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Ferroalloys · Multi-element composite alloys

Silicon-barium-aluminium alloy

Aliases: Aluminium-silicon-barium alloy · Ferrosilicon-barium-aluminium alloy

This page explains the product's principal composition, application directions and inquiry points; confirm the grade, guaranteed indicators, sizing, packing and process fit before quotation.

Compound deoxidationJoint Si, Ba and Al additionApplication-specific governance
View grades and specifications
Silicon-barium-aluminium alloy · Product form reference
Product codeFA-SIBAAL
Industry application1
Key indicatorsSi / Ba / Al / Fe · Ca / C / P / S · lot uniformity / sizing
Order boundaryQuotation and order confirmation

QUICK DECISION

Four answers before reading the technical detail

This section supports initial screening; final grade, addition and effects require operating conditions, formal documents and plant validation.

01

What it is

This page explains the product's principal composition, application directions and inquiry points; confirm the grade, guaranteed indicators, sizing, packing and process fit before quotation.

02

What it does

  • Compound deoxidation
  • Joint Si, Ba and Al addition
  • Application-specific governance
03

Where it fits

  • Alloying or trimming after slag, oxygen potential, temperature and dissolution conditions are controlled
04

Boundary not to miss

  • A fixed element ratio may conflict with the steel target; oxidising slag, undissolved particles or excess addition can lower recovery and lose chemistry or inclusion control

SELECTION BOUNDARY

Start with the selection boundary

Silicon-barium-aluminium, aluminium-silicon-barium and ferrosilicon-barium-aluminium are managed as one YB/T-named Fe-balance family rather than fictitious duplicate SKUs. Steelmaking and inoculant grades still require separate formula, sizing and acceptance criteria.

PRODUCT MANUFACTURING

Product manufacturing process

The actual feeds, furnace, charging sequence and refining practice for this multi-component ferroalloy must be confirmed from manufacturer documents. A general commercial route includes feed and return acceptance, controlled smelting or remelt alloying, casting and cooling, crushing and screening, homogenisation, sampling and lot testing. A smelted alloy and a mechanical blend must not share one product identity.

  1. 01Silicon-barium-aluminium alloy must be verified as an iron-base smelted alloy containing Si, Ba and Al under a formal supplier grade; a site blend of ferrosilicon, barium feed and aluminium must not be represented as the same product.
  2. 02Verify feeds, returns, product matrix and the supplier-declared actual route
  3. 03Use the manufacturer's controlled smelting or remelt-alloying practice and manage chemical homogeneity and slag entrainment
  4. 04Cast, cool, crush and screen while controlling fines and cross-lot mixing
  5. 05Homogenise and sample representatively, then test principal elements, residuals, sizing and pack

SPECIFICATIONS & PACKAGING

Grades, specifications, indicators and packaging

The product name is a family entry, not a purchasable grade. The applicable standard, supplier TDS, SDS/PSI, sample COA and purchase agreement must jointly fix principal elements, the iron matrix or other carrier, residuals, test methods, form, sizing, fines, moisture, pack, sampling and change control. This page assumes no unverified values.

  1. 01The specification centres on Si, Ba, Al and the Fe matrix, with Ca, C, P, S and other accompanying elements, sizing, moisture and pack fixed for the steel or iron application.
  2. 02Confirm the formal Chinese and English name, standard revision, supplier grade and smelted/blended identity
  3. 03Fix principal elements, matrix, limiting elements and their test methods item by item
  4. 04Agree lump, granule or powder size distribution, fines, moisture and within-lot homogeneity for the charging equipment
  5. 05Confirm pack, label, SDS/PSI, sampling rules, lot COA and change notification

GRADES & SPECIFICATIONS

Grades, specifications, indicators and packaging

Supply specifications, packaging, lead time and quality documents are subject to the formal quotation and order confirmation.

Grade / familyChemistrySize and formPackaging
Specification direction 01Silicon-barium-aluminium alloyConfirm grade, applicable standard and guaranteed values before quotation
  • Si / Ba / Al / FeConfirm in inquiry
  • Ca / C / P / SConfirm in inquiry
  • lot uniformity / sizingConfirm in inquiry

Confirm against the addition method, equipment and order requirements

Confirm pack format, net weight and labels in the quotation and order

ORDER SPECIFICATION CONFIRMATION

What must be confirmed before this becomes an order specification

Supply specifications, packaging, lead time and quality documents are subject to the formal quotation and order confirmation.

  1. 01Confirm the product, grade, application and supply scope
  2. 02Fix guaranteed chemistry, sizing, form and packing in the quotation and order
  3. 03Agree sampling, test methods, acceptance rules and lot COA fields
  4. 04Confirm the required TDS, SDS/PSI, labels and delivery documents

SELECTION AND COMPARISON

Compare specification directions by indicators and operating conditions

Supply specifications, packaging, lead time and quality documents are subject to the formal quotation and order confirmation.

01Specification direction

Silicon-barium-aluminium alloy

Compare the key indicators below, then confirm grade, guaranteed values, sizing and packing against the operating conditions.

Key indicators
Si / Ba / Al / FeCa / C / P / Slot uniformity / sizing
Size and form
Confirm against the addition method, equipment and order requirements
Packaging
Confirm in the quotation and order

INDUSTRY APPLICATION

Industry, furnace, material and addition point

Confirm the process position before method and quantity calculations; an application relationship for one furnace or material must not be copied to another.

