EP3998888A1 - Sock with anti-slip off structure - Google Patents
Sock with anti-slip off structureInfo
- Publication number
- EP3998888A1 EP3998888A1 EP21719844.9A EP21719844A EP3998888A1 EP 3998888 A1 EP3998888 A1 EP 3998888A1 EP 21719844 A EP21719844 A EP 21719844A EP 3998888 A1 EP3998888 A1 EP 3998888A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- sock
- section
- controlled compression
- slip
- compression section
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Classifications
-
- A—HUMAN NECESSITIES
- A41—WEARING APPAREL
- A41B—SHIRTS; UNDERWEAR; BABY LINEN; HANDKERCHIEFS
- A41B11/00—Hosiery; Panti-hose
- A41B11/003—Hosiery with intermediate sections of different elasticity
Definitions
- the invention relates to clothing accessories and in particular to a sock with anti-slip off structure, which will find application in the clothing and fashion industries.
- Socks are one of the accessories of the outfit, which complement the overall look, presentation and self-confidence of the modem person.
- a common problem and unpleasant moment for the modem people is the socks slipping off down the legs towards the ankle and bunching up around in this area, which causes discomfort while wearing and disturbs the overall aesthetics of the outfit.
- the reasons for the socks slipping off are various, wherein the main ones are the quality of the socks and the techniques used for their knitting. To prevent the socks from slipping off, it is necessary to choose the exact size of the socks that correspond to our legs. We need to make sure the sock fits perfectly on our legs.
- the height of the calf portion is one of the main reasons for slipping off.
- the object of the invention is to provide a sock which is constructed, so that it can be put on the leg without much effort and without creating excessive compression on the leg muscles and to be kept in place at a certain height above the ankle.
- a sock with anti-slip off structure including a sole portion, on the frontside of which a toes portion is formed, and on the backside of the sole portion there is a heel portion.
- the sole portion is extended above the heel portion at an angle to a calf portion.
- a top rim of the sock is formed above the calf portion.
- an elastic section and a controlled compression section are formed on the calf portion.
- the elastic section has a higher compression rate than the controlled compression section.
- the compression rate in the controlled compression section is highest at the bottom and lowest at the top.
- the elastic section is made as a single-layer single-sided knit
- the controlled compression section is made as a double-layer single-sided knit with an inner and outer layer.
- the elastic portion is in the lower part of the outer or inner layer of the double layer single-sided knit of the controlled compression section of the calf portion.
- the elastic section is located below the controlled compression section.
- the controlled compression section is divided into three zones with different compression rates.
- the division of the controlled compression section into three zones allows the development of an alternative embodiment, in which the three zones are arranged consecutively one above the other along the height of the controlled compression section.
- the first zone of the controlled compression section is above the elastic section and has the highest compression rate of the three zones
- the third zone of the controlled compression section is below the top rim and has the lowest compression rate of the three zones.
- controlled compression section is divided into three zones, wherein the first zone of the controlled compression section is the lower part of the inner layer of the double-layer single-sided knit and the second zone of the controlled compression section is the upper part of the inner layer of double-layer single-sided knit.
- the third zone of the controlled compression section is the outer layer of the double-layer single-sided knit.
- the elastic section in embodiments of the sock with anti-slip off structure according to the present invention, so that it is possible the elastic section to also have a controlled compression rate and the toes portion to be closed by linking.
- the sock with anti-slip off structure ensures and maximizes the probability of staying fixed on the wearer's leg and limits the possibility of slipping off down the leg.
- the elastic section in the area above the ankle provides additional compression, which contributes to the retention of the sock.
- the natural extension of the ankle of the human leg retains the slipping of the sock down due to the presence of compression forces above the ankle, which are large enough not to be overcome by natural movements of the leg, but at the same time have a rate that does not cause discomfort or does not lead to a feeling of pressure, blood circulatory disorders and skin damage.
- the embodiments of the sock have a structure of the calf portion, which provides a comfortable fit on the leg, excellent appearance and self-support while wearing.
- Figure 1 shows a schematic view of a first embodiment
- Figure 2 shows a schematic view of a second embodiment
- Figure 3 shows a schematic view of a third embodiment.
- the sock generally includes a sole portion 1, on the frontside of which a toes portion 2 is formed, and on the backside of the sole portion 1 there is a heel portion 3.
- the sole portion 1 is extended above the heel portion 3 at an angle to a calf portion 4.
- a top rim 5 of the sock is formed above the calf portion 4.
