EXPERIENCED WPC DECKING MANUFACTURER

Welcome to ECAN Industries

Wood Plastic Composite Deck By ECAN

Shanghai ECAN industrial company Ltd. is a leading supplier of WPC products in China. Founded in 2008, ECAN had established a complete supply chain system integrating R&D, production, sales and after-sales services based on the advantages of our raw materials factories for wood & stone powder and professional technical team. Our strongest products are WPC decking(co-extrusion and general type), WPC railing, WPC wall panel and so on.

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CONTACT US

Email: [email protected]
Phone: +86 137 6469 2158
Address: Industrial Headquarters Park, No. 365 Chuanhong Road, Pudong New District, Shanghai

ABOUT US

Shanghai ECAN industrial company Ltd. is a leading supplier of WPC products in China. Founded in 2008, ECAN had established a complete supply chain system integrating R&D, production, sales and after-sales services based on the advantages of our raw materials factories for wood & stone powder and professional technical team. Our strongest products are WPC decking(co-extrusion and general type), WPC railing, WPC wall panel and so on.

Our Factory

Shanghai ECAN industrial company Ltd adhere to green production and scientific quality management,and has passed IS9001 Quality Management and ISO14001 Environmental Management certification. meanwhile,it is equipped with advanced automatic production line and complete testing equipment.Each process is under strict quality control to ensure high and reliable quality,that complies with and fully passed zhe standards and inspections of authoritative organizations such as CE,FSC,FGS and INTERTEK.

wood beams vs composite beams and columns

21 COMPOSITE BEAMS – I

12 · COMPOSITE BEAMS - I and the maximum deflection is given by (3) 64 5 384 ( /2) The bending moment in each beam at a distance x from mid span is, M 5 3 4 4 Ebh w EI w λ λ δ = x =λ− w(2 4x2)/16 (4) So, the tensile strain at the bottom fibre of the upper beam and the compression stress at

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2015NDSExamples2015 NDS Examples …

25 · 2015NDSExamples2015 NDS Examples –Beams,Columns,andBeams, Columns, and Beam-Columns (DES220) John “Buddyy,” Showalter, PE Lori Koch, PE Vice President, Technology Transfer American Wood Council Manager, Educational Outreach American Wood Council

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What is the Difference Between a Beam and a Joist?

18 · Beams are large, few in number, and supported by a foundation, posts, or a wall. Beams are meant carry and distribute the main structural loads of a flooring system down to the posts, walls, or columns below. Joists on, the other hand, provide secondary support. …

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20 Types of Construction Beam & Their Uses

19 · Timber beams are constructed from wood. A timber beam is a structural element that is used in the construction of both vertical columns as well as beams.. The timber beam consists of a single member or built-up member which is constructed from two or more members. The timber beam …

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Wood/Steel Composite Beam

 · RE: Wood/Steel Composite Beam. boo1 (Mechanical) 23 Mar 04 16:00. A timber beam which has been strengthened by the insertion of a metal plate (flitch plate). Flitch beams are designed mainly using equivalent section fundamentals. Assume that in the first instance the load is taken by the timbers, the calculated proportion then being transferred ...

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Glulam | Laminated Timber Wood Beams & Columns | …

Glue-laminated timber (glulam) is a structural engineered wood product commonly used for beams and columns in residential and commercial applications. It is a highly visible form of mass timber in contemporary projects, with long spans framing signature designs left exposed to take advantage of wood’s natural aesthetic.

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Glulam (Laminated) Columns, Beams, Posts

Timber Technologies L.L.C started operations in 2003 and has been manufacturing glue-laminated (glulam) wood columns and beams for post frame builders since that time. Timber Technologies products include treated and untreated columns for sidewalls and end walls in post frame buildings, glue-laminated headers and beams and Architectural grade ...

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22 COMPOSITE BEAMS – II

12 · DESIGN OF COMPOSITE BEAMS-II too shallow for holes to be formed in its web that are sufficiently large to accommodate main air-conditioning ducts). Thus the haunches simplify beams of column connection significantly and improve beam capacity and stiffness without increasing the overall floor depth. 2.4 Parallel Beam Approach(4)

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Steel Beam Vs. Wood Beam

14 · Steel Beam Vs. Wood Beam. ... Using a larger shim provides more points of contact between the beam and column, which disperses the pressure across the surface and “shares the load,” so to speak. This photo was taken by an Acculevel project manager …

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Beams and Columns

27 · Stress and deformation of a vertical beam due to it's own weight. Wood Beams - Strength of Material . Bending and compression strength of wood species used in beams. Wood Columns - Safe Loads . Safe loads for wood columns. Wood Headers Supported Weight . The weight that can be supported by a double or triple wood header

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Wood/Steel Composite Beam

 · RE: Wood/Steel Composite Beam. boo1 (Mechanical) 23 Mar 04 16:00. A timber beam which has been strengthened by the insertion of a metal plate (flitch plate). Flitch beams are designed mainly using equivalent section fundamentals. Assume that in the first instance the load is taken by the timbers, the calculated proportion then being transferred ...

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Wood vs engineered lumber. Which one to choose? | Pro …

19 · Timber beams are constructed from wood. A timber beam is a structural element that is used in the construction of both vertical columns as well as beams.. The timber beam consists of a single member or built-up member which is constructed from two or more members. The timber beam …

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Beams, columns: dataholz.eu

Light composite wood-based beams and columns. I-beams or double T-profiles are wood-based composite elements, consisting of two flanges and a intermediate web which are glued together. They are intended to be used as loadbearing parts of building constructions, the utilization is limited to service class 1 and 2 (according to EN 1 ).

