TWM593831U - Magnetic far-infrared finger sleeves - Google Patents

Magnetic far-infrared finger sleeves Download PDF

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TWM593831U
TWM593831U TW108213318U TW108213318U TWM593831U TW M593831 U TWM593831 U TW M593831U TW 108213318 U TW108213318 U TW 108213318U TW 108213318 U TW108213318 U TW 108213318U TW M593831 U TWM593831 U TW M593831U
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Taiwan
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magnetic
infrared
thumb
finger
creation
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TW108213318U
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王美心
黃秋祝
吳麗玉
郭素卿
蔣本慈
廖荃億
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國立雲林科技大學
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Abstract

This creation provides a magnetic far-infrared finger sleeves, the structure of this creation is through plastic MuCell injection molding (MuCell ®) process evenly lying magnetic materials to form a two-tube structure for thumb and index finger. Wherein the magnetic material is selected from a group consisting SrFe12O19, BaFe12O19, CoFe12O19, and Nd-Fe-B, to support alleviation of pain and sore. The two-tube structure is designed to reveal the nails without affection work, and the structure is an adjacent two tubes with a lower tube for thumb and a higher tube for index finger. Wherein the lower tube for thumb is designed with a long opening from the middle of the lower tube facing the index finger to cover the inner part of the palm. Nevertheless, there is a design selected from a group consisting the twelve Chinese Zodiacs, located at the both sides of the lower portion of the creation, for decoration and healing support due to higher thickness. This creation can further add far-infrared ceramic materials to generate the blood circulation enhancement and alleviate the discomfort on the trigger fingers (thumb and index finger).

Description

磁力紅外指套 Magnetic infrared finger cot

本創作係有關於一種磁力紅外指套,尤指一種具有磁性材料及遠紅外線陶瓷之其應用,輔助血液循環改善手指屈指肌腱狹窄性腱鞘炎(俗稱板機指)或手指運動傷害導致痠痛之保健功能裝置。 This creation is about the application of a magnetic infrared finger cot, especially a kind of magnetic material and far infrared ceramic, which can assist blood circulation to improve the flexor tendon stenosis tenosynovitis (commonly known as trigger finger) or finger movement injury caused by soreness. Device.

近年來工業化迅速發展,因工作或興趣使用3C產品的時間相對變長,手指過度運動造成痠痛或運動傷害、或老化產退化僵直活動不便利的狀況增多,追求身體功能的健康與活動便利敏捷成為新趨勢,生活用品具備預防保健或復健功能來促進健康成為工藝設計的要求。 In recent years, industrialization has developed rapidly, and the time spent using 3C products due to work or interest has become relatively long. Excessive finger movements have caused soreness or sports injuries, or aging and degeneration. Stiffness and inconvenience of activities have increased. New trend, daily necessities with preventive health or rehabilitation function to promote health has become a requirement of process design.

人體具有生物磁場,外界磁場的變化都會影響人體的生理機能,這種變化通過神經、體液系統發生電荷、電位、分子結構、生化和生理功能的改變,調整人體的生理功能和提高免疫力。古希臘醫生應用磁石治療腹瀉、痛風、痙攣。阿拉伯醫生用磁石治療牙痛,肝臟病等。五十年代日本出現了磁氣粒療法,應用在內科、外科、而且在婦科、兒科、耳鼻喉科、眼科、皮膚科及口腔科等多有應用,據報導磁場有鎮靜與改善睡眠的作用,還可以鎮痛、消炎、消腫、降壓、降脂等作用。應用磁場治病的 方法,稱為磁療法,用磁治病早在2000多年前,就用磁石和其他礦石物質混合在一起服用可以治療疾病。西元六世紀唐代醫藥學家孫思邈在“千金方”中記述,用磁石可以名目,還可外敷“金創出血”。唐代馮贊所著“雲中雜記”中,記有“益精者,無如磁石,以為益枕,可老而不昏。”上述古代醫書載明磁石對人體健康益處,但天然磁石的磁場微弱,數量有限難以廣泛使用或起到明顯的作用。 The human body has a biological magnetic field, and changes in the external magnetic field will affect the physiological function of the human body. Such changes occur through changes in charge, potential, molecular structure, biochemistry, and physiological functions of the nerves and humoral systems to adjust the physiological functions of the human body and improve immunity. Ancient Greek doctors used magnets to treat diarrhea, gout and cramps. Arab doctors use magnets to treat toothaches, liver diseases, etc. In the 1950s, magnetic particle therapy appeared in Japan. It has been used in internal medicine, surgery, gynecology, pediatrics, otolaryngology, ophthalmology, dermatology, and stomatology. It has been reported that magnetic fields can calm and improve sleep. It can also relieve pain, reduce inflammation, reduce swelling, lower blood pressure and lower fat. Magnetic field treatment The method, called magnetotherapy, used magnetism to cure diseases. As early as 2000 years ago, magnetism and other mineral substances were mixed and taken together to treat diseases. Sun Simiao, a medical scientist of the Tang Dynasty in the sixth century, wrote in the "Thousand Gold Formula" that magnets can be used for names, and "jinchuang bleeding" can also be applied externally. In the "Miscellaneous Notes in the Cloud" written by Feng Zan in the Tang Dynasty, it is written that "the essence is as good as a magnet, thinking that the pillow is old but not faint." The ancient medical books mentioned above show the benefits of magnets on human health, but the natural magnets The magnetic field is weak, and the limited number is difficult to use widely or play an obvious role.

