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Experimental Research on the Influence of Structural Modifications of Adherends on the Load - Bearing Capacity of Lap Joints of S235JR Steel Sheets

Abstract

The paper presents the results of the research determining the impact of structural modifications of adherends on the load capacity of the joints determined in the static shear test. Tests of adhesive lap joints of S235JR steel sheets bonded with Araldite 2014-2 epoxy adhesive are described. The influence of technologically simple structural modifications was investigated, consisting in making notches and holes at the leading edge of the ad-herends. These modifications were aimed at bringing about local flexibility of the joint in the sensitive area of stress concentration. Based on experimental studies, it was shown that there is a possibility of increasing the load-bearing capacity of the joint due to the applied modifications, in the most favorable variant, an increase in the load-bearing capacity by 15.9% compared to the base variant was demonstrated. The tests confirmed that filled notches by the adhesive in the front part of the adherends can significantly improve the strength properties of joint, while the considered modifications in the form of holes do not have a significant impact on the proper-ties of the adherends.

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Experimental Research on the Influence of Structural Modifications of Adherends on the Load - Bearing Capacity of Lap Joints of S235JR Steel Sheets

Author: Zielecki, Władysław; Łabno, Katarzyna; Perłowski, Ryszard; Bąk, Łukasz; Katrňák, Tomáš
Publisher: Sciendo
Year: 2023
DOI: 10.7862/rm.2023.1
Source: https://dspace.vut.cz/bitstreams/dfcffa12-9e01-4646-abec-c05d69ea4d0b/download
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A d a n c e s i n M e c h a n i c a l a n d M a e i a l s E n g i n e e i n g
Volume 40, 2023, Pages 5-13
h ps://doi.o g/10.7862/ m.2023.1
O iginal Resea ch
Expe imen al Resea ch on he In luence o S uc u al
Modi ica ions o Adhe ends on he Load-Bea ing
Capaci y o Lap Join s o S235JR S eel Shee s
Władysław Zielecki 1 , Ka a zyna Łabno 2, Rysza d Pe łowski 1,* ,
Łukasz Bąk 3, Tomáš Ka ňák 4
1 Depa men o Manu ac u ing and P oduc ion Enginee ing, Rzeszow Uni e si y o Technology, al. Pows .
Wa szawy 8, 35-959 Rzeszów, Poland
2 Zakłady Mechaniczne Ta nów S.A., ul. Kochanowskiego 30, 33-100 Ta nów, Poland
3 Depa men o Ma e ials Fo ming and P ocessing, Rzeszow Uni e si y o Technology, al. Pows . Wa szawy
8, 35-959 Rzeszów, Poland
4 Ins i u e o Ae ospace Enginee ing, B no Uni e si y o Technology, An onínská 548/1, 601 90 B no, Czech
Republic
* Co espondence: [email p o ec ed]
Recei ed: 27 Augus 2022 / Accep ed: 22 No embe 2022 / Published online: 12 Janua y 2023
Abs ac
The pape p esen s he esul s o he esea ch de e mining he impac o s uc u al modi ica ions o adhe ends
on he load capaci y o he join s de e mined in he s a ic shea es . Tes s o adhesi e lap join s o S235JR
s eel shee s bonded wi h A aldi e 2014-2 epoxy adhesi e a e desc ibed. The in luence o echnologically sim-
ple s uc u al modi ica ions was in es iga ed; i consis ed in making no ches and holes a he leading edge o
he adhe ends. These modi ica ions we e aimed a b inging abou local lexibili y o he join in he sensi i e
a ea o s ess concen a ion. Based on expe imen al s udies, i was shown ha he e is a possibili y o inc eas-
ing he load-bea ing capaci y o he join due o he applied modi ica ions; in he mos a o able a ian , an
inc ease in he load-bea ing capaci y by 15.9% compa ed o he base a ian was demons a ed. The es s con-
i med ha he no ches illed wi h he adhesi e in he on pa o he adhe ends can signi ican ly imp o e
he s eng h p ope ies o join , while he conside ed modi ica ions in he o m o holes do no ha e a signi i-
can impac on he p ope ies o he adhe ends.