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Beams, columns: dataholz.eu

Light composite wood-based beams and columns. I-beams or double T-profiles are wood-based composite elements, consisting of two flanges and a intermediate web which are glued together. They are intended to be used as loadbearing parts of building constructions, the utilization is limited to service class 1 …

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Wood/Steel Composite Beam

 · RE: Wood/Steel Composite Beam. boo1 (Mechanical) 23 Mar 04 16:00. A timber beam which has been strengthened by the insertion of a metal plate (flitch plate). Flitch beams are designed mainly using equivalent section fundamentals. Assume that in the first instance the load is taken by the timbers, the calculated proportion then being transferred ...

Get price

20 Types of Construction Beam & Their Uses

19 · Timber beams are constructed from wood. A timber beam is a structural element that is used in the construction of both vertical columns as well as beams.. The timber beam consists of a single member or built-up member which is constructed from two or more …

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Wood vs engineered lumber. Which one to choose? | Pro …

3 · Engineered wood also reduces the number of callbacks for builders. Squeaky, or bouncy floors are usually expensive to correct. Installations using engineered I-beams can significantly reduce callbacks related to this problem. Manufactured wood products are also …

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Test methods for light composite wood-based beams …

7 · Light composite wood-based beams and columns are defined as slender and with low weight. They can be designed as I-beams, box beams or truss beams. The flanges are made of wood or wood-based materials and, if necessary, reinforced with some other material. The web consists of wood-based panel or other materials, or, for example, web bars made ...

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Beams, columns: dataholz.eu

Light composite wood-based beams and columns. I-beams or double T-profiles are wood-based composite elements, consisting of two flanges and a intermediate web which are glued together. They are intended to be used as loadbearing parts of building constructions, the utilization is limited to service class 1 …

Get price

Beams, columns: dataholz.eu

Light composite wood-based beams and columns. I-beams or double T-profiles are wood-based composite elements, consisting of two flanges and a intermediate web which are glued together. They are intended to be used as loadbearing parts of building constructions, the utilization is limited to service class 1 …

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Example I Composite Beam Design

5 · Example I Composite Beam Design Given: A series of ft. span composite beams at 10 ft. o/c are carrying the loads shown below. The beams are ASTM A992 and are unshored. The concrete has f′c = 4 ksi. Design a typical floor beam with 3 in. 18 gage composite deck, and 4½ in. normal weight concrete above the deck, for fire protection and mass.

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Steel Beam Vs. Wood Beam

14 · Steel Beam Vs. Wood Beam. ... Using a larger shim provides more points of contact between the beam and column, which disperses the pressure across the surface and “shares the load,” so to speak. This photo was taken by an Acculevel project manager during a routine estimate. The wooden shim has flattened under the weight of the beam.

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Design of Simply-Supported Composite Beams for …

14 · Edition 2.0 - February 2001 Simply-Supported Composite Beams DB1.1–v Design of Simply-Supported Composite Beams for Strength Preface This design booklet forms part of a suite of booklets covering the design of simply-supported and continuous composite beams, composite slabs, composite columns, steel and composite connections and related topics.

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Beam Bending: Wood vs. Aluminum

30 · Beam Bending: Wood vs. Aluminum Peden Nichols Jing Han Michael Johnson. Calculating Deflection P D L PL3 δ= 4 EWD3 W δ = deflection P = load E = stiffness of material L = length of beam W = width of beam D = depth of beam . Comparing Pine and Aluminum Beams Pine D = 1 in. L = 4 feet W = 12 in.

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Wood-Steel Composite Beam? | JLC Online

1 · The modular ratio is the relationship between the elastic moduli of both materials and has a nondimensional value on the order of 14.5 for steel over wood. In other words, steel is about 14.5 times stronger than wood. Depending upon the specific application, you may need to fabricate an all-steel composite section to achieve the desired properties.

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Timber-timber composite (TTC) connections and beams: …

The load vs mid-span deflection, load vs end span (support) rotation, load vs slip response, and strain distribution over cross-section of the CLT-LVL composite beams are plotted in Fig. 14, Fig. 16, respectively. The load-carrying capacity and service stiffness of the CLT-LVL composite beams are summarised in Table 4. The service stiffness of ...

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Wood vs. steel I-beams: Is one better than the other ...

9 · Q. I’m getting ready to build a large room addition that needs a beam to support the floor joists. I’ve been told that a wood beam will work, but I’ve always seen steel I-beams …

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Steel and Composite Beam Design Overview

26 · Steel beams can be designed as non-composite or as composite beams. If non-composite, the loads are resisted by the steel beam alone. Composite action is developed when two load-carrying structural elements, such as a concrete floor slab and its …

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Wood Beam Analysis and Design

15 · CL Beam Stability Factor In the case bracing provisions of 4.4.1 cannot be met, CL is calculated using equation 3. 6 The maximum allowable slenderness, RB is …

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Wood vs. steel I-beams: Is one better than the other ...

9 · Q. I’m getting ready to build a large room addition that needs a beam to support the floor joists. I’ve been told that a wood beam will work, but I’ve always seen steel I-beams in other houses.

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