遠紅外線具明顯的熱輻射。能有效除去室內的苯、甲醛、硫化物、氨和臭味,具殺菌功能。遠紅外線可促進血液循環,刺激皮膚內熱感覺器,通過丘腦反射,擴張血管讓血液循環加快。另一方面熱作用,引起血管活性物質的釋放,小動脈、毛細管和靜脈擴張,血液循環得以改善,具有消炎、消腫功能。遠紅外線的熱作用激活免疫細胞功能,強化細胞和網狀內皮細胞的吞噬功能,達到消炎抑菌的目的、活躍組織代謝、提高細胞供氧量,加強細胞再生能力、改善病區供血氧狀態、控制炎症發展,改善病灶修復速度。遠紅外線可促進微循環、加速代謝、廢物排泄、加速滲出物的吸收、使炎症水腫消退。在醫療,康復領域被廣泛使用。一般的遠紅外線原料普遍分為兩種:(1)天然採集具有遠紅外線放射能量的礦石;(2)由特殊原料高溫燒結而成的遠紅外線陶瓷。天然採集的礦石遠紅外線的放射不均勻,高溫燒結的遠紅外線陶瓷則可以原料配方及比例改質,來產生輻射定波長的紅外線光波,廣泛應用於燃油節能、運動訓練康復、空氣凈化、人體保健等領域。 Far infrared rays have obvious heat radiation. It can effectively remove indoor benzene, formaldehyde, sulfide, ammonia and odor, and has a sterilization function. Far infrared rays can promote blood circulation, stimulate the thermal sensor in the skin, and dilate blood vessels through the thalamus to accelerate blood circulation. On the other hand, heat action causes the release of vasoactive substances, dilation of small arteries, capillaries, and veins, improved blood circulation, and has anti-inflammatory and anti-tumor functions. The thermal effect of far infrared rays activates the function of immune cells, strengthens the phagocytic function of cells and reticuloendothelial cells, achieves the purpose of anti-inflammatory and bacteriostasis, active tissue metabolism, increases the oxygen supply of cells, strengthens the ability of cell regeneration, improves the oxygen supply state of the disease 1. Control the development of inflammation and improve the speed of lesion repair. Far infrared rays can promote microcirculation, accelerate metabolism, waste excretion, accelerate the absorption of exudate, and reduce inflammation and edema. It is widely used in medical and rehabilitation fields. The general far-infrared raw materials are generally divided into two types: (1) naturally collected ores with far-infrared radiation energy; (2) far-infrared ceramics sintered from special raw materials at high temperature. The far-infrared radiation of naturally collected ores is not uniform, and the high-temperature sintered far-infrared ceramics can be modified with raw material formulas and proportions to generate infrared light waves with a fixed wavelength. It is widely used in fuel saving, sports training and rehabilitation, air purification, and human health And other fields.

