100% bamboo fiber checkerboard diamond embossed spunlace.
Bearing the product theory of ‘leading, not following, Weston is making new embossing pattern every year. You can not see more embossing kinds anywhere else.
We recommend checkerboard emboss spunlace to you. This beautifully embossed spunlace can be used for various applications, such as face wipes, baby wipes, dry wipes, floor wipes, food service wipes, etc.
The checkerboard emboss is combined with apertured square and nonapertured square. The apertured square is 22 meshes per square centimeter. And the nonapertured square has a decorating round apertured area. All these design makes a high effective cleaning effect, whose meshes can easily clean dust, oil grease and conclude them within the fabric.

A. Checkerboard embossed spunlace application:
1. Face wipes. This beautiful design can be good as beauty wipes, salon wipes. Commonly it is made from 100% cotton, 100% bamboo fibers, or 100% viscose. Surely it is also ok to do with blends with viscose and polyester;
2. Wet wipes. Commonly 100% viscose, 90% viscose 10% polyester, or 80% viscose 20% polyester is highly recommended for wet wipes. 100% bamboo fibers with natural color will be quite good as baby wipes because it is totally natural and anti-bacterial, very healthy to baby skin;
3. Salon wipes. This special emboss design will bring different spa experience to your clients. And it can quickly clean hair or face.
B. Checkerboard embossed spunlace Lapping:
Now we have 4 production lines including cross and parallel lapping. So it is quite ok for us to produce both lapping fabric.
C. Checkerboard embossed spunlace Grammage range:
35gsm to 90gsm for the parallel lapping;
40gsm to 130gsm for the cross lapping.
D. Checkerboard embossed spunlace MOQ:
1000KGS is ok for us to produce for viscose/polyester blends while 2000KGS for the natural color bamboo fiber ones.
Biodegradable Spunlace
China Biodegradable Spunlace Manufacturers, Factory - Customized Biodegradable Spunlace Wholesale - WESTON (westonnonwoven.com)
Is spunlace biodegradable?
It is decided by the fibers which Spunlace fabric is made from. Spunlace is made from versatile fibers, some of them are biodegradable while the rest ones are not. These fibers are polyester, viscose (also called rayon), polypropylene, cellulose (also called woodpulp).
What is spunlace fabric?
Spunlace non-woven fabric is a kind of spunlace non-woven fabric by spraying high-pressure fine water flow onto one or more layers of fiber webs, so that the fibers are entangled with each other, so that the fiber web can be reinforced and have a certain strength. Its fiber raw materials come from a wide range of sources, which can be polyester, nylon, polypropylene, viscose fiber, chitin fiber, microfiber, tencel, silk, bamboo fiber, wood pulp fiber, seaweed fiber, etc.
What is spunlace process?
The principle of spunlace reinforcing fiber web is similar to that of acupuncture, but instead of needling needles, the fiber web is sprayed by a spunlace machine with multiple fine water jets generated by high pressure. After the water jet passes through the fiber web, it is supported by the rebound of the net curtain and penetrates the fiber web again. As a result, the fibers in the fiber web are displaced, interspersed, entangled and cohesive under the hydraulic action of the high-speed water jets in different directions. Strengthen the web.
What is the application of spunlace nonwovens?
Spunlace non-woven fabrics are used for medical curtains, surgical gowns, surgical cover cloths, medical dressing materials, wound dressings, medical gauze, aviation rags, clothing lining fabrics, coating base fabrics, disposable materials, and advanced rags for instruments and meters. High-grade rags, towels, cotton pads, wet wipes, mask covering materials, etc. in the electronics industry.
What are the features of spunlace nonwovens?
1. Flexible entanglement, does not affect the original characteristics of the fiber, does not damage the fiber
2. Appearance is closer to traditional textiles than other non-woven materials
3. High strength and low fluff
4. High hygroscopicity, rapid moisture absorption
5. Good breathability
6. Soft feel and good drape
7. The appearance is varied
8. No need for adhesive reinforcement, washable
9. The cloth surface has a high degree of cleanliness, and it is not easy to drop dander
10. Complex equipment and high water-purity requirements.
New technology in spunlace nonwoven production
Memis Acar, from the Department of Mechanical Engineering at Loughborough University in the UK, has proved that the spunlace process can process glass fibers to produce industrial fabrics. Because glass fibers are not crimped, the traditional concept is that dry nonwovens are difficult to process. Most glass fiber nonwovens are generally processed by needle punching or wet-laid processes, but North Carolina State University (NCSU) has successfully developed glass fiber and polyester blended spunlace nonwovens. Thick denier glass fiber with a diameter of 16um is difficult to process by spunlace method. If it is mixed with fine denier glass fiber with a diameter of 6.5um, it will help to improve the strength of the spunlace nonwoven. It is beneficial to spunlace, and the coarse denier fiber is beneficial to improve the strength of spunlace nonwovens. If glass fibers are mixed with textile staple fibers such as polyester, the hydroentanglement ability can be enhanced. Mixing glass fiber with low melting point polyester can produce glass native reinforced polyester composites.
Using NGSN equipment, researchers at Auburm University in the United States found that hydroentanglement can produce geotextiles, which are produced by needle punching and hot rolling. The researchers found that changing the spunlace pressure and the time the web was exposed to water needles could change the pore size of the geotextile. Pore size is a key indicator of geotextiles, especially when used as a sand filter, allowing water to pass through and preventing soil movement. Extending the time that the fiber web is subjected to the action of water needles or increasing the spunlace pressure can enhance the spunlace entanglement effect of the fiber web and reduce the pore size of the fabric. The aperture size can be adjusted online without stopping, thereby increasing the production speed, which is more flexible and simpler than other processing techniques of geotextiles.
New technology for functional finishing of fabrics: In 1995, BBA Company in the United States developed the Interspun process and applied for a patent. Using this process, the surface of the fabric is treated by hydroentanglement, which can have a positive impact on the structure and performance of the fabric. In 1998 BBA signed a cooperation agreement with Fleissner, the exclusive machine supplier for this technology. Fleissner's Aquatex is a system for the treatment of woven fabrics with hydroentanglement, which is called a revolutionary measure for the finishing process of woven fabrics. After the woven fabric is hydroentangled, the yarns in the fabric are loosened and the fabric is effectively cleaned; depending on the arrangement of the hydroentanglement head, the effect of peach skin can be obtained on both sides or one side of the fabric; it can also eliminate The stress generated by the fabric during the process makes the warp yarns more uniform, thereby improving the feel and appearance of the fabric, increasing the thickness of the fabric, making the fabric softer, the abrasion resistance is more than 300% of that before the untreated, the slippage at the sewing place The phenomenon is more than doubled, the anti-pilling performance is improved, the wrinkle resistance is improved, the cloth surface is more uniform, the pores on the cloth surface are reduced, and the distribution is more uniform. Therefore, after spunlace treatment, processes such as desizing, scouring, mercerizing, and sanding can be eliminated, and the bleaching process can also be simplified, which has obvious comprehensive economic benefits. Products are widely used in decorative cloth, filter cloth, home textiles, clothing, car airbag fabrics.
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