材料成型及控制工程专业毕业设计(论文)外文翻译.docx
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1、材料成型及控制工程专业毕业设计(论文)外文翻译 中文2500字 本科毕业设计翻译 学生姓名:* 班级:*班 学号:* 学院:材料科学与工程学院 专业:材料成型及控制工程 指导教师:* 副教授 2022年3月25日 Section 4 Die Design and Construction Guidelines for HSS Dies General Guidelines for Die Design and Construction Draw Dies Higher than normal binder pressure and press tonnage is necessary with
2、 H.S.S. in order to maintain process control and to minimize buckles on the binder. Dies must be designed for proper press type and size. In some cases, a double action press or hydraulic press cushion may be required toachieve the necessary binder forces and control. Air cushions or nitrogen cylind
3、ers may not provide the required force for setting of draw beads or maintaining binder closure if H.S.S. is of higher strength or thickness. Draw beads for H.S.S. should not extend around corners of the draw die. This will result in locking out the metal flow and cause splitting in corners of stampi
4、ng. D raw beads should “run out” at the tangent of the corner radius to minimize metal compression in corners, as shown in figure 16 on page 47. Better grades of die material may be necessary depending on the characteristics of the HSS, the severity of the part geometry, and the production volume. A
5、 draw die surface treatment, such as chrome plating, may be recommended for outer panel applications. Form and Flange Dies Part setup in form and flange dies must allow for proper overbend on all flanges for springback compensation. Springback allowance must be increased as material strength increas
6、es; 3 degrees for mild steels, but 6 degrees or more for HSS. Punch radii must be fairly sharp. 1t for lower strength steels. Higher strength steels may require larger radii, but keeping them as small as practical will reduce springback in the sidewalls. Flange steel die clearance must be held to no
7、 more than one metal thickness clearance to reduce springback and sidewall curl. Form and flange steels should be keyed or pocketed in the casting to avoid flexing. Flange steels should be designed to wrap over and coin the flange break in order to set the break and reduce springback. See figure 17
8、on page 48. Die strength must not be compromised with light-weight die construction. High strength steel will require a stiffer die to resist flexing and the resultant part distortions, especially for channel or “hat-section” parts. This type of part can also cause serious die damage if double blank
9、s occur. Cutting Dies To reduce press tonnage requirements and extend die life, a minimum shear of four to six times metal thickness in twelve inches of trim steel length is recommended. To reduce die maintenance, maximum trim angles should be about 5 to 10less than those used for mild steel. Trim s
10、teels should be keyed or pocketed in casting to avoid flexing. Die clearance should be 7 to 10% of metal thickness. Drawbead Types Conventional Drawbeads Run-out Drawbeads For H.S.S. Lock Beads for Stretch-Form Die Figure 16 1. Providing a vertical step in the flange stiffens and straightens the fla
11、nge, stopping sidewall curl as well as springback. 2. The addition of stiffening darts helps maintain a 90-degree flange. 3. By adding a horizontal step along the flange, the flange is stiffened, resulting in reduced springback. 4. Back relief on the upper flange steel allows for extra pressure to b
12、e applied futher out on the formed radius. Section 5 Die Tryout Guidelines for High Strength Steel Dies General Guidelines for Die Tryout Draw Dies Higher draw die binder pressure and press tonnage will be necessary in order to maintain process control and draw parts without buckles. A double action
13、 press or a press with hydraulic cushion may be required in some cases to achieve the required binder forces. HSS draw die operations will require sheet steel lubricants that are formulated for extreme pressures. Mill oils will not provide sufficient lubricity for most applications. Pre-lubes or dry
14、 film lubricants may be necessary for process control. Die plan view punchline corner radii should be larger than with mild steels to avoid buckling in the corners of the binder. Stretch Form Dies Lock beads may require modification to avoid cracking or tearing with higher strength grades of HSS. Op
15、ening side walls of beads and enlarging corner radii will avoid cracking of high strength sheet steel. Lock beads should be continuous around the punchline for stretch form dies. For large panels from stretch-form dies, such as a roof panel or hood outer, elastic recovery may result in a shrunken pa
16、nel that does not fit well on the male die member of the trim or flange dies. This problem is corrected by adding a “plus” factor to the overall part dimensions of the draw die or stretc h form die punch. This “plus” is usually no more than 2.5 mm at the center of the sides and the front, tapering t
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