山東通風管道:不銹鋼風管的制作辦法和施工須知
來源:http://www.xyphw.com 日期:2025-08-12 發布人:創始人
1前言近年來,不銹鋼風管的使用已越來越普遍,對于不銹鋼風管的焊接工藝,以前并沒有相應的規范或工藝方法來指導施工,為此我們總結出了一套不銹鋼風管的制作方法來滿足施工中的需要,提高施工質量、解決施工中的疑難問題,在保證使用功能的前提下滿足觀感質量要求。目前我們已按此工法在項目上實施,取得了良好的效果。
Preface: In recent years, the use of stainless steel air ducts has become increasingly common. There were no corresponding specifications or process methods to guide the welding process of stainless steel air ducts. Therefore, we have summarized a set of production methods for stainless steel air ducts to meet the needs of construction, improve construction quality, solve difficult problems during construction, and meet the requirements of visual quality while ensuring the functional use. At present, we have implemented this construction method in the project and achieved good results.
2特點2.0.1 風管焊接成型質量好、變形小、觀感好。2.0.2 風管的加固形式新穎,節約成本。
2 Features 2.0.1 Good welding quality, minimal deformation, and good appearance of air ducts. 2.0.2 The reinforcement form of the air duct is novel and cost-effective.
3適用范圍此工法可適用于厚度為1.0mm及以上的不銹鋼薄板風管焊接制作施工。
3 Scope of Application: This method can be applied to the welding and construction of stainless steel thin plate air ducts with a thickness of 1.0mm or more.
4工藝原理本工法在鍍鋅鋼板風管制作標準的基礎上,采用氬弧焊,對1.0mm厚的不銹鋼薄板矩形風管進行焊接制作,不僅在橫向連接處采用氬弧焊焊接,并在風管橫向連接時也采用氬弧焊焊接,即所有的風管接縫處均施以氬弧焊焊接。不銹鋼薄板矩形風管的加固采取不銹鋼角鋼加固框加固和直角形加固相結合的方法,以保證其符合風管的剛度等級要求。
On the basis of the production standard for galvanized steel sheet air ducts, this method uses argon arc welding to weld and produce 1.0mm thick stainless steel thin rectangular air ducts. It not only uses argon arc welding at the horizontal connection, but also uses argon arc welding at the horizontal connection of the air duct, that is, all joints of the air duct are welded with argon arc welding. The reinforcement of stainless steel thin plate rectangular ducts adopts a combination of stainless steel angle steel reinforcement frame and right angle reinforcement to ensure that they meet the stiffness level requirements of the ducts.
5.2主要施工方法及技術要求5.2.1制定方案、施工準備熟悉圖紙、規范等技術資料,編制并組織方案會審。確定風管橫向連接時采用翻邊對接焊,翻邊尺寸為15mm,確定不銹鋼薄板矩形風管的加固采取不銹鋼角鋼加固框加固和直角形加固相結合的方法。5.2.2鋼板裁剪下料依據所進不銹鋼卷板的寬度一般為1210mm,考慮到運輸及現場下料的可操作性,根據風管規格,將鋼板分成兩段下料。如1000 mm×800 mm的風管,風管周長為3600mm,下料成兩塊尺寸為1800 mm×1210 mm的板材。5.2.3翻邊、折方按照15mm的翻邊尺寸,先將風管橫向焊接處所需翻邊在折方機上折出,翻邊之后風管每節的長度為(1210-150×2)mm = 1180mm,然后再按照風管邊長折方。5.2.4角鋼下料、加固框預制 確定風管加固框所使用的角鋼規格為∠30×30×3。按照風管的規格尺寸,對不銹鋼角鋼下料,電焊焊接。5.2.5風管組對、套加固框下好料后將兩塊不銹鋼板組對好(風管組對如圖5.2.5-1),在焊接之前將已經制作好的加固框套在組對好的風管上(風管套加固框如圖5.2.5-2)。圖5.2.5-1 風管組對實物
5.2 Main construction methods and technical requirements 5.2.1 Develop a plan, prepare for construction, familiarize oneself with technical materials such as drawings and specifications, prepare and organize a plan review. When determining the horizontal connection of the air duct, flange butt welding is used with a flange size of 15mm. The reinforcement of the stainless steel thin plate rectangular air duct is determined by a combination of stainless steel angle steel reinforcement frame and right angle reinforcement. 