Fishing antiskid gloves and preparation method thereof

By forming a PVC slurry layer on the palm surface of the fishing gloves and adding polymer particles or sand particles to form granular protrusions, the problems of poor grip and easy particles falling off in existing gloves are solved, and higher grip and better durability are achieved.

CN119978661APending Publication Date: 2025-05-13NANTONG QIANGSHENG SAFETY PROTECTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510191156.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-20
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

Existing fish gloves are prone to break free when catching fish, and the inlaid high-density quartz sand is easily fallen off and is inflexible to use.

Method used

By forming a PVC slurry layer on the surface of the glove core and adding polymer particles or sand particles to the PVC slurry layer on the palm surface, a palm surface with granular protrusion is formed to increase anti-slip performance.

Benefits of technology

The grip level of the gloves has been improved to reach 3-4 levels, and the granular protrusions are not easy to fall off, and the peeling strength reaches 3-6kg/mm, meeting the long-term use needs.

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Abstract

The invention provides a pair of fishing antiskid gloves and a preparation method thereof. The preparation method of the gloves comprises the following steps: preparing PVC (Polyvinyl Chloride) slurry, spraying the slurry, drying for the first time, soaking a palm, drying for the second time and connecting sleeves. The method further comprises the step of adding polymer particles or sand particles, so that granular protrusions are formed on the palm face of the glove, and the anti-skid performance is improved. The grabability grade of the prepared glove reaches 3-4 grades, the granular protrusions on the palm face are not prone to falling off, the peel strength between the glove and the glove reaches 3-6 kg / mm, and the long-term use requirement can be met.
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Description

Technical Field

[0001] The invention relates to the technical field of security products, and in particular to an anti-slip fishing glove and a preparation method thereof. Background Art

[0002] Since most fish have mucus on their surface, it is easy for fish to break free and difficult to catch when fishing with bare hands or wearing conventional gloves. Therefore, it is necessary to use special fishing gloves to firmly catch fish during fishing operations. Patent document CN202857916U records a non-slip glove for grabbing aquatic products. It records that by gluing a layer of stainless steel wire mesh on the palm surface of the rubber glove and inlaying high-density quartz sand, the friction of the glove can be effectively increased, making it easier to grab aquatic products. However, the glove is not flexible to use, and the inlaid high-density quartz sand is easy to fall off. Summary of the invention

[0003] In view of the deficiencies in the prior art, the object of the present invention is to provide a non-slip fishing glove and a preparation method thereof.

[0004] The objective of the present invention is achieved through the following technical solutions:

[0005] In a first aspect, the present invention provides a method for preparing anti-slip fishing gloves, comprising the following steps:

[0006] S1. Prepare PVC slurry: PVC slurry includes the following components in parts by weight: 100 parts of PVC paste powder and plasticizer, 1-3 parts of liquid butyl rubber, 0.6-0.9 parts of stabilizer, 6-10 parts of diluent, and 1-3 parts of reactive acrylic resin glue; weigh each component according to weight, mix them, and stir them evenly to obtain PVC slurry;

[0007] S2. Spraying: Spray the PVC slurry on the glove core put on the mold by spraying process, and the spraying time is 1-10 minutes;

[0008] S3, first drying: drying the glove core after slurrying at 100-170℃ for 10-50min;

[0009] S4, palm dipping: the glove core after the first drying is dipped into the PVC slurry by palm dipping process, and the dipping time is 0.5-5min;

[0010] S5. Second drying: Dry the glove core after palm immersion at 160-190°C for 15-20min;

[0011] S6, connecting the sleeve: demoulding the glove core after the second drying to obtain the glove body, and then connecting the glove body and the waterproof leather sleeve cloth (as the sleeve body) to obtain the anti-slip fishing gloves.

[0012] As a preferred embodiment, in step S1, the mass ratio of the PVC paste powder to the plasticizer is 1:1-1.2.

[0013] As a preferred embodiment, the method further comprises the step of adding polymer particles or sand particles.

[0014] As a preferred embodiment, the specific steps of adding polymer particles in the method are: spraying particles on the palm surface of the glove core after palm immersion, and then performing a second drying step S5;

[0015] The polymer particles used in the particle spraying step are selected from any one of silica gel particles and polyurethane particles; the particle size of the polymer particles is 0.2-0.4 cm.

