Welcome to the Industrial Automation website!

NameDescriptionContent
HONG  KANG
E-mail  
Password  
  
Forgot password?
  Register
当前位置:

The use of cement and matters needing attention

来源: | 作者:佚名 | 发布时间 :2023-11-17 | 674 次浏览: | 🔊 Click to read aloud ❚❚ | Share:

First, reasonable selection of cement varieties and strength grades

According to the construction site and engineering technical requirements, reasonable selection of cement types and strength grades to avoid improper selection of cement, resulting in project quality substandard or cost increase.

Second, pay attention to transportation and storage management

In the process of transportation and storage, avoid moisture and debris incorporation of cement, resulting in a decline in cement quality and performance. At the same time, be careful not to mix with organic substances such as sugar and fertilizer to avoid adverse reactions; The storage height of bagged cement should not exceed 20 bags, the palletizing is too high, and the lower cement is prone to buckling due to excessive pressure.

Third, can not be mixed

There are differences in the quality and performance of different varieties and strength grades of cement, which should be stacked separately and used separately, including cement of the same variety but from different manufacturers.

Fourth, strictly control the quality of mixed materials

Try to choose the sand with less mud content, the water used should not contain organic matter (sugar, fertilizer, washing supplies, etc.), in summer or winter preparation of concrete, pay attention to control the temperature of sand and water, to avoid the concrete setting time too fast or too slow.

Four, Cement construction ratio specification

For general civil buildings, the concrete-lime sand ratio is 1: 3, important parts such as beams, plates, columns, and foundation projects should be configured in accordance with the requirements of construction design specifications, mixing should be uniform during construction, the water-cement ratio should not be too large, vibration should be moderate, not over vibration, leakage vibration, not leakage slurry, continuous pouring, to avoid the uneven distribution of concrete cement, segregation, bleeding and other phenomena, so that the strength is reduced.


1 High Belite cement

The enthalpy of formation of C3S mineral in cement clinker is 1 810kJ/kg, while the enthalpy of formation of C2S mineral is only 1 350kJ/kg[2]. Therefore, increasing the content of C2S in clinker and reducing the content of C3S is an effective way to reduce the energy consumption of clinker calcination. Therefore, the low-calcium high-belite cement with C2S as the dominant mineral has become one of the most active research hotspots in the international cement industry.

The research of low heat Portland Cement system (C2S-C3S-C3A-C4AF, i.e., High Belite Cement) with Belite as the dominant mineral originated in the United States in the 1930s. It was during the construction of the 99m high Morris Dam in 1932-1935 that the first low-heat cement was developed, that is, limiting the content of C3A and C3S in the cement clinker to reduce the heat of hydration, which was the prototype of High Belite cement. Studies have also been conducted in Germany, Japan and Sweden. By the 1990s, China had achieved remarkable results in the research and practical application of high belite cement, and realized the industrial production of high performance and low heat Portland cement with C2S as the leading mineral for the first time at home and abroad.

The main difference in mineral composition between High Belite cement and general purpose Portland cement is the basic exchange of the content of two silicate minerals, C3S and C2S. High Belite cement is mainly composed of C2S with relatively low CaO content (C2S content is generally more than 45%), thus reducing the CaO content of the whole system. Its mineral composition is: C2S: 40% ~ 70%, C3S: 10% ~ 40%, C3A: 2% ~ 8%, C4AF: 10% ~ 25%[3]. Its mineral types are the same as general Portland cement, so its hydration process and hydration products are basically the same.

The raw materials used in High Belite cement are basically the same as those of traditional Portland cement, and admixtures such as gypsum, barite, pyrite, copper tailings and lead and zinc tailings need to be added to stabilize the highly active C2S crystal form [3]. High Belite cement has the characteristics of low resource and energy consumption, low environmental load and so on. If the firing temperature is only 1 350℃, about 100℃ lower than the traditional Portland cement, the emission of CO2 and SO2 during the firing process is reduced by 10%, and the cement performance has the characteristics of low heat and high late strength, which well meets the technical requirements of mass concrete, especially hydraulic concrete. It has also been applied in the world-renowned Three Gorges Dam and other key projects. But compared with traditional cement, high belite cement has the disadvantage of low early strength. To this end, cement researchers have made a lot of efforts to improve the early hydration activity of the high Belite system through various technical ways such as physical activation and chemical activation [4-8].


