Transcript
Page 1: ú · d ½#Ý75 ú m/Ä b ú ·3M ö Ý b0Û o 6õ M %Ê'2 · N' w Ü 2015 º5 v9 ¥ *1 3Æ$% ± Û d Û4 µ d Û&É ø M 5>* a æ ö% /¡%Ê'2 d ø M 5>& 739-2116 ¾ È å w9× :

*1 *2 *3 *3

Evaluation of hand-arm vibration reducing effect of anti-vibration glove

Junya TATSUNO*1, Setsuo MAEDA*2, Kazuki YOKOTA*3 and Yuichiro TAIRA*3

Many kinds of the anti-vibration glove have been developed for reducing hand-arm vibration during the operation with vibration tools. International standard ISO 10819 evaluates the physical effect of gloves’ vibration transmissibility but not evaluates the physiological effect of human hands. Thus, in this paper, we proposed the evaluation using the temporary threshold shift of vibrotactile perception threshold to evaluate the hand-arm vibration reducing effect of anti-vibration glove. We performed the experiments where subjects were exposed to hand-arm vibration under the three glove conditions; two kinds of gloves and barehanded. As a result, we could confirm wearing the anti-vibration gloves provides positive effects for human hands physiologically and the proposed method might be effective for evaluation of the hand-arm vibration reducing effect of anti-vibration glove.

Keywords: anti-vibration glove, hand-arm vibration, vibrotactile perception threshold, vibration tool, ISO 10819

(1)

ISO 10819(2)

JIS T8114(3)

ISO 10819 1996

JIS T8114 1987JIS T8114

1994 2002 2007ISO 10819 JIS

T8114:2007 JIS T8114:1987 JIS T8114:2007

JIST8114:1987

JIS T8114:2007

(4) JIST8114:1987JIS

T8114:2007

(5)

2015 5 9*1 739-2116 1

E-mail [email protected] *2 577-0818 3 4-1

E-mail [email protected] *3 729-2317 4 2-1

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近畿大学次世代基盤技術研究所報告 Vol. 6(2015)61-66

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ISO 10819 JIS T8114

(6)

TTS: Temporary Threshold Shift (7)

(8)

RION AU-02A

(1)

1

(2 N)

-20 dB 2.5dB

(a)

(b) 1

(2)

(9) 26 26

10

25

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Page 3: ú · d ½#Ý75 ú m/Ä b ú ·3M ö Ý b0Û o 6õ M %Ê'2 · N' w Ü 2015 º5 v9 ¥ *1 3Æ$% ± Û d Û4 µ d Û&É ø M 5>* a æ ö% /¡%Ê'2 d ø M 5>& 739-2116 ¾ È å w9× :

(a)

(b) 2

(a) x

(b) y

(c) z 3 5 m/s2

-20 dB 2.5dB3

(3)

25

3

5 m/s2 10 m/s2

2

5 m/s2

10 m/s2 (10)

3 4 5 m/s2 10

m/s2

33050-B-060

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Page 4: ú · d ½#Ý75 ú m/Ä b ú ·3M ö Ý b0Û o 6õ M %Ê'2 · N' w Ü 2015 º5 v9 ¥ *1 3Æ$% ± Û d Û4 µ d Û&É ø M 5>* a æ ö% /¡%Ê'2 d ø M 5>& 739-2116 ¾ È å w9× :

(a) A (b) B

5

1

( ) (cm) (kg)P1 22 171 60P2 22 175 94P3 22 167 52P4 22 174 90P5 22 168 55

(a) x

(b) y

(c) z 4 10 m/s2

3050-B-060 1

1/3

250 Hz 315 Hz2

1 3027

(4)

2 A B3 A

B

5 m/s2 10 m/s2 26

51

2 3

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2 5 m/s2

1 2 3 1 2 3-20.0 -20.0 -20.0 -5.0 -5.0 -5.0

A -20.0 -20.0 -20.0 -12.5 -12.5 -12.5B -20.0 -20.0 -20.0 -7.5 -7.5 -7.5

-20.0 -20.0 -20.0 -7.5 -7.5 -7.5A -20.0 -20.0 -20.0 -10.0 -10.0 -12.5B -20.0 -20.0 -20.0 -15.0 -15.0 -15.0

-20.0 -20.0 -20.0 -7.5 -7.5 -7.5A -20.0 -20.0 -20.0 -12.5 -12.5 -12.5B -20.0 -20.0 -20.0 -12.5 -15.0 -15.0

-20.0 -20.0 -20.0 -5.0 -5.0 -5.0A -20.0 -20.0 -20.0 -15.0 -15.0 -15.0B -20.0 -20.0 -20.0 -5.0 -5.0 -5.0

-20.0 -20.0 -20.0 -5.0 -5.0 -5.0A -20.0 -20.0 -20.0 -12.5 -12.5 -12.5B -20.0 -20.0 -20.0 -10.0 -10.0 -7.5

P1

P2

P3

P4

P5

(dB) (dB)