手指屈指肌腱狹窄性腱鞘炎俗稱板機指,好發於常需使用手指工作的族群,且經常也是糖尿病或腕隧道症候群。手掌遠端處會有疼痛 感覺或握東西有困難僵直的感覺,當手指彎曲後想伸直時,肌腱會卡住,完全伸直有困難或產生彈響聲,類似扣板機的狀況,所以稱為板機指;嚴重時手指會固定於彎曲位置,得靠另一隻手來將患側手指伸展,且伴隨疼痛感與彈跳的聲響。傳統治療會建議多休息、熱敷、按摩、針灸或服藥。 Stenosis tenosynovitis of the flexor digitorum tendon of the finger is commonly known as the trigger finger, and it is more likely to occur in ethnic groups who often need to use their fingers to work, and is often also diabetes or carpal tunnel syndrome. Pain in the distal part of the palm Feeling or stiffness when holding something difficult, when the fingers are bent and want to straighten, the tendon will be stuck, it is difficult to fully straighten or there is a popping sound, similar to the situation of the trigger, so it is called the trigger finger; when serious The finger will be fixed in the bent position, and the other hand must be used to stretch the affected side finger, and it is accompanied by the pain and the sound of bounce. Traditional treatment will recommend more rest, hot compresses, massage, acupuncture or medicine.

塑膠微發泡射出製程(MuCell®)是將超臨界流體(N2或CO2)注入射出機料管中,透過螺桿將超臨界流體與塑料混鍊成均勻單相流體。超臨界流體與熔融態高分子均勻相混合物在射出過程中因為瞬間壓降,使得流體進入模穴後氣體從熔融態塑料當中擴散成核並長成均勻微細氣泡。含有微細氣泡的塑料經模具冷卻固化得到微細發泡成品。此一製程省去傳統塑膠製程保壓階段而節省製程周期時間,同時解決傳統射出產品收縮不均勻與翹曲變形等問題來提昇產品尺寸精度。另外,除了微發泡製程較傳統射出製程生產週期較短,其產品因使用氣體做為發泡媒介而兼具製程環保、產品輕量化的優點。微細發泡成型技術具有優越之物性,其泡孔密度高(106~109cells/cm3),其發泡體密度可控制在0.03~0.95之間,具有高抗張力及壓縮強度,在高熱下穩定性高、低熱傳導係數、適用於低溫,介電常數低,訊號傳輸性能佳。無污染潔淨度高,與未發泡成品相較之下,有高衝擊強度、高韌性、高耐疲勞性,且產品壽命較長。改善傳統乳膠製造過程因大量快速製造導致受熱比較不均勻,且乳膠本身的氣孔沒有模具發泡的多,透氣性以及使用的回彈度也較傳統模具發泡來得低。 The plastic microfoam injection process (MuCell®) is to inject supercritical fluid (N 2 or CO 2 ) into the injection machine material tube, and mix the supercritical fluid and plastic into a uniform single-phase fluid through the screw. Due to the instantaneous pressure drop of the supercritical fluid and the homogeneous phase mixture of the molten polymer during injection, the gas diffuses from the molten plastic to nucleate and grow into uniform fine bubbles after the fluid enters the cavity. The plastic containing fine bubbles is cooled and solidified by the mold to obtain fine foamed products. This process saves the pressure holding stage of the traditional plastic process and saves the process cycle time, while solving the problems of uneven shrinkage and warpage of traditional injection products to improve the dimensional accuracy of the product. In addition, except that the micro-foaming process has a shorter production cycle than the traditional injection process, its products have the advantages of environmental protection and light weight of the process due to the use of gas as the foaming medium. Micro-foaming molding technology has superior physical properties, its cell density is high (106~109cells/cm3), its foam density can be controlled between 0.03~0.95, has high tensile and compressive strength, high stability under high heat 3. Low thermal conductivity, suitable for low temperature, low dielectric constant, and good signal transmission performance. The pollution-free cleanliness is high. Compared with the unfoamed finished product, it has high impact strength, high toughness, high fatigue resistance, and long product life. Improve the traditional latex manufacturing process. Due to the large amount of rapid manufacturing, the heating is not uniform, and the pores of the latex itself are not much foamed by the mold. The air permeability and the rebound rate used are also lower than those of the traditional mold foam.

