Abstract

Driving comfort for riders and passengers is a keytarget to be achieved. Fluctuations in vehicle loads, bumps,perforated surfaces, and other road damage will greatly affectthe vehicle suspension working system. This study aims tocalculate the vertical dynamic load of the vehicle actually whichoccurs on road construction after through the vehicle wheelsuspension mechanism. The Pneumatic cylinder that was drivenby pressurized air directly weigh on the spring and ShockAbsorber that contained on the wheels of the vehicle. The loadfluctuations of the medium weight category vehicle aredetermined by the regulation of the amount of pressurized airentering into the pneumatic cylinder chamber pushing the pistonand connecting rods. The deviation that occurs duringcompression on the Spring and Shock Absorber, is substitutedinto the vehicle dynamic load equation by taking also themagnitude of the spring stiffness constant, and the fluid or gascoefficient of the damper. The results showed that the magnitudeof the displacement when the compression force worked hassignificantly influenced the amount of vertical dynamic load ofthe vehicle that overlies the road construction. Experimentalresults using pneumatic actuators instead of real dynamic vehicleloads illustrate the characteristics of the relationship betweenwork pressure and dynamic load. If the working pressure of P2(bar) is given great, the vertical dynamic load Ft (N) whichoverloads the structure of the road is also greater. From thegraph shows that shock absorbers have greater ability to reducedynamic load vertically when compared to spring ability.

Highlights

  • Abstrak— Kenyamanan berkendara oleh para pengemudi merupakan suatu target utama yang ingin dicapai

  • This study aims to calculate the vertical dynamic load of the vehicle actually which occurs on road construction after through the vehicle wheel suspension mechanism

  • The results showed that the magnitude of the displacement when the compression force worked has significantly influenced the amount of vertical dynamic load of the vehicle that overlies the road construction

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Summary

Pendahuluan

Abstrak— Kenyamanan berkendara oleh para pengemudi merupakan suatu target utama yang ingin dicapai. Penelitian ini bertujuan untuk menghitung besarnya beban dinamis vertikal kendaraan sesungguhnya terjadi pada kontruksi jalan setelah melalui mekanisme suspensi. Kajian yang inovatif ini didasarkan pada pengetahuan dasar tentang mekanisme transfer pembebanan vertikal melalui sistem suspensi roda yang terdiri atas kerja pegas dan shock absorber. Kajian tentang beban dinamis yang ditranformasikan melalui mekanisme kerja suspensi pada roda kendaraan terhadap jalan adalah (1) bertujuan untuk mengetahui bentuk formula dan besarnya beban dinamis vertikal dari setiap jenis bobot kendaraan sedang yang melintas, (2). Jika gaya gesek Rf ditetapkan sebesar 10% x Fk (N) maka secara keseluruhan mekanisme transfer beban terhadap struktur jalan aspal adalah mengacu pada Diagram Benda Bebas (DBB) berikut: Jika pegas dan shock absorber mengalami pembebanan bervariasi dari tekanan P=1 sampai 8 bar, maka akan terjadi simpangan ke arah kompressi sejauh x (mm). Apabila roda kendaraan 1⁄4 sedang menggelinding di atas permukaan jalan, maka beban dinamis vertikal kendaraan diformulasikan sebagai berikut:

Eksperimen
Analisis Data
Hasil dan Pembahasan
Kesimpulan

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