A high-strength, high-elasticity double-density in-mold foamed rubber-plastic tray and its manufacturing process
A dual-density, high-density technology, used in rigid containers, other household appliances, packaging, etc., can solve the problems of poor shock absorption, high cost, energy consumption, etc., achieve high bonding strength, eliminate transportation costs, and increase elasticity. Effect
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Embodiment 1
[0058] The high-strength, high-elasticity dual-density foamed rubber-plastic tray in the mold of the present embodiment, such as figure 1 , 2 As shown, it includes a high-density outer layer 61 and a low-density inner layer 62, which is an integrated structure that is released from the same mold; the materials of the high-density outer layer 61 and the low-density inner layer 62 are high-density rubber and low-density rubber, respectively. Rubber material, the low-density inner layer 62 is also evenly embedded with spring supports 63 vertically and evenly distributed vertically to the horizontal plane of the tray body 6, and 3 to 6 spring supports 63 can be arranged to play a role of skeleton support, similar to steel bars in concrete , The spring elasticity can be selected to be consistent with the low-density rubber elasticity to strengthen the support strength of the low-density inner layer and slow down the elastic fatigue attenuation caused by frequent deformation of the ...
Embodiment 2
[0063] The basic structure of the high-strength, high-elasticity double-density in-mold foamed rubber-plastic tray of this embodiment is the same as that of Embodiment 1, and the improvement is that connecting plates 64 are fixed at both ends of the spring support 63, and the connecting plates 64 connect the spring support 63 After being connected together, they are distributed in a criss-cross pattern, which is convenient for the spring support to be preset and fixed in the mold synchronously. The spring support 63 can be preset before the rubber is vulcanized. The connecting plate 64 is close to the high-density outer layer 61, which can effectively improve the spring support. The bonding strength with rubber, the rubber can be embedded in the spring gap, and can recover synchronously with the spring elasticity; for example Figure 4 , 5 As shown, the compression molding and foam vulcanization device 3 includes a clamping oil cylinder 31, an upper half mold 33, a lower half ...
Embodiment 3
[0082] The high-strength, high-elasticity dual-density in-mold foamed rubber-plastic tray of this embodiment has the same basic structure as that of Embodiment 2;
[0083] In the high-strength, high-elasticity dual-density in-mold foamed rubber-plastic pallet of the present embodiment, the low-density rubber component formula and its respective parts by weight include: 55 parts of composite rubber, 60 parts of regenerated rubber, 5 parts of carbon black, butadiene rubber 8 parts, 0.5 parts of polyethylene glycol, 1.8 parts of composite accelerator, 0.7 parts of stearic acid, 5 parts of zinc oxide, 3.8 parts of composite vulcanizing agent. Composite rubber is the composition of naphthenic oil, butyl rubber, butadiene rubber, natural rubber, white carbon black, black carbon black N330, stearic acid, zinc oxide and secondary K plastic; the carbon black is carbon black N330; the polyethylene glycol is PEG-4000; the composite accelerator is the composition of 0.8 parts by weight of...
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