01

Steelmaking plants

Alloying or trimming after slag, oxygen potential, temperature and dissolution conditions are controlled

Furnace / equipment
BOF/EAF tapping, LF/ladle or a process-reviewed secondary-metallurgy route
Material / output
Steel with defined chemistry target, deoxidation practice, inclusion objective and associated-element limits

APPLICATION METHOD

Application method and effect validation

Field application requires a separate mass balance for every active element together with review of initial and target melt chemistry, charge carry-in, measured lot values, temperature, oxygen potential, slag, equipment and historical recovery. The first element to reach the product limit sets the trial cap. Start with a small trial, resampling and performance validation; no fixed kg/t, recovery or effect claim applies across steel or iron grades.

  1. 01A steel grade may support combined deoxidation/alloying in a verified route; a foundry grade must be reviewed separately as a dedicated barium-bearing inoculant for active elements, sizing and addition point.
  2. 02Confirm melt grade, process objective, initial and target chemistry and limiting elements
  3. 03Complete a separate mass balance for each element from the lot COA and site history
  4. 04Run a small trial within the approved temperature, slag, addition-point and stirring window
  5. 05Resample to verify chemistry, inclusions or structure, defect risk and final performance before approval, correction or stop
  6. 06Validate Si/Al/Ba recovery, endpoint oxygen and inclusions separately; for cast iron, additionally validate thermal analysis, chill, graphite and fade window without a fixed effect claim.

PROBLEM AND SOLUTION

From operating objective to effect verification

Each application explains the role, method, quantity principle and risk boundary; the final proposal is confirmed against operating conditions and lot documents.

01

Steelmaking plants

Alloying or trimming after slag, oxygen potential, temperature and dissolution conditions are controlled

Furnace / equipment
BOF/EAF tapping, LF/ladle or a process-reviewed secondary-metallurgy route
Material / output
Steel with defined chemistry target, deoxidation practice, inclusion objective and associated-element limits
Method
Choose dry, compatible sizing and an addition point from lot-measured chemistry; control dispersion, dissolution and stirring, then close the loop with a steel sample.
Quantity determination
Mass-balance every effective and restricted element separately, let the first element to reach a grade limit set the addition cap, and use site-validated recovery; this page publishes no fixed kg/t.
Expected effects
  • Supports coordinated multi-element adjustment or compound deoxidation in a validated practice
Limits and risks
  • A fixed element ratio may conflict with the steel target; oxidising slag, undissolved particles or excess addition can lower recovery and lose chemistry or inclusion control

STORAGE & SAFETY

Storage, handling and risk

  • Keep dry and lot-segregated and prevent mix-ups; dust, fume and hot-metal charging controls must follow the SDS/PSI for the actual form and plant procedures.
  • Without a formal SKU, TDS, SDS/PSI and lot COA, no chemistry, grade, sizing, pack, stock, dose, recovery or performance is promised.

This section does not replace the company's final SDS/PSI or the plant safety procedure.

REFERENCE AND ORDER BOUNDARY

Use industry references to understand, then order documents to confirm

Supply specifications, packaging, lead time and quality documents are subject to the formal quotation and order confirmation.

DOCUMENTS & MEDIA

Images, TDS, SDS and COA

Document availability depends on the product, lot, destination market and order agreement.

TDS

Confirms product identity, guaranteed indicators, sizing, form and packing.

SDS / PSI

Confirms storage, handling, protection and market-specific safety information.

COA

Links a specific lot to test items, results, methods and issue information.

INDUSTRY TECHNICAL REFERENCES

Selected external reference material

The following items come from licensed public media or original producer websites and explain similar products or typical processes only. They are not Jinsheng photographs, TDS, SDS or lot COA and create no supply commitment.

Blank COA template

COA field template (not a certificate)

A blank structure for lot, chemistry, sizing, method, disposition and issue data. It contains no test result and cannot be used for delivery.

Jinsheng blank COA field template · 2026-08-14Open field template

SOURCES

Public references and verification dates

  1. YB/T 066—2008 Silicon-barium-aluminium alloyStandard · 2026-08-19

Public sources supplement general facts; they do not replace Jinsheng's formal product specification, TDS or lot COA.

INQUIRY PREPARATION

Prepare these operating conditions for a more precise technical response

Please provide the specification, quantity, destination, and contact information.

Already includedFA-SIBAALSilicon-barium-aluminium alloy
  1. 01Target industry, steel grade or casting material
  2. 02Furnace type, equipment, melt weight and current operating practice
  3. 03Measured chemistry, target chemistry and permitted residuals
  4. 04Planned addition point, temperature, slag and stirring conditions
  5. 05Current product, addition, recovery or operating-issue record
  6. 06Required size, form, packaging, quantity and destination
  7. 07Available melt analysis, microscopy, photographs or trial results

TECHNICAL AND QUOTATION CONSULTATION

Send the operating conditions for human review

Domestic inquiries are handled by the Domestic Sales Department and international inquiries by the International Sales Department. Price, availability and lead time are confirmed for each inquiry based on specification, quantity and delivery location.