Keywo ds: adhesi e join s, s uc u al modi ica ion, s a ic shea es , S235JR s eel
1. In oduc ion
S uc u al adhesi e join s a e becoming mo e and mo e widely used, as hey enable joining ma e-
ials wi h di e en p ope ies. They a e used in composi e s uc u es combining a ious ma e ial p op-
e ies (Da is e al., 1999). The ype o join s conside ed is commonly used in he cons uc ion o he
means o anspo , especially in he au omo i e, a ia ion o ailways, because hey enable he p oduc-
ion o s uc u es wi h a ela i ely low weigh . Adhesi e join s a e no only used in manu ac u ing o
new p oduc s, bu a e also widely used in epai s, including a ia ion s uc u es (Da is e al., 1999).
The s eng h o adhesi e bonds depends on many ac o s, such as he me hod o su ace p epa a-
ion o adhe ends, he condi ions o bonding and ha dening he adhesi e, and he hickness o he ad-
hesi e laye (Ba czak e al., 2013; da Sil a e al., 2009; Da ies e al., 2009; Kadioglu & Adams,
2015; Ka achalios e al., 2013).
The ac o s in luencing he p ope ies o join s also include he geome ic ea u es o he ad-
he ends (da Sil a e al., 2011; Zhao e al., 2011). The mos impo an o hem a e he geome ical di-
mensions and he shape o he join , which ansla es in o he way i is loaded and he s i ness o he
adhe ends (Zhao e al., 2011).
6 W. Zielecki e al.
Ad ances in Mechanical and Ma e ials Enginee ing, Volume 40, 2023, Pages 5-13
A gene al ecommenda ion o he design o adhesi e join s de e mines he shape o he join s so
ha hey a e domina ed by shea s esses.
In eali y, howe e , he e is usually no pu e shea in lap join s. Usually he e appea s a complex
s a e o s esses, in which an impo an ole is also played by no mal s esses, causing an un a ou able
s a e o peeling (da Sil a e al., 2009).
A he on edges o he loaded lap join , a s ess concen a ion occu s (da Sil a e al., 2009),
which usually ini ia es he ailu e o he join . The amoun o accumula ion depends p ima ily on he
s i ness o he adhe ends and he p ope ies o he adhesi e.
In he li e a u e, he e a e a ious me hods aimed a limi ing s ess concen a ion a he leading
edges o he join . Godzimi ski (2002) sugges s making a g oo e (unde cu ) along he edge o he ad-
hesi e join as one o he me hods o educing he concen a ion o s esses. Such a p ocedu e, despi e
weakening he adhe ends, educes he alue o s esses in he join and mo es he maximum s ess
away om he edge o he join .
In he adhesi e joining echnology, i he e is no such equi emen , i is ecommended no o e-
mo e he adhesi e lashes. Many au ho s ha e shown ha lashes ha e a posi i e e ec on s ess dis-
ibu ion (Belinga di e al., 2002; Godzimi ski, 2002). They uni y and educe he maximum s ess
alues in he nea -edge zone o he join . The au ho s o esea ch wo ks (Belinga di e al., 2002; Lang
and Mallick, 1998; Risple e al., 2000; Wang e al., 1998) showed ha he addi ional applica ion o
adhesi e beyond he ou line o he main lap join , which inc eases he spew, inc eases he s eng h.
An addi ional me hod o educing he nea -edge s ess concen a ion in lap join s is o inc ease he
hickness o he adhesi e laye in his zone. A numbe o scien i ic wo ks aise he issue o he app o-
p ia e shaping o adhe ends, which aims o inc ease he hickness o he adhesi e laye locally in he
a ea o s ess concen a ion (da Sil a & Adams, 2007; Kaye & Helle , 2002; Kim e al., 2001; Lang
and Mallick, 1999; Mazumda & Mallick, 1998). These modi ica ions may include, in e alia, he ap-
plica ion o cham e o ille on he leading edge o adhe end (Belinga di e al.2002; You e al., 2007;
Zielecki e al., 2017). Thanks o his, local lexibili y o he join in he sensi i e a ea is in oduced.