[0016] As a preferred solution, the pressure used for the granulation is 8-12 MPa, and the granulation time is 10-20 s.

[0017] As a preferred embodiment, the specific step of adding sand in the method is: in the palm immersion of step S4, 1-10 parts by weight of sand are also added to the PVC slurry;

[0018] The particle size of the sand particles is 50-200 μm.

[0019] As a preferred embodiment, the plasticizer is selected from at least one of dioctyl phthalate, dibutyl phthalate, tri-n-butyl citrate and dioctyl terephthalate.

[0020] As a preferred embodiment, the stabilizer is a calcium zinc stabilizer.

[0021] As a preferred embodiment, the diluent is selected from at least one of 2,2-dichloropropane, acetone and n-butanol.

[0022] As a preferred solution, in step S3, the drying temperature adopted is 110-150°C.

[0023] As a preferred solution, the temperature used for the first drying is lower than that for the second drying, and the temperature difference is 30-50°C.

[0024] In a second aspect, the present invention provides an anti-slip fishing glove prepared according to the aforementioned method, the glove comprising a glove body portion and a glove sleeve portion, the palm surface of the glove body portion having granular protrusions.

[0025] Compared with the prior art, the present invention has the following beneficial effects:

[0026] The present invention forms a PVC slurry layer on the surface of the glove core, and adds polymer particles or sand particles to the PVC slurry layer on the palm surface to form a palm surface with granular protrusions, thereby increasing the anti-slip performance and making the grip level of the prepared gloves reach level 3-4; the granular protrusions are not easy to fall off, and the peel strength between the granular protrusions and the gloves reaches 3-6kg / mm, which can meet the needs of long-term use. DETAILED DESCRIPTION

[0027] Unless otherwise defined, technical terms or scientific terms used in this specification and claims shall have the ordinary meanings understood by persons with ordinary skills in the technical field to which this application belongs. All values ​​from the lowest value to the highest value listed herein refer to all values ​​obtained by incrementing the lowest value to the highest value by one unit when the difference between the lowest value and the highest value is more than two units.

[0028] The specific implementation methods of the present application will be described below. It should be noted that in the specific description of these implementation methods, in order to provide a concise description, it is impossible for this specification to provide a detailed description of all the features of the actual implementation methods. Without departing from the spirit and scope of the present application, those skilled in the art may modify and replace the implementation methods of the present application, and the resulting implementation methods are also within the scope of protection of the present application.

[0029] Example

[0030] The embodiments of the present application will be described in detail below. This embodiment is implemented on the premise of the technical solution of the present application, and a detailed implementation method and a specific operation process are given, but the protection scope of the present application is not limited to the following embodiments.

[0031] In the following embodiments, the PVC paste powder used was purchased from Yuyao Ruijing Plastic Chemical Co., Ltd., model P440; the tri-n-butyl citrate used was purchased from Qingyang County Ruiying Plastic Chemical Sales Co., Ltd.; the liquid butyl rubber used was purchased from Dongguan Shenghao Plastic Raw Materials Co., Ltd., model SH8628H; the calcium zinc stabilizer used was purchased from Shandong Jibei New Materials Co., Ltd.; the 2,2-dichloropropane used was purchased from Shandong Jibei New Materials Co., Ltd.; the reactive acrylic resin glue used was purchased from Qingdao Wanjia Huixin Surface Materials Technology Co., Ltd., model S-611 ; The silica gel particles used were purchased from Dongguan Linghang Silicone Products Co., Ltd., model LHS330; the polyurethane particles used were purchased from Shanghai Kundu Industrial Co., Ltd., model 1185AFHF; the PVC particles used were purchased from Zhejiang Jinlida New Materials Technology Co., Ltd., model MG701-8AB19; the dioctyl phthalate used was purchased from Jinan Yueze Industrial Technology Co., Ltd.; the acetone used was purchased from Shandong Jibei New Materials Co., Ltd.; the sand particles used were purchased from Lingshou County Ruojia Mineral Products Co., Ltd., model XHB-2029.

