raw material is PVC resin (suspension grade, K-value 60-67 for rigid applications), compounded with calcium carbonate filler (30-60% by weight for marble sheet rigidity and cost), heat stabilizers (calcium-zinc or lead-free systems appropriate to the processing temperature), lubricants (internal and external), processing aids, impact modifiers, and pigments. The 500/1000 high-speed mixer blends these into a dry blend ready for the conical twin screw extruder. The marble pattern is supplied as transfer-printed PVC film rolls loaded at the calender. Chenxing provides a recommended starting formulation and can connect customers with compound suppliers; the high-speed mixer is included in the line package.
Two to three workers per shift operate the complete line. The extruder/control operator manages the line from the SIEMENS PLC control cabinet — monitoring temperatures, speeds, and alarms, and adjusting the marble film roll when it runs out. The calender/film observer watches the lamination point and the sheet surface for defects. The cutting/packing operator manages the cutter, edge trimmer, and finished panel stacking. Because the PLC coordinates all station speeds automatically, no worker needs to manually synchronize the calender, haul-off, or cutter — the automation does that. For 24-hour operation, three shifts require roughly 6-9 workers total.
The line is configured for solid (non-foamed) marble decoration sheets, and with formulation and die adjustments it can produce other rigid PVC sheet products in the 3-5mm range. Foam board (PVC foam sheet) requires a different extruder configuration — typically a dedicated foam line with a chemical foaming agent formulation, different screw design, and cooling calender stack — so a marble sheet line is not the right tool for foam board production. SPC flooring is produced on a different family of equipment — a twin-screw compounding extruder feeding a calender or a dedicated SPC sheet line. For the decoration sheet segment, the line covers solid marble sheets, solid plain color sheets, and laminated sheets; for adjacent products like PVC hot-cutting pelletizing for material recovery and PVC disc pulverizers for powder production, Chenxing supplies separate dedicated lines.
Step 1 — Define Your Product & Market: Tell us your target panel thickness (3-5mm), your daily output requirement, and the marble patterns you plan to offer. If you already supply the decoration panel market, share your existing product specifications; if you are entering the market, our engineers will recommend the standard 1220×2440mm configuration and the most popular marble patterns for your region.
Step 2 — Select Your Line Configuration: The standard package includes the 500/1000 mixer, auto loader, SJSZ80/156 conical twin screw extruder, sheet die, three-calender with online laminating, cooling rollers, haul-off, transversal cutter, edge cutter, conveyor, UV treatment station, and SIEMENS PLC control cabinet. We provide the line layout drawing, utility requirements (power, cooling water, compressed air), and a complete quotation including the marble film lamination system and UV coating station.
Step 3 — Request a Quote from Nicole: Contact Nicole at +8615951187228 or ceo@cxsljx.com with your panel specification, target output, and destination port. We respond within 24 hours with a formal quotation, delivery schedule, and freight options. Chenxing provides installation supervision, operator training on the full 11-station process, and a recommended starting formulation for the marble sheet compound.
Step 4 — Commission and Start Producing Panels: After installation, our engineers supervise commissioning — die lip adjustment, calender roll gap setting, film lamination tuning, UV coating line speed, and haul-off synchronization — until the line produces saleable panels. Your team learns the complete process — mixing, extrusion, lamination, UV treatment — on a running line. Within the first weeks, the line is producing 1220×2440mm marble panels at 1,200-1,350 m² per 24 hours, with pattern flexibility and UV durability that let you compete directly with stone at one-third the cost.
For the complete PVC processing ecosystem, Chenxing also supplies: plastic crushers and plastic crusher for pipe scrap for edge trim and scrap recovery, plastic pelletizer for reprocessing reclaimed material, PVC disc pulverizers and SMP PVC waste pulverizers for powder production, screw feeders for metered material handling, vibrating screens for classification, and PVC shelf label strip extrusion lines for the soft PVC profile segment. For powder and grinding applications, the SMF disc grinding pulverizer, dual disc pulverizer, and SMP knife pulverizer complete the range; for the rigid pipe segment, the pipe extrusion line with caterpillar haul-off, dust-free pipe cutter, pipe coiler, and pipe belling machine serve the pipe market. As a single-source partner, Chenxing Machinery supports every step from raw material preparation to finished product.
Contact Chenxing Machinery Today:
Contact Person: Nicole
Phone / WhatsApp: +8615951187228
Email: ceo@cxsljx.com
Company: Zhangjiagang Chenxing Machinery Co., Ltd.
Website: www.chenxingmachinery.com