Дом - Новости - What to Check Before Changing Tail Seal Grease Suppliers Mid-Project

What to Check Before Changing Tail Seal Grease Suppliers Mid-Project

Sep. 21, 2026

Краткое содержание новостей

What to Check Before Changing Tail Seal Grease Suppliers Mid-Project means verifying that a replacement tail seal grease matches the tunnel boring machine (TBM), tail seal design, operating conditions, and project specifications before the switch is approved. Tail seal grease protects the brush seals from water, soil, grout, and abrasive particles while helping maintain pressure at the shield tail. A properly controlled supplier change can reduce leakage, unplanned stoppages, seal damage, and lifecycle cost for the contractor and project owner.

For procurement teams evaluating a TBM Chemicals Supplier, the objective is not simply to find a lower unit price. The new product must demonstrate technical equivalence, stable batch quality, documented traceability, and reliable delivery throughout the remaining drive. Huadingcheng supports this evaluation process as an experienced materials partner for infrastructure and tunneling applications.

What to Check Before Changing Tail Seal Grease Suppliers Mid-Project

Why Tail Seal Grease Is Critical in TBM Operations

Tail seal grease is injected into the annular space around the TBM tail brushes. It forms a lubricating and sealing barrier between the rotating shield and the stationary tunnel lining or backfill grout zone. Depending on the machine configuration, the grease may need to resist groundwater, bentonite slurry, conditioning foam, cement grout, soil fines, and high mechanical pressure.

The tail seal system typically includes:

  • Wire or polymer brush seals: the primary flexible sealing elements.
  • Grease injection lines: distribution channels that deliver grease to the seal chambers.
  • Grease pumps and metering units: equipment controlling pressure and consumption.
  • Tail skin and shield structure: the mechanical surfaces exposed to friction and contamination.
  • Backfill grout interface: a highly alkaline and abrasive environment behind the segment lining.

Insufficient grease can increase brush wear, frictional heating, and water ingress. Excessive or poorly selected grease can create high injection pressure, block lines, contaminate grout, or increase operating cost. Consequently, the grease specification must be treated as part of the TBM sealing system rather than as an interchangeable commodity.

Industry Background: How TBM Tail Seal Grease Has Developed

Modern shield tunneling expanded rapidly with the development of earth pressure balance (EPB) and slurry TBMs. Earlier projects often selected lubricants mainly by consistency and general water resistance. As tunnel diameters, drive lengths, groundwater pressures, and environmental requirements increased, contractors began requiring more specialized tail seal compounds.

Today, formulation decisions may involve:

  • Base oil type and viscosity;
  • Thickener chemistry and worked penetration;
  • Extreme-pressure and anti-wear additives;
  • Water washout resistance;
  • Adhesion to metal and brush fibers;
  • Resistance to cementitious grout and alkaline exposure;
  • Biodegradability or ecotoxicity requirements;
  • Compatibility with automatic lubrication equipment.

This evolution is especially important when selecting a China Infrastructure Construction Chemicals Supplier. A capable supplier should understand not only grease manufacturing, but also TBM operating parameters, seal geometry, injection practice, site storage, and project quality documentation.

The Main Checks Before Approving a Supplier Change

1. Confirm the Existing Product and Its Performance Baseline

Before comparing a replacement product, collect the technical data for the grease currently in use. The baseline should include the product name, grade, batch number, technical data sheet, safety data sheet, consumption rate, injection pressure, and field performance.

Record at least the following operating information:

  1. TBM manufacturer, model, cutterhead diameter, and tail seal configuration;
  2. Number of brush rows and grease chamber arrangement;
  3. Maximum operating and groundwater pressure;
  4. Soil type, slurry composition, and abrasiveness;
  5. Backfill grout type, temperature, and injection pressure;
  6. Normal grease consumption per ring or per operating hour;
  7. Observed leakage, brush wear, and injection-line blockages;
  8. Ambient and material storage temperatures.

Without this baseline, a lower consumption rate may be incorrectly interpreted as better performance when it could indicate insufficient grease delivery or restricted flow.

2. Compare the Technical Specification, Not Just the Product Name

Two products labeled “TBM tail seal grease” may have different rheology, pumpability, water resistance, and chemical compatibility. Request a current technical data sheet and certificate of analysis for each proposed batch.