[0032] The equipment used in the specific embodiments of the present invention are all conventional equipment for producing and preparing gloves, and the raw materials used are also prepared or purchased by conventional methods, and the present invention does not make any special restrictions. The glove core used is prepared or purchased by conventional methods, and the present invention does not make any special restrictions.

[0033] Example 1

[0034] This embodiment provides a method for preparing anti-slip fishing gloves, comprising the following steps:

[0035] 1) Prepare PVC slurry: PVC slurry includes the following components in parts by weight: 50 parts of PVC paste powder, 50 parts of tri-n-butyl citrate, 2 parts of liquid butyl rubber, 0.8 parts of calcium zinc stabilizer, 8 parts of 2,2-dichloropropane, and 2 parts of reactive acrylic resin glue; weigh each component according to the parts by weight, mix them, and stir them evenly to obtain PVC slurry;

[0036] 2) Spraying: Spray the PVC slurry on the glove core (made of polyester) put on the mold by spraying process, and the spraying time is 6 minutes;

[0037] 3) First drying: Dry the glove core after the first slurrying in an oven at 130°C for 30 minutes;

[0038] 4) Palm dipping: The glove core after the first drying is dipped into the PVC slurry by palm dipping process for 2 minutes;

[0039] 5) Granulation: The purchased silica gel particles are crushed and sieved to obtain silica gel particles with a particle size of 0.2-0.4 cm, and then the particles are sprayed on the palm surface of the glove core after palm immersion by a granulator at a pressure of 12 MPa for 20 seconds;

[0040] 6) Second drying: Dry the glove core after granulation in an oven at 170°C for 15 minutes;

[0041] 7) Sleeve connection: demoulding the glove core after the second drying to obtain the glove body, and then connecting the glove body and the waterproof leather sleeve cloth through a high-frequency heat sealing machine to obtain the anti-slip fishing gloves. The gloves include a glove body and a glove sleeve body, and the palm surface of the glove body has granular protrusions.

[0042] Example 2

[0043] This embodiment provides a method for preparing anti-slip fishing gloves, comprising the following steps:

[0044] 1) Prepare PVC slurry: PVC slurry includes the following components in parts by weight: 46 parts of PVC paste powder, 54 parts of tri-n-butyl citrate, 3 parts of liquid butyl rubber, 0.6 parts of calcium zinc stabilizer, 6 parts of 2,2-dichloropropane, and 1 part of reactive acrylic resin glue; weigh each component according to the parts by weight, mix them, and stir them evenly to obtain PVC slurry;

[0045] 2) Spraying: Spray the PVC slurry on the glove core (made of polyester) put on the mold by spraying process, and the spraying time is 6 minutes;

[0046] 3) First drying: Dry the glove core after the first slurrying in an oven at 110°C for 50 minutes;

[0047] 4) Palm dipping: The glove core after the first drying is dipped into the PVC slurry by palm dipping process for 1 minute;

[0048] 5) Granulation: The silica gel particles are crushed and sieved to obtain silica gel particles with a particle size of 0.2-0.4 cm, and then the particles are sprayed on the palm surface of the glove core after palm immersion by a granulator at a pressure of 10 MPa for 15 seconds;

[0049] 6) Second drying: Dry the glove core after granulation in an oven at 160°C for 20 minutes;

[0050] 7) Sleeve connection: demoulding the glove core after the second drying to obtain the glove body, and then connecting the glove body and the waterproof leather sleeve cloth through a high-frequency heat sealing machine to obtain the anti-slip fishing gloves. The gloves include a glove body and a glove sleeve body, and the palm surface of the glove body has granular protrusions.

[0051] Example 3

[0052] The present embodiment provides a method for preparing anti-slip fishing gloves, and the preparation steps are basically the same as those in the embodiment 1, except that: in the granulation in step 5), polyurethane particles are used instead of silica gel particles for crushing and sieving.

