MOLD FOR ULTRA-THICK WALLED U-SHAPED COMPOSITE PRODUCT WITH DEEP CAVITY
20220402222 ยท 2022-12-22
Assignee
Inventors
- Guoqiang Zhang (Shanghai, CN)
- Jiaqiang ZHU (Shanghai, CN)
- Bin Wang (Shanghai, CN)
- Jianlan LUO (Shanghai, CN)
- Hao Sun (Shanghai, CN)
- Jie WU (Shanghai, CN)
- Bangshui YU (Shanghai, CN)
Cpc classification
B29C33/202
PERFORMING OPERATIONS; TRANSPORTING
B29C70/54
PERFORMING OPERATIONS; TRANSPORTING
B29C2043/3602
PERFORMING OPERATIONS; TRANSPORTING
B29C70/44
PERFORMING OPERATIONS; TRANSPORTING
B29C43/3642
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A mold for an ultra-thick walled U-shaped composite product with a deep cavity includes an upper mold cavity, a lower mold cavity, a slidable side-drawing insert, and an auxiliary mold clamping structure. The auxiliary mold clamping structure includes a first auxiliary mold clamping insert and a second auxiliary mold clamping insert. The first auxiliary mold clamping insert is fixed on the lower mold cavity, and the second auxiliary mold clamping insert is fixed on the slidable side-drawing insert. The slidable side-drawing insert is located on a side of an integral structure formed after the upper mold cavity is engaged with the lower mold cavity, and the slidable side-drawing insert longitudinally slides along the lower mold cavity. The ultra-thick walled U-shaped composite product is formed and located between the upper mold cavity, the lower mold cavity, and the slidable side-drawing insert.
Claims
1. A mold for an ultra-thick walled U-shaped composite product with a deep cavity, comprising: an upper mold cavity, a lower mold cavity, a slidable side-drawing insert, and an auxiliary mold clamping structure; wherein, the auxiliary mold clamping structure comprises a first auxiliary mold clamping insert and a second auxiliary mold clamping insert; the first auxiliary mold clamping insert is fixed on the lower mold cavity, and the second auxiliary mold clamping insert is fixed on the slidable side-drawing insert; the slidable side-drawing insert is located on a side of an integral structure formed after the upper mold cavity is engaged with the lower mold cavity, and the slidable side-drawing insert longitudinally slides along the lower mold cavity; and the ultra-thick walled U-shaped composite product is formed and located between the upper mold cavity, the lower mold cavity, and the slidable side-drawing insert.
2. The mold according to claim 1, wherein the first auxiliary mold clamping insert is fixed on the lower mold cavity, and the second auxiliary mold clamping insert is fixed on the slidable side-drawing insert; the slidable side-drawing insert slides back and forth longitudinally; during a spreading of a material, the first auxiliary mold clamping insert and the second auxiliary mold clamping insert are movable, and the second auxiliary mold clamping insert slides under the first auxiliary mold clamping insert; and after the spreading of the material, the second auxiliary mold clamping insert is gradually clamped with the first auxiliary mold clamping insert during a mold clamping, and then the mold clamping is achieved with assistance of a pressing force of a screw.
3. The mold according to claim 1, wherein a hollow protrusion of the upper mold cavity is formed by welding steel plates to serve as a cavity, and one a first side of the hollow protrusion is higher than the other a second side of the hollow protrusion.
4. The mold according to claim 1, wherein an integral steel plate is processed to serve as a bottom of the lower mold cavity; and hollow three-dimensional frames formed by welding steel plates are spliced to serve as two sides of the lower mold cavity.
5. The mold according to claim 4, wherein plate ribs for improving a strength are arranged in the hollow three-dimensional frames of the two sides of the lower mold cavity.
6. The mold according to claim 1, wherein the slidable side-drawing insert comprises a hollow three-dimensional square insert and a slider, wherein the hollow three-dimensional square insert is formed by welding steel plates.
7. The mold according to claim 6, wherein the hollow three-dimensional square insert and the slider are positioned by a positioning groove, and the hollow three-dimensional square insert and the slider are fixedly connected together through a screw.
8. The mold according to claim 6, wherein a groove for the slider to slide back and forth is arranged on the lower mold cavity; the groove is an insert embedded in the lower mold cavity, and the insert is made from a hard brass alloy inlaid with graphite.
9. The mold according to claim 1, wherein the upper mold cavity, the lower mold cavity, and the slidable side-drawing insert are made from Q235 steel through welding, and the auxiliary mold clamping structure is made from S45C steel through processing.