The au ho s o he wo k (Belinga di e al., 2002) conduc ed FEM analyzes o be elled edges o
adhe ends. The analyzes conce n he in luence o he be el angle on he dis ibu ion o angen ial and
no mal s esses in a single- old join o adhe ends o di e en hickness. Wi h he p oposed modi ica-
ions, clea bene i s can be no iced, ela ed no only o he lowe ing o he maximum angen ial s ess-
es, bu also o he uni o mi y o he dis ibu ion in he sensi i e zone.
Simila analyzes we e ca ied ou by You e al. (2007), who suppo ed hese conside a ions wi h
expe imen al esea ch. They con i med he possibili y o imp o ing he s eng h o adhesi e lap join s
wi h s uc u al modi ica ions. In he mos p e e ed cases, an inc ease in he shea s eng h o abou
20% (You e al., 2007) is ob ained.
S uc u al modi ica ions consis ing in making a adius in he join nea -edge zones we e consid-
e ed by Lucas (2011). Conside a ions om he publica ion (Lucas, 2011) also apply o he shea lap
join . Va ious dimensions o he adius we e conside ed he e, oge he wi h adhesi es wi h di e en
modulus o elas ici y. In he mos p e e ed a ian s, an inc ease in he shea s eng h o abou 40%
was demons a ed.
On he basis o he li e a u e e iew, i wha was no iced was he need o ela i ely simple ways
o in oducing s uc u al changes ha do no equi e a signi ican inc ease in echnology cos s, which
would con ibu e o he imp o emen o he p ope ies o he join s.
In his pape , expe imen al es s we e ca ied ou on s uc u al adhesi e join s wi h s uc u al
modi ica ions o he on pa o he adhe ends. The modi ica ions consis ed in in oducing simple
no ches and holes a he edges o shee s o a ious sizes. The aim o he s udy was o show whe he
his ype o ela i ely echnologically simple modi ica ion o join s can con ibu e o he local lexibil-
i y o he adhesi e join in he sensi i e zone, whe e s ess concen a ion occu s.
2. Ma e ial and me hods
The esea ch on he impac o s uc u al modi ica ions aimed a educing s ess concen a ion in
he on al a ea o he adhesi e join was ca ied ou o adhesi e lap join s wi h he dimensions shown
in Fig. 1a. Bo h adhe ends we e made o S235JR shee s eel wi h a hickness o 2 mm. The shape and
dimensions o he conside ed s uc u al modi ica ions in he o m o no ches a he leading edge o he
adhe end a e shown in Fig. 1b, while he modi ica ions in he o m o holes a e shown in Fig. 1c. As
s uc u al modi ica ions, a ian s wi h he inden a ions o 1 mm, 2 mm and 3 mm widd and leng hs: 1
Expe imen al Resea ch on he In luence o S uc u al Modi ica ions o Adhe ends on he Load-Bea ing Capaci y… 7
Ad ances in Mechanical and Ma e ials Enginee ing, Volume 40, 2023, Pages 5-13
mm, 2 mm, 3 mm and 4 mm we e used. Modi ica ions in he o m o holes wi h he diame e s o 2
mm, 3 mm and 4 mm we e also es ed. A de ailed speci ica ion o he modi ica ion dimensions a he
leading edge o he adhe ends is p esen ed in Table 1. As pa o he esea ch, only symme ical join s
we e es ed, i.e. in each a ian , bo h adhe ends had iden ical modi ica ions.
No ches and holes in he on pa o he adhe ends we e made by machining. The no ches we e
made using disc cu e s wi h he hickness co esponding o he wid h o he no ches, while he holes
we e made using d ills.
