The present invention is related to a cleaning implement, and more particularly to a mop cloth of a rotary mop, which is capable of resiliently stretching and has higher water absorption capability.
The above conventional rotary mop 10 has some defects as follows:
First, the mop cloth 12 is made of common fabrics with poor water absorption capability. Therefore, the mop cloth 12 can hardly effectively absorb the water on the ground. After mopped, some water will still remain on the ground. As a result, it is necessary to repeatedly mop the ground many times.
Second, the fabrics have no resilience and stretchability so that after used, the fabric strips 13 are likely to tangle with each other. Especially, after the mop cloth 12 is wrung, the fabric strips 13 containing water have heavier weight and are more likely to tangle with each other and cannot stretch out.
Third, with the fabric strips 13 tangling with each other, the dirt will interlard with the fabric strips 13. This makes it hard to clean up the dirt from the mop cloth 12.
It is therefore a primary object of the present invention to provide a mop cloth which has excellent water absorption capability.
It is a further object of the present invention to provide a mop cloth, the cloth strip of the mop cloth is capable of resilience and stretchability without tangling with each other.
It is still an object of the present invention to provide a method for manufacturing the above mop cloth.
According to the above objects, the mop cloth of the present invention includes several cloth strips each of which is a three-layer structure. The cloth strip includes two outer layers and an inner layer. Each outer layer is a fabric layer, while the inner layer is a water-absorbent foam. Whereby the foam layer is sandwiched between the two fabric layers.
Due to the inner foam layer and the outer fabric layers, the cloth strips have excellent water absorption capability. With the resilience and stretchability of the foam layer and the foam layer being capable of restoring to its original shape, the cloth strips are capable of resiliently stretching without tangling with each other. In addition, with the fabric layers, the mop cloth is able to provide fabric performances.
The method for manufacturing the mop cloth includes steps of bonding two fabric layers with a foam layer to sandwich the foam layer and form a three-layer semiproduct, and cutting the semiproduct into a predetermined number of cloth strips to form the mop cloth.
The present invention can be best understood through the following description and accompanying drawings wherein:
Please refer to
Each outer layer is a fabric layer 30 which can be a cotton fabric, a woven fabric or an unwoven fabric.
The inner layer is a PU (polyurethane) foam 35 which is a foamed plastic and it is a water-absorbent foam having numerous internal fine pores (or foams) communicating with each other for absorbing water. Preferably, the foam layer 35 has a thickness thicker than that of the fabric layer 30. However, there can be other options. The foam layer 35 is sandwiched between the two fabric layers 30. A front face and a back face of the foam layer 35 are respectively bonded with the two fabric layers 30. In comparison with the fabric layers 30, the foam layer 35 has certain resilience and stretchability and is capable of restoring to its original shape.
The mop cloth 20 is cut into several cloth strips 22 each having a three-layer structure of two outer fabric layers 30 and an inner foam layer 35.
Please refer to
Referring to
The connecting sections 25 can be sewn with seams 26 to reinforce the mop cloth 20. The sewing operation can be performed after the semiproduct is formed before the cutting operation of step 3. Alternatively, the sewing operation can be performed after the cutting operation of step 3.
The cloth strip 22 has a flat configuration as shown in
Referring to
The rotary mop 50 can be used to clean a ground and absorb water with the mop cloth 20. After used or washed, the slide sleeve 54 is rotated to wring water out of the mop cloth 20. Then the slide sleeve 54 is rotated in reverse direction to release the mop cloth 20 from the wrung state.
Due to the inner layers of the cloth strips 22 are foam layers 35, the mop cloth 20 has excellent water absorption capability much higher than that of the conventional fabric-made mop cloth. Therefore, the mop cloth 20 is able to more effectively and quickly absorb the water from the ground and dry the ground. Accordingly, it is unnecessary to repeatedly mop the ground so as to save time.
Moreover, the inner foam layer 35 enables the cloth stripes 22 to resiliently stretch and restore to their original shapes after released. When not wrung, due to the properties of the foam layer 35, all the cloth strips 22 will resiliently stretch without tangling with each other as shown in
Also, when washing the mop cloth 20, the foam layer 35 enables the cloth strips 22 to resiliently stretch without tangling with each other. Therefore, the surfaces of the cloth strips 22 are all exposed for easily cleaning up the dirt.
Furthermore, the outer layers of the mop cloth 20 are fabric layers 30 so that the mop cloth 20 still has fabric performances and is able to provide a fabric touch feeling.
In conclusion, the mop cloth of the present invention has a three-layer structure composed of two outer fabric layers 30 and an inner water-absorbent foam layer 35. Therefore, the mop cloth of the present invention is able to provide fabric performances and has higher water absorption capacity. In addition, the foam layer 35 enables the cloth strips 22 to resiliently stretch without tangling with each other so as to enhance using effect.
The above embodiments are only used to illustrate the present invention, not intended to limit the scope thereof. Many modifications of the above embodiments can be made without departing from the spirit of the present invention. For example, the thickness of the foam layer is variable and the fabric layers and the foam layer can be bonded with each other by means of sewing.