PubMed Health⌕ Search

Biomedical subjects

Mohamed Abdelrahman

Publications and source records attributed to Mohamed Abdelrahman.

3 recordsLinked to original sources

Monitoring metal-fill in a lost foam casting process.

The lost foam casting (LFC) process is emerging as a reliable casting method. The metal-fill profile in LFC plays an important role among several factors that affect casting quality. The metal-fill profile is in turn affected by several factors. Several casting defects may result due to an improper metal-fill process. Hence, it becomes essential to characterize and control, if possible, the metal-fill process in LFC. This research presents instrumentation and a technique to monitor and characterize the metal-fill process. The characterization included the determination of the position of the metal front and the profile in which the metal fills up the foam pattern. The instrumentation included capacitive sensors. Each sensor is comprised of two electrodes whose capacitive coupling changes as the metal fills the foam pattern. Foundry tests were conducted to obtain the sensors' responses to the metal fill. Two such sensors were used in the foundry tests. Data representing the responses of these sensors during the metal-fill process were collected using a data acquisition system. A number of finite element electrostatic simulations were carried out to study the metal-fill process under conditions similar to those experienced in foundry tests. An artificial neural network was trained using the simulation data as inputs and the corresponding metal-fill profiles as outputs. The neural network was then used to infer the profile of the metal-fill during foundry tests. The results were verified by comparing the metal-fill profile inferred from the neural network to the actual metal-fill profile captured by an infrared camera used during the foundry tests. The match up between the inferred profiles and the infrared camera measurements was satisfactory, indicating that the developed technique provides a reliable and cost effective method to monitor the metal-fill profile in LFC.

Journal Article↗

Prevention of viral transmission in HD units: the value of isolation.

We have investigated the influence of isolation of patients with different viral serology status on the transmission of viral hepatitis among patients on hemodialysis (HD). Our kidney center was designed to facilitate isolation of infected patients and implement infection control pre-cautions. These included separate rooms, separate entrances and exit sites, and designated HD machines for patients with hepatitis B, hepatitis C, and sero-negative patients. In addition, universal infection control polices and procedures were implemented. These included proper chemical and heat disinfection of all HD machines following each HD session. These measures were complemented with education and training of the nursing staff detailing strict adherence to all infection control policies and procedures. All of our patients and staff were vaccinated against hepatitis B. Our results showed that after four years of follow-up, there was a decrease in the annual incidence of hepatitis C seroconversion from an average of 2.4% to 0.2%. The current prevalence of hepatitis C is 29% compared to 57% at the start of the study. In addition, there have been no reported sero-conversion cases of hepatitis B. Furthermore, our data also confirmed that the prevalence of hepatitis C (as well as hepatitis B) is more frequent in HD (29%) than peritoneal dialysis (5%) units. Surgical procedures, blood transfusion, and frequent visits to different dialysis units remain the major risk factors for contracting viral hepatitis. In conclusion, these results clearly show that isolation of patients and machines, together with strict adherence to infection control policies and procedures, result in a significant decline in the incidence and prevalence and better control of viral hepatitis transmission among HD patients.

Cross Infection↗

Integration of multiple sensor fusion in controller design.

The main focus of this research is to reduce the risk of a catastrophic response of a feedback control system when some of the feedback data from the system sensors are not reliable, while maintaining a reasonable performance of the control system. In this paper a methodology for integrating multiple sensor fusion into the controller design is presented. The multiple sensor fusion algorithm produces, in addition to the estimate of the measurand, a parameter that measures the confidence in the estimated value. This confidence is integrated as a parameter into the controller to produce fast system response when the confidence in the estimate is high, and a slow response when the confidence in the estimate is low. Conditions for the stability of the system with the developed controller are discussed. This methodology is demonstrated on a cupola furnace model. The simulations illustrate the advantages of the new methodology.

Algorithms↗