The join was made using he epoxy adhesi e A aldi e 2024-2 (supplied by Hun sman Co po a-
ion, Texas USA).
a)
b)
c)
Fig. 1. The shape and dimensions o he samples o adhesi e lap join s used in he es s in he basic e sion (a) and he shape
and dimensions o s uc u al modi ica ions in he on pa o he adhe ends in he o m o no ches (b) and holes (c)
The same me hods o su ace p epa a ion and ha dening condi ions o he adhesi e composi ion
we e applied o all join a ian s. Each su ace o be joined was subjec ed o ab asi e blas ing wi h
aloxi e 95A, which con ains 96% aluminium oxide (Al2O3), ~3% i anium dioxide (TiO2) and 1-2%
o he admix u es. Ab asi e blas ing was pe o med unde he ollowing condi ions: g ain size wz =
0.27 mm, ai p essu e p = 0.8 ± 0.1 MPa, and blas ing ime = 60 s.
Table 1. Summa y o dimensions o s uc u al modi ica ions o indi idual a ian s o samples
Va ian
No ch wid h
(W in mm)
No ch leng h
(L in mm)
Hole diame e
(D in mm)
Pi ch
(P in mm)
Loca ion o he
holes
(L in mm)
Base
-
-
-
-
-
Na ow
no ch
N-1x1
1
1
-
6.5
-
N-1x2
1
2
-
6.5
-
N-1x3
1
3
-
6.5
-
N-1x4
1
4
-
6.5
-
Medium
no ch
N-2x1
2
1
-
6.5
-
N-2x2
2
2
-
6.5
-
N-2x3
2
3
-
6.5
-
N-2x4
2
4
-
6.5
-
Wide no ch
N-3x1
3
1
-
6.5
-
N-3x2
3
2
-
6.5
-
N-3x3
3
3
-
6.5
-
N-3x4
3
4
-
6.5
-
Hole
H-2
-
-
2
6.5
2
H-3
-
-
3
6.5
2.5
H-4
-
-
4
6.5
3
Su ace mo phology o he adhe ends was measu ed wi h he Talysu CCI Li e 3D op ical p o il-
e (Taylo Hobson L d., Leices e , Uni ed Kingdom). Figu e 2 p esen s su ace mo phology o he
adhe ends a e he sand blas ing p ocess.
8 W. Zielecki e al.
Ad ances in Mechanical and Ma e ials Enginee ing, Volume 40, 2023, Pages 5-13
Fig. 2. Su ace mo phology o he adhe ends a e he sand blas ing p ocess
The alues o basic su ace oughness pa ame e s a e as ollows: a i hme ical mean heigh Sa =
1.55 µm, oo mean squa e de ia ion Sq = 3.92 µm, ku osis Sku = 4.98, skewness Ssk = -0.447, max-
imum p o ile peak heigh Sp = 24.6 µm, maximum heigh Sz = 60.0 µm and maximum p o ile alley
dep h S = 35.4 µm.
The ha dening p ocess o he adhesi e-bonded join s las ed o 24 h a oom empe a u e 20 ± 3
°C unde a cons an p essu e o 0.1 MPa applied o he join a ea.
The in es iga ion o he load capaci y o he join by ensile/shea es s was ca ied ou using a
ZWICK Roell Z-100 uni e sal es ing machine (Zwick/Roell GmbH & Co. KG, Ulm, Ge many) wi h
he cons an c osshead speed o 5 mm/min a ambien empe a u e. The esea ch was ca ied ou o
i e epe i ions o each a ian .
The mo phologies o he ac u e su aces o he adhesi e join s we e examined using an scanning
elec on mic oscope (SEM) Phenom P oX (Nanoscience Ins umen s, Phoenix, AZ, USA).
3. Resul s and discussion
Figs. 3a-c show ep esen a i e cu es om s a ic shea es s o join s o each o he a ian s o
he applied modi ica ions in compa ison o he basic a ian . In Fig. 3a he shea cu es o he samples
om na ow no ch o di e en leng hs we e ela ed o he base a ian . He ein, in selec ed cases, a
highe load capaci y o he join s was obse ed, and in each a ian wi h a modi ica ion, a sligh ly
highe s i ness o he join in ela ion o he base a ian was also obse ed. Simila phenomena we e
demons a ed o he a ian s o medium no ch and wide no ch.
