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  Citation Number 3
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ÇEKME YÜKÜ UYGULANMIŞ BORU YAPIŞTIRMA BAĞLANTILARINDA BİNDİRME UÇ GEOMETRİSİNİN BAĞLANTI DAYANIMINA ETKİSİNİN ARAŞTIRILMASI
2020
Journal:  
Konya Mühendislik Bilimleri Dergisi
Author:  
Abstract:

Yapıştırma bağlantıları, farklı bağlantı geometrilerinde oluşturulabilmektedir. Yapıştırma bağlantı tasarımlarında yoğun bir şekilde kullanılan ve üzerinde çok sayıda araştırma yapılmış yapıştırma bağlantı şekillerinden birisi de tek tesirli bindirme bağlantılarıdır. Yapılan çalışmalar sonucunda tek tesirli bindirme bağlantılarının bindirme uçlarında oluşan gerilme yığılmalarının hasarın oluşmasında etkin rol oynadığı belirtilmiştir. Tek tesirli bindirme bağlantılarında, bindirme uçlarında, malzeme azaltılması yapılmasının gerilme yığılmalarını düşürdüğü ve bunun sonucu olarak bağlantı dayanımının arttığı yapılan çalışmalardan anlaşılmaktadır. Dolayısıyla, yapıştırılan malzemelerin bindirme uçlarında malzeme azaltılmasının, farklı bağlantı geometrilerinde dayanıma etkisinin araştırılması önemli olmaktadır. Yapılan bu çalışmada, çekme yüküne maruz bırakılmış boru yapıştırma bağlantıları modellenerek, yapıştırılan boruların bindirme bölgesindeki farklı uç geometrilerinin bağlantı mukavemetine etkisi bir sonlu elemanlar analiz programı olan ANSYS kullanılarak araştırılmıştır. Yapılan çalışmada ilk olarak yapıştırılan boruların uç kısımlarındaki et kalınlığının bağlantı dayanımına etkisi araştırılmıştır. Daha sonra, borunun bindirme bölgesi boyunca et kalınlığı, bindirme ucundan itibaren farklı uzunluklarda modellenerek boru ucu uzunluk değişiminin bağlantı dayanımına etkisi çekme yükü altında araştırılmıştır. Sonuç olarak bu çalışma şartlarında ideal tasarımın Model-4 tasarımı olduğu bulunmuştur. Bu tasarımda yapıştırma bağlantılarında kritik bölge olan yapıştırıcı tabakasının dayanımı % 20,5 oranında artmıştır.

Keywords:

Stretch load applied tube building connections Stretch geometry research on the impact of connectivity resistance
2020
Author:  
Abstract:

Closing connections can be created in different connections geometries. One of the forms of adhesive connectivity that is widely used in the adhesive connectivity designs and has been researched on numerous are single-covered adhesive connectivity. The results of the studies have shown that the stretching accumulations formed in the stretching ends of the single-faceted binding connections have played an effective role in the formation of damage. It is understood from the work done in single-covered bindings, at the binding ends, that the reduction of the material reduces the voltage accumulations and, as a result, increases the connection resistance. Therefore, it is important to investigate the resistance effect of the reduction of the material at the siding ends of the attached materials in different connective geometries. In this study, the modeling of the pipe adhesive connections exposed to the drawing load, the influence of the different end geometries in the drawing area of the adhesive pipe has been studied using ANSYS, a final element analysis program, which has an effect on the connection strength. In the study, the effect of the fat thickness in the end parts of the pipes that were first attached on the connection resistance was studied. Later, the thickness of the meat along the sliding area of the pipe was studied under the drawing load of the impact of the change of the length of the pipe end by modeling in different lengths from the sliding end to the sliding end. As a result, in these working conditions, the ideal design was the Model-4 design. In this design, the resistance of the adhesive layer, which is a critical area in the adhesive connections, has increased by 20.5%.

Keywords:

The Investigation Of The Effect Of The Overlap End Geometry On The Joint Strength In Pipe Bonding Joints With Tensile Load
2020
Author:  
Abstract:

The adhesive bonding joints can be created in different connection geometries. One of the forms of adhesive bonding joints, which has been used extensively in bonding designs and has been researched, is single lap joints (SLJs). As a conclusion of the studies carried out, it has been stated that the stress accumulation on the overlap ends of the SLJs plays an effective role in the formation of the failure. It is understood from the studies that the reduction of the material on the overlap ends decreases the stress accumulation in the SLJs, and as a result, the strength of the SLJs increased. Therefore, it is critical to examine the effect of material reduction on the overlap ends of the adhered materials on strength in different joints geometries. In this study, pipe bonding joints exposed to tensile load were modeled and the effect of different end geometries of the adhered pipes on the bond strength was investigated using ANSYS, a finite element analysis software. In the study, firstly, the effect of the wall thickness at the ends of the adhered pipes on the bond strength was investigated. The wall thickness along the overlap line of the pipe was modeled in different lengths from the overlap end and the effect of the pipe end length change on the bond durability was examined under tensile load. Eventually, it was obtained that the ideal design in these working conditions was the Model-4 design. In this design, the strength of the adhesive layer, which is the critical region in bonding joints, has increased by 20.5%.

Keywords:

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Konya Mühendislik Bilimleri Dergisi

Field :   Fen Bilimleri ve Matematik; Sağlık Bilimleri; Ziraat, Orman ve Su Ürünleri

Journal Type :   Ulusal

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Article : 858
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Konya Mühendislik Bilimleri Dergisi