[0053] Example 4

[0054] This embodiment provides a method for preparing anti-slip fishing gloves, comprising the following steps:

[0055] 1) Prepare PVC slurry: PVC slurry includes the following components in parts by weight: 50 parts of PVC paste powder, 50 parts of tri-n-butyl citrate, 3 parts of liquid butyl rubber, 0.7 parts of calcium zinc stabilizer, 5 parts of 2,2-dichloropropane, and 3 parts of reactive acrylic resin glue; weigh each component according to the parts by weight, mix them, and stir them evenly to obtain PVC slurry;

[0056] 2) Spraying: Spray the PVC slurry on the glove core (made of polyester) put on the mold by spraying process, and the spraying time is 8 minutes;

[0057] 3) First drying: Dry the glove core after the first slurrying in an oven at 150°C for 10 minutes;

[0058] 4) Palm dipping: The glove core after the first drying is dipped into the PVC slurry by palm dipping process for 5 minutes;

[0059] 5) Granulation: The silica gel particles are crushed and sieved to obtain silica gel particles with a particle size of 0.2-0.4 cm, and then the particles are sprayed on the palm surface of the glove core after palm immersion by a granulator at a pressure of 8 MPa for 10 seconds;

[0060] 6) Second drying: Dry the glove core after granulation in an oven at 180°C for 10 minutes;

[0061] 7) Sleeve connection: demoulding the glove core after the second drying to obtain the glove body, and then connecting the glove body and the waterproof leather sleeve cloth through a high-frequency heat sealing machine to obtain the anti-slip fishing gloves. The gloves include a glove body and a glove sleeve body, and the palm surface of the glove body has granular protrusions.

[0062] Example 5

[0063] This comparative example provides a method for preparing anti-slip fishing gloves, and its preparation steps are basically the same as those in Example 2, except that: in this example, in the first drying step of step 3), the gloves are dried in an oven at 140°C for 50 minutes.

[0064] Example 6

[0065] This comparative example provides a method for preparing anti-slip fishing gloves, and its preparation steps are basically the same as those in Example 2, except that: in this example, in the first drying step of step 6), the gloves are dried in an oven at 190° C. for 20 minutes.

[0066] Comparative Example 1

[0067] This comparative example provides a method for preparing anti-slip fishing gloves, and its preparation steps are basically the same as those in Example 2, except that: in this comparative example, in the granulation in step 5), the purchased silica gel particles are crushed and sieved to obtain silica gel particles with a particle size of 0.1-0.2 cm, and then the particles are sprayed on the palm surface of the glove core after slurry dipping through a granulator.

[0068] Comparative Example 2

[0069] This comparative example provides a method for preparing anti-slip fishing gloves, and its preparation steps are basically the same as those in Example 2, except that: in this comparative example, in the granulation of step 5), the purchased silica gel particles are not crushed and sieved, and the palm surface of the glove core after palm immersion is directly granulated by a granulator.

[0070] Comparative Example 3

[0071] This comparative example provides a method for preparing anti-slip fishing gloves, and its preparation steps are basically the same as those in Example 4, except that in this comparative example, no reactive acrylic glue is added to the prepared PVC slurry in step 1).

[0072] Comparative Example 4

[0073] This comparative example provides a method for preparing anti-slip fishing gloves, and its preparation steps are basically the same as those in Example 1, except that in this comparative example, in the granulation of step 5), PVC particles are used instead of silica gel particles for crushing and sieving.

[0074] Example 7

[0075] This embodiment provides a method for preparing anti-slip fishing gloves, comprising the following steps:

[0076] 1) Prepare PVC slurry 1: PVC slurry 1 includes the following components in parts by weight: 50 parts of PVC paste powder, 50 parts of dioctyl phthalate, 1 part of liquid butyl rubber, 0.7 parts of calcium zinc stabilizer, 10 parts of acetone, and 3 parts of reactive acrylic resin glue; weigh each component according to the parts by weight, mix them, and stir them evenly to obtain PVC slurry 1;

[0077] 2) Prepare PVC slurry 2: PVC slurry 2 includes the following components in parts by weight: 50 parts of PVC paste powder, 50 parts of dioctyl phthalate, 1 part of liquid butyl rubber, 0.7 parts of calcium zinc stabilizer, 10 parts of acetone, 3 parts of reactive acrylic resin glue, and 8 parts of sand with a particle size of 100-200 μm (obtained by crushing and sieving purchased sand); weigh each component according to the parts by weight, mix them, and stir them evenly to obtain PVC slurry 2;