On he o he hand, in he case o s uc u al modi ica ions consis ing in making holes, no signi i-
can di e ences we e e ealed in he s eng h and s i ness o join s in ela ion o he base a ian .
The discussion o he possible mechanisms o ailu e o join s a ec ing he na u e o he mecha-
nism o s a ic shea cu es o indi idual a ian s will be ca ied ou on he basis o ac og aphic ana-
lyzes.
Diag am shown in Fig. 4 summa izes he indi idual es esul s o indi idual samples along wi h
he mean alue o each a ian and he alue o he s anda d de ia ion. The highes inc ease in he
load capaci y o he join in ela ion o he base a ian was demons a ed o he no ch medium, spe-
ci ically o he N-3x1 a ian . In his case, he a e age alue o he load capaci y o he join in-
c eased by abou 15.9%, as o he a ian unde conside a ion i was 8634.04 N, while o he base
a ian , his alue is 7446.95 N. I should be no ed ha he dispe sion o he load capaci y esul s was
also inc eased he e, because o he a ian N-3x1 he s anda d de ia ion alue was 381.6 N, while o
he base a ian , he s anda d de ia ion was 201.5 N. The inc ease in he sp ead o s eng h esul s was
obse ed o mos a ian s wi h s uc u al modi ica ions. The la ges sca e ing o esul s in ela ion o
he base a ian was shown o he a ian wi h holes, namely H-3, whe e he s anda d de ia ion was
982.9 N and he a e age alue o he load capaci y o his a ian was 7033.12 N.
I should be no ed ha om he echnological poin o iew, accu a e illing o he no ches wi h
adhesi e is di icul o ob ain, hence in many cases qui e signi ican sca e ing o he s eng h esul s
was demons a ed. Addi ionally, illing ce ain olumes wi h adhesi e mass c ea es he possibili y o
he occu ence o oids, ai bubbles in hese olumes, which may be andom, and undoub edly a ec
he epea abili y o he es esul s.
Expe imen al Resea ch on he In luence o S uc u al Modi ica ions o Adhe ends on he Load-Bea ing Capaci y… 9
Ad ances in Mechanical and Ma e ials Enginee ing, Volume 40, 2023, Pages 5-13
Fig. 3. Shea load-displacemen ep esen a i e s a ic es cu es o adhesi e join s wi h s uc u al modi ica ions in ela ion o
he base a ian , o he ollowing ypes o modi ica ions: na ow no ch (a), medium no ch (b), wide no ch (c) and hole (d)
Fig. 4. E ec o he geome y o s uc u al modi ica ions on load capaci y o adhesi e join s
Howe e , in he case o one o he a ian s wi h a s uc u al modi ica ion, namely N-1x1, high e-
pea abili y o he esul s was demons a ed du ing he es s, because in his case he a e age load ca-
paci y o he join was 7834.13 N wi h he s anda d de ia ion equal o 61.62 N. I should be no ed ha
his is he a ian wi h he smalles no ch dimensions ha we e conside ed, namely he olume o he
no ches which is illed wi h he adhesi e, has he dimensions o 1×1×2 mm. Wi h such a small ol-
ume, i is easy o comple ely and epe i i ely ill he space wi h adhesi e; he p obabili y o de ec s
a)
b)
c)
d)

10 W. Zielecki e al.
Ad ances in Mechanical and Ma e ials Enginee ing, Volume 40, 2023, Pages 5-13
such as oids occu ing in hese olumes is educed, hence he high epea abili y o he es esul s is
ensu ed.
On he basis o ac og aphic analyzes, an a emp was made o de e mine he phenomena in lu-
encing he inc ease in s eng h o he selec ed join a ian s. The analyzes we e s a ed wi h he
no ched a ian s, as his modi ica ion esul ed in a signi ican inc ease in he s eng h o he join . Fig.
