XLPE副牌,高压电缆料圈子里那个翻车最狠的角色

产品中心 发布时间: 2026-09-13 2559 阅读

There is an unspoken hierarchy of disdain in the circle of high-voltage cable material manufacturers: those making 220kV extra high-voltage materials look down on those making 10kV medium-voltage materials, and those making 10kV materials look down on those making low-voltage electrical wire materials. Interestingly, each year the materials that suffer the most batch failures are precisely the looked-down-upon low-voltage and medium-voltage XLPE materials—insufficient crosslinking, cracking of the insulation layer, or excessive impurities leading to partial discharge failures, resulting in entire batches of cables being scrapped year after year.

To put it bluntly, in the XLPE category, the further down you go, the more people dare to use cheaper materials. Genuine high-voltage materials are indeed expensive, but you can't just use substandard materials to cut corners for low-voltage materials either—the temperament of cross-linked polyethylene is more stubborn than you think. Today, we'll explain this category thoroughly.

What is XLPE, and what exactly is cross-linked?

XLPE, cross-linked polyethylene. Ordinary polyethylene is thermoplastic and melts when heated; after cross-linking, chemical bonds form between molecular chains, creating a three-dimensional network structure—it no longer melts when heated, the heat resistance temperature jumps from 70 degrees to over 90 degrees, and the electrical insulation performance also improves.

Why use XLPE for cable insulation? It's because the higher the voltage in the power grid, the more demanding the insulation's heat resistance and electrical performance requirements are. Ordinary PE softens at 90 degrees, while XLPE can work at 90 degrees for long periods and can withstand short-term temperatures up to 250 degrees during a short circuit. The insulation layers of medium and high-voltage cables are almost all XLPE.

There are two ways of crosslinking: one is peroxide crosslinking (chemical crosslinking), where a peroxide crosslinking agent is added during granulation, and after extrusion, it is crosslinked at high temperature in a vulcanization tube; the other is silane crosslinking (hot water crosslinking), where silane is pre-grafted in the resin and, after extrusion, it is hydrolyzed and crosslinked in a hot water tank. The XLPE grades corresponding to the two processes are different, so don’t confuse them.

Global Landscape: Dow's ENDURANCE series and HFDB grades are benchmarks for high-voltage cable materials; Borlink series from Borealis/North European Chemicals holds a significant market share in ultra-high-voltage and submarine cables; LyondellBasell's Lupolen grades are widely used in medium- and low-voltage cables. Together, these three companies account for more than half of the global XLPE cable material capacity. SABIC, Hanwha Chemical, and LG Chem are in the second tier.

Where does the secondary card come from, and how is it separated from the return material?

XLPE subsidiary grade, definition remains unchanged: batches from the same manufacturer and the same grade that do not fully meet factory inspection standards. The key indicators for XLPE are gel content (degree of cross-linking) and impurity content — gel content determines the degree of cross-linking, and impurity content determines partial discharge performance. The requirement for impurities in high-voltage cable materials is at the ppb level (parts per billion). If the subsidiary grade has excessive impurities, the cables produced from it will fail partial discharge testing.

Four main sources: leftover material from starting and stopping the equipment, transitional material from grade switching, batches affected by process fluctuations, and leftover material from secondary lines. The main risks for XLPE's secondary grades are impurities and gel content—if impurities are present, partial discharge will fail; if the gel content is insufficient, crosslinking will be inadequate, and heat resistance will drop.

Boundary with recycled material: XLPE secondary brand uses original factory virgin particles and has never undergone a cross-linking reaction. Recycled material is XLPE cable insulation that has been cross-linked and then ground up—once PE is cross-linked, it does not melt when reheated and cannot be extruded and molded, it can only be used as low-end filler. For manufacturers making cable insulation, if they use recycled XLPE, the extruder will clog the die head. This difference is more obvious than in other product categories.

Dow: ENDURANCE, the benchmark for high-voltage cable materials

Dow's ENDURANCE series is a benchmark brand for insulation materials of high-voltage direct current (HVDC) and alternating current (HVAC) cables. The HFDB series grades focus on high voltage resistance and water blocking performance, and are most commonly used in the insulation layers of medium- and high-voltage cables. Dow's latest launch in the ultra-high voltage field, the 525kV HVDC insulation system, is aimed at offshore wind power and long-distance transmission — very few companies in the world can produce materials at this level.

The source of Dow's XLPE secondary grade mainly comes from transitional materials for grade switching in American and European plants. Manufacturers making medium- and low-voltage cable insulation use Dow's secondary grade instead of the primary grade, significantly reducing material costs. But be aware: Dow's high-voltage secondary grades have extremely strict impurity control, so even as a secondary grade, the impurity level is cleaner than the primary grades of the second tier — using Dow's secondary grade for medium-voltage cables below 10kV leaves a large margin for partial discharge. Packaging comes in large and small sizes; large packaging is suitable for continuous extrusion lines in cable factories, while small packaging is suitable for sampling.

Nordic Chemical/Borlink: Borlink, a major player in ultra-high voltage and submarine cables

Borealis and Borouge (a joint venture between Borealis and UAE's ADNOC) have a significant market share in ultra-high voltage and submarine cables with their Borlink series. The Borlink LS4201S grade is specifically designed for high-voltage applications above 220kV, with a maximum operating electric field of 10kV/mm. Borealis and Borouge are expanding production—increasing their XLPE and semiconductive material capacity in Sweden, the UAE, and South Korea by twofold by the end of 2027 to serve offshore wind power and grid upgrades.

