SENI
KECANTIKAN & KESEJAHTERAAN
KRAFTANGAN
BUDAYA & SEJARAH
HIBURAN
ALAM SEKITAR
MAKANAN & MINUMAN
KEJURUTERAAN TERBALIK
SAINS
SUKAN
TEKNOLOGI
BOLEH PAKAI

The Leaf Spring: A Beam That Carries the Load and Locates the Axle
Stack strips of spring steel, longest on top and each shorter one below, clamp them at the middle to an axle and hang the ends from the body: that is the leaf spring. It is the carriage spring of the early 1800s — Obadiah Elliott's elliptic spring of 1804 let coaches do away with the heavy perch that held the axles together — and it is still under most lorries and many pick-ups.
It does three jobs at once: it carries the load, it locates the axle so no other links are needed, and the leaves rubbing on each other damp the motion a little.
This rung works out a leaf spring's rate and the ride frequency it gives, and builds one from spring-steel strip to measure.
Pemula
About 3 hours
Arahan
1
1
Rate and ride frequency
Rate and ride frequency
Memuatkan buku nota Jupyter…
2
2
Build a small leaf spring and measure it
Build a small leaf spring and measure it
Cut four strips of spring-steel strip: 300, 240, 180 and 120 mm long. Stack them centred, longest on top, and clamp them together at the middle with a bolt through a small hole (or a clamp). Bend a small eye at each end of the top leaf, or hook it over two dowels set 300 mm apart on a board.
Hang weights from the centre in steps and measure the sag with the steel rule. The slope of load against sag is the rate. Compare with the notebook's formula for your strip's width and thickness (measure them with calipers).
Now remove the two shortest leaves and repeat: the rate falls — and the top leaf now bends into a sharper curve at the centre, where it would crack first.
Bahan untuk langkah ini:
Jalur keluli spring1 set
Skru mesin2 keping
Pasak kayu keras1 set
Kepingan papan lapis1 helaianAlatan diperlukan:
Ragum Bangku
Angkup Digital 6 Inci
Pembaris
Meter Daya (Neraca Spring)
Sarung Tangan Kerja Kulit3
3
History and context
History and context
Laminated carriage springs developed through the eighteenth century; **Obadiah Elliott's elliptic spring of 1804** (a British patent) let coaches be built without the perch, and the semi-elliptic form went on to railway wagons and motor vehicles. No patent number is asserted here.
**Honest limits.** A leaf spring is heavy for the energy it stores. The friction between leaves damps small bumps poorly and large ones harshly, and changes as the leaves rust. And because the spring also locates the axle, the axle can wind up under hard acceleration and braking.
Bahan
4- 1 setPemegang Tempat
- 2 kepingPemegang Tempat
- 1 setPemegang Tempat
- 1 helaianPemegang Tempat
Alatan Diperlukan
5- Pemegang Tempat
- Pemegang Tempat
- Pemegang Tempat
- Pemegang Tempat
- Pemegang Tempat
Blueprint berkaitan
Blueprint ini berkongsi pengetahuan — teknik, bahan atau prinsip

Spring Rate: The One Number a Spring Is
oleh Emma
Mekanik
6
0
0
0
0
0

Spring Fatigue: It Is the Swing That Breaks It
oleh Emma
Kerja Logam
5
0
0
0
0
0

Balance: A Tiny Eccentricity Becomes an Enormous Force
oleh Martin
Kejuruteraan
16
0
0
0
0
0

Building a Wooden Cart Wheel — Hub, Spokes, and Felloes
oleh Woody
Kerja Kayu
71
0
0
0
2
0

Ackermann Steering: The Inner Wheel Turns Further
oleh Martin
Mekanik
5
0
0
0
0
0
CC0 Domain Awam
Blueprint ini dikeluarkan di bawah CC0. Anda bebas menyalin, mengubah, mengedar, dan menggunakan karya ini untuk sebarang tujuan, tanpa meminta kebenaran.
Sokong Pembuat dengan membeli produk melalui Blueprint mereka di mana mereka memperoleh Komisen Pembuat ditetapkan oleh Penjual, atau cipta iterasi baru Blueprint ini dan sertakan ia sebagai sambungan dalam Blueprint anda sendiri untuk berkongsi hasil.