5 shows images o he ac u e su ace o he N-2x4 a ian showing he bo de be ween he shee
su ace and he no ch illed wi h adhesi e. The SEM mic og aph shows a clea di e ence in he na u e
o he ac u e o he adhesi e in he a ea o he no ch and he shee su ace. In he case o ailu e o
he join in he a ea o he shee , a ypical ailu e o he adhesi e join was obse ed due o shea ing o
a hin laye o adhesi e o abou 0.1 mm hickness. In his case, he e is essen ially cohesi e ailu e,
al hough agmen s o adhesi e ailu e can also be seen in small a eas a he leading edge o he shee .
A simila cha ac e o ailu e occu s wi h he basic a ian (Fig. 6a), while in his case no a eas o ad-
hesi e ailu e we e obse ed. A comple ely di e en cha ac e o he c acking akes place in he no ch
a ea; in his case he ac u e is cha ac e ized by a ailu e mechanism ypical o he s e ching o
he mose s, whe e he ac u e o adhesi e a b i le cha ac e . In he a ea o he no ch, he ha dened
adhesi e has a hickness ha is much g ea e han ha o he adhesi e join , i.e. close o he hickness
o he shee , i.e. 2 mm. In he conside ed a eas o med by he adhesi e- illed no ches, a di e en , low-
e join s i ness occu s locally, which esul s in a change in he s ess dis ibu ion. The local lexibili y
o he on join a ea is ad an ageous due o he s ess concen a ion ypical o his ype o join . I is
in his phenomenon ha he inc ease in s eng h o a ian s wi h no ches should be seen. A he same
ime, as p e iously obse ed, he echnological p oblem o uni o m illing o he olume o no ches
and holes wi h adhesi e may ansla e in o an inc ease in he sca e o es esul s. On he one hand,
he g ea e he olumes o med by he no ches, he g ea e he lexibili y o he join , bu on he o he
hand, he la ge olumes illed wi h he adhesi e mass inc ease he likelihood o he a o emen ioned
d awbacks, such as ai bubbles, oids, e c.
In he case o s uc u al modi ica ions consis ing in making ound holes a he on edges o he
adhe ends, no signi ican e ec on he s eng h o he join was demons a ed. Fig. 6b shows he mi-
c og aphs o he ac u e su ace o he H-4 a ian . Based on he SEM image, i can be concluded
ha in his case he e was no signi ican di e ence in he mechanism o ailu e o he join in he a ea
o he shee su ace and he hole illed wi h adhesi e. In he case o no ches, he adhesi e ha ills he
no ch olume has one deg ee o eedom, i.e. i s e ches in he di ec ion o he join loading. On he
o he hand, he adhesi e closed in a hole made in s eel ha ing signi ican ly highe s i ness han he
ha dened adhesi e ma e ial, has no possibili y o s e ching. The e o e, such a s uc u al modi ica ion
does no ha e a signi ican impac on he s ess dis ibu ion a he leading edge o he join - he adhe-
si e illing he holes is shea ed in he join plane.
Fig. 5. Mic og aphs o he ac u e su aces o a ian : medium no ch 4 mm leng h
To sum up, a signi ican po en ial o inc ease he s a ic s eng h o he adhesi e join by se e al
pe cen hanks o making he on pa o he join mo e lexible has been demons a ed. The issue
equi es u he op imiza ion s udies aimed a indica ing he op imal dimensions and shapes o no ch-
es. The issue o echnology also equi es de elopmen , because in o de o ensu e he epea abili y o
Expe imen al Resea ch on he In luence o S uc u al Modi ica ions o Adhe ends on he Load-Bea ing Capaci y… 11
Ad ances in Mechanical and Ma e ials Enginee ing, Volume 40, 2023, Pages 5-13
he s eng h o join s, i is necessa y o ill he space in he no ches in such a way so as o ensu e uni-
o m mechanical p ope ies.
a)
b)
Fig. 6. Mic og aphs o he ac u e su aces o base (a) and hole wi h a diame e o 4 mm (b)
4. Conclusions
The aim o he wo k was o demons a e, on he basis o expe imen al s udies, he possibili y o
inc easing he s uc u al load-bea ing capaci y o S235JR s eel adhesi e join s by making ela i ely
easy s uc u al modi ica ions o he adhe ends. Based on he esea ch wo k ca ied ou , he ollowing
conclusions we e d awn:
• Due o he applica ion o ela i ely easy- o-implemen s uc u al modi ica ions, he load-
bea ing capaci y o adhesi e lap join s can be imp o ed. As pa o he esea ch, he highes
inc ease was shown o he a ian wi h 3 mm wide and 1 mm long no ches. In his case, he
a e age alue o he load capaci y o he join inc eased by abou 15.9%, as o he a ian un-
de conside a ion i was 8634.04 N, while o he base a ian , his alue is 7446.95 N.
