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Guias e Dicas
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Cap 4 - Ligações com Solda, Manuais, Projetos, Pesquisas de Engenharia Civil

Tipos, Qualidade e Simbologia das soldas

Tipologia: Manuais, Projetos, Pesquisas

2020

Compartilhado em 20/06/2020

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Solução Como a espessura da cantoneira é 12,7 mm (1/

ļ) e a da chapa também, a dimensão mínima da perna do filete é

b^ = 5 mm (<

bmáx

= 12,5 − 1,5 = 11

mm), que vamos adotar neste problema.

Os esforços desenvolvidos nas soldas devem ter resultante passando por

G^ (centro de gravidade do perfil L) para que não haja efeitos de flexão na

ligação soldada e no perfil. As propriedades da cantoneira estão na Tabela A6.4, Anexo A. Os comprimentos das soldas são

ℓ^1 e^ ℓ

A equação de equilíbrio de momentos em relação a um ponto no filete inferior fornece:

F× 12,7 − 150 × 3,63 = 0^1 F=^1

= 42,8 kN

F^2 = 150 − 42,8 = 107,2 kN

O comprimento

ℓ^1 pode ser determinado com a solicitação de cálculo 1,3 × 42,8 kN, e a resistência de cálculo dada por:

R^ d^ = 0,7 × 0,

ℓ^1 × 0,6 × 48,5/1,35 = 7,

ℓ^1

A resistência ao cisalhamento das peças ligadas na vizinhança da solda é dada por [ver Eq. (3.7)]

R^ = 1,20d^

ℓ^ × 0,6 × 25/1,1 = 16,

ℓ^ > 7,

Igualando a resistência à solicitação, tem-se:

7,

ℓ^1 = 1,3 × 42,

ℓ^1 = 7,38 cm ≈ 80 mm < 100

b

ℓ=^2

ℓ= 18,5 cm ≈ 190 mm < 100^1

b

Os comprimentos dos filetes podem ser reduzidos utilizando-se solda de maior lado. Adotando-se, por exemplo,

b^ = 8 mm, tem-se:

ℓ= 4,61 cm ≈ 50 mm^1 ℓ= 11,5 cm ≈ 120 mm^2

A verificação da cantoneira à tração deve ser feita com as Eqs. (2.

a) e (2.

b), sendo a área líquida efetiva [ver Eq. (2.5)] calculada com o coeficiente

das Eqs. (2.

a) e (2.

b).

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Solução Neste problema, o esforço solicitante (150 kN) é equilibrado pelos esforços resistentes de três cordões de solda (

F,^1

F^2 e^ F ).^3

Admitindo-se filete de solda com perna

b^ = 5 mm, têm-se as seguintes resistências de projeto (determinadas pelo metal de solda, Eq. (4.

a)):

F^3 d = 0,7 × 0,5 × 12,7 × 0,6 × 48,5/1,35 = 95,8 kN F^1 d

= 0,7 × 0,

ℓ^ × 0,6 × 48,5/1,35 = 7,

ℓ^1

Fd^2 = 7,

ℓ^2

Os valores de

F^1 d^ e^ Fd^2 são determinados com as duas equações de equilíbrio:

Fd^1

+^ F

d^ + 2

F^3 d^ = 1,3 × 150

Fd^1 × 12,7 +

Fd^3

× 6,35 − 1,3 × 150 × 3,63 = 0

7,54 (

ℓ^1 +

ℓ^2 ) + 95,8 = 195

ℓ^1 +^ ℓ^2 = 13,16 cm

95,

ℓ^1

  • 608,3 − 707,9 = 0^ ℓ^1 = 1,04 cm ℓ= 12,1 cm 2

Adotam-se então

ℓ^1 = 20 mm e

ℓ^2

= 130 mm, a serem executados em um único passe com

ℓ^3.

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Solução A carga vertical de 60 kN pode ser transportada para o centro de gravidade

G^ dos cordões de solda (Fig. Probl. 4.6.

b). Com isso, são aplicados uma carga

de 60 kN e um momento

M^ = 60(40 −

x).g

Determinação de

xg

Calculando o momento estático dos cordões de solda em relação ao eixo vertical passando por

G, temos:

2 × 20(10 −

x) − 30g

x= 0g^

x= 5,71 cmg^

Esforço solicitante por unidade de comprimento devido ao cortante

V^ = 60 kN

Consultando a Tabela 4.2, tomaremos como primeira tentativa

b^ = 6 mm <

bmáx

= 19 − 1,5 = 17,5 mm

Esforço solicitante por unidade de comprimento devido ao momento

M

M^ = 60(40 −

xg) = 60(40 − 5,71) = 2057,4 kN · cm

I^ = 0,7 × 0,6 × 20 × 15x

2 × 2 +

= 4725 cm

4

I^ y^ = 0,7 × 0,6 × 30 × 5,

2 + 2 × 0,7 × 0,6 × 20

3 /12 + 2 × 0,7 × 0,6 × 20 (10 − 5,71)

2 = 1280 cm

(^4)

I^ =p^

I^ x^ +^ I^ = 6005 cmy^

4

Alternativamente pode-se usar a Tabela A11.2, Anexo A, para calcular e verificar que

I^ 䴯p^

t^ I^ p

(t^ = 1) = 0,7 × 0,6 × 14.297 = 6004 cm

4

Os pontos mais solicitados serão os mais afastados de

G. Nas extremidades livres dos filetes horizontais, obtemos:

Esforço combinadoSomando os efeitos do momento e do cortante no ponto considerado, teremos^ Esforço solicitante de cálculo

p= 1,4 × 3,63 = 5,07 kN/cmd^

e) f) a) b) c)

Esforço resistente de projeto [Eq. (4.

b)]

  • Metal-base adjacente à ligação

pd^ res

=1,9 × 0,6 × 25/1,10 = 25,9 kN/cm

  • Metal da solda

pd^ res

=0,7 × 0,6 × 0,6 × 41,5/1,35 = 7,75 kN/cm

Conclusão: Como

pdres

^ p, o dimensionamento está satisfatório.d

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Solução

Tensão de cisalhamento atuante na garganta da solda [Eq. (4.13)]

S^ = 25 × 0,95 × 24,525 = 582,5 cm

3

Tensão resistente de projeto, referida à garganta da solda— Metal da solda

τdres

= 0,6 × 415/1,35 = 184 MPa >

τd

Para a verificação do perfil, as tensões cisalhantes junto à solda não são determinantes, uma vez que são menores do que as tensões cisalhantes na altura da linha neutra da seção.Combinação de tensões normais e de cisalhamento na soldaDe acordo com a NBR 8800, nas soldas de ligação de mesas e almas de perfis soldados, o dimensionamento da solda pode ser feito com as tensões de cisalhamento, sem considerar as tensões normais de tração ou compressão, paralelas ao eixo da solda.



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b)

Resistência ao cisalhamento da chapa gusset na região dos filetes de solda

2 × 0,5 × 12 × 0,6 × 25/1,10 = 164 kN > 122 kN

A resistência da ligação é maior que a solicitação.Solda de entalhe ligando a alma ao gussetTrata-se de solda de entalhe com penetração total, sujeita a um esforço de tração normal ao eixo da solda.Esforço de cálculo transmitido pela alma

1,4 × 120 − 122 = 46 kN

Esforço resistente da solda

(7,6 − 2 × 0,66) 0,432 × 25/1,10 = 62 kN

A solda de entalhe satisfaz.

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