本創作提供一種磁力紅外指套,其材質為塑膠微發泡射出製程(MuCell®)包裹磁性材料,可同時穿戴於拇指與食指同時露出拇指與食指上端不會影響日常工作,近手腕部邊緣造型選自以十二生肖設計所組成之族群,同時提供美觀與輔助治療的效果。其中磁性材料選自至少一種由鍶氧鐵(SrFe12O19)、鋇氧鐵(BaFe12O19)、鈷氧鐵(CoFe12O19)、釹鐵硼(Nd-Fe-B)等永磁性材料組成之族群。本創作更可添加遠紅外線陶瓷材料。 This creation provides a magnetic infrared finger sleeve, which is made of plastic micro-foam injection process (MuCell®) wrapped with magnetic material. It can be worn on the thumb and index finger at the same time. Exposing the upper end of the thumb and index finger will not affect daily work. The shape of the wrist near the edge It is selected from the ethnic group composed of zodiac designs, while providing aesthetic and auxiliary treatment effects. The magnetic material is selected from at least one of strontium iron oxide (SrFe 12 O 19 ), barium iron oxide (BaFe 12 O 19 ), cobalt iron oxide (CoFe 12 O 19 ), neodymium iron boron (Nd-Fe-B), etc. A group of magnetic materials. Far infrared ceramic materials can be added to this creation.

本創作所提供磁力紅外指套,利用永磁性材料產生磁性,紅外線陶瓷材料促進血液循環,用以輔助改善手指屈指肌腱狹窄性腱鞘炎(俗稱板機指)或手指運動傷害導致痠痛之復健或預防保健提供健康促進效果。為了使其在材料中能更好的分散,磁性材料的粒徑最好控制到5um以下。 We provide magnetic infrared finger cots, which use permanent magnetic materials to produce magnetism, and infrared ceramic materials to promote blood circulation to help improve flexor tendon stenosis tenosynovitis (commonly known as trigger fingers) or finger movement injuries resulting in rehabilitation or prevention of soreness. Health care provides health promotion effects. In order to make it better dispersed in the material, the particle size of the magnetic material is preferably controlled to below 5um.

10:本創作磁力紅外指套之鼠的構造 10: The structure of the mouse of the magnetic infrared finger set in this creation

20:本創作磁力紅外指套之牛的構造 20: The structure of the cow of the magnetic infrared finger sleeve in this creation

30:本創作磁力紅外指套之虎的構造 30: The structure of the tiger of the magnetic infrared finger sleeve in this creation

40:本創作磁力紅外指套之兔的構造 40: The structure of the rabbit of the magnetic infrared finger sleeve in this creation

50:本創作磁力紅外指套之龍的構造 50: The structure of the dragon of the magnetic infrared finger sleeve in this creation

60:本創作磁力紅外指套之蛇的構造 60: The structure of the snake of the magnetic infrared finger sleeve in this creation

70:本創作磁力紅外指套之馬的構造 70: The structure of the horse of the magnetic infrared fingers

80:本創作磁力紅外指套之羊的構造 80: The structure of the sheep of the magnetic infrared finger sleeve in this creation

90:本創作磁力紅外指套之猴的構造 90: The structure of the monkey with magnetic infrared finger cots

100:本創作磁力紅外指套之雞的構造 100: The structure of the chicken with magnetic infrared finger cots

110:本創作磁力紅外指套之狗的構造 110: The structure of the dog of the magnetic infrared finger set

120:本創作磁力紅外指套之豬的構造 120: The structure of the pig with the magnetic infrared finger sleeve

130:本創作磁力紅外指套之指套以包含大拇指及食指下半部,與部分手掌的結構 130: The fingertips of the magnetic infrared fingertips in this creation include the thumb and index finger lower half, and part of the palm structure

第1圖係本創作磁力紅外指套之塑膠微發泡成型製程說明。 Figure 1 is a description of the plastic micro-foaming molding process for the creation of magnetic infrared finger cots.

第2圖係本創作磁力紅外指套之十二生肖動物鼠、牛、虎、兔、龍、蛇等之構造。 Figure 2 shows the structure of the zodiac animals such as rats, cows, tigers, rabbits, dragons, snakes, etc. in the creation of the magnetic infrared finger cot.

第3圖係本創作磁力紅外指套以本創作磁力紅外眼罩之十二生肖動物馬、羊、猴、雞、狗、豬等之構造。 Figure 3 is the structure of the original magnetic infrared finger cot based on the zodiac animal horse, sheep, monkey, chicken, dog, pig, etc.