The Borlink sub-brand mainly comes from European and Middle Eastern grades used as transitional materials. Manufacturers that produce medium voltage cables use Borlink sub-brand materials for insulation layers, leaving a large margin for temperature rating and electrical performance. One point to note: the sub-brand of Borlink’s ultra-high voltage grades generally does not flow to the medium- and low-voltage markets — this level of material is inherently scarce, and the sub-brands are also locked by major cable manufacturers. The Borlink sub-brands available to small and medium-sized manufacturers are mainly transitional materials of medium-voltage grades.

Leander Basel: Lupolen, the popular choice for medium and low voltage cables

The Lupolen series from LyondellBasell, which covers LDPE and XLPE cable insulation materials, is widely used in the medium and low voltage cable sector. Compared with Dow and Borealis, Lupolen is positioned more affordably—manufacturers producing building wires, low-voltage power cables, and construction wiring have a high proportion of Lupolen grades in use.

The source of the Lupolen sub-brands mainly comes from batches with process fluctuations in European and Southeast Asian installations. Factories making low-voltage cable insulation use Lupolen sub-brands, as the material cost advantage is significant. One point to note: Lupolen XLPE grades are divided into two process routes, peroxide crosslinking and silane crosslinking. Before purchasing sub-brands, first confirm which route matches your extrusion process—peroxide crosslinking requires vulcanization tubes, while silane crosslinking requires a warm water bath. If the wrong process route is used, crosslinking will not occur at all.

Three pitfalls, those who make cable insulation material should avoid them

First pitfall: Confusing crosslinking methods. Peroxide-crosslinked compounds and silane-crosslinked compounds cannot be used together. Compounds crosslinked with peroxide contain crosslinking agents, and after extrusion, crosslinking must be completed in a high-temperature vulcanizing tube; compounds crosslinked with silane rely on hydrolysis for crosslinking and need to be immersed in a hot water bath after extrusion. If you use the wrong one, crosslinking won't occur, and the insulation layer will melt as soon as it is heated — resulting in an entire batch of cable being scrapped. Check the grade suffix before receiving to confirm the process route.

The second pitfall: Exceeding impurity limits in making high-voltage cables. The requirement for impurities in XLPE cable materials is at the ppb level. If a secondary brand allows impurities to slip through, the resulting cable will fail the partial discharge test—partial discharge is a mandatory factory test for high-voltage cables, and failing it means the product is scrap. For cables above 10kV, the impurity standards for secondary brands must be strictly controlled; for wires below 1kV, the impurity requirements can be somewhat relaxed.

The third pitfall: insufficient gel content. The degree of crosslinking is measured by gel content, generally requiring over 70%. If a secondary brand has low gel content, both the heat resistance and mechanical properties of the insulation layer will decline—the cable will age prematurely at an operating temperature of 90 degrees. Have the gel content tested before receiving the goods, and reject it directly if it is below 70%.

Cologne Warehouse Spot|XLPE New Customer

Main promoted brands: Dow, Nordic Chemicals/Borealis, LyondellBasell.

Main grades: ENDURANCE/HFDB, Borlink (LS4201S), Lupolen.

Packaging specifications: Small-pack secondary brands and boxed secondary brands use small packaging, large-pack materials/ton bags use ton bags, and are packaged and stocked according to workshop usage.

Warehouse stock: XLPE warehouse stock is usually between 3,000-6,000 tons, of which small package secondary brand stock is 500-800 tons, boxed secondary brand stock is 200-400 tons, and large bag/ton bag material stock is 2,500-4,800 tons.

Supply Guarantee: Direct procurement from the original factory with original packaging, batch numbers provided with the goods.

Selection Mnemonics and a Case from Shaoxing

What is most feared when making XLPE off-brand products? For high-voltage cables, partial discharge cannot pass the test, and rework costs are painfully high; for low-voltage cables, insufficient cross-linking causes heating and softening when powered. When selecting materials, if the cross-linking route is not clear, and peroxides and silanes are confused, the insulation layer extruded overnight will tear easily. Any one of these three pitfalls costs real money.

There is a customer in Shaoxing who makes low-voltage power cables. They previously always used the genuine Lupolen silane cross-linked material from LyondellBasell for insulation, but the material cost was hard to reduce. Later, they switched to a batch of off-brand Lupolen silane cross-linked material, with a measured melt index of 2.1 (nominal 2.0), measured gel content of 78% (nominal above 75%), and impurity levels within acceptable ranges for low-voltage cables. When extruded into the water trough, the cross-linking degree met the standard, the insulation layer appeared smooth without bubbles, and the electrical withstand test passed on the first try. Material costs dropped by over 600 per ton, saving over a hundred thousand yuan in a year.

This is how off-brand XLPE is used—the technical margin for low-voltage cables is inherently large, so minor fluctuations in off-brand specifications can be fully accommodated within the process window. Ningbo Kolon New Materials Co., Ltd. has been making off-brand XLPE cable materials for imported products for many years, sourcing from Dow, Borealis, and LyondellBasell, and takes on many medium- and low-voltage cable insulation projects each year.

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