2 Aether Cement 

Aether cement was developed and invented by Lafarge Company, and has declared the invention patent. Lafarge Cement established the Aether project team in 2010 and conducted research on Aether low carbon cement for three years (from September 1, 2010 to August 31, 2013). The Aether project team has completed two industrial tests of Aether cement production, confirming the feasibility of producing Aether cement on an industrial scale by relying on the existing cement kilns.

  • ABB SCC-C 23070-0-10232110 gas cooler
  • Sick LGTN101-521 CPU Module
  • Okuma 1911-2836 PLC Circuit Board
  • Mitsubishi Melsec PM-120M PLC
  • Omron F210-C15 Vision Mate Controller System
  • Siemens 7ML5110-1GD07-4AF3 Ultrasonic Level Gauge
  • ABB Pluto S46 V2 Safety Relay
  • Omron Z3RN-5A Optical Serial Link
  • Omron R7D-APA3H 30W Servo Drive
  • Giddings Lewis 502-03638-41R3 PLC Processor
  • Omron SCY-P1 Sequencer Controller
  • Siemens C98043-A7002-L1-13 PCB Board
  • SACS TECNICA Palletizer PC PLC Control System
  • AutomationDirect T1F-14THM PLC Module T1F14THM
  • OMRON C200H-AD003 Analog Input Unit PLC Module
  • Applied Materials 0010-A0000 Electricity Box PLC 200mm
  • ABB RVT-6 Power Factor Controller RVT6
  • Allen-Bradley 2094-BC01-MP5-M Kinetix 6000 Axis Module
  • OMRON FQM1S-MC233 Motion Controller PLC Module
  • OMRON C200H-SNT31 PLC Special I-O Module
  • Yaskawa SGMPH-04AAA61D-OY Servo Motor 400W 200V
  • Yaskawa SGMGH-09DCA6F-OY AC Servo Motor 850W 400V
  • REFU ELEKTRONIK SR17002 PLC Logic Module Circuit Board
  • Siemens 6DP1231-7AA PLC Board Module Industrial Control
  • ABB SACE ISOMAX S3 N 160 Molded Case Circuit Breaker
  • OMRON C120-SC024-V1 SYSMAC C120 Compact PLC Unit
  • OMRON CJ1W-SCU41-V1 Serial Communication Unit PLC Module
  • OMRON 3G3MX2-A4110-ZV1 MX2 Variable Frequency Drive
  • Yaskawa SGDH-04AE-OY Sigma-II Servo Driver 400W 200V
  • OMRON CQM1-AD041 Analog Input Module PLC I/O Unit
  • Delta Omega XML2-0060-45-4/S-A Servo Drive
  • Omron CJ1W-AD041 Analog Input
  • Omron CJ1W-NC271 Position Control Unit
  • Omron CJ1G-CPU45H PLC CPU
  • Omron CJ1W-EIP21 EtherNet/IP Unit
  • Omron F210-C15 Vision Mate Controller
  • Omron CQM1H-ADB21 Analog I/O Board
  • Omron GRT1-PRT PROFIBUS DP-V1 Adapter
  • Omron CP1H-Y20DT-D PLC CPU
  • TE.CO TFX 4G 1.5 Grey Cable 470m
  • Yaskawa SGDH-04AE-OY Servo Driver 400W 200V
  • OMRON CJ1H-CPU66H V4.0 PLC CPU
  • OMRON R7M-A10030-BS1 Servo Motor 200W 100V
  • OMRON FQM1-MMA21 Motion Controller
  • Yaskawa SJDE-08APA Servo Amplifier
  • OMRON CQM1-AD041 Analog Input Unit
  • Siemens OCI55 Dialogue Module Landis
  • OMRON F350-C10E Image Processing Unit
  • OMRON NT10S-SF121 HMI Terminal
  • SIEMENS 3RB1262-0LB31 Overload Relay
  • OMRON YASKAWA SGDS-02A12A Servo Drive
  • TE.CO TFX 4G 1.5 Grey Cable ST 500m
  • FANUC A16B-3200-0362 PCB Control Board
  • OMRON CQM1-ARM21 Analog Output Unit
  • Allen-Bradley 1788-EN2DN Ethernet DeviceNet Gateway
  • Siemens 3VL9440-7EE40 3VL4740-2AA46-0AA0 Circuit Breaker
  • OMRON CJ1W-AD041-V1 Analog Input Unit