- the calf portion 4 of the sock with anti-slip off structure is made so that there is a decreasing compression rate along the height, which is highest in the lower part of the sock 4 and lowest by the top rim 5.
- elastic section 4.1 has a higher compression rate than the controlled compression section 4.2.
- the elastic section 4.1 and the controlled compression section 4.2 during wearing prevent the calf portion 4 of the sock from slipping down the calf in the direction of the user's ankle.
- the elastic section 4.1 is made as a single- layer single-sided knit, which is finer, prevents the sock from slipping off and improves the appearance of the sock. Despite the decreasing compression rate along the height, the controlled compression section 4.2 covers the user's legs reliably, as it is made as a double-layer single-sided knit with inner and outer layer.
- Figure 1 shows a preferred embodiment of the sock with anti-slip off structure, in which the elastic section 4.1 is either in the lower part of outer or inner layer of the double-layer singlesided knit of the controlled compression section 4.2 of the calf portion 4.
- the compression rate in the controlled compression section 4.2 is decreasing in the direction of the top rim 5, where it is the lowest.
- the specific arrangement of the elastic section 4.1 in this embodiment makes possible the manufacturing of various models with different applications.
- the elastic section 4.1 is in the outer layer of the controlled compression section 4.2, the elastic section 4.1 is visible when worn and the aesthetic appearance of the sock is enhanced by its knits.
- the elastic section 4.1 When the elastic section 4.1 is in the lower part of the inner layer of the controlled compression section 4.2, the elastic section 4.1 protects the wearer's leg from marks by its knits.
- Figure 2 shows another embodiment of the sock with anti-slip off structure, according to the present invention, in which the calf portion 4 is divided into elastic section 4.1 and controlled compression section 4.2, which are arranged in such a way that the elastic section 4.1 is below the controlled compression section 4.2.
- the controlled compression section 4.2 is divided into three zones A, B and C, each of which have different compression rates.
- the first zone A is above the elastic section 4.1 and has the highest compression rate which is still lower than the compression rate in the elastic section 4.1.
- the second zone B which has a lower compression rate, compared to the compression rate in the first zone A.
- the calf portion 4 ends with the third zone C, which is located below the top rim 5 and has the lowest compression rate.
- This embodiment allows the compression rate to decrease along the height of the calf portion 4 and yet to be constant in each of the three separate zones A, B and C of the controlled compression section 4.2.
- the three zones A, B and C of the controlled compression section 4.2 allow usage of different knitting techniques in the inner and outer layer of each of the separate zones.
- Figure 3 shows a third embodiment of the sock with anti-slip off structure, according to the present invention.
- the calf portion 4 is also divided into elastic section 4.1 and controlled compression section 4.2, so that the elastic section 4.1 is located below the controlled compression section 4.2.
- the compression rate in the elastic section 4.1 is again higher than that in the controlled compression section 4.2.
- the controlled compression section 4.2 is divided into three zones A, B and C in such a way, that the first zone A of the controlled compression section 4,2 is the lower part of the inner layer of the double-layer single-sided knit and the second zone B of the controlled compression section 4.2 is the upper part of the inner layer of the double-layer single-sided knitting.
- the third zone C in this embodiment, is the outer layer of the double-layer single-sided knit of the controlled compression section 4.2.
- the three zones A, B and C achieve the desired effect, in which the calf portion 4 of the sock with anti-slip off structure does not slip, and at the same time the sock becomes comfortable, elegant, luxurious and leaves no marks while wearing.
- the exemplary embodiment, shown on figure 3 also improves the blood circulation, as the compression rate is evenly distributed over the height of the sock and the leg of the wearer, respectively.
- the compression rate in the elastic section 4.1 can be both constant over its entire height or controlled in such a way, that it gradually decreases in the direction of the controlled compression section 4.2.
- the elastic section 4.1 should cover the area of the ankle and the ankle joint (medial malleolus). The elastic section 4.1 covering this area creates sufficient compression rate on the wearer's leg and fixes the sock above the ankle area.
- the toes portion 2 can be closed by any method known in the art, but it is preferable to do this by linking, which is barely visible stitching, that cannot be distinguished from the rest of the knits by touch, does not leave an edge and does not create discomfort during wearing.
- the sock with anti-slip off structure can be produced on modem socks knitting machines for fine knitting with the possibility of electronic control and with controlled compression of the thread. These machines need to have thread-supplying devices, which provides controlled stretching of the elastic thread to obtain a predetermined compression rate, which ensures that the sock is retained under normal use.