[0078] 3) Spraying: Spray the PVC slurry 1 onto the glove core (made of polyester) put on the mold by spraying process, and the spraying time is 6 minutes;

[0079] 4) First drying: Dry the glove core after slurry coating in an oven at 150°C for 20 minutes;

[0080] 5) Palm dipping: The glove core after the first drying is dipped into PVC slurry 2 by palm dipping process for 4 minutes;

[0081] 6) Second drying: Dry the glove core after palm immersion in an oven at 180°C for 15 minutes;

[0082] 7) Sleeve connection: demoulding the glove core after the second drying to obtain the glove body, and then connecting the glove body and the waterproof leather sleeve cloth through a high-frequency heat sealing machine to obtain the anti-slip fishing gloves. The gloves include a glove body and a glove sleeve body, and the palm surface of the glove body has granular protrusions.

[0083] Example 8

[0084] This embodiment provides a method for preparing anti-slip fishing gloves, comprising the following steps:

[0085] 1) Prepare PVC slurry 1: PVC slurry 1 includes the following components in parts by weight: 48 parts of PVC paste powder, 52 parts of dioctyl phthalate, 2 parts of liquid butyl rubber, 0.9 parts of calcium zinc stabilizer, 7 parts of acetone, and 1.5 parts of reactive acrylic resin glue; weigh each component according to the parts by weight, mix them, and stir them evenly to obtain PVC slurry 1;

[0086] 2) Prepare PVC slurry 2: PVC slurry 2 includes the following components in parts by weight: 48 parts of PVC paste powder, 52 parts of dioctyl phthalate, 2 parts of liquid butyl rubber, 0.9 parts of calcium zinc stabilizer, 7 parts of acetone, 1.5 parts of reactive acrylic resin glue, and 5 parts of sand with a particle size of 100-200 μm (obtained by crushing and sieving purchased sand); weigh each component according to the parts by weight, mix them, and stir them evenly to obtain PVC slurry 2;

[0087] 3) Spraying: Spray the PVC slurry 1 onto the glove core (made of polyester) on the mold by spraying process, and the spraying time is 4 minutes;

[0088] 4) First drying: Dry the glove core after slurry coating in an oven at 120°C for 40 minutes;

[0089] 5) Palm dipping: The glove core after the first drying is dipped into PVC slurry 2 by palm dipping process for 5 minutes;

[0090] 6) Second drying: Dry the glove core after palm immersion in an oven at 170°C for 20 minutes;

[0091] 7) Sleeve connection: demoulding the glove core after the second drying to obtain the glove body, and then connecting the glove body and the waterproof leather sleeve cloth through a high-frequency heat sealing machine to obtain the anti-slip fishing gloves. The gloves include a glove body and a glove sleeve body, and the palm surface of the glove body has granular protrusions.

[0092] Example 9

[0093] This embodiment provides a method for preparing anti-slip fishing gloves, comprising the following steps:

[0094] 1) Prepare PVC slurry 1: PVC slurry 1 includes the following components in parts by weight: 46 parts of PVC paste powder, 54 parts of dioctyl phthalate, 3 parts of liquid butyl rubber, 0.6 parts of calcium zinc stabilizer, 6 parts of acetone, and 2 parts of reactive acrylic resin glue; weigh each component according to the parts by weight, mix them, and stir them evenly to obtain PVC slurry 1;

[0095] 2) Prepare PVC slurry 2: PVC slurry 2 includes the following components in parts by weight: 46 parts of PVC paste powder, 54 parts of dioctyl phthalate, 3 parts of liquid butyl rubber, 0.6 parts of calcium zinc stabilizer, 6 parts of acetone, 2 parts of reactive acrylic resin glue, and 10 parts of sand with a particle size of 100-200 μm (obtained by crushing and sieving purchased sand); weigh each component according to the parts by weight, mix them, and stir them evenly to obtain PVC slurry 2;

[0096] 3) Spraying: Spray the PVC slurry 1 onto the glove core (made of polyester) put on the mold by spraying process, and the spraying time is 1 minute;

[0097] 4) First drying: Dry the glove core after slurry coating in an oven at 130°C for 50 minutes;

[0098] 5) Palm dipping: The glove core after the first drying is dipped into the PVC slurry 2 by palm dipping process again, and the dipping time is 3 minutes;

[0099] 6) Second drying: Dry the glove core after palm immersion in an oven at 160°C for 20 minutes;

[0100] 7) Sleeve connection: demoulding the glove core after the second drying to obtain the glove body, and then connecting the glove body and the waterproof leather sleeve cloth through a high-frequency heat sealing machine to obtain the anti-slip fishing gloves. The gloves include a glove body and a glove sleeve body, and the palm surface of the glove body has granular protrusions.

