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Concrete

Mechanised working saves shutdown time and manpower

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Pradeep Kumar Chouhan, General Manager – Quality Control & Environment, Udaipur Cement Works Limited, gives a detailed account of different types of refractories used in a cement plant, the current improvements in automation and the eco-friendly innovations required.

What are the key materials used in building a refractory lining to the kiln in your organisation?
For kiln lining, UCWL uses alumina magnesium bricks for burning zones i.e., 7 to 27 metres. The kiln length at UCWL is 66 metres. (0 metre is considered at kiln outlet and 66 metre is at kiln inlet) 40 per cent to 70 per cent alumina bricks for the transition and pre-transition zone.

What are the key properties of a refractory that support the cement making process?
For bricks, chemical properties are mainly a percentage of Al2O3, Fe2O3 and silica is more important, the percentage of Al2O3 normally varies with application area temperature. Fe2O3 percentage is kept as minimum as possible to avoid self-damages. Silica percentage is monitored to check whether the refractory is having any other foreign material in it.
Bulk Density: The bulk density (BD) is the amount of refractory material within a volume (kg/m3). An increase in bulk density of a given refractory increases its volume stability, heat capacity and resistance to slag penetration.
Cold Crushing Strength: The Cold Crushing Strength (CCS) represents the ability of a product to resist failure under compressive load at room temperature. It has an indirect relevance to refractory performance, and is used as one of the indicators of abrasion resistance. The higher the CCS of a material is the greater should be the resistance to abrasion. Refractories with high CCS are also expected to have higher resistance to slag attack. The determination of cold crushing strength (CCS) is also highly important in case of refractory insulating bricks where bricks must be porous as well as strong.
Apparent Porosity: The apparent porosity or open porosity (oPo) is the volume of the open pores, into which a liquid can penetrate, as a percentage of the total volume of the refractory. This property is important when the refractory is in contact with molten charge and slag. A low apparent porosity prevents molten material from penetrating into the refractory and therefore enhance it resistance to corrosion
Permanent Linear Change: Permanent Linear Change (PLC) is a crucial parameter for the design of refractory lining.it is a factor used to judge the suitability of refractories in ranges of temperature limits. Refractory materials can undergo mineral formation, phase transformation or shrinkage when heated. These processes may result in either volume expansion or reduction. Upon cooling to room temperature, the material will possibly be larger or smaller than the original dimensions. PLC is the property of shaped refractory to retain their original size after undergoing through a given temperature-time treatment and subsequent cooling down to room temperature.

Explain the types of refractories that you have in your manufacturing unit. What are their respective purposes?
Udaipur Cement Works limited (UCWL) has the following type of refractory for insulation in the kiln, pre-heater, calciner and the cooler area.

Tell us more about the porosity and permeability of the refractory.
The apparent porosity or open porosity (oPo) is the volume of the open pores, into which a liquid can penetrate, as a percentage of the total volume of the refractory. This property is important when the refractory is in contact with molten charge.
A low apparent porosity prevents molten material from penetrating into the refractory, it makes a material-to-material bond and develops a good and stable coating on refractory / bricks, which enhances its life and its resistance to corrosion.
The permeability of refractories is a governing factor in the deterioration of linings by liquids and gases. The permeability of any refractory material is defined as the volume of the gas or air, which passes through a cubic centimetre of material under a pressure of 10 mmWG per seconds.

What is the maximum temperature that a refractory can withhold? How does its strength differ from ambient temperature to high temperature?
The temperature range in which the softening of refractory products occurs is not identical with the melting range of the pure raw material; Refractoriness Under Load (RUL) is a measure of the deformation behaviour of refractory subjected to a constant load and increasing temperature. The RUL has importance to check the suitability of refractory products for high-temperature applications; it gives an indication of the temperature at which the bricks will collapse.
For cement plant application, refractories can hold a temperature of 1450°C.
Refractory materials that keep their chemical and physical strength at temperatures above 500°C are of high importance for metallurgical and other industrial processes. They consist of alumina, magnesia, silica, lime, and other metal oxides. As these materials are dedicated for high temperature, the production is carried out at temperatures of more than 1000°C, making the process highly energy consuming.

