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3D (Three-Dimensional) pillow interior for cervical pillow and production method thereof

A cervical vertebra pillow, 3D technology, applied to pillows and other directions, can solve the problems of poor air permeability, slow rebound, yellowing, etc., and achieve the effects of good air permeability, good resilience and good softness

Inactive Publication Date: 2015-04-29
东莞市志强纤维棉制品有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the existing cervical pillow core is filled with buckwheat husk or rice bran or processed from memory foam. The cervical spine pillow core filled with buckwheat husk or rice bran is moderately soft and hard, and its shape and water absorption are good, but its elasticity is relatively high. Poor, the memory foam cervical pillow core has good softness, slow rebound, and can absorb pressure, but it is easy to oxidize and turn yellow and release toxic substances, and the above cervical pillow cores cannot be washed, have poor air permeability, and are heavy. Inadequacies

Method used

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0016] Embodiment 1: after the three kinds of fibers of ELK fiber, hollow polyester fiber and negative ion fiber are uniformly mixed successively by weight percentage of 43%, 32% and 25%, the first initial opening and the second fine opening are carried out, After two times of clearing, the fiber web is turned into an upright structure with forming equipment, and then fixed by a dryer to make upright sheet materials; then the upright sheet materials are processed into required specifications by profiling equipment The initial 3D cervical pillow main core; then the initial 3D cervical pillow main core is composited and shaped by the shaping equipment and the sandwich mesh; finally, the 3D cervical pillow main core compounded with the sandwich mesh is cut by a cutting device to make a finished 3D cervical pillow Pillow pillow.

Embodiment 2

[0017] Embodiment 2: After uniformly mixing three kinds of fibers of ELK fiber, hollow polyester fiber, and negative ion fiber respectively in the order of 40%, 30%, and 30% by weight, the 3D cervical vertebra pillow is processed and manufactured with the same manufacturing method as the above-mentioned embodiment 1. Pillow.

Embodiment 3

[0018] Embodiment three: ELK fiber, hollow polyester fiber, three kinds of fibers of negative ion fiber are mixed successively by weight percentage 38%, 27%, 35% after uniformly respectively, process and manufacture 3D cervical vertebra pillow pillow core with above-mentioned same manufacturing method.

[0019] Through testing and comparison, it is found that among the 3D cervical spine pillow cores made with three different formulas, the pillow core made with the optimal formula in Example 2 has the best performance, and the pillow core made in Example 1 has good air permeability and softness , good resilience, but in terms of purifying air, sterilizing, and improving sleep, asthma, and sub-health care for the human body, it is a little worse than Example 2, and the pillow core made in Example 3 is better at purifying air. , sterilization, the special function of improving sleep, asthma, and sub-health care effects on the human body is the best, but the air permeability, softn...

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PUM

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Abstract

The invention discloses a 3D (Three-Dimensional) pillow interior for a cervical pillow and a production method of the 3D pillow interior. The 3D pillow interior for the cervical pillow adopts the technical scheme as follows: the pillow interior comprises a body core and a layer of sandwich mesh which is attached to the surface of the body core, wherein the main core is processed by 3D upright cotton blended by 35-45% of ELK fibers by weight, 25-35% of hollow polyester fibers by weight and 25-35% of anion fibers by weight. The production method of the 3D pillow interior comprises four steps. The body core is processed by adopting the 3D upright cotton blended by the ELK fibers, the hollow polyester fibers and the anion fibers, so that the special functions of purifying air, sterilizing, playing the effects of sleep and asthma improvement as well as sub-health care on a human body, and improving and repairing cervical diseases of the pillow interior are achieved, meanwhile, the pillow interior has the characteristics of no toxicity, no smell, fire prevention, environmental protection, good softness, good rebound resilience, good air permeability, light weight and washable property.

Description

technical field [0001] The invention belongs to the technical field of pillow cores, and relates to a cervical spine pillow core, in particular to a 3D cervical spine pillow core and a manufacturing method thereof. Background technique [0002] Existing cervical vertebra pillow core comprises headrest and neck pillow, has the effect of protecting cervical vertebra. However, the existing cervical pillow core is filled with buckwheat husk or rice bran or processed from memory foam. The cervical spine pillow core filled with buckwheat husk or rice bran is moderately soft and hard, and its shape and water absorption are good, but its elasticity is relatively high. Poor, the memory foam cervical pillow core has good softness, slow rebound, and can absorb pressure, but it is easy to oxidize and turn yellow and release toxic substances, and the above cervical pillow cores cannot be washed, have poor air permeability, and are heavy. Inadequacies. [0003] The high-performance cush...

Claims

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
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Application Information

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IPC IPC(8): A47G9/10
Inventor 谢志刚
Owner 东莞市志强纤维棉制品有限公司
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