第4圖係本創作磁力紅外指套以馬構造為實施例,正反兩面各有一馬構造以增加厚度之正面圖。 Figure 4 is a front view of the creation of a magnetic infrared finger cot with a horse structure as an example, and a horse structure on each of the front and back sides to increase the thickness.

第5圖係本創作磁力紅外指套以馬構造為實施例,正反兩面各有一馬構造以增加厚度之背面圖。 Figure 5 is a rear view of the original magnetic infrared finger cot with a horse structure as an example, and a horse structure on each of the front and back sides to increase the thickness.

第6圖係本創作磁力紅外指套以馬構造為實施例之側面圖。 Figure 6 is a side view of the original magnetic infrared finger cot with the horse structure as an example.

第7圖係本創作磁力紅外指套以馬構造為實施例之底視圖。 Fig. 7 is a bottom view of the original magnetic infrared finger cot with the horse structure as an example.

第8圖係本創作磁力紅外指套以馬構造為實施例之俯視圖。 Figure 8 is a top view of the creation of the magnetic infrared finger cot with the horse structure as an example.

請參閱第1圖、第2圖、第3圖、第4圖、第5圖、第6圖、第7圖及第8圖,本實施例係提供一種磁力紅外指套,依據第1圖製程,將本創作所需永磁性材料、遠紅外線陶瓷、塑膠材料等混和塑化、注入超臨界流體讓前述兩相共存充填進入本創作之模具、待兩相混合擴散、達到單一相混和平衡,為氣泡均勻擴散成單一相狀態後脫模;本實施例塑膠材質為熱塑性彈性體(plastic raw materials,TPR)塑膠微發泡射出製程(MuCell®)包裹2%重量份的磁性材料鋇氧鐵(BaFe12O19),1%重量份的遠紅外線陶瓷粉,可同時穿戴於拇指與食指同時露出拇指與食指上端不會影響日常工作之一高一低的雙管狀連結結構,如第4圖為本實施例之正面圖、第5圖為本實施例之背面圖、第6圖為本實施例之側面圖、第7圖為本實施例之底視圖、第8圖為本實施例之俯視圖所示;較低的管狀結構從中間往下方方向開口斜切以便套入部分手腕,近手腕部邊緣構造為第2圖中馬的造型(70),其中長為2公分,寬1.2公分,厚度0.08公分,管狀結構的長度為五公分,直徑1公分,厚度0.08公分。輔助血液循環改善手指屈指肌腱狹窄性腱鞘炎(俗稱板機指)或手指運動傷害導致痠痛。 Please refer to Fig. 1, Fig. 2, Fig. 3, Fig. 4, Fig. 5, Fig. 6, Fig. 7 and Fig. 8, this embodiment provides a magnetic infrared finger cot according to the process of Fig. 1 , Mix and plasticize the permanent magnetic materials, far-infrared ceramics, plastic materials, etc. required for this creation, and inject supercritical fluid to allow the two-phase coexistence and filling into the mold of this creation, wait for the two-phase mixing and diffusion, to achieve a single phase mixing and balance, The bubbles are evenly diffused into a single-phase state and then released. The plastic material in this embodiment is a thermoplastic raw material (TPR) plastic micro-foam injection process (MuCell®) wrapped with 2% by weight of the magnetic material barium ferrite (BaFe) 12 O 19 ), 1% by weight far-infrared ceramic powder, can be worn on the thumb and index finger at the same time, exposing the upper end of the thumb and index finger at the same time will not affect the daily work. One high and low double tubular connection structure, as shown in Figure 4 The front view of the embodiment, FIG. 5 is the back view of the embodiment, FIG. 6 is the side view of the embodiment, FIG. 7 is the bottom view of the embodiment, and FIG. 8 is the top view of the embodiment ; The lower tubular structure is chamfered from the middle to the downward direction to fit part of the wrist, and the edge of the near wrist is constructed as the horse in figure 2 (70), which is 2 cm long, 1.2 cm wide, and 0.08 cm thick The length of the tubular structure is 5 cm, the diameter is 1 cm, and the thickness is 0.08 cm. Assist blood circulation to improve stenosis tenosynovitis of finger flexor tendon (commonly known as trigger finger) or finger movement injury resulting in soreness.