[0101] Example 10

[0102] This embodiment provides a method for preparing anti-slip fishing gloves, and its preparation steps are basically the same as those in Example 8, with the only difference being that in this embodiment, in the step 2) of preparing PVC slurry 2, the weight portion of sand particles with a particle size of 100-200 μm is 1 part.

[0103] Comparative Example 5

[0104] This comparative example provides a method for preparing anti-slip fishing gloves, and its preparation steps are basically the same as those in Example 9, except that in this comparative example, no reactive acrylic glue is added to the prepared PVC slurry 1 in step 1) and the prepared PVC slurry 2 in step 2).

[0105] Comparative Example 6

[0106] This comparative example provides a method for preparing anti-slip fishing gloves, and its preparation steps are basically the same as those in Example 9, with the only difference being that in this comparative example, in the step 2) of preparing PVC slurry 2, purchased sand particles with a particle size greater than 200 μm are used (directly added without crushing and screening).

[0107] Comparative Example 7

[0108] This comparative example provides a method for preparing anti-slip fishing gloves, and its preparation steps are basically the same as those in Example 9, with the only difference being that in this comparative example, in the step 2) of preparing PVC slurry 2, sand particles with a particle size of 10-50 μm (obtained by crushing and sieving purchased sand particles) are used.

[0109] Performance Testing

[0110] The anti-skid fishing gloves prepared in each embodiment and comparative example were tested for anti-skid property, wear resistance and puncture resistance. Specifically, the ASTM F2961-22 method was used to test the grip of the gloves, and the EN388-2016 method was used to test the wear resistance and puncture resistance. The ISO 8510-2:2006 method was used to test the peel strength of the granular protrusions on the palm surface. The test results are shown in Table 1 below.

[0111] Table 1

[0112]

[0113] From the results in Table 1, it can be seen that the grip level of the anti-slip fishing gloves prepared by polymer particles in Examples 1-4 reaches level 3-4, and the peel strength between the granular protrusions and the gloves reaches 3-5kg / mm, which has very good anti-slip and granular protrusion peeling resistance; and its wear resistance level reaches level 2-3, and its puncture resistance level reaches level 3, taking into account high wear resistance and puncture resistance. From the comparison of the results of Example 2 and Examples 5-6, it can be seen that by specifically adopting the temperature range of two dryings, the temperature used for the first drying is lower than the temperature of the second drying, and the temperature difference is 30-50°C, the peel strength between the granular protrusions and the gloves and / or the grip level can be further improved. From the comparison of the results of Examples 1 and 3 with Comparative Example 4, it can be seen that when silica gel particles or polyurethane particles are used, the grip of the gloves prepared therefrom and the peel strength between the granular protrusions and the gloves are significantly better than PVC particles; and the performance is best when silica gel particles are used. From the comparison of the results of Example 2 and Comparative Examples 1-2, it can be seen that when the size of the silica gel particles used is too small, the grip level will be significantly reduced; and when the size of the silica gel particles used is too large, the peel strength between the granular protrusions and the gloves will be significantly reduced. From the comparison of the results of Example 4 and Comparative Example 3, it can be seen that when no reactive acrylic resin is added, the grip of the gloves and the peel strength between the granular protrusions and the gloves will be significantly reduced.