Parameter Why It Matters What to Verify
Worked penetration or consistency Indicates resistance to flow and sealing behavior Test method, temperature, and acceptance range
Base oil viscosity Affects pumpability and film formation Test temperature and declared method
Water washout resistance Shows whether grease remains in the seal zone ASTM or ISO test method and result
Four-ball wear or extreme-pressure performance Helps assess load-carrying and anti-wear behavior ASTM D4172, ASTM D2596, or another specified method
Corrosion protection Protects metal components and injection hardware ASTM D1743 or applicable project method
Low-temperature pumpability Prevents blocked lines during cold-weather work Declared temperature range and site trial results

ASTM, DIN, ISO, or EN references should always be checked against the actual test procedure. A supplier should not claim compliance with a standard unless the test method, laboratory, sample identification, and result are documented. Depending on the project specification, additional tests may include ASTM D1264 water washout, ASTM D2265 dropping point, DIN 51805 low-temperature behavior, or compatibility testing defined by the TBM manufacturer.

3. Check Compatibility With the TBM and Seal Materials

Compatibility is one of the most common failure points during a mid-project change. The proposed grease must be suitable for the brush fibers, elastomeric seals, hoses, pumps, valves, and metal components used on the machine.

Ask the supplier for written compatibility information covering:

  • Nitrile rubber, polyurethane, EPDM, or other elastomers;
  • Brush wire coatings and polymer fibers;
  • Carbon steel, stainless steel, and plated components;
  • Hydraulic or pneumatic grease-pump seals;
  • Existing grease remaining in chambers and delivery lines;
  • Backfill grout, bentonite, and soil-conditioning agents.

Do not assume that two greases can be mixed because both are lithium-based or have similar color and consistency. Additive packages and thickener systems may be incompatible. The result can be separation, hardening, softening, oil bleeding, or blockage in the injection circuit.

4. Perform a Compatibility and Transition Test

A controlled transition test is strongly recommended before full-scale use. Take representative samples of the existing grease and proposed grease, then evaluate them together at the intended mixing ratio. The test should assess appearance, consistency, oil separation, pumpability, and water resistance after conditioning.

A practical qualification sequence may include:

  1. Laboratory blend screening at 25%, 50%, and 75% replacement ratios;
  2. Visual inspection for separation, lumps, or hardening;
  3. Worked penetration comparison before and after conditioning;
  4. Water immersion or water washout evaluation;
  5. Pump and hose trial using the actual equipment where possible;
  6. Short field trial over a defined number of segment rings;
  7. Review of injection pressure, consumption, leakage, and brush condition.

For high-pressure or high-risk drives, the contractor should obtain approval from the TBM OEM, seal manufacturer, or project engineering consultant before changing the material.

Quality Control and Supplier Due Diligence

What to Require From a TBM Chemicals Supplier

A reliable TBM Chemicals Supplier should provide more than a sales quotation. Request a complete technical and quality package containing:

  • Technical data sheet and safety data sheet;
  • Certificate of analysis for every production batch;
  • Batch number, manufacturing date, and shelf life;
  • Raw-material traceability and production controls;
  • Packaging specifications and storage conditions;
  • Quality management certification, where applicable;
  • Nonconformance and corrective-action procedure;
  • Application guidance and emergency technical support.

For critical infrastructure projects, define measurable quality controls. Examples include 100% visual inspection of packaged units, batch sampling before dispatch, laboratory verification of key properties, and a documented 24-hour response process for urgent technical issues. If dimensional or equipment-related tolerances are relevant to the delivery system, specify inspection precision, such as 0.01 mm for applicable components or gauges. These figures should be included only where they match the actual inspection plan.

Huadingcheng can be evaluated as a China Infrastructure Construction Chemicals Supplier by reviewing its documentation, production consistency, export experience, and ability to support project-specific qualification. The buyer should verify claims through current certificates, samples, references, and independent testing rather than relying only on marketing statements.

Supply Continuity and Logistics

A technically suitable grease is not useful if it cannot reach the tunnel site on schedule. Before signing a replacement contract, confirm:

  • Monthly production capacity and reserved project volume;
  • Lead time for standard and customized grades;
  • Minimum order quantity and emergency replenishment options;
  • Container, pail, or cartridge dimensions for site handling;
  • Temperature-controlled storage requirements;
  • Incoterms, customs documents, and dangerous-goods classification;
  • Backup production or secondary logistics arrangements.

A supplier change should not create a new risk in the form of stockouts. Maintain enough approved inventory to cover the qualification period, shipping delay, and a reasonable contingency allowance.

Common Misconceptions About Changing Tail Seal Grease

“The Cheapest Grease Has the Lowest Total Cost”

Unit price does not represent total cost. A cheaper grease may require higher consumption, increase injection pressure, damage pumps, or shorten brush-seal life. Compare cost per tunnel ring, cost per cubic meter of excavation, and cost associated with downtime and maintenance.