70:本創作磁力紅外指套之馬的構造 70: The structure of the horse of the magnetic infrared fingers

130:本創作磁力紅外指套之指套以包含大拇指及食指下半部,與部分手掌的結構 130: The fingertips of the magnetic infrared fingertips in this creation include the thumb and index finger lower half, and part of the palm structure

Claims (6)

一種磁力紅外指套,其材質為塑膠微發泡射出製程(MuCell®)包裹磁性材料,可同時穿戴於拇指與食指同時露出拇指與食指上端不會影響日常工作之一高一低的雙管狀連結結構;較低的管狀結構從中間往下方方向開口斜切以便套入部分手腕,近手腕部邊緣構造選自以十二生肖設計所組成之族群;其中磁性材料選自至少一種由鍶氧鐵(SrFe12O19)、鋇氧鐵(BaFe12O19)、鈷氧鐵(CoFe12O19)、釹鐵硼(Nd-Fe-B)等永磁性材料組成之族群。 A magnetic infrared finger sleeve made of plastic microfoam injection process (MuCell®) wrapped with magnetic material, which can be worn on the thumb and index finger at the same time and expose the upper end of the thumb and index finger at the same time will not affect daily work. Structure; the lower tubular structure is chamfered from the middle to the downward direction to fit in part of the wrist. The structure near the edge of the wrist is selected from the group consisting of zodiac designs; wherein the magnetic material is selected from at least one of strontium iron oxide ( SrFe 12 O 19 ), barium iron oxide (BaFe 12 O 19 ), cobalt iron oxide (CoFe 12 O 19 ), neodymium iron boron (Nd-Fe-B) and other permanent magnetic materials. 如請求項1之磁力紅外指套,更可添加遠紅外線陶瓷材料。 For the magnetic infrared finger cot of claim 1, far infrared ceramic material can be added. 如請求項1之磁力紅外指套,其中雙管狀連結結構之管狀結構的長度為4~8公分,直徑0.8~2公分,厚度0.06~0.15公分,近手腕部邊緣構造長度為1~2公分,寬1~1.5公分,厚度0.06~0.15公分。 For example, the magnetic infrared finger cot of claim 1, wherein the length of the tubular structure of the double tubular connection structure is 4 to 8 cm, the diameter is 0.8 to 2 cm, the thickness is 0.06 to 0.15 cm, and the length of the structure near the wrist edge is 1 to 2 cm. Width 1~1.5 cm, thickness 0.06~0.15 cm. 如請求項1之磁力紅外指套,磁力紅外指套之塑膠材質選自由丙烯腈-丁二烯-苯乙烯共聚物(Acrylonitrile Butadiene Styrene,ABS)、聚乙烯(polyethylene,PE)、聚丙烯(Polypropylene,PP)、聚苯乙烯(Polystyrene,PS)、熱塑性彈性體(plastic raw materials,TPR)、聚氨酯(polyurethanes,PU)、聚對苯二甲酸乙二酯(Polyethylene Terephthalate,PET)、聚氯乙烯(Polyvinyl Chloride,PVC)、玻璃纖維強化熱固性塑膠片狀模壓材料(sheet molding compound,SMC)、聚甲基丙烯酸甲酯(poly(methyl methacrylate),PMMA)、聚醯胺(polyamide,PA)、或其混合所組成之族群。 According to the magnetic infrared finger cot of claim 1, the plastic material of the magnetic infrared finger cot is selected from Acrylonitrile Butadiene Styrene (ABS), polyethylene (PE), polypropylene (Polypropylene) , PP), polystyrene (PS), thermoplastic raw materials (TPR), polyurethanes (PU), polyethylene terephthalate (Polyethylene Terephthalate, PET), polyvinyl chloride ( Polyvinyl Chloride (PVC), glass fiber reinforced thermosetting plastic sheet molding compound (SMC), poly(methyl methacrylate) (PMMA), polyamide (PA), or its A group of mixed people. 如請求項1之磁力紅外指套,其中磁性材料含量為1~8%。 For example, the magnetic infrared finger cot of claim 1, wherein the magnetic material content is 1~8%. 如請求項2之磁力紅外指套,其中遠紅外線陶瓷材料含量為1~3%。 For example, the magnetic infrared finger cot of claim 2, the far infrared ceramic material content is 1~3%.
TW108213318U 2019-10-08 2019-10-08 Magnetic far-infrared finger sleeves TWM593831U (en)

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