- the sock knitting machine allows the weaving of single-sided and double-sided knits and can control the compression rate throughout the sock’s height and preferably to be able to close the toes by linking. In addition to the control over the knitting densities of the produced socks the machine should enable electronic control over the compression rate of the sock along the leg.
- the knitting of the sock begins with the adjustment of the settings of the sock knitting machine.
- the first embodiment of the sock with anti-slip off structure can be made in two models, which differ depending on the location of the elastic section 4.1.
- the elastic section 4.1 is in the lower part of the inner layer of the double-layer single-sided knit of the controlled compression section 4.2
- the elastic section 4.1 is in the lower part of the outer layer.
- the knitting of the calf portion 4 starts from the elastic section 4.1 itself.
- the knitting of the calf portion 4 ends with the elastic section 4.1.
- the sock knitting machine starts by knitting with an elastic thread in two or more rows, after which the needles are reduced by every second needle and the sinkers on the rip are pushed out.
- a polyamide thread is fed, which is applied to the sinkers and entangled by every second needle and the sinkers on the rip are pushed out.
- the knitting of the calf portion 4 starts Trom the elastic section 4.1, which forms the lower part of the inner layer of the controlled compression section 4.2. After the knitting of the elastic section 4.1, it is proceeded with the upper part of the inner layer of the controlled compression section 4.2, while the size of the stitches and the elastic thread feed is controlled on each row to achieve the desired compression rate.
- the knitting continues with the top rim 5 of the sock and with the outer layer of the controlled compression section 4.2, where it pairs with the beginning of the elastic section 4.1, where the sinkers on the rip are pushed out and the needles from the cylinder catch the polyamide thread from the sinkers.
- the knitting of the calf portion 4 starts from the inner layer of the controlled compression section 4.2 and finishes with the elastic section 4.1, which is in the lower part of the outer layer of the double-layer single-sided knit of the controlled compression section 4.2. After finishing the calf portion 4, the heel portion 3, the sole portion 1 and the toes portion 2 are knitted.
- the sole portion 1 is knitted in a plain single layer single-sided knit, and the toes portion 2 and the heel portion 3 are knitted in a classic heel.
- the toes portion 2 is subsequently closed in the usual way by separate sewing machines for closing the toes or automatically by linking using an additional device of the socks knitting machine.
- the first embodiment of the sock with anti-slip off structure, shown on Figure 1, is more practical for knitting and allows the use of a wider range of sock knitting machines.
- the knitting of the second embodiment of the sock with anti-slip off structure is performed in a similar way to the first embodiment. It begins with braiding of the elastic thread in two or more rows, after which the needles are used by every second needle and the sinkers on the rip are pushed out. A polyamide thread is fed, which is applied to the sinkers and entangled by the needles.
- the calf portion 4 is divided into the elastic section 4.1 and the controlled compression section 4.2, which are arranged so that the elastic section 4.1 is below the controlled compression section 4.2.
- the controlled compression section 4.2 is divided along the height into three zones A, B and C, each of which has an inner and outer layer, as well as a different compression rate, decreasing from the first zone A to the third zone C.
- the compression rates in each of the three zones A, B and C are determined simultaneously by the compression rate of the inner and outer layers of each zone A, B or C.
- the sock knitting machine begins with the knitting of the inner layer of the first zone A.
- the size of the stitches is controlled from smaller to larger and the supply of elastic thread is adjusted to reduce compression rate.
- the rows are moved to the inner layer of the second zone B and then the machine continues with the knitting of the inner layer of the third zone C, while increasing the size of the stitches and reducing the compression rate until it reaches the top rim 5.
- the knitting continues with the outer layer of the third zone C.
- the knitting of the outer layer of the third zone C in the specified rows, it continues with the outer layer of the second zone B and then the machine moves to the outer layer of the first zone A, and here, opposite to the inner layers, the size of the stitches decreases, and the compression rate increases.
- the machine pairs by pushing out the sinkers on the rip and the needles from the cylinder catch the polyamide thread from the sinkers.
- the double-layer single-sided knit of the controlled compression section 4.2 is completed, and the sock knitting machine begins the knitting of the elastic section 4.1.
- the inner and outer layers of each of the three zones A, B and C have the same height for the respective zone, but the zones A, B and C themselves can have equal or different heights relative to each other.
- the rest of the sock is continued with the heel portion 3, the sole portion 1 and the toes portion 2.