3 10 m/s2

1 2 3 1 2 3-17.5 -17.5 -17.5 2.5 2.5 2.5

A -20.0 -20.0 -20.0 -7.5 -5.0 -5.0B -20.0 -20.0 -20.0 -5.0 -5.0 -5.0

-20.0 -20.0 -20.0 -5.0 -5.0 -5.0A -20.0 -20.0 -20.0 -7.5 -5.0 -7.5B -20.0 -20.0 -20.0 -12.5 -12.5 -12.5

-20.0 -20.0 -20.0 -2.5 0.0 -2.5A -20.0 -20.0 -20.0 -12.5 -12.5 -12.5B -20.0 -20.0 -20.0 -7.5 -7.5 -7.5

-20.0 -20.0 -20.0 0.0 0.0 0.0A -20.0 -20.0 -20.0 -5.0 -5.0 -5.0B -20.0 -20.0 -20.0 -2.5 -2.5 -2.5

-20.0 -20.0 -20.0 -2.5 -2.5 -2.5A -20.0 -20.0 -20.0 -5.0 -5.0 -5.0B -20.0 -20.0 -20.0 -12.5 -10.0 -10.0

P5

(dB) (dB)

P1

P2

P3

P4

4 TTS dB

A B A BP1 15.0 7.5 12.5 20.0 14.2 15.0P2 12.5 9.2 5.0 15.0 13.3 7.5P3 12.5 7.5 5.8 18.3 7.5 10.0P4 15.0 5.0 12.5 20.0 15.0 15.0P5 15.0 6.7 10.8 17.5 12.5 6.7M 14.0 7.2 9.3 18.2 12.5 10.8SD 1.4 1.5 3.7 2.1 2.9 4.0

10 m/s25 m/s2

0

5

10

15

20

25

A B

TTS

(dB)

5 m/s2 10 m/s2

6 TTS

5

s 77.6 4 19.4A 100.8 1 100.8 23.42 **

s × A 17.2 4 4.3B 259.0 2 125.0 17.94 **

s × B 55.7 8 7.0A × B 19.0 2 9.5 2.15 ns

s × A ×B 35.3 8 4.4555.6 29

5 m/s2 10 m/s2

10 m/s2 P11 -17.5 dB

-20.0 dB3

3TTS

4 6TTS 5 m/s2

10 m/s2 10 m/s2 TTS

TTS

( 5) ( A) F(1, 29)=23.42 (p<0.01)

( B) F(2, 29)=17.94, p<0.01 Shaffer

A Bp<0.05 A B

A B

A B

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Page 6: ú · d ½#Ý75 ú m/Ä b ú ·3M ö Ý b0Û o 6õ M %Ê'2 · N' w Ü 2015 º5 v9 ¥ *1 3Æ$% ± Û d Û4 µ d Û&É ø M 5>* a æ ö% /¡%Ê'2 d ø M 5>& 739-2116 ¾ È å w9× :

A B

ISO 10819JIS T8114

( )

(1) JIS B7761-3 2007 3

(2) ISO10819, Mechanical vibration and shock Hand-arm vibration Method for the measurement and evaluation of the vibration transmissibility of gloves at the palm of the hand. International Organization for Standardization, Geneva, Switzerland; 1997.

(3) JIS T8114 2007(4) JIS T8114

Vol. 1, No.2, pp.151-156, 2008.

(5) JIST8114

pp.146-147, 2002.

(6)

Vol.39, pp.43-46, 2009. (7)

1 Vol.38, No.4, pp. 243-248, 1987.

(8) Setsuo Maeda Can the measured TTS be used as indicator of the effectiveness of anti-vibration gloves? Proceedings of 10th International Conference on Hand-Arm Vibration, pp.185-186, 2004.

(9)

Vol.42, No.2, pp.105-111, 1991. (10) 3

http://www.makita.co.jp/product/jema/synthetic_value_20150403.pdf

(11)2013 , Vol.b55,

pp.A105-122, 2013.

( ) ( )

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