“The Same NLGI Grade Means the Products Are Equivalent”

NLGI consistency is only one property. It does not fully describe water resistance, adhesion, shear stability, chemical compatibility, or performance under TBM pressure. The product must be evaluated as a complete formulation.

“Color Shows Whether the Grease Is Genuine”

Color is not a dependable indicator of formulation or quality. Different pigments and additive packages can produce similar colors, while the same formulation may vary slightly in appearance between batches.

“The Old and New Greases Can Always Be Mixed”

Mixing without testing can cause incompatibility and line blockage. If complete removal is impractical, conduct a blend study and establish a controlled flushing or transition procedure approved by the engineering team.

“A Laboratory Certificate Replaces a Field Trial”

Laboratory testing is essential, but it cannot reproduce every combination of groundwater, grout, soil abrasivity, shield speed, and injection pressure. A monitored field trial remains valuable, particularly for long drives and high-pressure water conditions.

Illustrative Project Example: A Controlled Mid-Drive Change

Consider an EPB TBM operating through mixed ground with groundwater pressure and cementitious backfill grout. The project team plans to replace the incumbent grease because of supply delays. Instead of changing the material immediately, the team follows a staged process.

  1. The team records the existing product’s consumption, injection pressure, leakage history, and brush inspection results.
  2. The proposed supplier submits samples, batch records, ASTM test data, and compatibility information.
  3. A laboratory blend test finds no visible separation and confirms acceptable consistency after conditioning.
  4. The supplier and contractor conduct a pumpability test using the project’s grease delivery equipment.
  5. The new grease is introduced to a limited number of rings while operators track pressure, volume, leakage, and alarms.
  6. The engineering team reviews the results before authorizing full conversion.

This example demonstrates the correct principle: change control should be evidence-based and progressive. The project team should define pass/fail criteria before the trial, retain samples, and document the decision in the material approval record.

Recommended Approval Checklist

Use the following checklist before placing the first replacement order:

  • Existing grease specification and field baseline documented;
  • TBM OEM and tail-seal requirements confirmed;
  • Technical data sheet and safety data sheet reviewed;
  • ASTM, DIN, ISO, or project-specific test methods identified;
  • Compatibility with seal, hose, pump, and grout materials verified;
  • Blend and transition testing completed;
  • Field trial acceptance criteria approved;
  • Batch traceability and certificate of analysis agreed;
  • Packaging, storage, shelf life, and transport conditions confirmed;
  • Delivery schedule and contingency stock secured;
  • Technical support and escalation contacts established;
  • Nonconformance, replacement, and warranty terms included in the contract.

How Huadingcheng Can Support the Supplier Evaluation

When comparing Huadingcheng with another China Infrastructure Construction Chemicals Supplier, ask for project-relevant evidence rather than generic product claims. The evaluation should cover formulation consistency, test documentation, application guidance, production capacity, and response time.

As a potential TBM Chemicals Supplier, Huadingcheng may be considered within a structured approval process that includes sample testing, technical review, and monitored field application. The final selection should be based on the TBM manufacturer’s requirements, the project’s method statement, independent test results where necessary, and demonstrated supply reliability.

For international tunneling projects, a China-based infrastructure chemicals manufacturer should also demonstrate competence in export packaging, customs documentation, multilingual technical communication, and shipment traceability. These factors are especially important when the project cannot tolerate interruption to grease supply.

Final Takeaway

Changing tail seal grease suppliers mid-project is a controlled engineering change, not a simple procurement substitution. Start with the existing performance baseline, compare complete technical data, verify compatibility, perform laboratory and field trials, and confirm quality and supply continuity. A qualified China Infrastructure Construction Chemicals Supplier should support its proposal with documented test methods, batch traceability, practical TBM knowledge, and responsive technical service.

By applying this process, contractors can protect tail brushes, reduce leakage risk, control grease consumption, and maintain tunnel production. Before approving any replacement, invite Huadingcheng or another qualified supplier to provide samples, certificates, compatibility evidence, and a project-specific transition plan for formal technical review.

Специфическое содержание

Продукт

Связанные продукты

Эмульгатор асфальта со средней фиксацией

Эмульгатор асфальта со средней фиксацией — это катионный четвертичный аммонийный соль поверхностно-активное вещество, специально разработанное для нанесения грунтов, клейкового и герметичного покрытия.

Эмульгатор асфальта с медленно застывающим

Эмульгатор асфальта с медленным закреплением — это катионный, медленно разрушающийся быстро сверкающий поверхностно-активный материал, производимый с помощью современного синтеза. Он не содержит ограниченных веществ, таких как нонилфенол, и экологичный.