- the sole portion 1 is knitted in a smooth single-layer single-sided knit, and the toes portion 2 and the heel portion 3 are knitted in a classic heel. Again, as in the first embodiment of the sock, the toes portion 2 is subsequently closed in usual way by separate sewing machines for closing the toes portion 2 or automatically by linking with the additional device of the sock knitting machine.
- the calf portion 4 is formed again by the elastic section 4.1 and the controlled compression section 4.2, which is divided into three zones A, B and C.
- the first zone A of the controlled compression section 4.2 is the lower part of the inner layer of the double layer single- sided knit
- the second zone B of the controlled compression section 4.2 is the upper part of the inner layer of the double-layer single-sided knit.
- the third zone C is the outer layer of the double-layer single-sided knit of the controlled compression section 4.2.
- the size of the stitches of each row is controlled, starting with smaller and gradually increasing size of the stitches.
- the given rows are passed to the second zone B, where along its height both the size of the stitches and the feeding of the elastic thread are controlled in order to achieve the desired lower compression rate.
- the knitting of the inner layer ends followed by the knitting of the third zone C, which is the outer layer of the controlled compression section 4.2.
- the size of the stitches begins to decrease and the compression rate increases by reducing the supply of the elastic thread.
- the sinkers are pushed from the rip and the needles from the cylinder catch the polyamide thread from the sinkers, by which the pairing and zone C are completed and the sock machine continues to knit the elastic section 4.1 from the calf portion 4.
- the elastic section 4.1 is formed as the third zone C, but the size of the stitches is further reduced and the compression rate is increased.
- the rest of the sock is continued with the heel portion 3, the sole portion 1 and the toes portion 2, which are knitted as in the previous embodiments.
- the toes portion 2 is closed in the usual way by separate sewing machines for toes closing or automatically by linking with an additional device attached to the sock knitting machine.
- the sock with anti-slip off structure is used in the production of socks with high functional qualities and in a wide variety of models. It is best suited to produce luxury men's socks, designed for demanding modem successful men, who make serious demands on their clothing and keep a flawless business appearance. At the same time, the sock with anti-slip off structure remains as comfortable as possible and allows optimal blood circulation in the wearer's legs while worn.
Landscapes
- Engineering & Computer Science (AREA)
- Textile Engineering (AREA)
- Socks And Pantyhose (AREA)
Abstract
Description
Claims
Priority Applications (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| HRP20240747TT HRP20240747T1 (en) | 2020-03-16 | 2021-03-15 | Sock with anti-slip off structure |
| RS20240621A RS65578B1 (en) | 2020-03-16 | 2021-03-15 | Sock with anti-slip off structure |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| BG48252020 | 2020-03-16 | ||
| PCT/BG2021/000010 WO2021184087A1 (en) | 2020-03-16 | 2021-03-15 | Sock with anti-slip off structure |
Publications (3)
| Publication Number | Publication Date |
|---|---|
| EP3998888A1 true EP3998888A1 (en) | 2022-05-25 |
| EP3998888B1 EP3998888B1 (en) | 2024-05-15 |
| EP3998888C0 EP3998888C0 (en) | 2024-05-15 |
Family
ID=81214569
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP21719844.9A Active EP3998888B1 (en) | 2020-03-16 | 2021-03-15 | Sock with anti-slip off structure |
Country Status (6)
| Country | Link |
|---|---|
| EP (1) | EP3998888B1 (en) |
| ES (1) | ES2981392T3 (en) |
| HR (1) | HRP20240747T1 (en) |
| HU (1) | HUE067890T2 (en) |
| PL (1) | PL3998888T3 (en) |
| RS (1) | RS65578B1 (en) |
-
2021
- 2021-03-15 HR HRP20240747TT patent/HRP20240747T1/en unknown
- 2021-03-15 EP EP21719844.9A patent/EP3998888B1/en active Active
- 2021-03-15 PL PL21719844.9T patent/PL3998888T3/en unknown
- 2021-03-15 ES ES21719844T patent/ES2981392T3/en active Active
- 2021-03-15 RS RS20240621A patent/RS65578B1/en unknown
- 2021-03-15 HU HUE21719844A patent/HUE067890T2/en unknown
Also Published As
| Publication number | Publication date |
|---|---|
| HRP20240747T1 (en) | 2024-09-13 |
| EP3998888B1 (en) | 2024-05-15 |
| EP3998888C0 (en) | 2024-05-15 |
| RS65578B1 (en) | 2024-06-28 |
| ES2981392T3 (en) | 2024-10-08 |
| HUE067890T2 (en) | 2024-11-28 |
| PL3998888T3 (en) | 2024-07-08 |
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