5.2.2 Steel plate cutting and cutting is based on the width of the stainless steel coil that is generally 1210mm. Considering the operability of transportation and on-site cutting, the steel plate is divided into two sections for cutting according to the specifications of the air duct. A 1000 mm x 800 mm air duct with a circumference of 3600mm is cut into two pieces of 1800 mm x 1210 mm sheet metal. 5.2.3 Flanging and folding: According to the 15mm flanging size, first fold the horizontally welded part of the air duct on the folding machine. After flanging, the length of each section of the air duct is (1210-150 × 2) mm=1180mm, and then fold it according to the side length of the air duct. 5.2.4 Cutting of angle steel and prefabrication of reinforcement frame. The specification of angle steel used for air duct reinforcement frame is ∠ 30 × 30 × 3. Cut and weld stainless steel angle steel according to the specifications and dimensions of the air duct. 5.2.5 After the materials for the air duct assembly and reinforcement frame are prepared, the two stainless steel plates are assembled together (as shown in Figure 5.2.5-1 for the air duct assembly). Before welding, the already made reinforcement frame is placed on the assembled air duct (as shown in Figure 5.2.5-2 for the air duct sleeve reinforcement frame). Figure 5.2.5-1 Air duct assembly to physical object
5.2.6風管縱向焊接成型 將組對好的風管用夾具固定好,進行風管的縱向焊接。風管縱向焊接的接縫形式為角接焊,參見圖5.2.6。
5.2.6 Longitudinal welding of air ducts: Fix the assembled air ducts with fixtures and perform longitudinal welding of the air ducts. The seam form for longitudinal welding of air ducts is corner welding, as shown in Figure 5.2.6.
為使風管焊縫均勻地受熱和冷卻,以減少變形,焊接時從中間往兩頭逆向分段施焊;組對時先將風管點焊,用夾具將其固定后再進行焊接,焊接時形成的高溫,在冷卻過程中所產生的收縮變形由夾具克服,達到防止變形的目的。5.2.7風管橫向焊接將兩節成型好的風管放在夾具臺上,用夾具將其固定好后,再進行橫向焊接。由于風管壁厚太薄,若直接平面對焊將產生較大的變形,且不易進行操作及加固,現采用翻邊對接焊的形式,參見圖5.2.7-1與5.2.7-2。
In order to evenly heat and cool the weld seam of the air duct and reduce deformation, welding is carried out in sections in reverse from the middle to both ends during welding; When assembling, first spot weld the air duct and fix it with a fixture before welding. The high temperature formed during welding and the shrinkage deformation generated during cooling are overcome by the fixture to prevent deformation. 5.2.7 Horizontal Welding of Air Ducts Place the two formed air ducts on the fixture table, fix them with fixtures, and then perform horizontal welding. Due to the thin wall thickness of the air duct, direct flat butt welding will cause significant deformation and is difficult to operate and reinforce. Therefore, the form of flanged butt welding is now adopted, as shown in Figures 5.2.7-1 and 5.2.7-2.
風管的翻邊高度控制為15mm,若翻邊過小,不僅不便于焊接操作及夾具的使用,且容易使焊接時的高溫傳遞到風管,從而引起風管的變形。若翻邊過大,將浪費材料。
The flanging height of the air duct is controlled at 15mm. If the flanging is too small, it is not only inconvenient for welding operations and fixture use, but also easy to transfer the high temperature during welding to the air duct, causing deformation of the air duct. If the flange is too large, it will waste materials.