Эмульгатор асфальта для микропокрытия

Эмульгатор асфальта для микропокрытия - это катионное поверхностно-активное вещество быстрого схватывания, разработанное в соответствии с международным стандартом ISSA A143 и отраслевым стандартом JTG/T F40.

Эмульгатор асфальта для холодной переработки

Эмульгатор асфальта для холодной переработки специально разработан для холодной переработки асфальтового покрытия (CIR/CCPR) технология.

Латекс SBR

Латекс из бутадиен-стирольного каучука SBR представляет собой стабильную водную эмульсию, полученную путем низкотемпературной эмульсионной полимеризации бутадиена и стирола

Модификатор асфальта SBS

Модификатор асфальта SBS (стирол-бутадиен-стирольный блок-сополимер) является наиболее широко используемым модификатором дорожного асфальта во всем мире.

Средство для защиты от вскрытия асфальта

Средство для защиты от вскрытия сфальта специально разработано для устранения недостаточной адгезии между кислотные заполнители (гранит, кварцит, песчаник и т.д.) и асфальт.

Добавка для подогрева асфальтобетонной смеси

Добавка для подогрева асфальтобетонной смеси - это добавка WMA на основе поверхностно-активного вещества, которая уменьшает перемешивание асфальтобетонной смеси и температура уплотнения повышается на 30-50 ℃ при сохранении эксплуатационных характеристик дорожного покрытия HMA.

Волокно лигнин

Лигниновое дорожное волокно — это высококачественный стабилизатор гранулированной лигниновой целлюлозы, специально разработанный для асфальтов SMA (каменный мастичный асфальт).

Добавка для предотвращения образования колеи на асфальте

Добавка для предотвращения образования колеи на асфальте - это высокомолекулярный полимерный модификатор, специально разработанный разработан для асфальтобетонных покрытий с интенсивным движением

Смазка для уплотнения защитного хвоста

Асфальтовая противоколовочная добавка — это высокомолекулярный полимерный модификатор, специально разработанный для асфальтовых покрытий с интенсивным движением

Консистентная смазка для уплотнения главного подшипника (HBW)

Основным подшипником является самый дорогой вращающийся компонент TBM. Попадание воды или песка может привести к катастрофическому выходу из строя. HBW - это высоковязкая смазка для уплотнений EP (при экстремальном давлении),

Специальная смазочная смазка Щит

Серия HDC-EP использует рафинированное минеральное базовое масло, загущенное сложным литиевым мылом, содержащее безсвинцовые добавки EP,

Защитный пенообразователь

Пенообразователь Shield используется для кондиционирования грунта при прокладке туннелей EPB. Пенообразующий раствор (пенообразователь + вода) смешивается со сжатым воздухом в пеногенераторе для получения тонкой, устойчивой пены,

Диспергатор защитного слоя

Диспергатор защитного слоя - это химическая добавка, которая предотвращает засорение глиной (образование глинистой корки) режущей головки и камеры для выемки грунта во время проходки туннеля в прочном грунте. В глине

Материал для заполнения глиняного щита

Kenixiao (Материал для заполнения глиняного щита) — это внешний материал заполнения, предназначенный для туннелирования щитов, состоящий из синтетических глинистых минералов на основе кальция (модифицированный неорганический карбонат кальция + целлюлоза кальция).

Триазин H2S-поглотитель

Триазин H2S-поглотитель является водорастворимым химическим веществом с гексагидро-1,3,5-трис (гидроксиэтил)--триазин в качестве основного активного ингредиента, специально разработанный для удаления H2S при добыче нефти и газа

Биоцид триазина

Биоцид триазин содержит тот же активный ингредиент, что и поглотитель H2S — гексагидро-1,3,5-трис (гидроксиэтил)-s-триазин (CAS 4719-04-4), но служит для другой цели. Как биоцид,

Деэмульгатор сырой нефти

Деэмульгатор сырой нефти представляет собой высокомолекулярное полиэфирное неионное поверхностно-активное вещество, полимеризованное из оксида пропилена (PO). и окиси этилена (EO) с использованием полиаминов, полиолов, диэпоксидов и различных смол в качестве инициаторов.

Ингибитор коррозии

В качестве основного активного ингредиента в ингибиторе коррозии используется имидазолин олеиновой кислоты в сочетании с производными тиомочевины и алкиноловыми синергистами. Полярные группы (атомы N, O) в молекуле имидазолина адсорбируются на поверхности металла,

wechat
wechat