Tell us about the installation and operating process of refractories in the kiln.
Installation of a refractory in a kiln requires specific skill. Brick installation is normally without any bonding material. Most of the cement plants use civil masons for refractory bricks installation, whereas brick installation in kilns is quite different from the normal civil masonry.
Installation of bricks is normally a combination of two types of bricks. Based on kiln diameter per ring numbers of bricks are worked out and accordingly it is laid line by line. Nowadays brick lining machines are available, which work very fast and less moan power is required. Lining with machines also eliminated the requirement of heavy jacking and rotation of the kiln.
For castable laying, the gunning castable has become more popular instead of the old conventional method by putting shuttering etc. Castable are also available as chemical bonded castable, which reduces the requirement of ICE cooling while mixing.

What are the standards set for refractories in a cement kiln?
For cement kilns, normally following standards are used but it is observed that use of different and various kinds of refractory as per the suitability of raw meal, temperature profile and plant design.

What is the role of technology and automation in refractories for cement kilns?
Automation and technology have helped the cement kiln refractory a lot. The shell scanner monitors real time shell radiation and gives a full picture of kiln coating and bricks health, throughout the
kiln length.
Shell scanner helps the kiln operation for the condition of hot zones, coating level, over coating zones, development of ring formation, if any. Timely corrective action can be taken which enhances the life of refractory and avoids heating of mechanical parts. For the application part, the de-braking machine, brick laying machine and castable gunning techniques are good examples of use of technology in refractory work. Mechanised working saves shutdown time and manpower, ultimately increasing the productivity of the cement kilns.

What tests are employed to check the refractory for defects and at what intervals are these tests done?
With advanced technology, most of the refractories are supplied to cement plants with good quality and assured guarantees of refractory life. However, CCS, apparent porosity, RUL and thermal conductivity is normally tested at the plant. Suppliers also provide us with test certificates for the same.

What are the major challenges your organisation comes across with the refractory kiln?
Most often, there is no premature failure of refractory at UCWL. The UCWL limestone contains very high grain size of calcite and quartz, it affects the development of stable coating and ultimately due to abrasive nature it affects the bricks’ life. However, at the refractory application part is found that skilled manpower with good workmanship is not available. Since the growth of cement industry is very fast and maximum industries are increasing their capacity, the availability of skilled manpower for application work will be a big challenge in near future.

What innovations in the refractory sector do you expect to see in the near future that will help better it?
Refractory suppliers are doing much research and continuously improving their products and are also providing tailor-made products. Precast modular lining at kiln inlet and precast tip casting are popular in the current times due to its long life and good thermal insulation properties.
Since the cement industry is consuming maximum hazardous waste in cement kilns, as hazardous material contains toxic element like chloride, metal parts like Zn, Mn, Pb etc. Refractory bricks of kiln are likely to be affected more, not in the kiln but also in lower cyclone and pre-calciner, so there will be a requirement to address the problems causes to refractory due to the hazardous materials. Refractory manufacturers should work upon developing eco-friendly refractories.

Kanika Mathur

Concrete

Cement Makers’ Margins To Fall Rs 50-75 Per Tonne Amid West Asia Conflict

Crisil Sees Margins Easing Despite Steady Demand

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Crisil said operating margins of Indian cement manufacturers are expected to decline by Rs 50-75 per tonne (t) this fiscal to Rs 925-950 per t due to higher input costs triggered by the West Asia conflict. The analysis covered 18 cement companies accounting for nearly 90 per cent of India’s domestic cement capacity and noted margins had improved sharply to around Rs 1,000 per t in fiscal 2026.

Crisil noted that the reduction would be driven mainly by higher power and fuel costs, which account for about 30 per cent of total costs, as petcoke and imported coal prices have surged amid geopolitical uncertainties. Freight costs, which account for about a quarter of total costs, are also expected to remain elevated because of higher diesel prices. The impact on profitability is likely to be more pronounced in the first half of the fiscal year before easing commodity prices moderate cost pressures later.

The rating agency said steady domestic demand and strong balance sheets should keep credit profiles stable despite the moderation in margins. Green energy currently accounts for 35-40 per cent of the sector’s total electricity consumption and is expected to partly cushion higher energy costs. Operating cash flows are likely to remain resilient, supported by projected 6-7 per cent growth in cement demand this fiscal.