• The inc ease in he load capaci y o he join s was demons a ed only o he a ian s wi h
no ches, while no signi ican changes in he load capaci y we e obse ed o he a ian s wi h
openings a he leading edge o he adhe ends.
• The inc ease in load capaci y o a ian s wi h s uc u al modi ica ions in he o m o no ches
is caused by he local elas ici y o he on pa o he join , whe e s ess concen a ion occu s.
In he a ea o he no ches, he adhesi e illing unde goes a di e en des uc ion mechanism
han he hin laye o adhesi e shea ed be ween he shee su aces.
• In mos cases, o a ian s wi h s uc u al modi ica ions, he s anda d de ia ion o he es e-
sul s was inc eased. The la ges dispe sion o esul s in ela ion o he base a ian was shown
o he a ian wi h holes wi h he diame e o 3 mm, whe e he s anda d de ia ion was 982.9
12 W. Zielecki e al.
Ad ances in Mechanical and Ma e ials Enginee ing, Volume 40, 2023, Pages 5-13
N and he a e age alue o he load capaci y was 7033.12 N, while o he base a ian he
alue o he s anda d de ia ion was 201.5 N o he a e age alue o he load capaci y o he
join s equal o 7446.95 N.
• Inc easing he dispe sion o he esul s is caused by a echnological p oblem, because illing
he no ches and holes wi h adhesi e mass c ea es he possibili y o he occu ence o oids, ai
bubbles in hese olumes, which may be andom and has a signi ican impac on he epea a-
bili y o he es esul s.
Acknowledgemen s
This wo k was suppo ed by Polish Na ional Agency o Academic Exchange, p ojec i le: „Re-
sea ch in o inno a i e o ming and joining me hods o hin-walled componen s”, p ojec numbe :
BPN/BSK/2021/1/00067/U/00001.
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Badania Ekspe ymen alne Wpływu Mody ikacji Kons ukcyjnych Ma e iałów Kle-
jonych na Nośność Złącza Zakładkowego Blach S alowych S235JR
S eszczenie
W a ykule p zeds awiono wyniki badań ok eślających wpływ mody ikacji kons ukcyjnych elemen ów kle-
jonych na nośność złączy wyznaczoną w s a ycznej p óbie ścinania. Opisano badania połączeń klejowych za-
kładkowych blach s alowych S235JR sklejonych klejem epoksydowym A aldi e 2014-2. Zbadano wpływ
p os ych echnologicznie mody ikacji kons ukcyjnych, polegających na wykonaniu nacięć i o wo ów na
k awędzi na a cia elemen ów klejonych. Mody ikacje e miały na celu dop owadzenie do miejscowego uela-
s ycznienia połączenia we w ażliwym obsza ze koncen acji nap ężeń. Na pods awie badań ekspe ymen al-
nych wykazano, że is nieje możliwość zwiększenia nośności złącza dzięki zas osowanym mody ikacjom. W
najko zys niejszym wa iancie zaobse wowano wz os nośności o 15,9% w s osunku do wa ian u niemody i-
kowanego kons ukcyjnie. Badania po wie dziły, że wypełnione p zez klej nacięcia w p zedniej części ele-
men ów klejonych mogą znacząco pop awić właściwości wy zymałościowe złącza, na omias ozważane
mody ikacje w pos aci o wo ów nie mają is o nego wpływu na właściwości elemen ów klejonych.
Słowa kluczowe: połączenia klejowe, mody ikacja kons ukcyjna, s a yczna p óba ścinania, s al S235JR