5.2.8焊接加固框將已經套好的不銹鋼角鋼加固框移至每節風管的橫向翻邊連接處,用夾具與翻邊夾好,將風管橫向翻邊對接焊處與不銹鋼加固框焊接(參見圖5.2.8-1與5.2.8-2)。這樣可以避免角鋼與風管直接焊接過程中產生的變形。由于不銹鋼角鋼加固框僅起到加固的作用,故其與風管翻邊處的焊接可采用斷續焊。斷續焊前,將斷續焊焊縫長度統一為20mm,斷續焊間距與采用法蘭連接時法蘭螺孔的間距一致。為使其間距均勻,先在風管上畫好斷續焊的位置,再行施焊。
5.2.8 Welding reinforcement frame: Move the already installed stainless steel angle steel reinforcement frame to the transverse flange connection of each section of the air duct, clamp it with a fixture and the flange, and weld the transverse flange butt weld of the air duct to the stainless steel reinforcement frame (see Figures 5.2.8-1 and 5.2.8-2). This can avoid deformation during the direct welding process between angle steel and air ducts. Due to the fact that the stainless steel angle steel reinforcement frame only serves the purpose of reinforcement, intermittent welding can be used to weld it to the flange of the air duct. Before intermittent welding, the length of the intermittent welding seam should be uniformly set to 20mm, and the spacing between intermittent welds should be consistent with the spacing between flange screw holes when using flange connections. To ensure even spacing, first mark the intermittent welding positions on the air duct, and then proceed with welding.
5.2.9直角型加固該項目廚房排油煙系統風管壓力等級均為中壓系統,現選用直角形加固的加固形式。不銹鋼板的機械強度比鍍鋅鋼板大,故直角型加固所采用的材料為δ=1.0mm厚的不銹鋼板,與風管之間焊接連接。選用直角型加固既可以節省傳統的不銹鋼角鋼加固,又可以充分利用風管制作過程中的邊角廢料。
5.2.9 Right angle reinforcement: The pressure level of the kitchen exhaust system ducts in this project is medium pressure system, and the right angle reinforcement form is now selected. The mechanical strength of stainless steel plate is greater than that of galvanized steel plate, so the material used for right angle reinforcement is stainless steel plate with a thickness of δ=1.0mm, which is welded to the air duct. Choosing a right angle reinforcement can not only save traditional stainless steel angle steel reinforcement, but also fully utilize the corner waste in the process of air duct production.
根據矩形風管加固剛度等級(參見表5.2.9-1)來確定風管的橫向加固允許最大間距(參見表5.2.9-2),由于風管每節長度為1180mm,故風管對于邊長小于等于800 mm的一面不需要進行加固,風管需要加固的邊長規格主要有1000mm、1250 mm、1600 mm幾種,其加固允許的最大間距分別為1000mm、800mm、625mm,為了風管的整體外觀效果,統一選用加固件高度為30mm,在每節風管中間位置加一道直角形加固即可滿足要求。
According to the stiffness level of rectangular air duct reinforcement (see Table 5.2.9-1), the maximum allowable spacing for horizontal reinforcement of air ducts (see Table 5.2.9-2) is determined. As the length of each section of the air duct is 1180mm, there is no need to reinforce the side of the air duct with a side length less than or equal to 800 mm. The side length specifications that need to be reinforced for air ducts mainly include 1000mm, 1250mm, and 1600mm, and the maximum allowable spacing for reinforcement are 1000mm, 800mm, and 625mm, respectively. In order to achieve the overall appearance effect of the air duct, a reinforcement height of 30mm is uniformly selected, and a right angle reinforcement is added at the middle position of each section of the air duct to meet the requirements.
5.2.10酸洗鈍化焊接后,應對焊縫及風管表面進行清理,即先去除油污及焊渣和飛濺物、然后用酸洗鈍化膏酸洗鈍化,再用清水沖洗干凈。
After acid pickling and passivation welding, the surface of the weld and air duct should be cleaned, that is, oil stains, welding slag and splashes should be removed first, then acid pickling and passivation paste should be used for acid pickling and passivation, and then rinsed clean with water.
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