[0114] From the results in Table 1, it can be seen that the grip level of the anti-slip fishing gloves prepared by sand particles in Examples 7-9 reaches level 3-4, and the peel strength between the granular protrusions and the gloves reaches 5-6kg / mm, which has very good anti-slip and granular protrusion peeling resistance; and its wear resistance level reaches level 2-4, and the puncture resistance level reaches level 2-3, taking into account both high wear resistance and puncture resistance. From the comparison of the results of Example 8 and Example 10, it can be seen that when the amount of sand added is too low, it leads to. From the comparison of the results of Example 9 and Comparative Examples 5-7, it can be seen that when the reactive acrylic resin is not added, the grip, wear resistance and puncture resistance levels of the gloves will be significantly reduced; when the size of the sand particles used is too large, the peel strength between the granular protrusions and the gloves will be significantly reduced, and the puncture resistance level will also be reduced; and when the size of the sand particles used is too small, the grip level will be significantly reduced.

[0115] The above description of the embodiments is to facilitate the understanding and use of the invention by those skilled in the art. It is obvious that those skilled in the art can easily make various modifications to these embodiments and apply the general principles described herein to other embodiments without creative work. Therefore, the present invention is not limited to the above embodiments, and improvements and modifications made by those skilled in the art based on the disclosure of the present invention without departing from the scope of the present invention should be within the scope of protection of the present invention.

Claims

1. A method for preparing anti-slip fishing gloves, characterized in that: The following steps are involved: S1. Prepare PVC slurry: PVC slurry includes the following components in parts by weight: 100 parts of PVC paste powder and plasticizer, 1-3 parts of liquid butyl rubber, 0.6-0.9 parts of stabilizer, 6-10 parts of diluent, and 1-3 parts of reactive acrylic resin glue; weigh each component according to weight, mix them, and stir them evenly to obtain PVC slurry; S2. Spraying: Spray the PVC slurry on the glove core put on the mold by spraying process, and the spraying time is 1-10 minutes; S3, first drying: drying the glove core after slurrying at 100-170℃ for 10-50min; S4, palm dipping: the glove core after the first drying is dipped into the PVC slurry by palm dipping process, and the dipping time is 0.5-5min; S5. Second drying: Dry the glove core after palm immersion at 160-190°C for 15-20min; S6, connecting the sleeve: demoulding the glove core after the second drying to obtain the glove body, and then connecting the glove body and the waterproof leather sleeve cloth to obtain the anti-slip fishing gloves.

2. The method for preparing the anti-slip fishing gloves according to claim 1, characterized in that: In step S1, the mass ratio of the PVC paste powder to the plasticizer is 1:1-1.

2.

3. The method for preparing the anti-slip fishing gloves according to claim 1, characterized in that: The method further comprises the step of adding polymer particles or sand.

4. The method for preparing the anti-slip fishing gloves according to claim 3, characterized in that: The specific steps of adding polymer particles in the method are: spraying particles on the palm surface of the glove core after palm immersion, and then performing a second drying step S5; The polymer particles used in the particle spraying step are selected from any one of silica gel particles and polyurethane particles; the particle size of the polymer particles is 0.2-0.4 cm.

5. The method for preparing the anti-slip fishing gloves according to claim 4, characterized in that: The pressure used for the granulation is 8-12 MPa, and the granulation time is 10-20 s.

6. The method for preparing the anti-slip fishing gloves according to claim 3, characterized in that: The specific steps of adding sand particles in the method are: in the palm immersion of step S4, 1-10 parts by weight of sand particles are also added to the PVC slurry; The particle size of the sand particles is 50-200 μm.

7. The method for preparing the anti-slip fishing gloves according to any one of claims 1 to 6, characterized in that: The plasticizer is selected from at least one of dioctyl phthalate, dibutyl phthalate, tri-n-butyl citrate, and dioctyl terephthalate; The stabilizer is a calcium zinc stabilizer; The diluent is selected from at least one of 2,2-dichloropropane, acetone and n-butanol.

8. The method for preparing the anti-slip fishing gloves according to claim 1, characterized in that: In step S3, the drying temperature adopted is 110-150°C.

9. The method for preparing the anti-slip fishing gloves according to claim 8, characterized in that: The temperature used in the first drying is lower than that in the second drying, and the temperature difference is 30-50°C.

10. A non-slip fishing glove prepared according to the method according to any one of claims 1 to 9, characterized in that: The glove comprises a glove body part and a glove sleeve part, and the palm surface of the glove body part is provided with granular protrusions.

Citation Information

Patent Citations

  • Anti-skidding gloves used for grabbing aquatic production

    CN202857916U