  • OMRON CQM1-AD041 CQM1-IPS02 Analog Input Power Supply
  • Texas Instruments System 505 PLC 525-110 525-1102
  • OMRON CQM1-AD042 Analog Input Unit
  • Yaskawa SGDH-04AE-OY Servo Driver 200V 400W
  • CTI 2512 75W Power Supply for CTI 2500
  • Omron F300-B5 Image Processing Unit
  • Mitsubishi 15050-PR01A PLC Board
  • Omron CQM1-TC101 Temperature Controller
  • SCE M68-2000 2 Axis Motion Controller HW 2.3/B
  • Omron 3Z4SP-C22 Visual Positioning Sensor
  • Omron 3G3SV-BB007-E 0.75kW VFD
  • CML 6622 IRD Entek AW10528 Vibration Monitor
  • Omron CP1L-EL20DR-D PLC CPU
  • TE.CO TFX 4G 1.5 Grey Cable 500m
  • Mitsubishi Electric 3BK23057 Circuit Board Module
  • OMRON FQM1-MMP21 Motion Control Module
  • OMRON CP1E-E40SDR-A Micro PLC CPU Unit
  • KEBA CU201 PLC Control Unit
  • OMRON F150-C10E-2 Vision Sensor Controller
  • YASKAWA SGDH-04AE-OY Sigma-II Servo Driver
  • OMRON CS1H-CPU65-V1 PLC Central Processing Unit
  • OMRON NB7W-TX01B Interactive Display HMI
  • OMRON C500-TU002E Programmable Logic Controller Timer Unit
  • OMRON C200HW-PRT21 PROFIBUS DP Slave Unit
  • ExcelTech MX-5-S-I-6-4 Static Transfer Switch
  • Allen-Bradley 100-B300ND3 Contactor 304A 600V
  • Pasaban MTC-3052 Fast I/O PLC Card
  • OMRON CQM1-TC101 Temperature Control Unit
  • OMRON 3G3SV-BB007-E VFD 0.75kW 220V
  • OMRON CQM1H-MAB42 PLC Module
  • OMRON R88M-K75030T-S2 Servo Motor
  • Yaskawa SGMAH-03DAAA61 Servo Motor 200V 300W
  • OMRON F300-P Power Supply Unit
  • Land System 4 M1 Thermometer 65071800C-L35-A50
  • Yamatake MAH10-ME0100 ME-NET Module
  • Siemens Simatic 505 16 Slot PLC Rack
  • Yaskawa SGDH-02AE-OY Servo Driver 200W
  • SCE M68-2000 2-Axis Motion Controller
  • Zenith Controls K-1201 Transfer Switch Controller
  • Yaskawa SGDH-02AE-OY 200W Servo Driver
  • Yaskawa SGMAH-02AAA61D-0Y 200W Servo Motor
  • Schneider TSX P573634M Modicon Premium CPU
  • Siemens 6FX5002-5DN31-1DA0 Power Cable
  • Omron CJ1G-CPU43H CPU Unit 30K Steps
  • OMRON C28P-EDR-D PLC Unit
  • SIEMENS S7-300 PLC System
  • Schneider TP400-PLC-1411 Board
  • Siemens 6FC5203-0AF00-0AA3 Panel
  • ALLEN BRADLEY 1754-L28BBB GuardPLC
  • Omron E6C3-AG5B-C Encoder
  • SCE M68-2000/5 CNC Controller
  • SCHNEIDER TM2ALM3LT Module
  • OMRON C200H-OV001 Voice Module
  • OMRON R88M-H30030 Servo Motor
  • Bosch RD500 Indramat Servo Drive RD51.2-4B
  • Siemens 6SE7090-0XX84-0AH2 T300 Module
  • Omron GRT1-TS2P SmartSlice Thermocouple Input
  • Xaar XP55500016 XUSB Drive Electronics
  • Siemens 6SL3210-1SE21-8UA0 PM340 Power Module
  • Mitsubishi GT2708-VTBA Touch Display 8.4 Inch
  • Pasaban Fast I/O MTC-3052 PLC Card
  • ABB ACS355-01U-02A4-2 VFD 0.37kW
  • Yamatake MAH20-PC2100 Processor Module
  • Allen Bradley 1774-P1 PLC Power Supply
  • Yaskawa SGDH-04AE-OY 400W Servo Driver
  • Omron CPH-X40DT1-D PLC CPU Unit
  • Pilz PNOZ mm0.2p Safety PLC Mini 772002
  • Siemens 6SL3555-OPR01-0AA0 Sinamics G110M Panel
  • Sanyo PLC-XTC50L LCD Projector
  • SCE M68-2000 2-Axis Motion Controller
  • Omron CS1W-CT021 High-Speed Counter Unit