Crisil highlighted that demand growth will be driven primarily by infrastructure spending, which meets about one-third of sector consumption, and by a nearly 18 per cent higher budgetary allocation for core ministries that should support project execution. Weaker rural housing demand amid pressure on agricultural incomes from a possible below-average monsoon may be offset by improved urban housing demand supported by favourable home-loan rates and a strong pipeline of Pradhan Mantri Awas Yojana-Urban projects. Ongoing capacity additions will keep capital expenditure elevated and may lift net debt to EBITDA to between 1.2 and 1.4 times from around 1.0 time last fiscal, though ratios are expected to remain healthy.

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Concrete

UltraTech Board Approves Rs 50 bn Fundraise Via NCDs

Company to issue half a million debentures for expansion plan

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UltraTech Cement’s board of directors has approved raising Rs 5,000 crore (Rs 50 bn) through non?convertible debentures issued in rupees.

The finance committee cleared a proposal to issue up to 500,000 fully paid, unsecured, listed, rated, redeemable, rupee?denominated, non?convertible, non?cumulative debentures of Rs 1 lakh each (Rs 0.1 mn each), aggregating to the Rs 5,000 crore programme.

As of June 2026 the firm reported net debt of Rs 15,875 crore (Rs 158.75 bn) and said its capacity expansion projects under execution are backed by capital expenditure of about Rs 17,000 crore (Rs 170 bn) over the next two to two?and?a?half years.

UltraTech spent Rs 9,500 crore (Rs 95 bn) on capital expenditure in financial year 2026 and in April the group crossed 200.1 mn tonnes per annum of domestic grey cement capacity and 205.5 mn tonnes per annum of global capacity.

The chief financial officer indicated the company would take consolidated capacity beyond 242 mn tonnes per annum, with grey cement capacity reaching 212.7 mn tonnes per annum by the end of financial year 2027. He noted the net debt?to?earnings before interest, taxes, depreciation and amortisation ratio stood at 0.87 times as of June 2026 and the company was confident of ending financial year 2027 with the ratio below one time.

In the first quarter of financial year 2026?27 UltraTech’s net profit attributable to owners rose 16.8 per cent year?on?year to Rs 2,599.3 crore (Rs 25.993 bn) and revenue from operations increased 15.9 per cent to Rs 24,648.20 crore (Rs 246.482 bn). The board approval is expected to complement internal cash flows as the company advances its expansion programme.

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Concrete

Lokesh Lays Stone For Rs 31 Billion Cement Unit In Kadapa

Line-2 expansion to make Kadapa a major cement hub

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Andhra Pradesh Education and IT Minister Nara Lokesh on Wednesday laid the foundation stone for the Line-2 expansion of Dalmia Bharat Cement at Chinnakomerla village in Mylavaram Mandal in Kadapa district. The project carries an investment of Rs 31 billion (bn) and is slated for completion by the third quarter of the financial year 2028. The expansion is intended to boost industrial growth and employment generation across the Rayalaseema region.

Once commissioned, the Kadapa facility will become Dalmia Bharat’s largest integrated cement manufacturing ecosystem in southern India, creating over 1,000 direct and indirect jobs and opening new business avenues for regional micro, small and medium enterprises and transport operators. Lokesh said the expansion signalled growing corporate confidence in the state and reflected the practical ease of doing business that secured repeat investment.

He placed the project within the government’s wider economic targets and recalled the Yuvagalam padayatra commitment to generate two million (mn) jobs within five years, noting that the state would cultivate talent while industry created opportunities. Lokesh highlighted Andhra Pradesh’s competitive pursuit of major manufacturing accounts, mentioning past successes and a personal initiative to engage global investors when persuading them to anchor expansion in the state.

The plant will leverage Kadapa’s abundant limestone reserves to scale production and sustainability. Clinker capacity is planned to rise from two point five million tonnes per annum (mn tpa) to six point one mn tpa, while overall cement output will increase from three point six mn tpa to nine point six mn tpa. The unit is designed to operate on over eighty per cent renewable energy and deploy waste heat recovery, zero liquid discharge, water recycling and advanced AI systems to optimise efficiency. Industries Minister TG Bharat, BC Welfare Minister S. Savitha and Jammalamadugu MLA C. Adinarayana Reddy attended the ceremony.

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