10. The mold according to claim 7, wherein a groove for the slider to slide back and forth is arranged on the lower mold cavity; the groove is an insert embedded in the lower mold cavity, and the insert is made from a hard brass alloy inlaid with graphite.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0043] In the figures:
[0044] 1. upper mold cavity, 2. lower mold cavity, 3. slidable side-drawing insert, 4. auxiliary mold clamping structure, 5. plate rib, 6. composite product, 401. first auxiliary mold clamping insert, 402. second auxiliary mold clamping insert.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0045] The technical solutions of the present invention are described in detail below based on the preferred embodiments with reference to the drawings.
[0046]
[0047] The slidable side-drawing insert 3 is located on a side of an integral structure formed after the upper mold cavity 1 is engaged with the lower mold cavity 2, and the slidable side-drawing insert 3 longitudinally slides along the lower mold cavity 2.
[0048] The formed U-shaped composite product 6 is located between the upper mold cavity 1, the lower mold cavity 2, and the slidable side-drawing insert 3.
[0049]
[0050] A hollow protrusion of the upper mold cavity 1 is formed by welding steel plates to serve as a cavity, and one side of the protrusion is higher than the other side of the protrusion.
[0051]
[0052] The slidable side-drawing insert 3 includes a hollow three-dimensional square insert formed by welding steel plates and a slider. The hollow three-dimensional square insert and the slider are fixedly connected together through a screw or are integrally formed.
[0053] A groove for the slider to slide up and down is arranged on the lower mold cavity 2, and the groove is made from the embedded brass.
[0054] In a specific implementation, the upper mold cavity 1, the lower mold cavity 2, and the slidable side-drawing insert 3 of the present invention are made from Q235 steel through welding, and the auxiliary mold clamping structure 4 of the present invention is made from S45C steel through processing.
[0055]
[0056] If the hollow three-dimensional square insert and the slider are not integrally formed, a positioning groove is formed in the slidable side-drawing insert 3, and the slider is arranged in the positioning groove after being processed according to a size and then is fixed by a screw.
[0057] The groove for the slider to slide up and down is arranged on the lower mold cavity 2, and the groove is made from the embedded brass.
[0058] The upper mold cavity, the lower mold cavity, and the slidable side-drawing insert are made from the Q235 steel through welding, and the auxiliary mold clamping structures 4 are made from the S45C steel through processing.
[0059] The slidable side-drawing insert 3 is located on a side of the integral structure formed after the upper mold cavity 1 is engaged with the lower mold cavity 2, and the slidable side-drawing insert 3 longitudinally slides along the lower mold cavity 2.
[0060] The first auxiliary mold clamping insert 401 is fixed to the lower mold cavity to limit the second auxiliary mold clamping insert 402; and in this way, the slidable side-drawing insert 3 is limited to only slide in a side-drawing direction without turning over, thereby reducing a potential safety hazard. The second auxiliary mold clamping insert 402 is fixed to the slidable side-drawing insert 3. When the mold clamping is performed at room temperature, the screw can be fastened to the first auxiliary mold clamping insert 401 through the second auxiliary mold clamping insert 402 to generate a tight locking force, so as to provide a mold clamping force for the slidable side-drawing insert 3 to assist in achieving the mold clamping.
[0061]
[0062] The difficulty in making the whole product lies in forming. A cold material and a hot material for the composite product have different thicknesses. The thickness of the cold material is large, and the cold material will be deformed after being heated, causing the thickness to change. This problem is solved by means of sliding of the side-drawing insert.
[0063] To prevent an ordinary product with a deep cavity from deformation, a conventional mold for this product is typically increased in wall thickness with an increase in the length, depth, and height of the product. This will affect heat transfer of the mold due to the increase of the wall thickness. The hollow three-dimensional thin-walled structure solves the problem that the product with a deep cavity has poor surface quality caused by nonuniform heat transfer of an ultra-thick walled mold.
[0064] The slidable side-drawing insert of a U-shaped box-type mold overcomes the difficulty in clamping the mold for an ultra-thick walled composite product made by means of an autoclave process, and enables a formed product to have a uniform wall thickness and a smooth surface without a step. A slide way made from high-strength brass alloys (CAC304) and inlaid with MoS2 is used to reduce the side-drawing sliding resistance. The operating principle of the slidable side-drawing insert of the U-shaped box-type mold is as follows: the thickness of a prepreg at room temperature is greater than the actual size of the product, and in this case, the mold clamping cannot be fulfilled. By adoption of the slidable side-drawing insert, the prepreg will be softened after the mold is heated in an autoclave, so that the side-drawing insert is smoothly clamped with the upper mold cavity and lower mold cavity of the mold under a pressure of 1.0 MPa through a vacuum bag.
[0065] The above describes the basic principles, main features and advantages of the present invention. Those skilled in the art should know that the present invention is not limited by the above embodiments. The above embodiments and the specification merely describe the principle of the present invention. The present invention further has various changes and improvements without departing from the spirit and scope of the present invention, and these changes and improvements shall fall within the scope of protection of the present invention. The scope of protection of the present invention is limited by the appended claims and the legal equivalents thereof.